Document 6BJvGx0q1p4BXONkjzGq4aJp6
FILE NAME: Phenolic Resins (PHR) DATE: 1945
DOC#: PHR034
DOCUMENT DESCRIPTION: Unpublished Report-API History of the Subcommittee on Carcinogenicity with Two Attached Literature Reviews
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API HISTORY OF THE
subcommittee
ON CARCINOGENICITY
19U5-1950
-a 'er
""1 * -
. fof
'A*contributton of i n f e c t i o n to Kenbers - API Uedical Advisory C - g - ;
Technical Memo_No. 45-214 Chemical Division
Socony-Vacuum Oil Co., Inc,
Research and Development Laboratories
Paulsboro, New Jersey
April 27, 1945
t t e n t i o n Mr. P. V. Keyser, Jr. Dr. A. A. O'Kelly Dr. W. P. Hawthorne
A brief literature survey of
Carcinogenic Hydrocarbons,
M t.prnture Survey ...
(flfEVladay/
Carcinogenic activity tas
including hydrocarbons,
confined to the hydrocarbons and
S S S L S f S S i - i identified a, carcinogenic.
_
Uost of the carcinogenic b y d ^ c a r t O T s ^ r ^ o r i B i ^ l yJn 30m0 caaee
S ^ ! S b r r '^b^anthracenes.
T W . m . d Caret-- T " *^- Hydrocarbons
(7),(22).(45),(24) (12),(10i,(5),(28),
Benzopyrenes
1,2-benzopyrene 3,4-benzopyrene 1,2,3,4 dibenzopyrene
IX, cholanthrenes cholanthrene
20-methyl cholanthrene 16 20-dimethyl cholanthrene 20-ethyl cholanthrene IS i 6-benzdehydrocholanthrene
04609
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20-isopropyl cholanthrene 3- methyl cholanthrene meso-dihydro cholanthrene 4- raethyl cholanthrene 5- methyl cholanthrene meso-dihydro 3"methyl cholanthrene
1-k etoch oianthrene
III.
Benzanthracenes
1 2-benzanthrac ene 10-methyl-l,2-benzanthracene 9-methyl-l,2-benzanthrac ene 5 10-dimethyl-l,2-benzanthracene 5 9-dimethyl 1 ,2-benzanthracene 8.9- dimethyl 1 ,2-benzanthracene 4.10- ace 1 ,2-benzanthracene 9.10- dimethyl 1 ,2-benzanthracene 8.10- ace 1 ,2-benzanthracene 10 ethyl 1 ,2-benzanthracene 5 methyl 1 ,2-benzanthracene 5 n-propyl 1 ,2-benzanthracene 6 methyl 1 ,2-benzanthracene 5.6 dimethyl 1 ,2-benzanthrr.cene 6 isopropyl 1 ,2-benzanthracene 6.7 c?clopenteno-l,2 benzanthracene
3 hydroxy-1,2-benzanthracene 0 methoxv--1 ,2--benzanthracene 5 propyl-9,1 dimethyl-1,2 benzanthracene
5 ethyl-9,10 dimethyl -1,2 benzanthracene
5 methyl-7,8 dihydro-1,2 benzanthracene
1 2,5,6 dibenzanthracene
li ,9 methylene-1,2,5,6 ^ a n t h r a c e n e
1' 2 ' 3*,4* tetrahydro-1,2 benzanthracene
5,6 cyclopenteno-1,2 benzanthracene
Miscellaneous
sym. triphenyl benzene tetra-phenyl methane o-amino-azotoluene 9.10 dimethyl anthracene 1,2 cyclopenteno-510-aceanthrene
t The Mature of Petroled Carcinogens
The probability that
bTTM"
270-300C, and 300-330 C, produced
^ the absorption spectra of
to whose skin these fr^c^ as these fractions were simiiar to thoew -
cancer-producing compounds, tested showsci the
Spectrographic analysis of
S and Fulton (59) .tat.
presence of the same class
^ ^ n - n f f i n s have relatively little
that oils with a preponderance of paraffins nave r
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carcinogenic activity, but that carcinogenesis is high in oils with a preponderance of isocyclic compounds.
r . SrifL'^nroup
%
S Z , t= the i l n of rabbits, produced alignant tutors.
"
A substance containing the bento () ^ r e n e nucleus, with
decidedly cancorogenic properties, has been isolated (32) from tar s c
ia used in paving roads.
Ihe prevalence of cancer among
(63) to be due to
The pure par--fiin l^24 5(j
..tSd a
paraffin wax. found to be non-carcinogenic.
The Most Carcinogenic Petroleum fractions
Carcinogenic hydrocarbons have been shown ^ b e m o r j ^
concentrated in certain
tin/oil bar, etc.) contain more
boiling fractions (fuel oil, 1
^
*tionSt ^ petroleum oils
carcinogenic hydrocarbons than the lower
fractions 31 times as
used in cotton spinning carcinogenic as the low boiling ^ o S s are said to be less potent
ctJ;n3 Jr L
fhe heavier grade lubricating
oils (54). shalo oil was
oils; the
found (56) to be about 12 ^ flh"J * af S ^ f i n i 8hed lubricating oil from
most potent shale oil J" *
h a s t e n removed but which has not been treat-
which most of the paraffin wax
v 00&
found that while mineral
ed with sulfuric acid or filtered (54).
carcinogenic, heavy lubricating
oil of the type used therapeutic 7 d tar showed the same property to a
oils did show some carcinogenicity, cUid tar snow,
larger degree.
_ #
Twort and Lyth (60) ^ v e s t i g a t e d a t ^ g e o ^ c o m e r c i a l ^ d ^ activity
of a topped Borneo crude oil. Th^
v i s c o s i t y ^ 200-225 centipoises
was associated with the fraction having a
activity. This
at 25C, and that the whole rang f ^ n a t i o n of the physical properties
when likely to eome into contact with the user. theirU9eas
_3
Evidence of the presence of c^cinogens
SonT
noted (56) in an investigation of ^ S&-ccntpiession, internal-combustion
che soot of the
engine. This material was hig y
,'f
general, the carcinogenic potency of cru
the skin of rruce. In
0jj_3 decreased as the
ent at 400Centigrade.
cracking temperature wab These investigators also
lower' found that
a
" heavy
-rrade grade
o0f 1
Diesel Ji
fuel
oil
was
carcinogenic but that a light grade oil was uot.
Effect of Treatment of Oil" on narcino.renicitz
Yioodhouse (64) found and the S02 extract of spandle were carcinogenic. Lyt*"
^parafSn-base crude fractionation of
=>
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Scottish 3hide oil and a Persian oil, that all samples of petroleum oil which
were treated with ethanol provided residues of lower ca" lno^ ^ 1^ d^ ton
h i ^ e r refractive index and density than the original oil.
*siiica
( \ q) found th't saturation by oxidation and reduction cr treatment by silica
or S a y reduced the cancerogenic activity of their mineral oils probably
$ sdsc^tion and polymaristtion. Alcehol traction and sulfurtc acid
tre-tment reduced the carcinogenicity of the oils by extracting the
carcinogens. The same authors also found that the active agents could be
concentrated by extraction with methyl sulfite or methyl sullate and pi .
acid. They suggested the process for treating oil for industrial use.
Relation of Carcinogenicity to Fluorescence and
Chemical and Physical Properties
_
Tvrort and Twcrt (54) found that the cancer-producing properties of
mineral oils appeared to. be related to their flueroscence; oils having a
blue fluorescence seemed more active than those having Weiss (61) noted that strong fluorescence was almost confined to conjugd.t
rin* systems which possessed highly mobile electrons. Only t h e m o r
svmmetrically conjugated systems or those which do net ? ^ e r i s . t o str y
innic structures show fluorescence. The author compared the mobile electrons
with metallic electrons and stated that carcinogenic hydrocarbons belong to
i f y f r ^ X o n s . .Hiesr (26) found that tha n u o r t ^ c . apuatra
rt' m-nv carcinogenic substances show bands at wave lengths cf 4000 , 4180, and
4toOAc! These tends are similar to those cf the spectra of 1 ,2-benzanthracene,
a known carcinogen of high potency.
A relationship between physical properties and carcinogenicity was
observed b) 5 S (35) 5ho stated that oil. with a
l 5500 were non-toxic while oils with an index exceeding 1.5600 were
"Pennsylvania oil. and certain mildly treated oils ere an o p t i o n . The sameP author noted a relationship between ths iodine value f '" treat S i s " 5 carcinogenicity. Toxicity Increased in the same order as the iodine
value, Pennsylvania oils again excepted.
Fieser and Hershberg (21) found that the behavior of polynuclear
hydrocarbons in lead acetate oxidation, aldehyde reac^ n
indicated that the most carcinogenic hydrocarbons of the s e n e s tested
possessed special susceptibility to substitution.
Schmidt (48) discussed the theory of the box model of aromatic compounds L d r t a t e d that the theory is e s p e c i a i i y s u c c e s s f ^ i ^ h a r ^ c t izing the cancer-producing hydrocarbons as compounds with abnormally m =h electrogen density and low excitation energy.
Other references relating structure and physical and c^ 4 aaland
properties to carcinogenicity include Bradley (8); Clar ( )#
Warren (18); Fieser (19) and (20 ; Fieaer and Campbell 22),
IballP (28):
n g ljg t3
Kennaway et al., (29); Lundgren (34); Shear et al., (51), and Truhaut
.
More general references to known carcinogens, including reviews of
the literature up to the date of the reference, nre Addinall W ,
Andervont (2); Barry (3); Blanc (4);
S al ' (16);
Bruce and Kahn (10); Butenandt (11); Cook (13) rjid (14) Cook etal., ^ *
Cook and Kennnway (15) and (17); Hartwell (24); hewett (25), Kerna l )>
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* *i / . Rnffo (4 2 ); Rondoni (44) Sampey (45)*
Shabad (50),
> S'-* ^
and Sibcna (52).
^ _
M'
schrch (w)i ,,ore ^ vailable *,,d
w 's s x & s r t t The greater part of the origin
For these references the
reference in the bibliography.
f fis s s - -- - --
'
/ aJ L. J. Hillenbrand
L. J. Hillenbrand
LJH-.RMW
r
BTLIOGRAPKY
, - H - I l C K., Merck Report Al, 16-18(1935) (C.A.22,62037 ) I: Andervont, H. B., niv. Wisoonsin, Symposium on Cancer Sept. 19j6,
54-66 (C.A*32,3612 )
-si 1935) (C.A.29,5187^)
t ig ;} B S ^ 1 1 ? - ^ 5 B S # ^ S S S S s i S a ^ (c-a^,8057>
(C.A.32,A979 )
g- r
r
a, ion 74-91(1938) (C.A.^2,7372)
i
systeme' 65'73'
a 1-13(1838, (C.a.22,2a9)
& SS: 5::; i ^ 5^
^ ^97C1,38)
1167..
C o o k " '. 1-, >t !. * J '-C"" r 'j21c"Jli, 35
Cook, J. W., and Kermawa:", E. 1., Am. J. Cancer r,
3B - i S '/ S - 32(1940)
-
18 ^
'c^ E - ! and Warren, S ,, Car.cer Research 1, 953-1(191
.
a.22.
23.
H
!
:
-
Fioser, L. F a n d Campbell, W. Pj, J- c Haddow, A., and Robinson, h . M., Proc. Koy. o
3127, 227-87(1939) ----
(C.A.33,6428 )
. j. q Public Health Service (1941)
26. Hieger, I., Biochem. J. 2 , 5
0
578and 810(1932)
on uipst. H. R., and King, A. T., N a t u r e b d : 3.
28. Iball, J., Z. Krist. 9^, 7-21(193 ) ( . a J 0 ( C . a .35,32502 )
29. Kennaw, E. L., et al., Cancer^ ^ ^ 33) (0.4.27,425^)
t
v
s ss f
- s s s . s : s s a i f f i u * TM gs.'sr& r
37. Lyth, E., and Inort, C.C., J.
/q .a . 29, 6612*!
,
38. Morton, A. A., * .
755-60 (1936) (C.A. jO, 5291' )
39. Merton,
,,., et al., m.
7932) (C.A. 27 , 29932 )
10. Nyrcp, J. E., Protoplasma ^ , 2 9 1 - 3 0 0 (1932) IC - 0_u (c.A. , 677e )
U . Passano, J. 2., Semema Med. (^e n o s ^ r ) J 4 i _ _
12. Buffo, A. H., Noplasmes g , 7! ^
Cane^ 17 , 385-111 (1910)
43. Rcffo,
H., Bel. Inst. Me-. Expti. w * *
--
,
(C.A. 5, 1499 )
, /--. - \ mn 148-54 (1935) (C.A. 29j 5176 )
44. Rondoni; P., Chimica e Industria (Italy) 17, 148-54 ( W <
~
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(BIBLIOGRAPHY - CONTINUED)
&
S X ; C. ; ^
t S ! F r ,, e etude Cancer a , 6-37
47. S a S i / l i f ^ 'l S S d i , I., Bull. sscc. Franc etude Cancer 24 ,
534-8'
l:: (1935) (C.A. 30, 52904)
i t schSci; M f c K
!1 ! * * 1 . &, TM (>
50. Shabairi- M., .'-TCh. SCi. B i d . (USSR) 9, 147-68 (1935) (& g ,
J
. S ,
i t M . * induct^ 2 , U9-32
2,
I . Twcrt, C. C., and Twort, J. U., J. Ind. Hyg. 1, 20^ 26 <1931)
C5! ? ^ Twcrt,
Lancet
*M(C.A- f
56. Twcrt, C. C., and Twcrt, J. a., Lancet 1915 II, l226" ( 2 ^ .5 (1938) 57 ^ c r t C. C,, and Twort, J. U., Oil Colcur Tradeg J. 94, 251 5 U938)
5S. "Twort,""c! C.,2and Ing. H. R., Z. Krebsfcrsch 27, 308-51 (1928)
59. ^ o r t f c ! c!! L d Fulton, J. D., Z Krcbsforsch 5, 543-73 (1932)
60'.
2!!51 Lyth, R-, J. Hyg. 9, 161-9 (1939) (C.A. 12, 506l9)
61. '"eiss, J-, Nature 145, 744-5 (1940)
A? Weed. F. C., J. Am. Med. h s s c c . 94, 1641-3 U 93u;
ti
&u
24,48672 ) -->
*, **'>
.wsaarir*
API 04615
of API )liiel Advisory Conmttse. 'contribution of information to Members
THE CARCINOGENICITY
OF
bituminous compounds
Literature Review April 30, 1945
Library of the
cal k Research Di1
The Texas Company New York City
N0TE
In view cf the immense amount of published information on various phcses cf the cancer problem, it should be emphasized that this literature review gives only a rapid survey cf developments in the field of cancer research as applied directly tc the petroleum, coal tar, oil shale and -allied industries. While it is far from being complete, yet it is believed that most of the important work in this particular field has been
covered, either in the report itself or'in one cf the bibliographical references given in the appendix and
referred tc at the bottom of page 1 .
P. Doss
T
THE CARCINOGENICITY OF BITUMINOUS COMPOUNDS
It has long been recognized that the incidence of skin cancer is greater
among workers in certain industries and occupations than among the population as
a whole. Attention was first directed in 1787 to the very high death rate result
ing from scrotal cancer of chimney sweeps; it is eight times more common in these
workers than in the general public in England, and in the United States the ratio
' '
. 78
cf cancer cases in chimney sweeps is double that cf the general pep a ion .
in practically all eases it is the scrotum that is attacked; this is also the
Site in mule spinners cancer discussed later, Barkers in ether industries coming
into direct contact with tars, pitches, shale oils, etc. likewise show a high
mcidenoe of skin eaneer, for example, laborers in plants making briquettes, tar
roofing, wood preservatives, artificial gas, insulating compounds, shale products,
etc.
However, in spite cf the recognition of the fact that bituminous com
pounds were apparently the cause of skin cancer, it was not until relatively
recently that skin cancer was produced in laboratory animals by direct application
of tar. This was accomplished by the Japanese investigators Tamigawa and
Ichikawal22 in 1915. Since then a great deal cf very careful work has been dene
in synthesising and testing various organic compounds, particularly p o l y e y c U e
cydrocarbons and derivative,. For lengthy r e v i e of this w o * , see References
8-12, 14, 17 , 20, 22, 23, 26-29, 32-34, 74, and 37; particularly the review by
J. L. Hartwell cf the National Cancer Institute covering 696 chemical substances,
of which 169 are reported to be carcinogenic. L. F. Fieser summarises cur
knowledge in this field as follows^:
"As iudired bv all available data for the production cf skin and subcutaneous tumors in rats and mice, methylohoianthreneprobably is the most potent cf the known chemical carcmcgens. Syste^t
studies cf synthetic model compounds have shown that the me 7
fzrouD is cf nc importance tc the functioning cf the compound, I h a ^ c h U n i T a S cf the efficacy of eh
in the analogous hydrocarbon 5,IC^dimethyl-l,2-benzanthracene,
that the most significant structural feature cf ch^ ; ^ r"th
methylcholanthrene is the 1 ,2-benzanthracene n n g -y
cirbon substituent at the meso position 10. 10-Methyl-l, 2-benzanthracene evokes sarcomas in mice nearly as rapidly
methylcholanthrene, and, though it is distinctly less.ef in the production of skin cancer, the substance constitutes the nearest approach in a simple model compound to a simulation of the biological properties of the hydrocarbon of more complicated
structure,
",11 twelve possible monomethyl derivatives of the inactive 1 ,
2-benzanthracene have been synthesized and tested for ca^ ~
7onic activity, and of these the 10-isomer is the !
of
The meso-substituted 9-methyl compound stands next in order of
potency, followed closely by the 5-methyl _der^v^ ^ ,t^ e ha3
produced sarcomas in mice with a latent period a u
long as that observed with 10-methyl-l,2-benzanthracene.
Methylcholanthrene and benzpyrene can be regarded as
2-benzanthracenes substituted at the meso positions 10 and 9,
respectively, and in model compounds the combination ^ t h
types of substitution is particularly favorable. 9 , 1 ^ ^ ^
1 2-benzanthracene produced skin tumors m mice with remark-Di
" is test surpasses methylcholenbhrene ta sposd
Cf action, though it is less effective when administered by
subcutaneous injection. The thiophene isologue oi the hydr
carbon has comparable properties."
Numerous attempts have been made to isolate the definite carcinogenic
,, p o u n d s in cool t.r by sans of distillation, solvent extraction, eto.73, but
* ile very potent fractions have been obtained, the individual compounds have
been difficult to separate. Kennaway and Hieger 16 proved the carcinogenicity cf 1 ,2,5,6-dibenzanthracene, the first pure carcinogenic hydrocarbon known. Cock, Hieger and Hewitt ^ in 1933 isolated 1,2-benzpyrene, 4,5-benzpyrene and 1 2-benzanthracene and estimated that the original coal tar pitch contained not
1,8s than 0.003% of the potent 1 ,2-benzpyrene.
Several investigators 22, 24, 25 have attempted to correlate carcino
genesis with fluorescence. For example, the cancer-producing material formed by
the action of AlCl-j on tetrahydronaphthalene shows a blue-violet fluorescence,
shewing three bands, 4000, 4180 and 4400 .U., which are similar to the
fluorescence spectrum of 1 ,2-benzanthracene
Kennaway and Hieger 62 suggest
the possibility of the use of the fluorescence spectrum for-the preliminary
amination of materials suspected of being carcinogenic.
-3-
An important fact brought out by several investigators is that the temperature to which a tar, shale oil or petroleum oil has been subjected determines its carcinogenic activity. In general, it would seem that temperatures up to 500C. are without effect 52 but above that temperature carcinogens are
formed, the maximum yield lying between 80C and 900C. 53 59, Tar and 2-
frTM gas works are far more active than that from coke ovens 58, accounting for 70* of all cases of tar cancer in the United States while the coke oven product
causes only 5* Vihile petroleum residues resulting from moderate heat treatment are
inactive 12, yet by passing an inactive California petroleum through a tubs at
880C. Kennaway and Leitch obtained a very active carcinogen 59,
Even an
inactive medicinal paraffin oil heated to 330C. under 50 atms. pressure acquired
some carcinogenic activity
Kennaway 56 likewise obtained an active material by passing isoprene through a tube filled ith U2 and heated to 820C. Wateon U 5 achieved similar
results with turpentine at 850C. Acetylene yields an active product on being passed through a red hot
tube 59 but it must be pointed out that treatment with AICI3 at room temperature
also produces an active compound
On the other hand, synthetic lubricating o i l s produced by AICI3
polymerization at temperatures up to 150C. were entirely inactive
. It
suggested that the condensation products of acetylene are of a more complicated
nature and probably acre unsaturated than those obtained from ethylene. The carcinogenic activity of tars depends apparently not only on the
temperatures of their fonnation but also on the chemical compound used as the base stock 10. For example, a tar made from pinene at 850C. was far more active than one from turpentine made similarly, the relative potencies being 100:19. Pinene tars made at 500, 600, 750, 850 and 950C. had relative potencies
A.PI 04620
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cf 0, 12, 21, 100 and 61. Oxidation of a synthetic tar at 100C. reduced its potency from 100 to 63, and at 150-l60C. its potency fell to 0. Oxidation with
on acetone solution of KMnC4 reduced the potency to 21; with pyridine as a
solvent, --lnrst to 0. The active constituents of synthetic tars form crystalline picrutes, the remaining filtrate being almost inactive, and the picrate extremely patent. Shale oil is carcinogenic, probably as a result of the high temperatures to which oil shale is subjected 10Z*. However, temperatures below 100cC. give a relatively inactive product, 500cC. and above being required 101.
In England where high temperature tar is used in briquette manufacture, there are many cases cf skin cancer among the workmen, which is not the case in
France where the low temperature product is used.
The greatest amount of investigation cf any type of occupational cancer has been carried out on mule spinners cancer in the cotton mills cf Lancashire,
England. Scutham and Wilson 88 in 1922 first called attention the excessive
occurrence of cancer in mule spinners. Women workers are not affected and about
70* cf all cancer among mule spinners is cf the scrotum 8ZS apparently due to the
fact that a mule spinner at work walks to and fro in front of his machine, leaning over the moving frame from time to time to join up broken ends of the yarn The base cf the frame is on a level with the groin and the spindles on the frame as they rapidly revolve throw off oil from their bearings onto the clothes. In the hot mills the men perspire freely and so wash off the natural grease cf th~ skin, thus allowing the oil closer contact 1 5 . Irritation by the trousers -end overalls also helps the process. It is interesting to note that no trouble of this sort was noticed in England until mineral oil replaced animal and vegetable oils as a lubricant 1 6 . Henry W estimates that 0.25* of all cotton mule spinners in England suffer from scr,otal cancer. On the other hand in the United
States during 1926, for example, there were only 33 deaths from cancer of the
-5-
scrctura, cf which only three cf the victims were textile workers and three were mule spinners; four cf the six were b o m in England and the other two in Canola *5, which tends to show that mule spinner cancer is rarely contracted in tiie United States. In a woolen mill in the United States employing about 200 mule
spinners no cases of scrotal cancer were found 8U. Since the method of operating
this equipment is the same in both countries this striking contrast is attributed
by Hamilton u0 to the fact that Scottish shale oil is used in the Lancashire mills.
However, the literature is net entirely clear as to the origin ana type cf t.ie oil used in Lancashire in mule spinning '
Leitch 70 brings out a fact of possible significance, to the effect that cancer is net known in woolen spinning mills, even though the same machines are u3od ,, in the cotton factories, but points out that the room temperatures in the cotton mills are much higher, possibly resulting in mere relaxation cf the tissues cf the scrotum and permitting entry of oil into the sebaceous follicles. Brockbank l6, however, states that in the woolen iniustry piecing cf broken ends Cf y a m is dene with both hands with a forward level bending movement of the body and thus there is not the same friction of the clothes on the scrotum as in the ccttcn mills. He admits, however, that the same oil is used in both types cf
mills.
,,s a result cf the preliminary investigation cf Sc.attain and '.ilson
mentioned above, the Manchester Cancer Ccmnassicn, ccnsisting cf mere than fifty
members, was organised in 1925 under the direction cf Dr. C. C. Twort tc investigate the mineral oils used in Manchester ccttcn sails. Lubricating cils
fr-.n the various field, threughout the world .ere found to have widely varying
degrees cf activity. A sample cf Venesuela oil was very petent while 1 2
end Pennsylvanian samples were cn an average less than cne-tenth as active.
Purified medicinal cil had nc circl'd:genic properties and several saponifiable
cils. such as sperm, Clive, rape, cottonseed -and neatsfoct cil, failed tc produce
API 04622
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turners when applied to ,,dee, even under the most severe experimental conditions, m general terns, the more saturated ere the constituent hydrocarbon, of the lubricating oil, the less capable were they of inducing cancer in experimental
animals, the physical characteristics being the same 101. This preliminary report as criticised severely in an editorial in the
,,petroleum limes of London \ in that - d i e various oil companies (Anglo-American, Anglo-Persian and Shell-**) had contributed U , 0 0 0 for to years for the support
of this investigation, yet the Manchester Cancer Commission had not availed itself
of the services and advice of expert, from the oil industry relative to the
characteristics and methods of treatment of petroleum oils. The Institute of
petroleum Technologists, - d i e making no definite criticisms at this time of the e.+ese. -vP i+. own to follow closely the work
work of the conmission, formed a committee of in progress 63. In 1934 Dr. A. E. Dunstan, Dr. P. H. G a m e r and Mr. James Keley
cf ths institute of Petroleum Technologists are shon as members of the Manchester
Commi. ssi. on 21*.
in 1933, Twort and Lyth 1" of the Manchester Cancer Conndttee reported
that by means of solvents, extracts ere obtained of high refractivaty and
-meir recommendations for the selection of
correspondingly high carcinogenicity. Their recommend
an oil of low carcinogenicity were as follows: ,,hen selecting from several mineral oils ith similar gravity, specify
that with the lowest refractive index! hen selecting from those ith similar refractive index, specify that ith the highest gravity; when selecting from those with similar ref ractivity, specify that with the highest viscosity; and
when selecting from origin alone, choose in the following order, . Russian, Pennsylvanian, Texas, Mid-continent, Mexican, Californian, Persian, .
Rumania, Borneo, Venezuelan,shale. However, it should be emphasized at this point that these authors state
definitely that -adequate refining of any of the oils handled, of no matter what origin, results in a product ...............possessing only a very low
API 04623
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carcinogenicity" K *. Also, that a single traction of an unrefined distillate
,,ith SC, may profoundly loer the activity of a previously very dangerous oil,
,,nil. a second extraction may render it almost inert. They state that "at is ,,robp,ly commercially feasible to treat oils of any origin, or oils of any degree of carcinogenic activity, so that they may be less dangerous than even the Very
b=st of the straight oils used today". They evidently assume that untreated
textile oils are used in the Lancashire mills.
'
Lyth of the c o h e s i o n further stated 71 that hen the r e f r a c t ! ^ of
oil as less than 0.5500 it as found to be non-toxic, hile hen the value
greater than 0.5600, the oil as highly toxic. Pe^sylvanian oils and
c-rtain sdldly treatod oils ere an exception. The i o d i ^ - - oil seems
t0 afford an indication of its toxioity, providing the oil has not been treated
end again the higher the value, the nxre potent the oil. The toxicity increases in the some order as iodine value, except for Pennsylvanian oils haoh again occupy too high a position. The permanganate values are not regarded as of any
value in connection ith estimating the toxioity of oils. Lyth adds that extraction ith alcohols, acetone, e t c , clay and aci
treatment, leads to a reduction in the potency, especially in the case of tta
.ore potent oils but a corresponding reduction in the r e a c t i v i t y does not ^
occur. Where a marked reduction in the refractivity does occur, there as, a -
exceotion, a marked decrease in carcinogenicity, ith a marked increase an
r-.:'ractivity, a corresponding increase in potency. e r e the refractivity is nc
+ ka ffpeted. snd furtner tests re .much altered, the potency may or may not be affected -n
necessary. In spite of the apparent definite findings and recommendations of the^
Manchester Cancer Commission, the Cancer Research Committee of the Institute^
Petroleum Technologists 51 was not convinced that "the so-called incid
* (c.n .. .. Refractive Index - 1 n
* (.Refractivityz -- --- DZKS'TY-------
API 04624
-8-
cancer is in any shape or form connected with the use of spindle oils". No elaboration of this statement was given, but was possibly based on refined oils
,rsly being used as textile lubricants. An editorial in the "Petroleum Times" of London in 1937 once again
attacked the conclusions of the Manchester Committee, pointing out that only on'
0il from each of a number of countries was examined 5.
in 1937 the Federation of Master Cotton Spinners Association sent out a
letter to its members .recomending that when purchasing spindle oils a guarantee
should be obtained that the oil conforms to the specifications of the Manchester
Canctfr commission, and that tests had shown that many of the oils in use at that
time conformed to the specification. m i l e throughout the reported ork of the Itoncheeter Cancer Conniecion
it i. stated repeatedly that acid or solvent treatment of a potent oil greatly
reduces ,,r eliminates its activity 97, * . * * . , yet in 1939 T r t and Lyth 107
investigated acid and clay treated distillates fro. a Borneo oil and found the. to be active, the maximum potency being at a viscosity of 200-250 cp -t 25 C. Molecular distillation gave a greater concentration of the carcinogenic uteris! than as obtained by ordinary distillation at fro. 3 - 10 m . In oonfimation of previous findings the iddle fractions of this Borneo oil ere .ostly
responsible for pathological changes in the organs. A carcinogenic shale oil as separated by olecular distillation into
fractions hich ere subjected to chrcatographic adsorption. Two apparently
2 109
pure hydrocarbons have been isolated and are being investigated > .
A recent report (1941) by C. C. Twort of the Manchester Cancer
Cotmission 109 states that
tests are variable, lengthy and costly and that a
acre reliable estimate of the carcinogenicity of oils can be obtained from the refractive index and viscosity. (Yet the data on which selection of these two properties was based were obtained by means of this variable skin test.)
-97
Vioodhouse or the ^
* Research Laboratory also states thet
M U ,, tests to determine carcinogenicity are dirricult to correlate t h I
tendencies to cancer urless these animal tests are strongly
e,tive 121. For examplej t . oils ere tested (a) rrom a s p i - n g mall
" C2ses 0r mule spinners cancer had been recorded, and (b, rrom a mill here sax
- I had r_ l y been reported. Mouee tests indicated slight ca c i n o ^
properties in the case f the to oils hut a greater action on mace or (a) the
(b>'
Dr. E- M. Brockbank, chairman or the Manchester Cancer C e s s i o n , has ^
bri6lly summarized the investigations or the C o - s s i o n in a recent publac- aon
. .
Be lists the hygaenac precau ao
to be exorcised in mule spinning and urges the rt. He ,,iso makes this
a on of the oil speciTication given previously by
ad0pV-
. .
oil that is strongly dermatitis
1nteresting generalisation: "As a general rule n oil
interesting 0
mentioned by
s U l ,,ot be strongly c a r t i n g -
' *" "
extraMly
K -nnaway 61 ho states that cyclohexene (hich is non-carcinogenac
Kcnnavfay
.
irritation were an
irritating to the skin and should produce cancer aT =h
--
1 ractor in carcinogenesis.
^
^ ^
^ ^^
A3 mentioned previously, ---- --
_
Q ,# per annum
w
incidence of skin cancer is about 0.1% P
Scottish shsle industry th. case incidence or
a
_ g the nil orkers but 0. a m e * the pararrin orkers (tbas is
^
28 year cord). M s activity of jarafrih i restricted by Schars an
28 jear recoru,.
. v/hich view is supported by
to the crude product, the ref
,
,
^ n,
statee that the active con.nte ere preeent only m the
paraffin oils. tath regard to the
'
1 ,, wood 120 made an
-< netroleum oils, on
^
investigation or rerineriee in Pennsylvania end round no scrotal cancer, hie
' sms conTlnned by H e U e r
Hoever, Heller round evidence or carcinogenic
compounds in Mid-Continent oils as rerined in plants in Ohio and Indiana.
c U b o i l s are iairly = ~ = n a * in some case, lead to ekin cancer. In one case
A P I 04626
I
-10-
, prnffin pressman in the Middle V,est was treated for ax boila for three
,,ears when a cancerous growth developed on the right forearm and was removed, but
iight years later a second similar growth in the same place had to be removed.
H,ller also found records of cases of skin cancer in another refinery, using crude
f K B the lima field;
case, had occurred in this refinery and one was fatal.
a l of these cancers were preceded by warts. The length of exposure before
malignancy appeared varied from four to thirty four years. The part mos
affected was the scrotum and all but one man worked in the paraffin department.
Ttese cases were caused by unrefined oils and Hamilton W states that so far
there is no proof of the occurrence of skin cancer in the U.S. from the s
refined lubricating and spindle oils which have been acid-treated. Heller believes that the relative freedom from occupational cancer in
the ,, 5 is due to the mechanisation of i n i t i a l processes, preventing direct
contact with the pitch and tar; the extensive employment of negroes, who are
apparently less subject to ekin irritants than whites; the use of refined
lubricants from crudes which are poor in carcinogenic properties, and the use of
tar from c o n v e n e instead of from gas works.
Phillips 77 p o r t s the particulars of s study carried out by the U.S.
pntlic Health Service as to the incidence of occupational cancer in Texas. The
records of 1190 individuals hmving microscopically verified ekin cancers were
analysed, covering the period 1920 to 1940. The occupation of the largest group
cf these patient, was outdoor wort, ( f a ring and ranching), the wort, of housewives
comes next in order, followed by various activities r e a r i n g moderate outdoor
life. The professions were next, followed by laborers and carpenters. The
railroad and petroleum industries furnished few cutaneous cancers.
^
lafafer and sitgreaves in a U.S. Public Health report issued
analyse 70 cases of cancer recorded for the male members of the sick benefit plan
of an oil refining company during the period 1933-36, there were 46 death,. The
death rate was 0.78 per 1000 and a frequency of 1.2 per 1000 (all U.S. death
API 04627
-11-
,.-96 per 1000). Almost 70* of the deaths ere related to the di3estive system
,,,,d the rate for this site as higher than in the total population. Deaths from cutter of the genito-urinary system as 6.5* of the total, compared to 15.0* in
the case of the total population.
in 1934 Campbell-20. 21 made laboratory tests on mice ith dust obtained
trom tarred roads. This dust caused arts and cancer of the skin and an sum
months 24 out of 59 mice sho.ed typical tar arts, half of which developed
malignancy. This finding as confirmed by Kling, Samsono. and Keros, - ho also separated a substance containing the bensopyrene nucleus from the tar.
However, Hogouneg is doubtful of the danger from road tar since it usually
takes years of direct contact of coal tar to the skin to produce skin cancer. (Teutschlaender calls attention to the fact that almost all industrial cancers require an exposure of about ten years before growth appears, although a few
oases may arise much later., Valade U 1 likerdse is of the opinion that while
primary lung t - r . *. --
*
^
** " "
" t
inhalation of dust from tar roads, yet these results cannot be transferred to
humans. Animals other than mice should be employed in experiments and an inquiry
Should be carried out on workers exposed daily to such dusts.
_
tmile the manufacture of briquettes in England is attended by a high
cancer rate, 5 since high-temperature tar is used, yet in the few plants in the
0.S. making b r i ^ t t e . cancer ie entirely abeent, partly due tc the lack o
a
* * entirely mechanized and partly
contact with the binder since the procese here is entirely
due to the us. of petroleum aephalt a, a binder, . This funding as co
by ood > in his investigation of briquette manufacture in Pennsylvania.
The addition of p r i d e s * r e c c e s the c a r c i n o g e n potency of mineral
oils hut not to as great an extent ee lanolin. Speakman and Chamberlain
state
that - d l . alcohols have not been used for this purpose there can he U t t U cou that such pclar compounds will reduce the risk of cancer formation by promo, ng emulsification, since en oil .hich is easily and completely removed from the C a n
- 12-
,,ust carry less risk than one which is difficult tc emulsify. These investigators LSC believe that polar compounds in a mixture with mineral oil may, however, function in yet another way. It is known that the carcinogenic agents of mineral oil when associated with unsaturated compounds are free to concentrate at any surface tc which the oil is applied, the non-pclar paraffin molecules off.r g u t t l o or no resistance. However, when oil-soluble polar compounds, such as cleyl alcohol or wool-fat ether, are mixed with mineral oil they concentrate at the surface, excluding the less polar carcinogenic hydrocarbons.
Sequeira 86 stresses the necessity of absolute cleanliness of body and
clothing, the application of castoroil to exposed surfaces and medical inspection every three months. Brcckbank 15 suggests a mixture of lanolyLand
clive cil be applied to the skin.
'
Duckham advocates the use of an oil-eolvent cleanser similar tc the
i rf thp lubricant from the ether scap used in hospitals in order to remove all of th
3 pores
In view cf the suggested use cf lanclin the fcllowing should be of
particular interest: Dr. E. V. Ccwdry, cf the -fashingten Diversity Schccl cf
Medicine, St. leuis, has 3ust a m o unted CN.T. Herald Tribune April 29, 1945) that
calls can be sensitized to become cancer cells by treating then with a substance
^
*411 even nrevent powerful cancel-producing
which dees not cause cancer and which will
P
chemicals from exhibiting that property.
.
' Fcr example, when the powerful carcinogen methylchclanthrene is mixed
with lanclin it is without action when applied to the skin cf mice, although alone
it always r.eults in cancer. However, when these mice were then treated t h
methylchclanthrene in benzene they developed cancers more quickly and tumors c
.renter virility than mice which had net received the cancer-preventing treatment.
MPD-VL DVJS
B3TE53NC3S
Anon. , Cancer from Spindle Oil. Oil and Color
J*!
A letter sent out by the General Committee of the Federation
Master Cotton Spinners' Association recommends that when purchasing
suindle oilmembers should obtain a guarantee, that the oil conforms
aP specification of the Manchester Cancer Committee which
a fof aila claimed to minimize the so-called cancer-producing
mineral oil . Tests showed that many of the oils i n a B y. ^ 888
form to this specification and are obtained at regular prices.
to
J
Anon Cancer and Mineral Oils. Oil and Color Trades J., 102* 695 *' The report of the Manchester Committee on Cancer, issued for t e
year ,, U l o f r , 1 * 1 . .tat., that in .ffort. to i.ole r ani ^ n -
acterize individual carcinogenic hydrocarbons from shale oil, recently annreciable quantities of crystalline material have been obtained, but
U PC too e a ? ^ t o discuss Z suits in detail. As far as can be
til frictions obtained from Venezuelan Oil by chromatographic adsorption are active. Proprietary colloids have varying effects, depending on the " I d U i of the experiment. A colloid containing a c h l o r - c o n p o ^ d was f o S d less efficacious than an olive oil-lanollne mixture as protection
the c L i h O S h h i c action of .hal. oil, Philo the - , . r c oppecrod
to be the case when the carcinogenic agent used waB benzpyrene.
Anon., The (aP.r) oblTehme offolClaonwcienrg. apPpeetarroedleuimn Taimreesc,ent23,is5s9u.e JoJf0th(e193Br)itish
ssaM m
tz
"
SVE
lco.: s r =
r \ " t" y
rc
STSSSiiiiS
. ^
Pe.or of
S f S - to
t S ^ i S e untreated oil have said that its lubricating power is uninpaired^aad the Manchester Committee is therefore able to hold out toe hem* that before long it may be possible to put on the market an oi
which^fulfills the needs of industry without being a source of danger t
the workers."
Assuming that the use of spindle oils be such a souree of danger, it almost necessarily follows that other lubricating oils which come into closer physical contact with the worker must be sources of higher potential danger than any of the light lubricating oils used in the looms of the Lancashire cotton industry. It night be proved u p o a 'weetlgation that little difficulties wo^lA present themselves in tne production of a spindle oil which is noa-earcinogenie, and l*t the present attack widens itself to include the whole range of nlneral lubricating oils, it would be advisable to make an investigation of the
most embracing character.
- 14-
* M W . -- Report on Lubricants 1 . Pot. Times. 27. 3U-320
'
`^Irltlclt.. the report of the
the Comltte. hask^^lo^PeMtLi m l the Shell hex but has not availed
Anglo-American, t..e to&lo Pe
oxnarts frrn th* nil industry
t ^ " ^ `t" - * -thol. of treatment of petrol., .oils.
s.
"" t r ^ w s i i p - . ^ f T h r ^ r . i i
pier. than.by the application of the sample to the .Id.
It is pointed . . ; S r ^ l "e'.te" ere admlttel. m l that In the 193^-1935 report the jutinal testa were reverted to.
It is also pointed out that the abort conclusion m e based > " esamlmtion o? miy on. oil from each of a number of countries.
6. occupational Cancer of the Shin, ^ual Report, Chief Inspector of Peateries
industry for each of the years 933 93 ig^ # Tar nstilling and
American Journal of aer* 2-'
.
increased 1937 fieur08
r o r r a r ^ l u n i S c a i f u aUrlbutobl. to voluntary periodical emnin-
ation in some plants.
7 Alapy. H. Cancer Prophylaxis by Prellmlaa,ry 7' ^^polycycHo Hydrocarbons. t.rr.bsor.ch
W4eA *r\4 r&ts W6W
Wlvii J
earoln,,eenlc fffl.r'-
h y d r ^ ( i j s n i i py* tuctlQn 8&inst th8 implantation later of thracene a. a method of Protection ^ ^ ^ c u t S e o u s injection was
highly virulent tumor..
oil. The most effi-
naie of the carcinogenic {****" ^at favorable time UO-70 days,
cient dose in mice was 1 * W 7 *,_or ejmilsior.. Dibensanthracene was .
before the implantation of th _roteCtion in nice was only slight,
somewhat the most effective.
P * . ani f0r (j_6 iays was slow.
Development of the tumor was
5 ylgth ^ y after implantation
Growth then became rapid and on the 17th W
with treat
ed the tumor the tumors were
tunoi growth was obtained
ment and the control animals . V
* li^O-lSOy doses 3-k-80 days
in rats given l-100y doses .5C" 8iT S i^ S i f e protection cLnot before implantation of toe tumor. A definite active pro**
be obtained by this method.
'
!. SacbDBDi,, I. I. et al. Production of Cancer by Pure Hydrocarbon.. Proc. Boy
Soc. 3153, 3^3-68 (x937)
. rjotency nethylchclanthrene is
iltS re.pect to
1. almost equaled
not surpassed by any compound yet tes
favorei w introduction of
by cholanthreae. Produloa of carcinoma l | _ ^ ^ S c . a . 1.1
substituents into the 5 position of to ,
-15-
3, -'benzopyrene. , Badger, 0. M. .t al. Production of Cancer hy Par. Hydrocarbon.. Proo. Hoy.
SOe- f g ^ f n i T L meet eff.ctua:1 " `"
0^ * " "
'not
any particular trnor (painting,
declsive; In the 0 Utter ""*?'*! ^
tion and .wallowing cannot be
contaminated, and lnhala-
S the method.. The 3.
properties, and
U-benzopbenanthrene compounds P benzanthracene. in the production
apparently are more active than ^ ^ * 3 ^ lisi the 1, 2-sub-
of multiple tumors, cholangioma,
respect to gastric tumors,
stituted compounds are m0"
2 14e are oiaually more carcinogenic than
Compounds substituted on the "
j^ong tbe lf 2-benzanthracenes,
those substituted, on the 6, 7, .gamble t h-benzophenanthrenes
r t ^ e ^ n ^ t h n t S i r ^ n o f o f U adenoma. - * - * -
ple tumor., and s deflol.ncy lm .areoma prodnc.lon.
'
,0 Badger, 0. U. et nl. Production of Cancer hy Pur. Hydrooarhene. Proo. Hoy.
Soc. B131. 170"82 (iff) ^hthe e.rle.of 5 - W
Pr, leo-Pr, Bu, cfll,
. ..^.e 0f i 2-hen.anthracene (He, Bt,
high.^
t" 4
on the .Kin! member with more than
? r . 2 2 M #S ? * t^ 1s ^ i0`5 S S -gS i M S S
" on: .i
pound.'were deflolent la
ty to proiuc. .Kin .
methylphenanthrene hmi a *llht
action on the akin and there-
tumora. 3. f 5.^bantefluoraa. had no ^ il>2j 7, S-conpouad..
by differed from the 1, 2 5* gltgbt tendency to produce
1. 2. 5. 6-Dlb.n.oomrtMOl. tlblted a
^
,,,,ibed with
s s L S ^ m r s s s i s s ^ " - *.
n. Barry, d. at al. P o t i o n ef --
by Pur. Hydrooarbou.. Proo. Hoy Soo.
BUT.
(^935)
Vtiufly tetracyclic and pentacyclie
-- L'd Urge uuber of " ^ ^ ' ^ ^ i u n l n g tion, with
aromatic hydroomrbona,
conaiieroblo cancer-produnlng power wae
alee as experimental animal. .
coal-tar pitch), methylcholanthrene
..... el by 1. 2-beKPTT' <
. -Sn o^enLthren.. Id
Z derlw. of deoxychollc moll of
=uat ooutaln
order to be carcinogenic, derive, oi x, c w
sab.tituent. in position. 5 " 4 b *
'
12. Bergmann, 7*
of Tutor Production by Chemical Agwnte. C
Baeaarch, 2, 660.
^
The following principle, for ^
production hy ohomloal agent. ^ sise of a carcinogenic
are hypothetically ejtablitfaei.
hydrocarbon ani of
activity. Every
which
parent .trueture reeemble. it also m
llc compound* datemine it. more or le.. clo.ely a given blaitonatogenic action,
API 04632
16-
2 In the living cell, the carcinogens are adsorbed by an acceptor nessessing a definite adsorption area. This sets an upper limit for the dimensions of the active compounds. A lower limit is given y a in adsorbability with decreasing size of the molecule.
conceived as parts of an "ideal carcinogenic gtructur..
5 A carcinogen oan be Inactivated by additions which prevent its proper
adsorption. The eohani.n of this hindering effect is dleonssed.
Bonser, 0. V. Tumor, of the Shin Products by Blast-Furnace Tar. lancet 1,
^ ^ r e l u l t . obtained with four samples were remarkably similar to
product and is disposed of without further handling#
.
Borland, E. and Bruee. A. U. Carcinogenic Action of Dlbenscarbasoles. lU.
' P" 0,c M r S t ^ U M ^ i e <S i l y frequent among chemical worker,,
feTMd-durtag
^ " t i l g 0.
skin of nio. and on.
P" TM * " " " U " 0,1
mouse skin) also by subcutaneous injection into r ta.
The produced ^"Lt
most active wa. 3:U,5:6-iibenscartasole but
malignen
'o D b L i e f ^ b l J .0. The dlnaphthylnminee
thl.*** `" f
d
1 ,2.7 =
O-ntoMotolule,
k n TM n to produce hepatoma, and d i ^ u o - " I ^ S S e U l o o ^ t a ,
n.ji.A to ureduce tumors on the skin ox mice PlIU
.
sole.
' `
Brockbenk, E.U. I t a l e ^ p d n n e r O a a o e r , Brit. Med. J . . 622-3 (U.26.l) 15.
16. Brockbenk. X. M. Male .pinner. Canr.
**
Spinner . H. K^Lww
lc,,tal cenoer la a mule eplnner wa. re-
p o r t e f i a i ^ o h " t" In 1SS7. 37 7 t u t the } f i t l a n of
S n e r a l lubricating oil? before that tine sperm oil and neatsfoot oi
bed been the principal lubricant.. It l. now ^ " ^ . ' " ^ c ^ e e d
S S S H S v is :-
mineral oils are more carcinogenic than others, that ieri i E S T n - S i L l i r i y dangerous, and it ha. been learned by experience>hat
c t T J U m ^ r S e l T t o *e caused if the same lubricant is us e d c o n
tinuously, than if the kind of oil employed is 0cca8^0" 1^
I t h a s been found also that by mixing a n i m l or vegetable oil with mineral oil the carcinogenic potency of the lubricant may e a a .
API 04633
-17-
*
T ,,,,j v.nnawav v L. Experiments in Carcinogenesis:
" " "*
2 r h s ~ s K "r . - L " r ; r ' S ' a .
1+19-26 (1936)
18. Campbell, J. A. Experimental Production of Cancer by D t Obtained from
Tarred Hoads. Brit. Bed. J . , * 0 0 . X>
n f b 1m wlth
Thia du.t
" 6 L a th . 2b ret of 59 1= tl" . . 4
^ U r 'S S T - S S \ f
-a--
r.
19. Cambell, 4. A. Th. Iffocto of Rood W Incidence of Primary Lung Tumors of Mice. Brit.
WP* *
215"2i t (ias7been shown that dust from tarred roads causes cancer of the
skin of ol * ofE ^
o f ^ i c e t ru " t S t e s ^ t h ? p r o d ^ t i o n 8of lung
^ r s ^ m i c e ! but not to so g r a t extent as when the tar is also
present. .
20. Campbell, J. A. Carcinogenic A g e n t s ( A p r i l , 1939)
induce lung tumops. He employed c h ^ e y aoot ^ ^ e r e ^ ^ s e d to these
exhaust pipes of engines
dusts for 10 min* an hour ^
6 hrs.
J TM ? TM ^ r. The death
5 lays * ^ t t o a / f o / t h e . c o n t r o l s
rate o f both groups was well within the limits or
exp08ed to
S L S t p T p ^ o M U w S ^ "^ / J / H a r r l f
J fa lso
S ^ n " iiS Cr S ^ CI i l i * l M 4p S t a d * w i t h tar from these substances.
21. Clark, H. Y. Cancer from Lubricating Oils. Oil-Color Trades J.. 11.9.3*,
1278-9
22. c o b , J.
H.w.tt, 0. >4 Hlagar. I. Coal-Tar Conetituret. red Cancer.
'" " l i J i t a L i c a r W - r . i.olat.d from coal tar .hid. t l TM
several nyuruu!
. . th typical fluorescence spectrum of
. in producing arerer. aad M o b J"4
nannlnogreioj^tlore. O ^ .
" L i r e c a r t o n Uolat.i .a. 1 , 2tlB6 rwulred bp 1, 2. 5.
S S S K ^ S t r t S i T L d U. 5-benzopyrene ..r. al.o I.olat.d.
23. Cook, J. *. .t al. Production of Creoer bp Pur. Bgrocarbone.
(a) Proc. Boy. Soc. (London), B i n , U g j h (1932),
(l) ^ ' ^ ^ / ^ d i . >. ^ r ' r e l r e u , rei i .tudy . --
*
action Of 22 difference ^cyclic " "" dC
re^Tur'rl -a.
in their resp. ools. and applied in ,0An*
. 2
wekly. Of these pure compds. only 1,
5e of-i-ad.1i0benza.n-
S ^ . * 2 r 3 clo..ly r.lao.dr rpi.; p r ^ :d oreoer:
TM
s r * ^ r r -- a--
including 77 epitheliomas and 21 papillomas.
.
c -18-
(Td) The investigation has been extended to include 52 aidnl. poly
cyclic aromatic conpds . Tumors were produced by 6-isopropy1-1, 2benzanthracene, 5, 6-cyclopenteno-l,2-benzanthracene, phenanthroacenaph-
thene, and 5 derivs. of 1,2,5,6-iibenzaathracene: 2 -lie, 3'-Ue, 9-HH2 ,
9-iieO, 9,10 (C6H^K2)2 .
Cook, J. W., Kewett, C. 1, and Kieger, I. The Isolation of Cancer-Producing
Hydrocarbons from Coal Tar J. Chen Soc., 3 9 5 ^ 0 5 (1933) The preparations derived from coal tar pitch by a variety o* solvent
extraction nethois, the fractions separated by formation of picrates,
distillation and crystallization, and the hydrocarbons, 1 :2-benzpyrene, and U ;5-benzpyrene, perylene and 1 ,2-benzanthracene, have
geaic and have given the sane fluorescence spectrum (bands at J000;
and UbOQA0). The original coal tar pitch contained not less than 0.0039b
of 1 , 2-benzpyrene.
25. Cook, J. W. Synthesis and Biological Effects of Carcinogenic Hydrocarbons.
Chen, and Ind., +, 1022-3 (1935)
,, + ,
Certain forns of skin cancer due to occupation causes in industries
where shale oil, coal tar and lubricating oil are employed, have been
shown to be due to the benzanthracene group of hydrocarbons which also
impart fluorescence to the oils. The exact nature of cancer formation
in the human body has not been explained although a similar benzanthra
cene hydrocarbon has been found to be produced by body changes .rom
substances normally present in the human body.
26. Cook, J. W. Carcinogenic Hydrocarbons and Their Helationahip to the Sterols.
Chea. fleekblai, 32, 563" 6 (1935)
a ..
...
Review of historical development of recognition of the cancer-
producing constituents of coal tar and earlier investigations; the
development of fluorescence spectroscopy and the systematic study of
synthetic carcinogenic hydrocarbons including a summary of the results
obtained from the examination of a complete series of tetra- and penta
cyclic hydrocarbons and a moderately wide range of benzanthracene
derivatives. The speculation is advanced that a mesc H atom in a
completely aronatio structure plays sone role in the carcinogenic
process. The isolation of 1 ,2-bensopyrene from coal Jar and
sia are recounted a a i an account is given of the cyclization of bile acid
derivatives, and the eventual synthesis of ^ ^ o l a n t h r e n e , ^carcino
genic hydrocarbon related to the sterols. It is inferred that there is
one enzymic factor present in the animal body which is W f l j J * effecting dehydrogenation of the sterol ring system and that excessive activity of this factor may conceivably contribute to the production i
vivo of carcinogenic compounds.
27. Cook, J. ff., et al. Chemical compounds as Carcinogenic Agents. An. J.
Cancer,^
i ^ g i l e n of the carcinogenic chemicals, dealing both
with their chemical relationships and their biologic effects, bringing together, under'well chosen headings, all the material published up to
the end of 1936. They include not only the hydrocarbons of the benzan thracene type, but also the azo compounds, estric, the styryl quinoline derivative discovered by Browning et al., and the inorganic compounds zinc chloride and arsenic. A bibliography of 19*+ references is appended.
API 04635
s
.28
29.
- 19-
Cook, J. . and K.nne..y, E. L. Chemical O o ^ . ' a . O a r c i n o ^ t c tgente. First Supplementary Report: Literature of 1937. Am. J. Cancer,
50" 97^ o r ). present an erfnmetlye rerte. o f t h l . m b j e c l . h i c h . h o u U be of Interest to all lndu.tr1 .1 phyelelane. 1 continue. the ' l l "
review and the two reports together have bibliographies totaling 37
referencese
Darts. E. Chemical C.rclaogen..l., Dregs. Dye., lemedle. and Coemetle. 1th
*
a yViamieal carcinogenic agents which may be introduced into
r v S i- ^
posure to what are probably extremely small daily doses.
The theory is advanced that there may be many other
agent, a. yet uakaoen blob n
r
e
" ^ d ^ s p 2 .nTMedl-
s r i 1 t e S l i n k y . . used In the coloring of food etnff..and fabric.. ** *
30. --
V r i r t . ;
. ; 5S S ttZOXSr pr1
31, Feil.'A. 2 (5 , : ,t:
mineral oils, including treatment and prophylaxis.
-ary
Fieser, L. T. Carcinogenic Activity. Structure, ^ ? emical ^activity^of
32.
Polynuclear
I 'a.critical'equation and compari
d long review which includes j **
_ i tt informa--
eon ot thfmethod. for
e^ t l S o n - i tS'cclrcial
tion concerning thepreparationrii-rbone- III, * summary of the work on
sources of the carcinogenic hydrocarbons, ill, a
,, j iv, a
correlation of chemical structureaa
. various active hydro-
Buvaary of investigations on the metabolic fate ox varx
carbons'. Thera is a very extensive bibliography.
Fleeer 1. I Promotion of Oncer by Polynccl.er Hylro-'hon.. Dnlr. Penna.
33-
genic hydrocarbons
ntre of a t)OBBibie reaction leading to
ture and chem. reactivity, nature
P
-oTrino^enic hydro
carcinogenesis and of the "^ ^ [ "" r b o d y ^ y steroid metabolism,'their
carbons can be produced at times in the
^ 8TM e adrenal cortex. The
S i JSSrJS T 3 ".
p ---- a
API 04636
-201
* 1=TM M etabolic elim in atio n o f a carcinogen probably is a d e to x i-
conversion into ie r iv s , of oercapturic acid.
.
M ,, . r . L. 7. and 7l e . . r , U. C a rciao g .n lo Hydrooarhon.. " O rfanlc O h an i.try",
3U ^ ' o f S a n l c n a t i v it y and atru o tu ra; c o r r e la tio n . 1 t h chemical reactivity;m ethod. of ,y n th ..itln g carcinogenic hydrooartons. .
. T * woU B r M A P itc h Cancer bb an O ccupational D isease.
35-
Medeclne S o ciale
18
126 workers in the province o f
S e5 PB, y . Kenry made a
were found two ep ith ylio m ata o n ly , " J a8 ^ t h e i r content in 1.2 hen-
chemical examination ?f
J (thw two most e f f e c t iv e cancerogenic
zeneanthracene.and 3*^ benzopyre , 1
itc ll 1-3% of the f i r s t ,
work-
W
-- * o f , 0- 500.
Therefore It . ^ - ^ o o r t l n * t .
" r r '^ a r n a m a l o n . In th .
.
opinion of the a b s tra c to r.).
37. S a fa fa r , f . U. "d S lt g r M v a ., ^ " s i r S d li i.S i 7 r 9 3 3 - 3 S .d n c lu .lv ,. U.S. Put. Health Septa. ffi.
1517-1526 8.23.*))
`
`
w 38. O u g lie n la e t t l, M. Bn M - a d - Bead. Produc. M h B u ll. A c*i. Mad.. ! .
89- 9M 1939)
the li t e r a t u r e . He questioned variou s
The author f i r s t review s
, re^ardini: the am ber of
h o s p ita ls in some o f Germany s r T reo o rts to the managers o f the
observed ca ses o f cancer an d ." c i t i e s In crease o f cancer was affirm ed road b u ild in g system in these c i t i e s . *nc*ew
but without r e la tio n to macadam roads.
"Industrial Poisons of U.S.", 39. Hamilton, A lic e . Cancer from Tar tod Petroleum ,
Uio-7 (1925)
uo. H anllton, A llo a . / I n d u a t r l e l
U.S. th . only pub-
u a h ^ m 1 s r - i*
3 3 - ~--
a t tha p a ra ffin prooeaa In a petroleum re fin e ry .
- -
X T In KBS t h . H ealth Committee o f the League o f S a tlo n . ra o u ea ta i i t .
-- ^ 1 In a . 0 ^ 1 . * * * * "
i S i S r ' i h M i S S p o n n d a S n nan t*de 1 . poa.lU. * 1
API 04637
-21-
Heller to make an Intensive investigation in this country, and his report
was published in 1930. Heller confirmed the impression held by American
^ i t l on cancer, that thee, of occ^ationaloriglnare
rare in the United States. He found in the records of the two Jew York
Vioonitals
specialisingtainr
cancer only 37 caseB and tar product., 26
of of
skin cancer that could th... occurring
L n handling gae-hene. tar or pit*, cnly *"> **
S e r g a ^ ir .r n ir ^ o ^ : s l u " ^
^ ta" ud
5
S H n i M f u c f s j s ^ u- = s s r r H H ,
and these were not considered V the physician in charge 0 e n
caeee.
Hartwell, J. 1. Surrey of Compound, which hare been le.ted for Carcinogenic
Activity. U. S. Public
JiiirJi chemical carcino- '
This bulletin represents a survey of the rieia oi wie
i_ tv higher animalst the action of carcinogens on isolated
ttssu*: 1 iie cSt^r" . plants, protosoa, and bacteria is not consid-.
results of the testing of 6l of these compounds ^ ^ L ^ t h e work while U5 are new to the whole cancer literature. Aitogetherthe work
( W * 1 " g^i0.1 c c ^ e f " i S p S t U 06), II, Polycyclic [nogli*
cyclic (59)! VI Uhalaaeified (77)*
Within this arrangement, compounds are
^"tlbl^give
then grouped according to prototypes and alphabetically. The
S
The tor. ccnditlon. ehc. th.
E SSSK SS
author
& ? =.
sites.
`
aaller-
iS^u:
and blast-furnace tars and pitch are briefly outlined wit)V \
*he
- d health record
API 04638
- 23-
.
.
examns., gas-works tar and pitch were responsible for 70.2# of the cases while coke-oven tar and pitch were held responsible for only 5*11#. Coke
oven tar is much the less injurious especially when cognizance is taken
of the fact that coke-oven tar is used much more extensively. The
presence of olefins in gaB-works tar seems to be of particular importance
and may be a cause of oil cancer. Occupational cancer does not occur in
the briquet mfg. industry . Mineral oils vary in carcinogenic activity
according to their olefin or uneatd. hydrocarbon content. There is no
method for.the detn. of the amt. of olefins in the various erode oils;
if such a method existed, it would be possible to measure the cancer-
producing power of mineral oils. Cancer is not attributable to the occu-
pagion of mule spinner in the U.S., possibly because of the carefully
refined lubricating oils used on the machines, thus ensuring relative
freedom from olefins or unsatd. hydrocarbons.
.
. .
m
Henry, S. A, Study of Tatal Cases of Cancer of the Scrotum. J. Am, Med.
Assn., 102. l667 (1937)
Ul* Hieger, I., Spectra of Cancer-producing Tars and Oils and of Related Sub
stances. Biochem. J., 2U, 505"'H (1930)
Hoffman, F. L. Mule Spinners Cancer. Monthly labor Rev, of U.S., 7, *+57"
*
U75 (1928)
.
kf, Hoffman, W. J. Industrial Cancer. Prevent. Med., 6, 7-3u (193&)
'
One of the seven types of industrial cancer discussed is cancer of
skin in workers exposed to coal, tar, pitch, soot, shale, petroleum and
arsenic. They may cause an epitheliomatous form of cancer.
In, Hogouneng, L. The Cancerigenic Hydrocarbons from Tar and the Tarring of
Roads. Ann. Hyg, Publ. Seciale, 22., 1-7 (1939) The cancerigenic hydrocarbons found in coal tar produce skin cancer
in exposed workers usually only after direct contact with the skin for
long periods of time It is believed that man is much more resistant to
the action of these materials than lab, animals.
...
Ug. Hueper, V, C. Cancer in Halation te Occupation and Environment, Bull. Am. Soc. Control Cancer, 25, Ho, 6 (June, 19^3) Owing to induetrial development, the general population and factory workers in particular, are exposed t o m a r y new environmental factors, many of which are disease producing. Occupational cancers are caused by numerous chemical and physical agents. Among then are the heavy metals, nitrates, aromatic y"**>o compounds, bansol, asbestos, mineral oil, soot,
radio--active substances, ultraviolet radiation and X--rays. The author citeB statistics taken mainly from the records of industrial concerns,
but points out their shortcomings.
Cancer of the urinary tract due to coal-tar is the most recent addi
tion to the list of occupational cancers. It is most frequent in the
aniline dye and related industries,.
^9. Hone Office, Rept. of Departmental Comm, to Consider Evidence eo to Occurrence of Epitheliomatous Ulceration Among Mule-Spinners, (London, 1926) Contains a bibliography on cancer among petroleum refiners.
API 04639
-23'
cn
v ? An Investigation into the Incidence of Cancerous or Precancerous
^ *
'skin Lesions Among Tar Workers in New South Wales. Wed. J. Australia,
8 '26'Thi
conclusion 1. ttat ter used In No South . 1 for l o c i
road-work is not a serious danger.
51. I.P.T. Cancer Research Committee. Carcinogenicity of Spindle Oils. J. Inst.
p6t'
Committee^has not been convinced that the so-called
incidence of cancer is in any Bhape or form connected with the use
spindle oils.
.
International Lahcur Office. Carcinogenicity of Oils. Ind. and Labour Informa52.
^ v a r y i n g temperatures have been prepared to determine at what temperature carcinogenic compounds are formed, from which experimentait w o 3 appear that such compounds begin to be formed between 500 J * * - . the maximum yield lying between 800 and 900 C. Attempt 19 made to determine the constitution of a few apparently pure or almost pure compounds isolated from such tars. Applying their standard test for determination of carcinogenicity, the staff found that olive oil :aeatsfoot oil, sperm oil were non-cancer producing and they have reason to suppose that natural skin fat is an important factor in the prevention o
cancer.
.
International LabourOffice. "Occupation and Health", I, 5^7 (193u) : 11 837, 53.
1156 Before mineral oils came into vogue the practice in textile was to use sperm, lard and neat's-foot oils and to some extent castor oil a S colza oil. Henry states that shale oil was introduced about IS50 and American petroleum oil about 1S6U, and that, towards 1872, these were being used as components of spindle oil; also that Russian oil as
first imported about 1880, Rumanian oil about 1900 and iqoq and all these were used for this class of lubricating oil before the war. During the war Scottish shale oils naturally came more into use for lubricating^purposes. Oil refiners have their own private formulae til m i x S , * t t t r e is no doubt that the bulk of the oil sold for lubricating spindles, during the past forty years has been principally
made up of natural mineral oil.
.
JLeeorllo. to th. 1929 TM p o r ,
the Uanchs.ter ttoc.r
J l
the distillation of tars, the carcinogenic products begin to
at a Rnn
..jLT-atnrti ranging from 500 to 600 C. and reach a maximum at between 800
? * C. The addition of sulfuric acid at the time of use
to
make the oils harmless without injuring or modifying their lubricating
power.
.
5U. International LabourOffice, Occupational Tumors. Suppl. to Occupation and
Health, I.L.O., Geneva, (Oct, 1939)
.. , .. ,,
Carcinogenic substances are discussed under the headings of byiro
carbons, nen-radioaetive inorganic compounis, radioactive
radiation, and parasites and microbes. Attention is called t t
"
sence of any c o m o n physical or chemical characteristics shared by these
various cancer-producing agents.
API 04640
--24--
It ie suggested that the cancer problem 1b essentially biochemical ,, j tV._t lta solution will come with the discovery of the nature and cause of the intra-cellular chemical changes which follow the application
of a carcinogenic agent.
'
Jordan, H. Ikperloental .tali., on tha Production of O n c e r by 0.-.ork. Tar. 55?
*
2 ? 2 * of Char., in .hit. ale. treated
, 1th tar^for four
^oSS^TST
S a n e . in about 1 th. tin. required with tbe hole tar. Ho prolifiatloSrouli be produced 1th onthraeen. oil. Different " `oo 'howei
difference in the rapidity with which they developed proliferation of l n S by the tar. Apparently the .ork .a. not
o d t7 1 " fet to d i i f j S t ho. nany of th. aloe .ith preoanceroue
changes would have developed actual carcinoma.
56. Kennaeay, I. 1. Th. fomatlon of a Oanc.r-proluolng Sub.tanc. fron I.oprene.
5
J. Path. Boot. 21, 233-8 (192" )
'
56a . Ka.ahata,K. Lung Cancer Among Oenerator-Ow Worker. In th. Stool Mill.
<te" 'D l i n J 6the5piit3$>y.ar., 21 on... of prlnary few oarolnona ..re '
s k 7 :7 ^ : s r
I . W - U r 5.7^ . T h . n e t a . ^ . . n ^
appear very early in the brain, spinal cord and lymph nodes. The du
tion of lung caaoer is very short, about 7 months. .
5 7 . Kennaway, E. L. Cancer-Producing Constituents of Coal Tar. Brit. Med.J.,
5&l" 7c i i w r >formation by tar products was investigated by ithor. Only higher fractions boiling at 250*500 C. were found active in inducing cancer (creosote, green oil, crude anthracene and pitch). .
56. KennaHy, 3. 1. Caneer-Producln Tar. eal Tar Praotlon.. J. Ind. Hygiene ,
^ ' 5S TM f f e i n t . on H t . n l thoue.nl I c e and analy.1. of a great n u .
ZStSft
Z T A l - r i S jraotlon
S T o n 50? S i? i.i S f f i S i . ' S i . 'S i
a
EirTr.'the s r s s v & s r S u S . ^ ^ ! f ^ r ; . r 7 l S I U r 7 r S ^ ^ t Sp r = e " Loer.
The briquetting industry has reported more than,half of the known eases ^ tar o S o e r f Tar naii by dl.tlllln* ceal at a lo. tenperatur. (bale. Kcno) produces cancer very slowly or not at all.
04641 fcPl
25-
cq Kennaway, E. L. Experiments on Cancer-Producing Substances. Brit. Med. J . ,
II 1-ii (1925)
' Cancer has been produced in mice by substances obtained by heating
CoH?. isoprene, yeast, human Bkin to temps, ranging from 700 to 920.
A petroleum which produced no tumore of any kind in nice in a prolonged
experiment showed vary active cancer-producing properties after exposure
' to 880.
60 Kennaway, E. L. and Leitch , A. The Anatomical Distribution of the Occupational
'
Cancer. J. Ini. Hygiene, J. 69 (1925)
61 Kennaway, E. J. Further Experiments on Cancer-Producing Substances. Biochen.
*
j 2^ U 97--50^ (1930)
* "Carcinogenic substances were obtained by the action at roomtempera-
ture of AICI-j on acetylene, xylene, naphthalene, naphthalene and brono-
benzene and letrahyironaphthalene, the last two being the most active.
Two cancers were also obtained in a series of 10 mice painted with a
sola, of 1 ,2 ,7 ,8-dibenzanthracene.
a-Phenylnaphthalene was prepared by action of AICI3 on CgH^Er and CirH,. The distillates up to 3^2 C. containing the hydrocarbon were inactive but the residue in the flask was highly carcinogenic.
Cyclohexane, cyclohexane, styrene, hydrophenanthrene, hydrochrysene, hydroretene, perylene, naphthalene and various naphthalene derivatives
all gave negative results.
.62 Kennaway, 1. L. and Hieger, I. Carcinogenic Substances and Their Fluorescence
Spectra. Brit. Med. J . , Ho. 3622, 10W+-- 6 (1930)
.
.
This paper is a review of a large amount of work by the authors in
an attempt to correlate fluorescence with carcinogenesis.
Tar oils, spinile and shale oils, which show carcinogenic properties
are also strongly fluorescent.
.
63. ewley, J. Cooperation. J. Inst. Pet. Tech., 18, 2U2 (1932) Mention of the formation of a committee by the Institute of Petro
leum Technologists to follow the work of the Manchester Cancer Committee,
9t. iling, A., Samssonor, H. and Beros, M. The Tarring of Highways as a Possible Agent in the Causation of Pulmonary Cancer. Bull. Acad. Med. 120, 130"
U3 (1958)
Xxpts. in mice showed that the tar, as used on roads, produces
cutaneous tumors and malignancy in the lungs. A substance contg. the
benre (a) pyrene nucleus of decidedly cancerogenic properties has been
sepd. from the tar,
.
.
65. Kling, A. Samssonov, N. and Heroe, M. Possible Relationship between Tarring of Highways and the Increase of Incidence of Pulmonary Primary Cancer.
Bull. Acad. Med., 121, 78^-91 (1939)
,
,, 4.
Since tar contains benzopyrene, a recognized cancerigenic agent, it
cannot be considered as inoffensive. Experiments on mice definitely con
firm this assumption.
API 04642
- 26-
66.
Koelsch, F. Cancer and Occupation. Monatschr. Krebsbekampf. 7 (1937) The author, In the form of an abstract, presents a survey of the
relation between cancer occupation. He includes bone cancer caused
by radioactive substances, skin cancer from soot, tar, parafiin and
lubricating oils (of which those boiling between 250-500* are of especial
importance), skin cancer'from arsenic as well as cancer and sarcoma from
ultraviolet and sunlight. .
. .
Kunae, C. Mineral Oil and Cancer. Ghent. Ztg., 52* U07-8 (1935)
67.
A study of the of Germany indicated that the number of deaths
from cancer was always greatest in regions where mineral oil was .found,
refined or used. While no definite relation is established, the author
suggests the possibility of the existence of such a relationship. Further
research, on this problem is indicated. It.is pointed out that mineral
oil by itself does not cause cancer. It may, however, become one of the
contributing factors, together with others. .
.
68. Lane, (Ci.ghlG). Occupational Dermatitis. Arch. Dermatol, and Sy.phil. 1SU Describes the case of a 68 yr. old machinist who for 3 yrs. had a
dermatitis of the face, arms, axillae and lower abdomen. There wore scattered areas of tan-brown hyperkoratotic follicles and follicular, plugs. Keratoses were presont on the scrotum and thero were keratotic areas on the arms. Autopsy revealed carcinoma of the esophagus. Dr. Lane believes the skin changes to be due to oil to which the man was exposed in his Uo yrs. as a machinist, and that the condition is that described by White among machinists, oil.workers and mule spinners in England. It apparently is rarely seen in this country, possibly because oils employed here are less carcinogenic.
Lsuber, H. J., Hildebrand, X. and Schocko, H. Possible Therapeutic Action of
69.
Carcinogenic Hydrocarbons in Treatment of Cancer. Z. Ges. Exptl. Med.,
105, 370-- 9U (1939)
Xssentially less harmful therapeutic measures are available. The
dangers are dmcnatratod on mice treated with methylpholanthrene.
70. Leitch, A. Mul Spinners1 Cancer and Mineral Oils. Brit, Med. J., 2, 9I+I-3 (192U)Bandered an inert Californ.ia. oil very active by heating it. (No details as to temperature, etc.).
Crudo oJls from Assam, Borneo, Egypt, Burma and Badarpur produce malignant growth. Q*lician, Bussian, Californian and Persian samples were negative.
Lyth, R. The Eolation of Carcinogenicity of Minerai Oils to Certain Physical and Chemical Characteristics of These Oils. J. of Ind. Hyg. 1 5 , 22^-37
(1933)
72. Lyth, H. Molecular Distillation of Lubricating .Oil. Naturo, 139* 371* U937) A brief report is giver, of the distillation of a Scottish shale oil,
using a specially designed molecular still. The most striking result is the inversion in the change in the physical properties going up the tem perature scale, i.e., the first fractions show higher refractive indices and densities than the original oil, with gradually descending values^ from fraction four as the temperature is raised. Lata on the properties
API 04643
f
of the shale oil distillates are tabulated. These experiments are
part of an investigation.of the interrelation of refractive index
and viscosity to activity on injection, and thereby carcinogenicity
' when applied to the skin.
.
73. Mioscher, G.,.Almasy, F, and Zehender, Z. Is Thero a Connection Between the Benzpyrene Contont and the Carcinogenic Effect of Tar? Schweiz.
Med. Wchnschr. ]1, 1002-7 (1^1)
,
.
Tho authors have xaminod the benzpyrene content of gas tar In
various towns in Switzerland, using a method dovisod by Alnasy. Then the tars were purified and their carcinogenic effect determined by painting on mice. The investigators tried to evaluate the re sults by means of a statistical method in order to ovorcome tho difficulty offored by the fact that many mice die in the long period needed for the experiments. They find a simple, regular relationship botweon the benzpyrene content and the carcinogenicity
of.the tarf
7*. Murray, J, A . , et al. Discussion on Experimental Production of Malignant Tunops. Proc. Hoy. Soc. (London) B113. 268-92 (1933). A symposium in which some attention is paid to carcinogenic chon. compounds, -and to tho ianunochemistry of cancer.
75. O 'Brien, H. P. The Problem of Cancer and Oil. Petroleum Times, 2J., U62
(1932)
An open letter to the editor of tho Petroleum Tines (London)
in answer to an editorial in the issue of March 19th. The writer
points out tho humanitarian nnd scientific values derived from the
cancer research of tho Manchostor Committee and criticizes the
technological viewpoint of the editorial.
.
76. O'Donovan, W, J. Cancer from Handling Anthracene Coke in tho Dye Industry.
Br. J. Dorset, and ^^ph., Throe cases of cancer in a factory employing only 25 men.
77. Phillips, C. Relationship between Skin Cancer and Occupation in Texas: Review of 1569 Teriflod Lesions Occurring in 1190 Patients. Texas State J. Med., ^ 6, 613-16 (19^1)
78. Prosser-White, R. "The DeTnatorgoees" 195-238 (193*0 Dermatitis and cancor from petroleum products, shale and tars.
Excellent review.
80.
.
Hoffo,
A. H. Experimental Research on tho Production of Pulmonary Tumors by the Distillates of Pool Oil. Presee Med., 538 (19^0) The author demonstrated pa oil, taken from tho streots of Buenos Aires, identical to that from motor car exhaust, which con tains carcinogonip substances. Roffo had rats Inhale the combustion gasos of fuel oil and later found a number of pulmonary cancers among the animals. By injecting a distillate 'of the fuel oil into
.the auricle of rabbits, he produced turners in 80^.
81. Houssy, G. and Oberling, C. Can Tarring of Roads be Considered as a Cause of Pulmonary Cancer? Bull, Acad. Med. 120, 181-90 (1938) Tho danger is not considered to be of significance although the possibility is admitted.
API 04644
-28-
"
T
W923L h o r inve.ti*ated the pel.< ^ . f " " / n e ? ^ " ^ f t t a of
constituents Toy painting mice
* C 1 tar readily develops
malignancy was r'nSS;
X. ^ e
^ n^tar
from coal
oil 1 . tort effective ae a
tumor inducer.
'
83. Schwartz L. Skin Diecasee I n ^ E ^ ' ^ n pfrUtoa^
J
It has heon found that workers in oil reii
An
above the average for
ta oa tho hands, foroarms and logs of
provalonoe
^ ano^ machinists in contact with oil and
greas^was Sso noSdf I b S 10* 1 f such workers were found to have
thoso growths.
The CSC of totally encloeod nanufacturln* oyetenm Chi of protective
ointments is suggested.
Schwartz, 1. and Tulipan, 1. "Occnpaticaal Di.caeo. of the Skin. 1935 . 5 ^ .
Scott, d. Occupational = TM t o s c | cf the Paraffin Berkere in Scottieh Shale ^ 85. Oils. Brit. Med. J., 8.28.22, 3S1" 5
.
j H 'Cancer and other Diseases of the Skin Caused by Mineral Oils.
86. S0!!" ^ a ' i . S " L T i c d . J., . 1 3 (1929) .
,, ,, - - s-rtew cf literature fir 1926-lSS>t. !' *Prt f 0o"miMe'3 on 87. S W t t i j 4 e t r i a ? S n Irrttcrta to to. Public Seal, toe,. .
,8 8 Southa m and Wilson. Oaaoer ef the Scrotm. .Brit. Bed. J,, 2, 971-3 (1922)
S3. Spenknto, J. B. tod
^ ^ ^ f S t o t o i ' o ^ . ^ ' a r t ' f . 5'
t o o ^ i h i t ' S f ^ i S t o ^ ^ ^ d e f r ^ - their potency. e i t h e r no
oil furpaesos lanolin in this respect.
. ..
folo!t., l. occupational Cancer, tota d. Internet. Ver. f. irobebeknopfurc, 90.
* ^Several^ieolated an... of.Inn* boon reported and among works oxpoaod to coal dus ,
to/itoSem-
latos, but tho number is snail.
91. Touteehlacmdor, 0. Indnatrdal *"
OetooDnyi.scto1.oof.nro-rrWarroebnrnfeoerre cehn.n^eHejr o f t -lcnn^
workers, zralo epiraere' spob*
cancer, which has not appearod in oernany, a-a par
tho so who work in the petroleum industry.
~ s s s s , = s ; x v . n K . r r : = S " a i `"
(13^1-5 (1937)
danger of development of cancor ore
Occupations ir. which there is
fvreiE.oeor.ic,
reviewed; aacy data aro given regarding substances considered carcxnogo .
API 04645
- 29-
the location of malignant tuners, their latont period, protective measure Jfai%ndustrial-hygienic typo, quostions of insuranco, otc. There ia no e p . ^ g e S connon to all carcinogenic substances as a pronoter of cancer
growth.
.
Ton.ehl3.ilor, 0, ooo Tar Boqnlro Ultra Tlolot Llsht to Prolneo Ski. Oonoort
93- Klin. Wchnschr., 16, 128U-5 (1937)
. . t ,
tho
White nico wore paintod with tar. Cancers developed not o .ly i.. the
irradiatod snimhls hut also in thoso kopt in a dark chanber so that not
only a preparatory but also an independent cancorogenic effoct oust be
ascribod to $ar.
.
Toutschlaender, 0. Light and Skin Cancer. Ztschr. f. ZrobBforsch. 0, Sl-92
%
U 9 U The author investigates tho problen of pother'or not a photodynanic influence is necessary in tho genesis of tar cancer. Ho conductedexnerino^ts on tarred nico kept ip a dark roon. Since skin cancer developed
tho**naintod n * it is ovidont that ultra-violet light is not a S q S S i i f l a f c ^ c e r genesis, .he sane is shown by the devolopnent of
spontaneous
cancors in two wild groy house nice that lived -
briquet factory.
Nevertheless there is a widespread boliof that both cancer of
radiant source and tar cancer of the skin are caused by
bona. According to Boffo, both typos are originated by oxidation and deconpositicn Sf cholesterol *n the tissues which nay be caused by radia
tion ae well as by
influonco-- cancer-provoking cyclic hydro-
I^ftLSylScrM.d. fwp*li. on.*, therefor., g * r l
tho
of on? or both factors.
Touraino, A. and Bout, H. Cancer iron lubricating Oils. Hev. Mod. Franc. 20,
95. 2S5-92 ^ ^ ^ O0^ lete j^Yio 0f caacor fron lubricating oils, its occur
renceclinical synptons and tho medico-legal aspects of such,cases.
96. Twort, C. C. and Zog, H.E* Mulo Spinners* Caacor and Mineral Oils. Lancet 1, 752 (1928). .
97. Twort, C. C. and Ifaltoa, J. . Sxporiionts on toe N a t u r e o f t h e C a r c i ^ g o n i c
igents in Minoral. Oils. J. Path, and Bacteriol., 2, lh9-lbl (1929)
Tron a consideration of the ehonical reactions ipvolvod, tho
authors are of the opinion that it is to bonezonoid hydrocarbons that
cortain mineral oils owe their carcinogenic properties. Trcatnont of
tho oils with sulfuric acid lod to almost total abolition of their car
cinogenic properties, and similar rosults were obtained by the adoption
of ne*thods of oxidation, and redaction.
.
. .
98. Twort, C. C. and'Twort, J. M. Studios on tho Origin of Cancer. Ztschr. f.
Krebsforsch., 2, U9I (1930)
.
.
.
This is a genersd survey of the work of the Tworts, and is based on
eaperiaents oa ^5,000 ice, & n a i l e r number of rats, guinea-pigs, and
rabbits, and on the use of some hundreds of varieties of tars and. oils or
various capacities to cause cancer. There is but little probability that
an acquired physiological immunity against cancer-producing aubstancoa
oxlsts. Tho authors* various substances are divided according to their
API 04646
*30-
cancer-forming capacity in mice, so that every group has about ton times the power of the preceding ono.
99. Twort, C. C. and Twort, J. M. Classification of Four Thousand Experimental
Cil and Tar Skd,n Tumours of Mice. The study from which this classification was made was based upon
_
29,10 0 .animals.
,
100. Twort, C. C. and Fulton, J. D. Further Experiments on the Carcinogenicity of Synthetic Tars and Thoir Fractions. J. Path. Bact. 119-43 (193).
101. Twort, Ci C. and Twort, J. M. Tho Carcinogonic Potency of Mineral Oils. J.
Ind. Byg. , 2CU-2 2 6 (193D
...
Painting nice with refined shalo oil induces cancer more roadily
tV'or painting with refinod potroleum well oil. The most potent fraction
from shalo oil is unfinished lubricating oil from which most of tho
paraffin wax has boon removed but which had not been treated with BgSOij. flitrod. Tho *heavier grade oils arc lost potent than spindle oils*
The Cancer-producing property of oils appears to be relatod to fluores
cence. Oils having a bluo fluorescence soem more active than thoso having a groon fluoresconce. Chrysone dissolved in oleic acid possesses
carcinogenic properties
102. Twort, C. `c. and Twort, J. M. The Rolative Potoncy of Carcinogenic Tars and
Oils. J. Hyg., 29, 373-9 (193D
, , _,
,
1 mothod haaboon devised whoreby the potoncy of any given carcino
gonic agent can bo compared with that of a standard agent. A unit of carcinogenicity- U X. - has been oetahliehed, and a concentration of 500
units por cubic centimeter is considerod to induco the mn-Hrrvin rolativo rosponse in a niaals whon tho agent is applied twico a
week.
The carcinogenic powors of oils rate as follows, in descending orders Shale, Tonesuelan, Bomoo, Rumanian,Persian, Californian, Mexican, Midi-Continental, Texan, Pennsylvanian, and Russian.
Hypothetical standard agent
Penn* Odl Cal. pet. oil
Oil Bo. 3 Shale Oil Pitch Gas tar Pinepe synthetic tar
Effect of refining Ponn. oil Mothyl sulfite oxtract
Oil Bo. 3 Distillate 300-380<>C./I2nn
Methyl sulfite oxtract Shale oil
Oxidized at I5O-I6O0C. Pinono synthetic tar concontrate
Oxdlizod at 100C. Cxidizod at 150-l60C.
100,0 0.1
3..0 0..6
ks.o
25.0 9U .0 706.0
oil
22.0 0,6 12.0
53t us.o
0,3
37^5 ..0 2369.0
58.0
API 04647
-31-
- rwcrt, C. C. and Pulton, j. D. Concentration of the Carcinogenic Principle
1
in Oils and Tars. J. fuor Krebsforsch. 25. 5U3-73 (1932)
In tho attenpt to o s b o b s U.C, by physical and chemical characteris
tics, the specific gravity# refractive index and iodine number appeared noBt promising, though other features nay also ultimately prove to ho of
value.,
.
-u iwort. C. C. and Lyth, E, The Selection of N0n-carcinogonic iron Carcinogenic
X
Oils. J. Hyg., 21. ^ 7 3 (1933)
, ,
All the aninal and vegetable oils tested by tho authors on aninals
have proved to be incapable of inducing tunor formation during the life
of their aninals On the other hand, oleic acid and linoloic acid,
unsaturatod fatty acids which nay be present in connercial saponifiable
oils, have frequently induced tunor formation; observations which in
thoir opinion are of the h i p e s t importance in relation to many cancers
other
those of tho skin, and possibly even of those of the skin it
self.
It has been found that tho carcinogenic constituents of a given
crude are not equally distributed in the various products of distillation
obtadned from this crude. The activity of the first products to cone
over in tho still, the motor spirits, etc., is negligible, and that of
the lamp oils, burning oilB, light fuel, ?tc., is also of little account,
but when we reach the boiling rango of tho lubricating oils a definite
carcinogenic activity nay bocone manifest, Among the latter the most
active grades are, on the whole, tho spindle grades, closely followed by
oils of a Eedwood viscosity of 00 to 1500 at 70 P . , with a gradual
docroase In activity as one approaches the internal combustion engine
(motor car) grades. The crude oils themselves, as a rule, aro somewhat
loss potont than the motor car oils, but of course, it will necessarily
depend upon tho amount of refining to which the latter have been subjected
#
bofore.being marketed. . '
.
105.
Tnort, C. C. and Twort, J. M. Carcinogenicity of Spindle Oils. Oil and
Colour Trades J . , 2, 1193-^ (1937)
A physical anl an a ^m*T. test for oarcinogenicity and a physical and
an .winni tyst for dermatieity of nineral textile oils are described. The average results of these tests on 66 oils (excluding shale oils) collect ed 9-10 yrs. ago ad on 66 oils collected recently a n tabulated. (The animal test for carcinogenicity is not yet completed for the recent oils.)
These results Indicate that the original oils are definitely worse than
the recent oils in both the dermatitis tests, while in the cancer physical
test there is no significaht difference. It ie expected that tho figures
for the recent oils in the
tost of carcinogenicity will be lower
than these of the original oils.
It is concluded, however, that little is being dono to improve mule
spindle oils fron the biological standpoint. There aro also indications
that the average oil used in some of the cotton-spinning towns is more
,
dangerous than that used.in others.
,
106.
Twort, C, C. and Twort, J, M. Notes on Sone of the Procedures Adopted for
Assessing the Biological Activity of Mineral Oils. Oil Colour Trades J.,
251-5 (1938)
.
.
Mineral oils nay induce dermatitis or cancer of tho skin. In dotg.
tho carcinogenic aspect 3 essential detns. are made: d . , n and kinetic
04648 API
r
107.
viscosity COT). The data collected are based on the utilization of. formulas for'assessing the biol. activity, especially from its carcino genic aspect. In Formula A, R = (n-l)/d where R = sp. refractivity,
n = refractive index aad.d * density. In Formula B, R Formula 1 is used in obtaining the cancer refractivity CR from Formula
C which is CR = Re 3 U-O.9OO)/20. In Formula D the refined cancer re fractivity RCR = CR - (KV/50). Results, where thpso mineral oils havo
boon employod, are shown in tables in which mineral oils are groped according to toxicity and according to tho n drop. Tho significance f d. in rolation to tho n drop among oils of similar toxicity and the significance of viscosity in relation to tho n drop among oils of
apparently similar toxicity aro Bhown. Tho real Jif
i^fa" Jvln
at tho truo biol. activity with greater accuracy is the lack of uni
formity of tho inert fully hydrogenated constituents. There is quite
good correlation betweon caroinogonicity, refractivity, n drop and
toxicity.
.
Twort, J. M. and Lyth, R. The Concentration of Carcinogenic Materials in
Mineral Oils by Distillation Prccessos. J, Hyg. 2, lbl"y
.
Twolvo acid-trootod lubricating cuts of a crude, Borneo mineral
oil, wore testod for carcinogenic activity. Tho wholo range was bio
logically active, which activity had boon foreseen from an examination
of tho physical eharaotoristies. Tho pook activity was a r o ^ a ViS" cosity of 200-250 Centipoisos at 25 C. Molecular distillation gave a groater concentration of the carcinogenic material than ordinary dis
tillation at from 3-1G am. In confirmation of provious findings, the middle fractions of a Borneo crudo.oil were mostly responsible for
pathological ohanges in tho organs-- fatty infiltration f hyaline dogonaration of tho spleon. long tumors wore more proyalont
la usuai when this type of agent is usod for testing carcinogenity
for tho skin. Their incidence was rathor higier in the more viscous fractions 1 this inoidonoe was apparently not correlated with carcino
gen! ty. for the skin
Twort, J. M. and lyth, R. ` Skin Cwicor due
Tars Usoi for
Preservation of Fiyhing Bets. Nature, WU, W 6 (1939)
Several fishermen oontraoted cancer of tho tisla a i t w .handling the
tars. Mouse eapts. showed that different coal tats differed in their
ca rcinogenie activity, although all produeod some cancers. Creosote
oil
anthracene oil wore also carcinogenic. Only coal tar made in
vertical low-tesg. retorts should bo used on nets.
.
Twort. C* 6 Mule-Spinnors 1 Cancer: Bio Rood for Using the Correct Oils.
Oil-00 lourTrados J., S.29.U1, fhe eancer-prodicing powers of ninoral oils used in the cotton
industry from difforont fields of origin, in tho crude and refined statos, wero thorougily examined and tho resul ts showod that .there is a dangor of any one producing cancer of tho skin if appliol long onough but tho oils from oortaia fields are tho noro likoly to do so. Special attoation was paid to the examination of the physical characteristics of various mineral oils, and it was proved that a Imowlodgo of their refractive index ^ viscosity provides a more reliable estimate of their cancer-producing powers than the application of tho samplo to the skin. This test is accurate, rapid and inexpensive, while that with tho
Bkin is variable, lengthy and costly.
API 04649
33-
m e chiof lino of investigation has boon a continuation of the work on tho nolocular distillation of mineral oils with the ohjoct of isolat ing the substancos rosponsihlo for thoir carcinogenic activities. Aninal oSorinonts with fractional iistillatos fron a Venezuelan oil aro in progross. Fractions obtained by nolocular distillation of a carcinogonic shale oil have boon subjoctei to qhronatographic absorption and two apparently puro hydrocarbons havo boon isolated in snail quantity; those aro being investigated chonically. Painting experiments with fractions obtainod by this nathod havo shown that nany of then aro highly toxic for nico. None of the substancos so far tostod has beon shown to possess a high carcinogonic activity.
A few spindle grade oils and threo oils intended as vohicles for insocticides havo beon tosted for carcinogenicity.
A colloidal material intendod as a protective against carcinogenic
oils hsu boon tosted. Thero aro indications that it has sono protective
action.
Tho carcinogonic activity of two products fornod during the purifi
cation of carbonisation has boon tosted, and found to bo loss than that
of the avorago gas tar.
.
110. Ullnann, K . , Opponhoin, M. and Eille, J. E. J. Ind. Hygiene, 8, 288, 3 ^
Tho lesions caused by crude petroleum are the sane as thoso
caused by crude coal tar, showing the analogous substancos must bo
present in >oth. The final products of distillation aro tho most active,
especially paraffin oil. The carcinogenic agent is presont in fractions
iron 200 0. to U5O 0 C., but it is not cortain that tho sane substance
CBusos both deraatitis and opitheIlona.
.
>
111. .
Yalado", P. Cancer of tho Hiaaan Dung fron Dust iron Tarred HoadB.
2.1.39, 161 .
.
.
. '
Presso Mod.,
i 112. _
Van Thonischo, M. 1. Chooical Cancer. Ing. Chin., 20 , 30-5 (1936) Moro **'nr' twioo as nany eases of cancer duo to soot were found among
swoopers th *yi raong any, other occupation* Personal cloanllnoss and
clothing that fits tightiy'around the oxtrenitios and around tho nock
aro the bee* pweventiwoe. Similar care will do nuch toward preventing
cancer due to exposure to gasoline and its derivatives, paraffins, oils,
nnA gyoaaes. Such precautions are ovon nore nocossary in eases exposed
to tar, pitch, rosin or . n i dyos. Strict nodical sup ervision and
tho uso of processes which ovoid contact of tho workers with tho product
will furthor-reduce the danger.
.
.
113.
Wampler, P. J. Occupational Diseases of the Skin (by L* Schwarz). "Indus
trial Medicine" , 19^3. 327-9
,,, ,,
,
..
Cliinm7 sweeps1 cancer has l)een reported in Sagland core frequently
than in any other country. It is said that the incidence of cancer among chimney sweeps is eight tines more common than among the general population. Ca ncer of tho scrotum of chimney swoops, however, is on tho deeline in v-wgi wh and. It is reported, as being practically aon-esdstoat in othor countries, except for an isolated cas? or two in Germany. Tho local irritation and. rubbing in of the soot as the swoop is cramped in
dosconding tho chimney is said to be tho cause.
API 04650
"it"
lar is usod in "building roads, in making roofing paper and folt. Pitch is used for making conduits, lacquers, insulating matorial, groasos, and mlnatal cements, and workers at thoso occupations aro affoctod with comodonos, tumors, worts, koratosos, and opitholioma, mostly of tho
scrotum, lip, face and hands*
l
No cases of mulo spinners' cancer havo boon roported from Franco,
Germany, Russia, or Poland. Tho author node examinations of thousands
of nulo spinnors employed in tho Unitod States and did not find any
casos of scrotal cancor, althou^i thoro wore maiy casos of folliculitis
and fcoratosos of tho thighs caused by oil-soaked trousors. .
.
llU.
Waniok, H. Molanodoraa and Keratoses iron the Action of Asphalt. Arztl.
Sachverst. Ztg., 66, ^9 (19I+O). In th? preparation of cork plates (heat-insulation plateB of
asphalt and cork) raysh dust develops under very unfavorable working
conditions. Two wprkors, who had boon working for threo months, suffored
from pigmentation, inflammatory changes and hyperkeratoses of tho face,
foreams
hands* Tho hypeiplastic procossos wore.intensified in the
older workers* The symptoms wore aggravated by light. The intonsive
action ?f asphalt dust is considered to bo tho cause*
115.
Watson. A. F. Tar Cancor la Mice, III, An Apparatus for tho Preparation
undor Standard Conditions of a Bigily Potent Carcinogenic Agent of low
Toxicity. Brit. Jour. Sapor. Path., 12, 1&L-7 (1931)
.
With an ada ptation of the apparatus of Hague and Wheoler tho
author h**# succeeded in making from purified terpentine, at 850 C. a
relatively aoa-toxio tar whidfolicited tumors after 210 days in 9<# of
tho survivors from a group of 37 icJ nost of these growths were
malignant*
.
.
.
Wolwart. Cancer from Paraffin fax and Mineral Oils* Soifons* Ztg., 62,
792-- 3 (1935) Most chemists and dermatologists boliovo that workors in paraffin
factories got cancor from the paraffin itsolf whilo Schorbor and Toutsch-
laender claim that cancer does not cono from paraffin but from mineral
oils*.
.
TTindaus, A*
Bennhak, 3* Some Derivatives of 3 Benzopyrene. Z* Riysiol.
Chom. 2U 9, 256-66 (1937)
By analogy to arrays(*-rays produco and x-rays euro cancer")
,
carcinogenic hydrocarbons should bo tested for possible thorapoutic
values. Suggos tive rosul ts have boen obtained with 3 ,U-bonzopyrnet(I).
Wood, P. C. The Hon-Carclaogonic Nature of Purifiod Mineral Oils. J. An.
Mod. Assn.,
l6Ul (1930) '
Tho gonoral clinical ovidenco that thoye exists no rolation botwoen
tho therapeutic use of refinod potroleun products and the oceurronco of
cancer is confirmed by eaperinental studies.
,
Wood, H. B. Paraffin Not Productive of Cancer. J. Cancor Bos., 1^, 97-102
(1929)
.
.
I
~ool H. B. Skin Losions Anopg Tar Workors. J. Cancor Bos., 1^, 5 ^ 9 (1929) Different typos and composition of tars are discussed. Only tar
obtained from tho distn. of coal at high temps, contains a substance
API 04651
- 35-
carcinogenic to certain lab. animals. Workmen handling coal tar showed . tar warts as a result, hut no other effect. So irritant action on the human skin was found from low temp, distillate tar or from.petroleum, tar.
i?l ^ '
Woodhouse, D. 1 Carcinogenicity of Synthetic Lubricating Oils.
Pet. Tech., 20, 1057-63 (193*0
'
J. Inst.
12? *
Yamagiwa and Ichikawa. Experimental Study of the Pathogenesis of Carcinoma. J. Cancer Res., Ill, 1-21 (191?)
In 1915 produced cancer by the experimental application of tar to
tho ear of a laboratory animal.
API 04652
.4
FOR INFORMATION ONLY - NOT FOR PUBLICATION
A CONTRIBUTION OF INFORMATION TO IT! BIN S OF TUB A . p . I . JUDICAL ADVITORy COHTTTZE
SHELL OIL COMPANY, INCORPORATED WOOD RIVER RESEARCH LABORATORIES
REPORT NO. M-12^7 JULY 2, 19^5
SUBJECT:
CABCTKXZHIC HYDROCARBONS AND RELATED COMPOUHDS
A LTHRATUEE REVIEW
AUTHOR:
H . H . ZUHRMA
Exportation of This Report Is Subject to License Uhder the National Defense Act
gpRT.T. OIL COMPANY, INCORPORATED WOOD RIVER RESEARCH LABORATORIES
REPORT NO. M-12^7 JULY 2, 19*0
SUBJECT: CARCINOGENIC HYDROCARBONS AND RELATED COMPOUNDS A LITERATURE REVLEtf
AUIBOR:
E. E. Z U H E M A
Industrial cancer vOs first recognized In England in the
latter part of the eighteenth century, when It was established that
chimney sweeps were particularly liable to cancer of the scrotum.3
This was caused by soot. Progress In this field of study was very
slow at first, and. It was not until 1915 that two Japanese Investi
gators announced the first case of carcinoma In an experimental
animal. They produced first papillomas and then true cancer of the
epidermis on the ears of rabbits by painting with tar over long
periods of time. JS During the thirty years that have elapsed since
that discovery, a great deal of work has been done with various coal
tar and petroleum fractions and pure compounds either occurring in
these fractions or prepared synthetically. Numerous species of tost
animals, irvrJ'^ n g mice, rata, fowl, rabbits, and dogs have been
used, and many methods of application, including oral administration,
intramuscular, intravenous, and subcutaneous injection, and painting
on the akin. Hie method that appears to. be the most widely used at
present consists of painting a solution on the skin of a special In
bred strain of mice. Mice are preferred over animals having longer
life-apans since they respond more rapidly. The special strains are
used to Increase the precision of the test. Painting is preferred
to other methods of application beoause there Is less likelihood of
Interference by simultaneous spontaneous carcinomata. Die carcino
genicity of a given compound Is Influenced by many factors including
the genetlo constitution of the animal species and strain, Its age
and sex, the diet, the physical condition of the animal, the purity
of
compound,
dose, the physical state of the compound, the
solvent used, and the route or site of application.*5
While carcinogenic properties are generally associated with
certain polynuclear aromatics and their derivatives, there are many
substances entirely unrelated to these compounds which have been re
ported as having similar cancer-producing ability. Among these may
be mentioned asbestosJ U ' 37 , inorganic compounds of arsenic and of zinc2 -, aqueous potassium hydroxide and aqueous hydrochloric acid2
ethyl alcohol*5, glucose3 5 , fructose25, and a aber of nitrogen
compounds, most of which contain one or more benzene rings 2 Radio
active elements
compounds are not included in this discussion since
the mechanism of their producing cancer is probably quite different,
i.e., physical rather than chemical. Materials which havo been reported
API 04654
Beport No. M-12^7
2
as carcinogenic and whose carcinogenicity is probably due to the prejence or polynuclear aromatics include coal tar and pitch2* '27 blue shale oil5, mineral oils and asphaltu~, tobacco tar39, tars obtained in the destructive distillation of teaUcond coffee110, diesel fuel52, distillates from Borneo crude petroleum5-1, combustion gases from fuel oil"1, the SOo extract from a spindle oil produced from a paraffinic crude petroleum5", the products obtained by heating acetylene, isoprene, yeast, a non-careinogenic petroleum fraction, or human shin to' 700 - 900C*>, and the products obtained by treating acetylene, xylene, naphthalene, or tetrahydronaphthaleno with aluminum chloride3 . The carcinogenicity of tars produced by heating various substances tends to increase with increasing temperature. 30.us it is probable that the carcinogenic hydrocarbons present in certain coal tar and petroleum fractions were to a large extent formed during the process Bteps and were not present in the cool or crude petroleum from which they were derived. However, the carcinogenicity of a given fraction depends upon the source as well as the method of processing, ccording to the Manchester Committee on Cancer"9, the following order of increasing carcinogenicity prevails: Russian, Pennsylvania, Texas, Mid-Continent, Mexican, California, Persia, Romanian, Borneo, Venezuela, and shale. Diis corresponds roughly to the order of increasing aromati city.
A large number of compounds have been tested for carcino
genicity. Hartwell has published a survey25 which includes 696
compounds tested. Of these, 1U6 were carcinogenic, and 23 additional
ones produced papillomas but no true cancers. While some of these
compounds have been tested under only one or two sets of conditions,
others have been studied very extensively. The three compounds that
have received the most detailed study are the three derivatives of
1 , 2 -benzanthracene: 1 ,2,9 ,6-dibeosaathaoene, 3;^-benzpyrene, and 20-
methylcholanthrene. i*fti three arc potent carcinogens. It has been
estimated that they have been investigated in 60 different labora
tories. 20
A llet of nest of the known carcinogenic compounds Is given la Table l,pcgce 5-J. Structure, complete with numbering systems, ara included, since lack of uniformity among various in vestigators in this field has led to some confusion. There is fortunately less deviation In the current papers than in the case of those written tan to fifteen years ago. lfce numbering used in this report corresponds to that used by Hartwell25. It should be understood that the carcinogenicity of the-compounds shown in Table 1 varies considerably in degree and that the results have been verified by several laboratories in some cases whilo in others the results of only one or two experiments are available. Ifte reader Is referred to Hartwell for mere detailed information and for re ference to the original experiments. It will be observed that most of the compounds are either hydrocarbons or their derivatives containing at least three benzene rings or nitrogen compounds con taining at least two benzene rings. More specifically, the first of these classes consists, with only throe exceptions, of derivatives
API 04655
Report No. M-12hJ
3
of phenanthrene. Hie exceptions are tetraphenylmethane, trlphenylbenzene.
and trlphenylethylene. In Table 1 the hydrocarbons are subclassLfled
further as derivatives of 1 ,2-benzanthracene, 3,^-benzpyrene, cholanthrene,
and other derivatives of phenanthrene. Examination of the structures
shows that all of these are derivatives of phenanthrene.
While the work that has been done on the production of cancer by exposure to various compounds has made it possible to draw certain conclusions regarding the effect of chemical structure, it is not as yet possible to predict with any degree of certainty the carcinogenicity of a given compound from its structure. A phenanthrene derivative may or may not, for example, be carcinogenic depending upon such factors as the length of an alkyl side chain, ^he position of a benzene ring, or tho position of an alkyl group. However, a paraffinic or naphthenic hydrocarbon or one containing only one or two bonzono rings may with a reasonable degree of confidence bo assumed to be non-carcinogenic.
Hie amount of compound required to produce an experimental
cancer on a test animal is surprisingly small. Coses of 1,2,5^6-dibenzanthracens and 3,^--benzpyrene as small as 2.5 and U micrograms, respectively, give positive results when applied to mice.^-'Discontinuous
application, e.g., once a weok, of a given total quantity of material is
Bro effective thou continuous exposure.15 A single application of 20methylcholanthrono in 0.6jl bonzono solution is capable of producing cancer on the akin of mice. W5 Ifeen different carcinogenic hydrocarbons, e.g.,
methylcholanthrene, benzpyrene, and diben*anthracene, are applied successively the effeot is additive33. The investigators who made this
observation offer the hypothesis that carcinogenisis is essentially an
acciznulation of abnormal protein within the cell.
Since so many compounds have been tested for carcinogenicity
it is only natural that eeveral attempts have been made to correlate
this property with other properties, either physical or chemical.
Such a correlation would be extremely useful in that the determination
of the physioal or chemical property would be much simpler than the
rather long and tedious prooess of exposing experimental animals to
the substanoe in question. Tluoresoenoe spectra have received more
study in this regard than m y other property?>7 >8 8 .*Hie author of a
reoent paper m rf* the statement that all known oariinogenic chemicals
are fluorescent.U3 However, it is obvious from a glance at Table 1
or Hartwell's tabulation that this la too broad a olaim. However,
many investigators have used fluorescence spectra to good advantage
in this field,
there appears to be a definite correlation with
carcinogenicity, at least with certain types of compounds. Hie
correlation may be due in part to the fact that fluorescence spectra
have been used as a guide in selecting fractions from coal tar for
physiological tests; it is conceivable that other carcinogenic com
pounds, which are not fluorescent, exist or could be synthesized.
A rough parallelism between the carcinogenicity of poly
nuclear aromatics and the diazo coupling reaction has been observed.21.22
Attempts have also been made to correlate refractive index, or more
specifically, specific refraction, with the carcinogenicity of oils.
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The Manchester Committee on Cancer"*9 recommended that spindle oils of various ranges of specific gravity have specific refraction values below certain limits to assure the absence of carcinogenic properties. However, it Is obvious that thore can be no general correlation between a physical property of this nature and carcinogenicity, for slight changes in structure, such as the position of a methyl group, which would have little effect upon optical properties, affect carcinogenic properties profoundly; furthermore the presence of a large concentra tion of a non-carcinogenic aromatic would raise the specific refraction of a mixture much more than would the presence of a small amount of a
potent carcinogen.
The probability of obtaining a general correlation between
carcinogenicity wnfl some more easily determined property would be
greatly enhanced if there were a clearer understanding of the mechanism
of the action of carcinogenic compounds. It is, of course, very
difficult to obtain such an understanding, for so little is lmown
about cancer itself.
Whether or not carcinogenisis by hydrocarbons and related
compounds is in any way connected with spontaneous cancer is a question that has received much conjecture. That such a relationship does exist is suggested by the fact that certain derivatives of estradiol (see Table 1) which is closely related to the sex hormone estrone, are carcinogenic. Spontaneous cancer quite often occurs in the reproductive organs. Furthermore, the very potent carcinogen, pq.Tn+*yTwhni rrhhTf>nfi} can be produced by the degradation of deaoxychclio acid, cholic acid, or cholesterol, the first two of which are normal constituents of human bile and the last of which is present in all tissues of the human body.22 These degradation reactions were, however, conducted under drastic conditions which are in no manner related to those prevailing physiologically, and there is no evidence that 20-methyloholanthrene Is formed in the body through the degradation of bile acids or cholesterol. The possible connection between eanoer produced spontaneously and carcinogenisis by sethylcholaathrene or related compounds therefore
remains a matter of conjecture, at least for the present.
There has, for obvious reasons, been little attempt to induce oamoer in human beings through exposure to the various com pounds that .are carcinogenic to mloe There is, therefore, no direct correlation between the susceptibility of man and the test animals. There is, of course, an Indirect correlation of occupational cancer largely through exposure to coal tar and dye intermediates caused by materials which are carcinogenic to mice. However, many of the compounds shown in Table 1 do not occur in any products known to have caused occupational cancers, and it is conceivable that some compounds harmful to mice are lnnocous to man. Until that can be proved, the only safe policy is to regard all compounds which are harmful to mice aa dangerous and to avoid exposure by humans.
EEZ VAC /i _
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5
table I OARCTNOGENIC COMPOUNDS All compounds listed by Hartwell25 unless otherwise indicated.
1 . Derivatives of
1 ,2-benzanthracene
The following derivatives of 1,2-benzanthracone:
3-methyl
5-
methyl
6-
methyl
9-
methyl
5-ethyl
10- ethyl
5-n-propyl
5-n-butyl2
5-n-amyl2
5-
n-hexyl2
6-
i-propyl
3-hydroxy 10-hydroxy f 10-aldehyde, -C 0
10-methyleneaoetoxy,
l-C-O-*C-CH^
I
'
H 0
i .i
10-methylenecarbomethoxy, -C-C- 1>-c h 3
H
H I
10-cyanomethyl, -C-CN
H
3-methoxy 10-methoxy 1+,9-dimethyl 1+,10-dimethyl 5 .6- dimethyl 5.9- dimethyl 5 ,10-dimethyl 6.7-dimethyl 9,lo-dimethyl 6.7- dimethyl 9 .10-dimethyl 5-chloro, 10-methyl 7-chloro, 10-methyl 5-cyano, 10-methyl 7-cyano, 10-methyl 1 ,2,7 ,8-dibenzanthracene5* 1 ,2,5,6-dibenzanthrac ene
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The following derivatives of
1 2 ,5,6-dibcnzanthracene :
9-methoxy 2'-methyl 3' -methyl
k-methyl
9-methyl
H
- l" ,9-mcthylcne -6-
E
k.lO-dimethylone, -6-6
'
H E
3 k'-dlmethylene (phenanthra-
M-dlmathj-La
acendphthene)
Derivatives of
3,h-benzpyrene
3,k-benzpyrene
Ite following derivatives of
3,^-benzpyrene :
5-aldehyde
V -methyl
5-methyl 1 ',2''-dihydro, 1+7-methyl
E H H
5.6- cyclopenteno -6-C-(j-
1E
6.7- cyclopontone 1 ',2',3 V-tetrahydro-
Na salt of 9,10-endo alpha,tota succinic acid:
l' ,2',3',k'-tetrahydro 10-acetyl 3,k,8,9-dibenzpyrene
5,lO-dlhydro-3,4,8,9-ilbenzpyrene
7-methyl,1,2,3,k-dibenzpyrene
3. Derivative of Cholanthrscene
Cholanthrene The following derivatives of cholanthrene:
20-methyl 20-ethyl 20-isopropyl 20-tert-butylJ u
15.20- dimethyl
16.20- dimethyl 15-hydroxy, 20-methyl 15-keto, 20-methyl
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4. Other Derivatives of Phenanthrene
Colchicine
The following derivatives of 3,^-benzphenanthrene
1- methyl2 2- methyl2
2-ethyl2 2-isopropyl2
7 -methyl2 -methyl2 2,9-diethyl
2-methyl, 1,2,Se ditene phennnthene
Cholesterol oleate
CHj
H
^ H-C-(CH2)3-C-(CH3)2
1,2-dimethyl chrysene2
5-methyl chrysene17 U,5-BBthylene chrysene17 5,6-dimethyl chrysene17
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CE
Estradoil caprylate
0
CBj-(CHs )fi"C"0'
1 ,2-cyolopentene phenanthreno2
5 . Other Aromatic Compounds
Te traphenyime thane 1 ,3 ,5 -triphenylhenzene
Triphenylothyleno 30
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5 . organic Compounds Containing Nitrogen
2-amino, 1 -naphthol
Alpha naphthylamine13
Eeta-naohthylanine
0
OH
Acetylcholine, CH3-C-O-CH2-N-(CH*);
o-amimo azotoluene /-- CH,
(
;'-_RW==NW- '
A-TBVEi
\_/
V-/
p-dimethyl aminoazobenzene (butter yellow)
\ / -N=N'\ O ;--N (CH.);
Scarlet red
CH3
\_J**
Indole
-CH3 EOf --
-N = N- \ ___ J
v_/
/ \
\_/
Syyryl ^30
ii /
CH,-C-N-(
91 \
; -C-N-
\_/
-NH:
Benzidine iz
HsN
N-NH;
/\_/
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1,2,5,6-dibenzacri dine
1,2,7,8-dibenzacridine
3,^,5,6-dlbenzcarbazole
7. Miscellaneous
Arsenic trloxlde Potassium araenlte Aqueous hydrochloric acid Aqueous potassium hydroxide Zinc chloride
Zinc sulfate Ethyl alcohol Fructose
Glucose Galactose
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BIBLIOGRAPHY
1 . Auld, S. J. M., J. Hist. Pet. Tech., 24, 577-33 (1936).
2. Badger. G.M., Cook, J.W., Hevett, C.L., Kennavay, E.L., Kennavay,
* N. M., Martin, R.H., and Rotlnson, A.M., Proc. Roy. Soc., B129,
439-67.( 1 9 ^ )
3 Badger, G.M., Cook, J.W., Hevett, C.L., Kennaway, E.L., Kennaway,
N.M., and Martin, R.H., Proc. Roy. Soc., B131. 170-82 (1942).
U*
; G j Cook j J W ^ Hslevood ^ G A D y Hevett ^ C *X*f Hleer j I j
- and Kennaway, E.L., Ibid, B-117, 313-51 (1935)*
5. Berenhlum, I., and Schoental, R., Brit. J. Exp. Path., 24, 232-9
(19^3).
4
6. Bottomley, A.C., and Tvort, C.C., Am. J. Cancer, 21, 781-3 (1931*).
7. Bruce, W.F., and Todd, F . , J. Am. Chem. Soc., 6l, 157-81 (1939) 8. Campbell, J.A., Brit. J. Exp. Path., 15, 287-94 (1931*)9. Campbell, J.A., Ibid, 20, 122-32 (1939)
10. Cook, J.W., Nature, 14^, 335-8 (19**0).
11. Cook, J.W., Haslevood, G.A.D., levett, C.L., Hleger, I., Kennaway, I.L., and Mayneord, W.V., Am. J. Cancer; 2g, 219-59 (1937).
12. Cook, J.V., and Kennaway, E.L., Ibid,
50-97 (1938).
.
13. Cook, J.W., and Kennaway, E.L., Ibid, 39, 381-428, 521-82 (19l*0).
14. Oook, J.W., Hleger, I., Kennaway, E.L., and Mayneord, W.Y., Proc.
Boy. soc., Bill, 455-84 (1932).
15. Cramer, V . , and Stovell, R.E.,Cancer Research, 3. 668-81. (1943)
16. Dobrowolskaya-Zavadakaya, N., Compt. rend. soc. blol., 129', 1055-7
(1938).
17. Daalap, C.E., and Warren, S., Cancer Research, 3, 606-7 (1943).
18. Evans, E.E., J. Urol., 38, 212-15 (1937).
'
19. Fieaer, L.F., "Chemistry of Phonanthrone", Reinhold Publishing
Company, N.Y., (1937).
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Bibliography (Continued)
20. Fieser, L.F., Am. J. Cancer, 4, 37-124 (1938).
21. Fieser, L.F., and Campbell, W.P., J. Am. Cbem. Soc., 60, 1142-5
(1938) .
22. Fieser, L.F., and Fieser, M., "Organic Chemistry", pages 814-26, Heath and Co., Boston, Mass., 1944.
23. Gottschalk, R.G., Proc. Soc. Erp. Biol. Med., 0, 369-73 (1942).
24. Haddov, A.#, and Robinson, A.M., Proc. Roy. Soc., B127, 277-87
(1939) .
25. Hertvell, J.L., U.S. Public Health Service, Nat. Inst. Health, Nat. Cancer Inst., 1941, "Survey of Compounds which Have Been Tested for Carcinogenic Activity", 371 pp.
26. Heller, I., J. Ind. Hyg., 12, 169-97 (1930).
27. Hsnry, S.A., Kennavay, N.M., and Kennavay, E.L., J. Hyg., 31, 125-37 (1931).
28. Hieger, I., Bioehem. J., 24, 5 0 5 - H (1930).
29. Hueper, W.C., J. Ind. Hyg., 16, 255-79 (1934).
30. Kennavay, I.L., Brit. Med. J., 1925, H 1-4.
31. Kennavay, E.L., Blochsn. J., 24, 497-504 (1930).
32. Kennavay, E.L., and Siege, I., Brit. Med. J . , 1930, No. 3622,
1044-6.
'
.
-
33- Lavik, P.S., Moore, P.R., Rusch, H.P., and Baumann, C.A., Cancer Research, 2, 189-92 (1942).
34. Linzbach, A.J., and Vedler, H.W., Arch. Path. Anat. (Virchow's),
307, 387-409 (1941).
35. Loeb. L., Alexander's "Colloid Chemistry", Vol. V, 995-1050 (1944), Reinhold Publishing Co., N.7.
36. Morton, A.A., Clapp, D.B., and Brand, C.F., Science, 82, 134 (1935).
37* Normann, M., Z. Bfebaforach., 47, 288-302 (1938).
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amioaraphy (Concluded)
38. Robson, J.M., andfBonaer, G.M., Nature, 1*2, 836 (1936).
39. Roffo, A.H., Prensa Med. Argentina, 26, 721-38 (1939). Roffo, A.I., Bol. Inst. Med. Exp. Estud. Cancer, 1, 7*1-56
' (1939).
in. Roffo, A.H., ibid, 16, Ho. 52, 1-6 (1939).
*2 . Roffo, A.H., Ibid, 2, 661-98 (19*0).
43. Roffo, A.&., and Roffo, A.E., Jr., Ibid, 20, 1*3-87 (19*3).
It*, Shear, M.J., Letter, J., and Perrault, A., J. Hat. Cancer
mat . , 2, 99-113 (19*1).
45. Simpson, W.L., and Cramar, W., Cancer Research, 3, 6o*-5
(19*3).
'
"
*6. Stallybrass, C.O., J. State Med., *, 2*9-68 (1926).
*7 . Stovell, R.E., and Cmner, V., Canoer Research, 2, 193-7
(19*2).
It8 . Twort, C.C., and Pulton, J.D., J. Path. Bact.,
(1930) .
119-*3
*9. Twort, C.C., M d Lyth, B., J. Hyg.,
*6*-73 (1933).
50. Twort, C.C., d Twort, J.M., J. Ind. Hyg.,
(1931) .
20*-26
51. Twort, C.C., and Twort, J.M., J. Hyg., 22, 373-9 (1930).
52. Twort, C.C., and Twort, J.M., Ibid, 2, 130-*9 (1935).
53- Twort, C.C.,nd Twort, J.M.,Lancet, 1935, II, 1226-8.
5*. Twort, J.M.,andTwort, C.C.,J. Hyg., 39, 161-9 (1939).
55. Woodhouse, D.L., J. Inst. Pet. Tech., 20, 1057-63 (193*)-
9
For those wishing to acquire a more extenslre background In this field, a review by Fleser20 Is recommended as a good starting point, followed by the original papers by Cook and co-workers. For a detailed tabulation of carcinogenic compounds Hartwell's book25 should be consulted.
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