Document JxmoVXXgQL64NN2oVb4ML58X
FILE NAME: Metropolitan Life (ML) DATE: 1950-1995
DOC#: ML312 DOCUMENT DESCRIPTION: Suppression of Saranac Cancer Experiment #2 for QAMA
CONFIDENTIAL C. M. McGaw
Uc&vdS'#' f .
l9d'l9f^- ^ 7
Hospital August 31 1950
Palaonary Malignancy
I an enclosing oopies of. a letter and contract recsived from Dr. Lanza.
It will be noted that Dr. Lanza has agreed with Dr. Cartier and I that the program should consist of two parts)-
1 - An epidemiological or statistical study
* 2 - Abmai experiments consisting of)
(a) Inhalation experiments
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(b) Diplantation or Injection
I still believe that the statistical study can be carried out by a Canadian
authority and thus be more acceptable to various groups in this Province.
Also I believe that the best reslts ft*cm inhalation studies will be obtain
ed through the Saranac Laboratory.
*
Concerning the Implantation Experiment Program proposed by Dr. Lanza I believe that their methods are sound and the results will be seientifcally interesting. .1 would prefer to make no decision until the Saranac proposal is received.
The contract appears to leave little choice to the Donor if the results of the study are unfavorable to Company interests and are submitted for publication.
However I fall to see how they can find anything mare unfavorable than that
which already has been published by Merewether and Helper.
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KWS/h.n.
CC - K. V. Lindell G. K. Foster - Montreal
Kenneth W. Smith, M.D.
I
PRODUCEq
Tba Saranno laboratory f , 0. Box 551 Saranno Loko, Mmi Torte
D o A rti Confim i* phono MD**m tloo with M rt. I l l * thlo a cra la i.
I t la plaenad that wo w ill wool . Sabourla thorn ot roaoo on Toaadap, BoTMbor 7, to rwolow tho propoood oohootoo progr* that baa
I a d ir o cciU lTttlo B bp tba Q. A. M. A.
Vboa tha subjoct waa rowlawad baro w ith ***! .. Mr. Pastor, wd . Sabourin, following tba Q. A. M. A. B*otlag, It waa onggoata that tblo Boating bo bold with you.
I t has baon d iffic u lt to got a op whoa both Dr. Uasa and . Sibow la ooold bo thnro, and I hopa that tba sta ohosoa, Toasdap, lofoabor 7. w ill bo oatiofaotorp with poo.
s . | M - aald that aba or poa wool o a ll BO a* NaaAop Ootobar 50, about tbo a ta .
Blaooralp poors,
J . p . wssdsr
boi A. J . Laaoo, H. D. A. R. Flohor
CONFIDATIMI, - , , . , K.
.., x x m m s F o m m m m o ja
T lw itpvam tiitrti
l i I * U , Kb 0 .
Ite tesarla
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i* J* Torva! K, 0 . - ^
I . P. Voadtrd
w
fi Sorta U baratory't ? rpl of 8 q M r a , 1950 to tha Ovate Mfada( ioooltelaa tette tea ytetto u t
Tte te d iti patetea 1 te Marte! tette r a d a l a t t e klp siate la te te Intela ila f tette dal and prlaary jw iM iiy mamr.*
> ite roprtprpood a pra*ra fa r tvjria* te (te a aum * te te la p ro b i . Tte prograa ooaalatod of te ptei
0
1# Epidoalolocioal i u U |i t t e
2 teporiaateal arotl*teioaa, i*o* d o tti* and teakla* f alati*
Tte rapate te tte QateM Attete Jdalag AsaoettUoa Ftlaoairy Oaaoar dated Saptaater 25 3950 hite vot aptad la prlaalpla tgr tte Q* A* M* A* te t t e l r roaoat aatelaf (o n o rali/ ftlX avad ite la Irltf teraaaa lakaratarj* Proptati* a adttoo of tte 0* A* K* A* i aspatoi f tetara* Poster ad
Sabotala prototeod te la rapate te tei tesate B atti* *
Foliote* dlaaaaaloa te te te* A* R. Pialar l i vaa lo fi te te teatro* teodard ad Saboarla and Doatora Vorvald ad Laaoa votld rateov tea Propoaal te Sarta to loar ap t a j qoaatloaa te te al*te 1 opta and arriva te a aaaalaaioo aa to vhte 1 roao-- ndrt firea kart aa Inoltri1 * vho vauld do vhat lov loo* i t vm ld td n ad hov a tte i l vaald atte*
Thte va tea parpe ef tei aatellg*
X* Short-Ra* fragra Spid--l l tla ti Surr a/
Tha ih te > r t * i pro*r a vas to aaalte of a a rtft l/ oaadaatod piatalo* ltg io a l wrva j la dtearal tea inaldaiiaa f oaaoar anao* pooplo espeead to aoboteoo date a ataparad v ite tea lnald--a aaoa* thooo te expoeed, A* Disoutaioai
1* Or* Tarwold4 assoni or m follovai
a* Wo ahoald la tra tea lnaldtnoo of aaiioor Boa* tboa xpooad to aaboato d a ti ad omb* teosa ate aspeood b/
(1)
sap lsy d V: i
; ' In ti* oabatoa industry.
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........%..r...%......#-.V& .Vs.
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(2) A study of tbs W ay nedo of tha gaosrsl population , by tbs nobils unita of tho Prorineial Daparineni of
fiselth (thasa not exposed).
0 ) A study of pout-oorton data oa thsprseens* of oaaoar a t daath insofar aa auoh inforastioa nay U availabla. I t was pointed aat th at la tha Provisos i t la tha prsetios not to H at esnotr aa a oaoso of daath ovaa
vhaa .it la , ao th at Intonation oa thla nay not ba
of aueh halp to aa*
2. Dr. LaaaA OMwmtedf
; **<-Tin m * 1 * * * u frj* t& U th a t wo feat 'an
':
I, ana vho oaa taka tha Job orar, do i t oerrsetly sad
adequately , m i mm up v ith tha oarraot a i a r .
b . Dr. tanaa agro*'I t la laport a n t th a t * Canadian ba to handle tha Job. Xu osos Canadian aa n o t bo foiad who oaa do tha job adequately, acneeat fro* tha 7. S. oaa thsa ba
usad.
9* Mr. Sebearla uggartodi
a. That prior oonaultatiea vith appropriata Canadian uutfacritioa
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and a raqoaat for th s lr euggeatlena a oortaia phaaoa of tha
progr an would got th o lr ta o lt backing a d th at th la would
M aterially strengthen tha baaa of tha pregran. Accordingly,
Jir. Sabeurin egroed to rariev tb s n a tte r v itb Dr. Tidal and
alao to arr anga ae th at Dr. Torwald w ill ba abla to ba la
tauob coolly with tha Doan of tha HaQill Jfcdloal School (or
Sr. Torwald w ill do to , at aay bo deeldad botwaon tha two of than). By th la arraagam st, Dr. Tidal and tha KoGill Daaa would know of tha prograo and th o ir help and suggestions would bo aought in choosing an ablo upidaulologiat to carry out tha f ir a t part of tha prograau Raring dooidod on tha individala vha night ba aanaldarai fur tha Job, i t would then bo up to
Ssranno to n k o fin a l awangananta
b . Xa addltlan to tbs, opldanlologlat, a atu tlatlelaa la aaadad. Mae Roa haa boon auggoatad aa n eaalatant Thla oaa ba worked out by Dr. Torwald aad Mr. Saboruln In lina with the
situation aad tha vlshat of tha 4* A. H, A*
i . I t wss tbs uadaraUnllng alaa th at T-ray oonaultanta would bu naodai and i t vm tha aoeatnaua th a t Doctore adtfc and C artlar oould do pralialnary aaruonlag of X-raya, vhieh would laura Saranac only
w ffc* o b o f tudying.'thoo# vhiahw oLi ,bo,,.o*v
. i l .,
' WM pointed ' out- th a t tho two ocop--y doctor hould'net b i ','
:wa*4 <*,-Wly'ftlM n,.thaVa lg h i loot aaymaofqUOOtipn ;th,
' ' objectivity of~tho study Md th is Scruna can datormina.
B OTltt*lM
1 Doctor Smith ad Cortlor w ill scroon X-riy, than Saranac w ill Kak tfao fin a l study <m tba S-rayc that boro boon screened out fo r tbonu
2 An epidemiologist w ill bo chcson, u outlined boro* Sereno w ill stfco tbo tpprcaoh with wiow toward asking fin al arranso*
; onto with tho nan who haa boon tentatively shootn.
? , Tbo epldeloloflerrpert o f i r s t node w ill go to Saranac. 9rlaftonw illevolw ato tho roport la th la lem .ani traggot b ait . woo of tho report, iwrliiono th at wight bo nodo andotbar such
nettar* Tfeereohould bo dl ooutoloa botwoon Saraaee, tho odor* w riting g ad M liao , od othoro iatorootod oo to tho t inoliato* r"vand propriaty c f th o u o a o fth a n o ta rili derolopodhythlo report. I t i* lopor topt th at tho r apert be orallablo only to tho voder writing c<*rp*niand not nodo gom raliyevaU ihlo u n til i t has boon rawiawod with and by tbo oanpanloo.
A* Soranoo Laboratory lo r ooponoiblo far tbo progran.
a . Sanno io to ho tho fin al arrangement with tho epidowiolog io t and othoro to nako tbo study, and lo aloo raaponalhl# to hood up ad supervise tho study.
h Tho yrogroashould b a sta rte d assoon to i t 1 pooolblo to do o.
e . I t woo ootlnotod th a t tho Job ooold bo dono ln six ucotbe i f a qualified opidaniologlat oaa ba obtainad who ooa dovuto a reasonable length of timo to tho study. I t io dooirablo th at tho job b* dono la in nontho and tharoforo tbo poroon h in d fo r tho Job aheold bo tnprooand with tho foot th at tho study should bo pttahad and oaneluolona roaohod promptly,
d . kilo tho original prograa otaiod a pootib ia ooot of $,000,
i t m i ototod in tho dteeuaelon th a t tho ooot night run botwoan $,000 and 16,009, I t being thought, however, th at $5,000 would bo adequate-
1>1 IMngo Ibogroa ,* A rooooroh progma of porhapo two poor* duration in two portot
' (!) Tht transplanting f `aibiMr;' nd whryoate tlbouo iato ' animal i (originally euggeetad to bo andar tho guidano# of Or* U nta and hla group)*
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I . m 'BGDUCTIOi:
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ifi Bi>cri=!iit la s beca l a progress a t Tfc. Sarcncs U le ro to iy for .m o
M M aths in on o t t s r a i to a tc o rte ln ,, influcaco of lahslod o,bento, duet
upon tb. iacidsaco o f pulaoaaiy tu to rs l a n ic e . Tfco purpose of th io study
1 . to obtnia orpcrisoatel data for corrolotlcn -*ith p o rim es p erto ialaj
to pii-.ionr.-y c.-accr la in d u s tria l c u r le r . p o sed o c su p .tlc a slly to tbo
inhalation of csboctos dust.
,,, ,
t m ctralnn of nico, to o ouBcoptiblo and the othor ronl.tant to the
dovelepnoat of pulrcesry tussrs, have boon .aossod to tfc aobonto. duot,
ecsparsblo cushor. of control anlaalo of each .train h a re been kept In
aortal air bat coder conditions of housing and dist Identical trith the.,
of tho esportacntcl aniaoln. Ths orpsrir.mt ha. boss d e sired to reveal a
possible earlier eusot of festers in the opposed snivels than in the eentrol
.>
group as cell as te d o t a m i n e tho total ineidonce of tuner. occurring over
ths entire period of tic experiesnt.
_ -fr ~ y t= staiiod hare that the evidence obtained reveals no tendency twTsrds an earlier onset oFtusacrs aru=n5 exposed ar.irala in cenparisoa^ith control enasala. I.'overchelcss, there does appear to be a tread torard a Creator incidence of tuaors in tho exposed urinals than in the control oninnli It ic important to note, however, that s t a t i c a l analyeis of the data obtained up to tho prozer.t ahero tint the differences betroen tfco oxperiscniaX and the control oninalc are no sreuter tlum sight bo expected to occur by chance elene^ T^e c^perin-.ent is not ccaplotod and it is considered likely that, if the ratios of t u w r incidence at tho nert period vhea aninnls
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Quobec Ashes too L'ining Acsoc.
'_' lot Istoritt Report 5-7-62
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02*0 killed: aro similar to thoso for the 14-ncnth iatorvnl, the trend which
io tsorr noiod tcy; finally bo ohorcn to to. otatisticolly sipiificaat bocouso of the l&rgsr total m s b o r of animalB observed,
I I . -KATFRLOS
A, Ousting r o t e r i a l : Tho d ust used in tills ooriarant m e received
on January 5, 1951, f r o a th e Johnson C arpiny
Acb03tos I-inss c f T h etfo rd . Q ustcc, end tens given th e Saranac L aboratory
nunber 15>136. X-ray d i f f r a c t i o n a n a ly s is rev e ale d t h a t th o m a te ria l con
t a in s a vrricrir/ o f m in erals, o f which th e serpentine group onouatod to
70 p e r c e n t. Though th e p a r t i c u l a t e n in c re i se rp e n tin e end th o fib ro u s
e in c r a l c l j y s o t i l o y ie ld t h e sacs d i f f r a c t i o n p a tte r n , p e tro g ra p h ic esanina*
tio r. chcrcd th a t th ara was considerably core ch ry so tilo than serpentine
p resen t in th e m a te ria l, huch of tho c h ry so tilo occurred in th ic k unopened
b u n c le s, b u t a t was e stim a te d t h a t a t l e a s t 25 p e r cen t o f th e c h ry s o tilo
ra c p r o te s t as in d iv id u al f ib e r s or p a r tia lly opened bundles. Other
components, la rg e ly p a rtic u la te , included a few per cent o f n a g n o tito ,
c h rc m tc , tru e i t s , t e l e , end q u a rts , and tra c e s o f n iscellenoous m inerals 0
The q u a rts c o n te n t was about 1 to 2 p e r c e n t. Of th e p a r t i c u l a te m t e r i i l
o t l e a s t C5 p e r c e n t o f th e p n r tic lo n wore lo se than 5 n ic ro n s in s iz o .
S tu d ies o f samples o f etnocoharic oust taken fro a th e en in al oxposuro
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rocn revcr.lod, with respect to the length of tho ch ry so tilo fib e rs, th a t
tho fib src occurred in the follow ing d istrib u tio n of cireoj
loes than 5 nicrcns in lcagth
Y1 from 5 t o 10 91
ti t*
fl
" 10 to 20 n
9) VI
91
" 20 to 50 n
91 ti
50 to 100 91 91 m
52.3 % 35.8 20.7 8.3
2.7
99oe JS
Octree Asbestos Slicing Assoc
I
1* I s ic r ia R.jpcrt 5-7-52
of the as*osirtp5 cusi; b y a rotstiu-; peddle in a lar-0 hopptC* fillod rath Wibostos da:* to apprexinaSe^ tjv> level cf the d a of t! paddlo. The cclccs of the paddle arc corlppcd rr.th stiff trLve brushes to break up the onell balls of asbestos which tend to-fora. Ths ousting iiocfcsniao is fecro in operation iraidc ths 6-foot cubical dust rcaa for G hours a day, 5 1 / 2 day* per reek, Aniixls livo ccrtfiswurty la the roco, Thich is ventilated with fresh clean sir when the dust liisssoiaato:- is not is opera tion. Atiiospkerie sen;lzs are collaetsd in the rcc= at rtigeler intervals Tn.tn a Grscisburc-Scith sieget d a n g e r and dust counts antic b y the light
tcc.i^c *-- 'h a ricroprogcetor. The dust counts havis everaged 617 t d H i c n particles par cubic feet of air. In general, ths fibers have represented about 6.6 per cant of ths total count, cr 53.<i ciliion. of the tetri rosier of fibers, about 21 psr cent era Icngar i*an 20 Elevens. Ii. -nil.*, ce roeclicd chat, is regal'd to the production c l rufocsiosis, the
g r a t e r then 20 ricross in length era of tho g r e a t s importance, c * nnniuun: it the atari of ths exparirnri 2t0 sic verc placed is
chc dust re on: 130 of these wars Strain c nico, and 130
rore Strain CSV black nice. Of each strain 30 -ere neies and 100 *cre fcnaics. Tisis sc:: ratio ras dictated Try space reruiuersnis, sines cdLe nice tena .o * a^.t end xis:. ce kept in snail groups, vhilo n m y feaalcs cay safely be placed in a sircls capo, m e tsicl r.urher of control nice ras X O f Tratn c c^urikuticn cirJJLnr to that of the exposed groups.
Ln order to folic; the development of tunors end to observe any po-cable aerlicj. onset ef tuners raaeng tho exposed nice, arpnriErotal oninals and control niresis were Idlled at regular intervals after the
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Quoooc. Asbestos Uining Assoc*
1 st Iritcrlxi nopcrt $-7-52
b e g in n in g o f th e exp osu re t o d u s t . The I n te r v a le ch o sen xt&te 2 f fc, 6, 10,
and Hi m a th s; the n r c t in te r v a l hns been cct for 16 n orth s. At each p e r io d 3k e x p e r im e n ta l and 31 c o n t r o l anirs?,ls r e r e k i l l e d ; o f each ijraup o f 31* a n im a ls , 17 k o t o S t r a in C and 17 B s r e S t r a i n C$7 b la c k . In' ach ca a e, th e 17 anim als in clu d ed h m ales and 13 fem ales.
1 7 . RESULTS
Tl:o o b se rv a tio n s cado a t each o f th e p e rio d s rhon * n jrw iff wero i m i ^ aro presented in tablo 1. I t w ill bo noted th a t the to ta l anchor o f
exassned in each o f th a d iffe re n t groups varies slig h tly . This v a ria tio n i3 th o r e s u l t o f a fen spontaneous d eath s in each group. Tho o b o a rv a tio rs cade in such eases have been incorporated in th e data fo r th e riant p erio d . In sany insoonces animals dying spontnncouoTy have boon eatea by th e ir cagem ateo. I t hao been n ecessary to d isc ard those animals com pletely from tho record of cspcrisental observations.
I t Bill os noted th a t B itte n s tr a in C there i s a hishcr percentage
o f tum ors among a c in a ic emposod to a s b e s to s d u st th en among t h e c o n tr o ls .
The se n s s i t u a t i o n io tr u e B itliin th e S tr a in C$7 b la c k . O bviously, th o
esM c o n d itio n i s tr u o a ls o o f th e c v c r - a l l fig u re s combining both s t r a i n s .
The o ig n ifican co o f e l l th o se percentage incidence fig u re s has been
te s te d s t a t i s t i c a l l y by means o f th e n cll~ recognised f c m i la :
5 Q \ i Tl'Ql * I"2-Q2
" 1 ' W
. trhGre
s.E . &L
- s t i s t a - d error o f d iif m - e .e s i n incidonco boipoon ta o groups = T o ta l number o f anim als i n th o group
*
*f
(
Quoboc Anbcstos LMrrlrg Assoc. 1 st lic e r la Report 5-7-52
Pl = Per c e n t o f pnrlrr.lr tvith t u t o r in a s p e c if ic group o f anim i
Qn 2 n ' " "
m t h o u t tumor i n th e bcgjc s p e c i f i c group
(71x3, 0 ! o 100-?i)
Cccrpaposding eyeh ole f e r cackhar group o f c n im lo
I t v H be r eca lled th a t i f an observed difference in percentage
ir e id o n c it l;atv;oen. t u o group3 i s g r e a t e r th e n t r i e s t o e sta n d a rd e rro r o f
th a t d iffe r e n c e , th e d iffe re n c e nay be considered to be s ig n ific a n t and
due to fa c to r s oth er than chance. I f th e observed d ifferen ce i s le s s than
tn ic c th e standard e rr o r , i t i s very lik e ly due sim ply to chance. In
t a b le 2 t h e observed d if f e r e n c e in th e in c id e n c e o f pulmonary tumor and th e
c r it ic a l valu e o f tp ic o to e standard error o f d ifferen ce ere coopered fo r
th e v a r io u s groups. I t m ill be noted by ccrrcaring th e v a lu es th at none
ox t h e e b se r v a u io n s made 'o d a te a r c s t a t i s t i c a l l y s i g n i f i c a n t . An
Gcanrple o f th e method o f c a lc u la t io n f o 21cr.73,
C a lcu la tio n o f standard error o f d iffe r e n c e fcctroaa o v e r -a ll in c id en ce
o f tu-^r:i in th e c o n tr o l anim als end in th e experim ental n ic e Iron d ata in
table 1:
#
In cid en ce o f tim e r s: Itaperiacr.tal c r iz a ls ?,$%
C en tro ! /tv?
5 .5
number o f a n im a ls o b serv ed : D ^ e r im c n ta l anim als
17$>
C ontrol animalo
IBI
c
wCibT?t
N
9 .5 n 90.5
179
*
5 .5 x 9l:.5
161
- V h.CO * 2 .8 7
67
2.77
2 x S .E . = 5 .5
Qcaibec Asbestos Mining Assoc, le t In teria Report 5-7-52
Thao a d if f a r e n c e u j r to-~5. 5' p e r c e n t i s l i k e l y t o occu r t y chanco* The
observed d if f e r e n c e o f h p er c e n t (9S - $$ s li.0) c a y th e r e fa r o have
occurred cIrm ly by chance d is t r ib u t io n o f e n is a ls and i s c o t s t a t i s t i c a l l y
.sig n ifica n t,
_
*""* * ... . ... '
_
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v. coreFurr
.
I t d l l be apparent from a review o f tab le 1 th a t th e experiment is
non .in i t s i s s t .Im portant: plinoa, The in cid en ce'o f pulmonary tumors has
begun to r is e fo r anim als k ille d a t the liiccnth period, both fo r th e
control anim als and f e r the
exposed to asbestos d u s t. The increased
incidence i s co re pronounced fo r th e group exposed to d u s t, b u t th e r is e
has occurred a t ab o u t th e coxa tin e in both groups. The d iffe re n c e s botnean
th e to o g ro u p s, however, a s h a s bos-c no ted , a re n o t s t a t i s t i c a l l y s i g n i f i cant. .
The im prcscica i s coined iro n cn in sp ectio n o f ta b ic 1 t h a t the largo
m e te rs o f animals k ille d e a rly in th e ccporiasnt aro w eighting the fin a l _
fig u re s and d e tra c tin g iro n th e magnitude of th e incidence o f tuner* I t
xcust bo noted th a t t h i s stu d y has bees an experim ental one and t h a t i t
has been noco952ry to rak e obsarvaticno by Id llin g anim als fo r study a t
regular in te rv a ls . I t appears tim t by users of a ra th e r involved s t a t i s t i
c a l procedure the d isp ro p o rtio n ate weighting o f the values by the data of
_f
.
th e e a rly observations can be elim inated. Thio procedure u i l l be carried
cut a fte r f in a l observations have been m do, ainca i t is too laborious an
u n d ertak in g to be perform ed a t th e p re se n t sta g e -nhsn t h e v a lu e s obtained irould be only o f academic i n te r e s t.
Jfriobcc Asbestos Kining A ssoc, 1 st Interin Report 5-7-52
* I t 's a y 'tie noted in p a ssin g th e t I f th e o v e r - a ll in cid en ce o f tu n er
none t h e exp osed aid m 3 s had boon o n ly s l i g h t l y c r e a to r --11 per c o n t
rath er than 9$ per cen t-- th e d iffe r e n c e bettraen tho incidenco fo r th e
. KP031 Croup and fo r th o c o n tr o l group would have been s t a t i s t i c a l l y
sig n ifica n t.
.
VI. SITLARY
.
experim ent concerning th e in flu e n c e o f Inhaled asbestos d u st trpon
th o in cid en c e o f pulmonary tumors in cd.ce has been in progress fo r Hi
so u th s. A nalysis o f tho re s u lts o f th is experiment reveals th a t thus f a i
( a f te r th e anim als have boon exposed to a sb esto s dust fo r li- months), tho
d u st has not exerted an influence of a degree su ffic ie n t to cause s ta tis
t i c a l l y s ig n if ic a n t a lte r a tio n s in th e in cid en ce o f pulmonary tu n e rs. The
f i n a l phases o f t h i s experim ent *.7ill be o f /great im portance, since a t th e
nosu r ecure. p e rio d when anim als vore k i l l e d f o r stu d y th e incidence o f
tu n e rs hau in c re a se d and th e incrcmoo ooems to be core pronounced anong th o
a n in a ls ccpcsed to a sb e sto s d u st th a n among th e non-expesed c o n tro l an im als,
AJVjje
f
-a-
I
Quaboc ABbcotos lin in s Assoc.
Ist.X a ta rin Report 5-7-52
Table 1
O ccurresco o f Pulsionary Tucoro l a H ic c C rossed t o A sb esto s Duct and i n liic o Kot Deposed to D ust
Strain o f n ico
Strain C (Toner s u s c s p tio lo s t r a in o f zsLeo)
Feriod of o b se r v a tio n
nan/chs
2
h
6 10 22;
Ntnbsr emrrLned: Incidence o f tuner:
S tr a in C57 S la c k
2.
(Tenor n o n -su scep tib lc
1
strain o f n ica )
.
6
2D
-
lb
*
Dunbar o ca r/n ed : 0
I n c id e n c e o f tu n er
Euaber o f E ico P ith tenor in tho creep
exposed to asboctoo oust
M ais
0 0 0 0
1
Fm nlo
0 1 1* 2
7
12
22
72
9b
12 Y 2b * 12. 0^
0
0
0
0
0
0
0
1
2
2
5
12
66
#5
5 - 85 s i>*9
Iunber o f n ic e r it h tuner in th e contra ;
group not exposed t d u st.
tteln
Fenalo
0
1
0
0
1 *
0
0
1
o
b
7
20
72
22 7 22 B 7 . #
0
0
0
0
0
0
0
2
0
1
3
20
69
69
3 89 a 3 .W
Ir.cidenco o f tunor i n both groups: 17 7 172 s 2.5?;
W M l s 5. 5?
aldgr.ant
4 '
. *
Table 2
Qucbac Asbestos V&xxLar, Assoc, l e t in te r in P.cport $-7-52
rifrc rsr.e e in Incidence o f Pulmonary Tuners i n i c e rjcpcsed to A sbestos Duct and i n Vd.ee T ot Eiqposod to Duct
Groups o f n ic o
conpsrcd
Straan C a sb estos group
vs . " Strain C co n tro l croup
S t r a in C57 b lu e !: asb estos group
vs S t r a in C57 b la c l: co n tro l group
A ll asbestos groups (both s tr a in s )
vs A ll co n tro l groups (both s tr a in s )
A H asb estos groups a t 10 and lii nonths
vs " A ll con trol groups a t 1 0 and 1U s o u th s
/ill asbestos creeps
(to ta l incid en ce)
vo
_
A ll groups *
(to ta l incidence)
Observed d ifferen ce In in c id en ce
rcr cont 5 .2
2 .5
ll.O
B .3 0
3 .1 . f
Trricc th o standard error o f d ifferesco
tier cent
8.8
S ta tistica l sign ifican ce of observed d ifferen ce
IJot s i g n i f i c a n t
6 .5
Hot s ig n if ic a n t
5 .5
Hot s ig n if i c a n t
1 3 .0
Hot o ig n if ic a n t
ii.8
Not s ig n ific a n t
The v a lu e s f o r e l l *jrou?s ( t o t a l in c id e n c e ) a rc based upon o b se rv a tio n s f o r th e asb esto s and the co n tro l groups and a lso fo r groups exposed t o too o th er d u ste r-iro n e d d e end quarts--in another expcdizant.
American Journal of Industriai Medicine 27:593-606 (1995) to'
COMMENTARY
Chronology of Asbestos Cancer Discoveries: Experimental Studies of the Saranac Laboratory
Gerrit W.H. Schepers, md, scd
This commentary challenges a recently published perception that Dr. Le Roy Upson Gardner had not actually discovered in 1942 that inhaled chrysotile fibers could induce malignant neoplasia in mice. The handwritten laboratory notes and some of Dr. Gard ner's slides have recently been found. They verify that the tumors he saw in the mice included truly malignant neoplasms. Gardner had by then also accumulated 11 cases of human lung cancer (twd' mesotheliomas) derived from Quebec asbestos miners and millers. An inhalation study designed by Dr. Gardner and conducted between 1951 and 1954, using cancer-insusceptible mice, yielded neoplasia risk ratio of 5.7 compared with control animals. The studies also showed that the primary effect of chrysotile is to cause epithelial proliferation in alveoli adjacent to bronchioles. Chrysotile type asbestos bodies were shown to remain only transiently ferruginous, but even though invisible in direct light they can be visualized at high magnification through use of phase contrast and polarized light micrography. 1995 Wiley-Liss, Inc.
Key words: Saranac laboratory, asbestos, history of medicine, experimental studies
INTRODUCTION
In a recent Letter to the Editor, Dr. Enterline [1993] seems to question whether Drs. Gardner, Vorwald, or Schepers, as directors of the former Saranac Laboratory, ever discovered, through animal experimentation, whether chrysotile asbestos dust is capable of inducing neoplasia. His interpretation of those documents he had available seems to be that Dr. Gardner had found in 1942 only autogenous adenomas in the lungs of mice that had inhaled chrysotile long fiber dust. Perhaps Dr. Enterline, who appears well informed on many matters, has nevertheless not yet read all that is available on this subject. Gardner had written letters and reports designating some of the mouse tumors as malignant and he attributed the tumors to inhaled chrysotile asbestos fibers, even though the mice had not developed asbestosis.
In a companion discussion by Drs. Egilman and Hardy [1993], allusion to corruption of the early scientific literature on asbestos cancers appears. This causes
Institute of Industrial and Forensic Medicine, McLean, VA. Address reprint requests to Dr. Gerrit W.H. Schepers, Institute of Industrial and Forefisic Medicine, 6527
Sunny Hill Court, McLean, VA 22101.
.
Accepted for publication June 22, 1994.
1995 Wlley-Llss, Inc.
594 Schcpcrs
me to wonder whether Gardner is posthumously and 50 years later accused of evil
doing. Dr. Vorwald is likewise cast in a rather unfavorable light,, but this is more
difficult to judge, as he actually contributed no personal work to the literature on asbestos' health effects. A further implication may be that Dr. Gardner was an
incompetent who could not distinguish a benign adenoma from a malignant neo
plasm, and that persons who never studied these cancers are in a better position to
assess their true importance than the man who discovered them. Most of these
suppositions are questionable. Dr. Le Roy Upson Gardner was the doyen research
pioneer and wholly incorruptible scientist of American experimental pneumocomology. He also was an experienced and very thorough, but conservative, pathologist who never made any judgment unless absolutely convinced of his facts. Most of his
studies were repeated many times with multiple variations to get at the truth. My interpretation is that Gardner had found in 1942 that the majority of the
mouse tumors were truly malignant. This is fairly clearly recorded in Dr. Gardner's handwritten notes, the originals of which presently are entrusted to me by court order. His ipsissima verba are summarized presented in the accompanying EXHIBIT. Fuller
details are provided in my (to be published) manuscript on the " Thirty Years of
Asbestos Research of the Saranac Laboratory between the years 1928 and 1958.' Dr.Enterline also interprets descriptions published by Schepers on animals that
had inhaled KAYLO (asbestos-containing thermal insulation) dust, as indicating that
he had said they had developed lung adenomas (Schepers et al., 1955]. This is
erroneous. In the referenced paper, it was stated only that animals which had inhaled
the KAYLO dust for up to 3 years, between 1946 and 1951, progressively developed
peribronchiolar adenomatoid epithelialization. This descriptive terminology was
newly coined for the paper, as there was no precedent guidance on what to call such lesions. From about 1930 onwards, Dr. Gardner had described similar dramatic and
unique responses of the animal lungs to inhaled chrysotile dust. No nomenclature then
existed in standard texts of pathology, this tissue response being something new. Gardner, as the first scientist to study these phenomena, had.to devise his own varied terminology, using phrases such as " peribronchiolar dust reactions in lateral alveoli
or " glandlike atelectatic air spaces around bronchioles." These terms, with some
minor variations, also appear in quarterly reports to research sponsors over the period 1932-1946. Dr. Gardner did not publish these research findings in technical journals, for his work was performed on behalf of industrial sponsors, ffom whom he did not have permission to publish. His terminology therefore did not again appear in public
media after his initial published report on his studies with " Kings Floats" [Gardner and Cummings, 1931] until Dr. Vorwald published an abbreviated version of parts or Dr. Gardner's 1946 " Monograph on Asbestos," in which Gardner's descriptions
were copied across almost verbatim, except that the mouse cancer data are not mentioned [Vorwald et al., 1951]. The next time this very distinctive chrysotilic
reaction was published was in the 1955 Schepers report on the KAYLO experiments. Since l had studied the Gardner experimental data previously, I was able immediately to recognize the similarity of the KAYLO lesions to those which chrysotile had
evoked in Dr. Gardner's othep experiments.
............................
Figures 1-4 provide examples of the abnormalities which inhaled chrysotile
evokes in animal lungs. These photos were recently made from lung tissue sections
of guinea pigs prepared in 1940. These animals had inhaled long fiber chrysotile dust
for up to 34 months in experiment 770 of the Saranac Laboratory, which ran from
Saranac Laboratory Asbestos Cancer Discoveries 595
1936 to 1942. The low power view shows that the cellular proliferative reactions in the lungs are focal or patchy and centered on terminal ramifications of the bronchial tree and interspersed between emphysematous, but otherwise unaltered, lung paren chyma. Higher magnification shows that the lesions consist of prodigious prolifera tion of epithelial cells lining several tiers of alveoli adjacent to the terminal bronchi oles. Asbestos particulates are clustered together in desquamated cells in the centers of the abnormal alveolar spaces where ferruginous asbestos bodies can be identified. Ferruginosity of these bodies dissappeared within a few months from cessation of dust exposure, but these chrysotile asbestos bodies could be demonstrated by phase con trast micrography, and tremolite-actinolite fibers in them by polarized light microg raphy. It is the presence of this foreign matter which differentiates these lesions from neoplasia. The epithelial proliferations look like adenocarcinoma, except for the presence of the causative agent. Identical lesions were evoked in the KAYLO study, of which asbestos was only a 15% ingredient. That these epithelial proliferations should be classified as neoplastic was strongly considered by me in 1955 when the KAYLO paper was written, but at that time I felt that this could not yet be postulated, because the KAYLO particulates were still present and I had no means to know whether these adenomatoid epithelialization reactions would be permanent or tran sient reactions to the KAYLO dust. I did not call these lesions either adenomata or carcinomata. Had I judged them to be adenomata or carcinomata I would have said so. I did suspect that these lesions would be precursive to malignant neoplasia. Had they persisted and enlarged after cessation of dust exposure I would have called them embryonating carcinomata. This is how chrysotile carcinoma often starts in human and animal lungs. The KAYLO study was, however, not designed to probe the issue of carcinogenesis. For that purpose the animals should have been allowed to live their full life spans in the KAYLO dust environment with one group taken out halfway and allowed to survive in normai air until death. This is not what the Saranac Laboratory undertook to do. The study sponsor, Owens Illinois Glass Company, merely wished to know whether KAYLO dust would be harmful to inhale by their staff or by end users. Dr. Gardner's endeavor therefore was to discover how soon the lung tissues would react to the test substance and how any tissue reaction evolved and whether the responses would likely be permanent. For this purpose he had animal clusters sacri ficed at intervals of 3 months, leaving very few at the end, when cancer likely might ensue. His task was to immediately warn industrial sponsors if any adverse reaction occurred, so that they could take immediate needed steps tq combat identified prob lems. His objective was not to find what the worst effects of the test material would be, but how quickly one could detect an adverse response. Cancer was not therefore an issue. Tuberculosis then still was highly relevant and a mycobacterial infection phase study was included, which fortunately yielded rather favorable results.
Did either Dr. Gardner or Dr. Vorwald discover that chrysotile causes cancer? Enterline seems to suggest that they did not. They both most assuredly did! How did I discover this? In 19491spent 3 months at the Saranac Laboratory on assignment by Dr- Anthony Lanza, director of the Institute of Industrial Medicine of New York University, where I then pursued post-graduate studies as a Commonwealth Fellow. I was also there as a representative of the Pneumoconiosis Bureau of the South African Government and m / assignment from the Bureau was to ascertain whether chrysotile caused human cancer as we already knew amosite and crocidolite did. The South African Government was considering legislation to make cancers of all asbes-
.1
f
A
1 i I'
Fig. 1. Photomicrograph of a midcoronal section of a guinea pig lung. Appearance at the end of 34 months of inhalation exposure to an aerosol of chrysotile at about 5 million particles per cubic foot of air at cage level. The dark structures are bronchioles with peribronchiolar cellular proliferation around them. The light areas are lung alveoli, many of which are overdistended. The bronchus shown at X appears unaffected, but a definitive judgment would require higher magnification. (Reduced 1.85 x from original photo.)
Fig. 2. 750 x power view of guinea pig lung tissue reveals the dense tissue shown in Figure t to consist of tiers of alveoli adjacent to the bronchioles, whose surfaces are covered by sheets of lurge epithelial cells. The lesion is largely an epithelial proliferative response to the inhaled chrysotile fibers. There is mild associated interstitial reaction. (Reduced 1.85 x from original photo.)
i
mmmmm
Fig. 3. A: ;
magnification j
having lived^ months. The An asbestos | magnification ; months follq ; , been render^ ' actinolitc fit
*,!F"
wmm
B
s
%
*1.
e end of 34 c fool ol air round them, it X appears rom original
: I to consist ge epithelial :rs. There is
Fig. 3. A: Ferruginous asbestos bodies *tauw^ 1^ l ^ ^ o Y S f i t e i o s bodies, the guinea pig
magnification. B: Fetricyamde np lonf [ ^ finhal8alion exposure to chrysolite dust aerosol for 27
having lived in normal air for 3 months
8 ,,,,r,cation ( x 2 500) because of oxidized femlin. C.
months. The body outline still is visi An asbestos body is again rendered v.s.ble despue ^ n g af g
contras, micrography at high P ^ been nonnal air for 7
magnification (X 2,500) having been
`" ^ ^ ^ d u s r aerosol. D: An asbestos fiber has
sf2 ---
..nimilite fiber. (Reduced l .85 x from original photo.)
***--
.
598
Schepers
tos workers a compensable disease. The advice received from England following
publication of Dr. E.R.A. Merewether's 1947 report on 230 cases of lung and pleural
cancers in asbestos workers was that the British Government was drafting new work
men's compensation rules concerning asbestos cancers. Dr. Merewether was not a
mere laboratorian writing cryptically on cancer for the edification of his colleagues.
He was a doctor and lawyer and His Majesty' Chief Inspector of Factories, a respon
sibility equivalent here to the present directorship of a combined OSHA-NIOSH. His
report went officially to the British Parliament. After he had determined that 13.2%
of asbestotics had developed lung and pleural cancers (as compared to 1.32% cancers
in persons with silicosis), the parliamentarians were constrained to take notice and
devise laws to compensate the affected workers and make regulations to lessen further
health havoc by asbestos. At that time South Africa was still a Commonwealth of the
British Empire. The governor general (Sir Patrick Duncan) received advance notice
of what was transpiring in London. The South African Pneumoconiosis Bureau had,
up to then, been the largest and most experienced world institution coping with
pneumoconiosis problems of industrial workers, but the Bureau's neoplasia experi
ence had been limited to cancer cases from amosite or crocidolite asbestos industries.
We needed to know what chrysotile likely would do with respect to lung cancer.
Implementation of health conservation measures at the Swaziland-Barberton
chrysotile industry had only just begun and I had personally, on behalf of the Pneu
moconiosis Bureau, conducted health surveys of all workers in these asbestos indus
tries. At the Penge-Egnep amosite facility I found that past dust inhalation had created
such disastrous health havoc that the facility had to be shut down for several years to
re-engineer less dusty production methods. By contrast, the chrysotile industry had
just started operations, so that in 1949 there were not yet any mill workers who had
been exposed to chrysotile dust for more than 4 years. I therefore was asked to inquire
in the United States and in Canada what was known about the ability of chrysotile to
produce cancer.
Dr. Anthony Lanza, who had published Asbestosis and Silicosis in 1938, told
me that, although he had experience with chrysotile asbestosis, he had not personally
seen any cancers. However, he had read about cancer findings by Dr. Lynch and Dr.
Gloyne, whom he knew, and by Germans unknown to him. He sent me to Shranac
Lake and Quebec to find more information.
\
At the Saranac Laboratory no systematic animal research had yet been done to
probe, the cancer issue, but there was a proposed study protocol which Dr. Gardner
had drafted to test the carcinogenicity of lifetime inhalation of long fiber chrysotile
Fig. 4. A: An apparent early carcinomatous response to inhaled chrysotile. The guinea inhaled the aerosol for 27 months and then was allowed to survive in normal air for 9 months before it was killed. There is luxuriant papillomatoid epithelial proliferation into alveolar spaces, x 750. B: A portion of one of the papillary structures at higher magnification. Note the morular pattern of the abnormal cells and their cohesive nature, x 2,500. C: Accumulation o f abnormal cells in a bronchial lymph node of this guinea pig. Asbestos structures are not discernible and much of the original lymphatic tissue had been replaced by abnormal cells. x375. D: A cluster of abnormal cells in the lymph nodes at higher magnification. Lymphocytes have dark nuclei and very little cytoplasm. The abnormal cells are pleomorphic, have abundant cohesive cytoplasm, and assume a morular pattern. They have destroyed the host lymphocytes. x 2,500. (Reduced 1.85 x from original photos.)
s guinea replaced Ication, ic, have hocyles.
I
r
Figure 4. (Legend appears on opposite page.)
T
li;
*i:i >.I-i,.':^' :
: i
*; i-: :
.1.. , I. -;
i
I
A
m It
* 600
Schcpers
dust on cancer resistant mice. Manfred Bowditch, one of Dr. Lanza s professors, apprised me of this protocol and he told me that Dr. Vorwald had been reluctant to get it going. Bowditch had been the Chief of Industrial Hygiene at the Saranac Laboratory, its deputy, and later interim director until Dr. Vorwald took over in 1947. I asked Vorwald what cancer research was conducted at the Laboratory on chrysotile asbestos. He said none had been attempted, none was contemplated, and none was needed, for in his opinion pneumoconiosis did not cause cancer, as stated in a 1938 paper by Dr. Vorwald and Dr. Kark. However, this paper was on the noncarcinogenic action of siliceous dusts and not on asbestos effects. The negative findings for neo plasia accorded with my own epidemiological findings on silicotic subjects, but
provided no enlightenment on chrysotile carcinogenicity. While reviewing Dr. Gardner's accumulated research data at the Saranac Lab
oratory, I came across a set of slides of mice, some of them with malignant neo plasms. These mice had been exposed to chrysotile asbestos, but showed no asbestosis, just cancers. I also found nine human lung cancer and two mesothelioma cases in a file identified as " Quebec Asbestos Workers." Dr. Vorwald gave no explanation for these items. Soon after these observations I visited Quebec. Through conversa tions with Drs. Kenneth Smith and Paul Cartier, the medical directors of the Johns Manville and Thetford asbestos industrial clinics in eastern Quebec, I gathered that these two doctors did not think their chrysotile asbestos caused cancer, since only six lung cancers were known to them in circa 6,000 current asbestos workers. I then told them about the 11 cases at Saranac Lake, which astonished them, for they did not know of their existence. Later I ascertained from Mr. Ivan Sabourin, the chief attorney for the Quebec Asbestos Mining Association (QAMA), that he had confi dentially hand carried those case materials to Dr. Gardner during the period 1944 1946. He said he had since then accumulated several additional cases of men who had developed and died of lung cancers after they retired from service at the asbestos mines and mills. He clarified that Drs. Smith and Cartier had responsibility only for health problems of the active employees. Mr. Sabourin was collecting the post em ployment cases, because the asbestos workers had begun to agitate for compensation for lung cancer in the same manner that gold miners of South Africa received compensation for contracting tuberculosis. Canada also then was a Commonwealth of the British Empire. Adding the 11 Sabourin-Saranac cases to the 6 current employees with cancers, there then were actually 17 known cancers in the chrysotile group. (Such a large number of cases in such a small and well-defined group of industrial employees suggested a significant problem.) At this point I mentioned Dr. Gardner's mice with the cancers, which seemed confirmatory. Smith, Cartier, and
Sabourin were all much impressed since they had no knowledge of this aspect of the
problem. When I returned to the Saranac Laboratory about a month later after consulta
tions with officials of Canadian industries, university medical schools, and govern ment departments, Dr. Vorwald took me to task for mentioning the Laboratory cancer data to Smith, Cartier, and Sabourin. This was to me wholly incomprehensible, as the Saranac Laboratory was a consultant to QAMA, whose officers they were. I also found that all the cancerous mouse slides had been lifted from the files. Dr. Vorwald said that Lanza, Smith, Cartier, and Sabourin all had homed in on him immediately after my visit to Canada. Vorwald said he was reprimanded for being derelict in letting me, " a foreigner," see the patently sensitive data on chrysotile carcinogenic-
ity, without b, the United St
During to Professors secrecy and c to Mr. Vandij consortium w, mentioned ca which double withdraw this Johannesburg from the Dep. I had to say. I
Why tli think it was ; nounced this dally on fint did to Johns paid. But D research in l pathology of asbestos mat they became not have dor. them that m; Now, in 195| had been but
Dr. En cancers. Vor contrived me then Corpora Quebec asbe found, inclu, Laboratory. | to the Soutli preemptive o Africa. I thir, cases. If he I his own rep^ 6,000 asbes(
The se exposure rot 1946. He ha asked him t president of This room h the then thrcj 14 months c
Saranac Laboratory Asbestos Cancer Discoveries
601
ity, without being warned not to talk about what I observed. 1 complied thereafter in .
the United States.
....
,
, ,
During my oral examination for a New York University diploma, I commented
to Professors Lanza and Bowditch that I did not understand why there was so much
secrecy and circumlocution on the chrysotile cancer issue. Next Dr. Lanza took me
to Mr. Vandiver Brown, the chief attorney for Johns Manville and also the asbestos
consortium which had sponsored Gardner's asbestos research up to the point where he
mentioned cancer. Mr. Brown had the original of my university thesis, a copy of
which doubled as my report to the South African Government. Brown asked me to
withdraw this. 1 told him 1 could not and that 1 already had mailed my report to
Johannesburg. Mr. Brown flew immediately to South Africa to retrieve my report
from the Department of Mines officials. This merely heightened their interest in what
I had to say. Why this excessive reaction over a few mice with spontaneous adenomas? I
think it was that Dr. Gardner himself had made the cancer discovery and had an nounced this finding in unambiguous terms. If some lesser entity had written offi cially on finding 81.8% cancers in mice exposed to chrysotile dust, as Dr. Gardner did to Johns Manville in 1943 [Enterline, 1993], far less attention might have been paid. But Dr. Gardner was the number-one authority on pneumoconiosis animal research in the United States at the time. He had been studying the experimental pathology of chrysotile for 24 years. The industries formerly accepted his word on all asbestos matters. It was only when cancer reared its ugly head in his 1943 report that they became frightened and backed off and refused further involvement. They would not have done so for mere mouse adenomas. Dr. Gardner had effectively warned them that malignant neoplasia is a specific effect of inhalation of chrysotile dust. Now, in 1950,1 had unexpectedly resurrected a discovery that they perhaps thought
had been buried with him. Dr. Enterline also questions whether Dr. Vorwald discovered any chrysotile
cancers. Vorwald did so, perhaps a little reluctantly. Possibly as sequel to my un contrived meddling, three relevant things had happened. First, Dr. Kenneth Smith, by then Corporate Medical Director for Johns Manville, promptly wrote a report on Quebec asbestos workers mentioning rather laconically that 11 cancers had been found, including 2 mesotheliomas. These were obviously the cancers at Saranac Laboratory. He knew, via Mr. Vandiver Brown, that I had put this detail in my report to the South African Government. Owning up officially to these 11 cancers was preemptive of such information possibly being released in the United States via South Africa. I think this must be the explanation, for Dr. Smith did not publish his own six cases. If he wished to announce that cancer was a health risk for chrysotile workers his own report would have been stronger had he stated that there were 17 cases in
6,000 asbestos workers. The second consequence was that Dr. Vorwald was impelled to set aside an
exposure room for the 1951-1953 mouse study which Dr. Gardner had designed in 1946. He had planned to use this room for beryllium aerosol studies, but Dr. Lanza asked him to implement Dr. Gardner's mouse study instead. Lanza now was vice president of the Trudeau Foundation Board. Vorwald had no option but to comply. This room housed 179 mice which inhaled chrysotile dust daily at about the level of the then threshold limit value (TLV) of 5 million particles per cubic foot of air. After 14 months of dusting, 9.5% of the animals had developed lung tumors. In a control
*
602 Schepers
group of 181 mice which had not been exposed to chrysotile, 5.5% had developed tumors. There thus was a risk ratio (RR) of 1.73. At that point (June 30, 1952), Dr. Vorwald's 5-year contract with the Saranac Laboratory expired. On Dr. Lanza's recommendation, he was allowed to continue working there for another year until the QAMA mouse cancer study would be completed at the 24th month of exposure. Vorwald did not finish the report on this study. Understandably, his mind now was on his future elsewhere.
When I succeeded Vorwald as Director of Saranac Laboratory, one of the first items Dr. Lanza asked me to tackle was finalization of this study on the chrysotile mouse cancers. By then all the mice had died. Mr. Stanley Kaszer, the statistician for the laboratory, presented me with a report on the mathematical findings. The neo plasia response to chrysotile fibers was strongly positive, the cumulative RR for neoplasm having trebled to 5.7 in the final months of the mouse lives. I also tried to check what kinds of tumors these were, but all the animal protocols and slides had been taken to Wayne State University by Dr. Vorwald. I therefore called on him and presented him with Kaszer's statistics and urged him to publish the data, since he now was free to do so, no longer being bound by contract with the QAMA sponsor. No publication on this very important matter ever followed. I also urged Dr. Vorwald to publish all the accumulated human cancer case data. He did not. He died in 1976 still mute on these topics.
The third consequence of my meddling perhaps was publication of the modified version of Dr. Gardner's monograph in 1951. When I was at the Saranac Laboratory from 1949 to 1950, no one was working on this task. I was never told by Dr. Vorwald of the existence of the monograph even though I had been sent to the Laboratory by Dr. Lanza to study all asbestos matters. I had become Vorwald's house guest during all the time I was there and came to know him and his activities very well. He was not working on this project. The monograph had been lying fallow for 5 years. Mr. Tom Durkan, who wrote most of the Laboratory technical reports for Dr. Vorwald, was not working on this monograph either. 1 would have discovered, since I used his office as my base. He knew of my interest in the former chrysotile research, as did everyone else. Gardner's manuscript was somewhere hidden in a box, which would now be in a forgotten place, jf I had not come there to meddle with the past. Perhaps after my exit visit with Mr. Brown, an executive decision was made to get on with the task which seemed to have been dropped after 1948 to judge by the chronology of interactions between Drs. Packard, Lanza, Lynch, and Vorwald.
Did Dr. Vorwald discover that chrysotile caused lung cancer? He most assur edly did, both in mice and men. The fact that he never published anything on such an important matter may be a mystery, but not if one considers that for almost three decades he had served as a defense litigation expert for the asbestos industries. It would hardly have been of value to his sponsors to permit release in scientific publications of the very incriminating data he commanded.
A few years later Brauh and Truan began recounting the Quebec human cancer numbers for QAMA. In their 1958 report they said they had identified 19 cancers in miners. This was a threefold jump over the 10 years since Smith and Cartier had counted only six cases. These 19 cancers again excluded the Saranac cases, which had grown to over 70. However, the Braun-Tnran report was limited to the epide' miology of lung cancers in working miners. They likely did not know of the accu-
Saranac Laboratory Asbestos Cancer Discoveries
603
mulaled post-retirement cases at the Saranac Laboratory. Neither Dr. Vorwald nor .
Mr. Sabourin would have had any reason to tell them and they never came to inquire
at the Saranac Laboratory, at least not while I was there. Did Dr. Schepers discover anything new about the ability of chrysotile to cause
cancer? There was not much left for Schepers to discover, for the animal cancer mine
had been worked out by Gardner and Vorwald. Schepers did provide the QAMA
sponsors of Saranac Laboratory research with Kaszer's statistics and continued to
report periodically to them and to their ATI (Asbestos Textile Institute) confreres, on
the occurrence and nature of cancers in persons with evidence of asbestos exposure.
Some of these case reports were later discovered during the asbestos litigation, which
started two decades later, some through raids on residual files and others via sub
poenas of company records. There was only one animal cancer study which Schepers managed to launch to
probe whether chrysotile caused cancer directly or as a complication of asbestosis.
This was funded partly by the Damon Runyon Foundation. In this study, rats served
as test subjects. One group of rats was exposed to chrysotile dust for 6 months and
then to beryllium sulfate dust for 6 months, whereafter they were transferred to
normal air. In a second group the beryllium and asbestos exposures occurred in
reverse order. There also was a 6-month beryllium-only and another six-month
chrysotile-only exposure group, while a fifth group of rats with no dust exposure
served as a further control. All the animals were killed at 18 months to identify
cancers. Through prior and concurrent studies, the Saranac Laboratory had demon
strated that beryllium sulfate would induce a predictable yield of lung cancers within
18 months after 6 months exposure to 1 part per million of BeS04 aerosol. The
theorem to be tested by brief sequential exposures to chrysotile and beryllium, was
whether chrysotile would increase the yield of beryllium cancers within 18 months.
Had this occurred, it would have been possible to conclude that chrysotile acts as a
primary carcinogen, without first inducing asbestosis, which was one of the then
current theories of how asbestos causes cancer. Terminating all the animals at 18
months had as a purpose to exclude the possibly confounding factor of asbestosis,
which would only manifest in the second year of life following 6 months of dust
exposure. This study yielded inconclusive results, since the beryllium interfered with
what asbestos did to the lungs and vice versa. The study did not advance knowledge
on the carcinogenicity of chrysotile. It seemed not worth publishing, apart from a
brief reference [Schepers, 1971].
.
I also wrote a proposal for a study of cocarcinogenicity of cigarette smoke and
chrysotile. This was presented to the National Cancer Institute (NCI) for funding,
which it declined. To my knowledge no such study has ever been accomplished.
There is considerable physician conviction that concurrent cigarette smoking and
asbestos inhalation increase the risk of human bronchogenic cancer. Dr. Enterline
suggested that one should not accept that chrysotile causes cancer without published
animal confirmation. He did not explain how it is possible to accept the cocarcino
genicity of cigarette smoking and chrysotile asbestos without experimental validation.
In vitro experiments recently done in this area yielded rather vague and inconclusive
data in comparison with evidence an inhalation study might have accomplished.
Apart from the foregoing, it can be safely concluded that Schepers did not indepen
dently discover whether chrysotile is carcinogenic for animals. He did not have to.
The problem had already been resolved by Dr. Gardner.
604 Schepers
In the discussions by Dr. Enterline, emphasis has been placed on whether D r.. Gardner had merely seen some autogenous mouse adenomas, having erroneously misdiagnosed these as chrysotile-induced malignant neoplasms. Although of great practical significance to human victims, it makes little scientific difference whether chrysotile causes adenoma or carcinoma or sarcoma. An adenoma is also a cancer although not malignant. Dr. Gardner did not describe merely spontaneous adenomas in the mice. He was clearly astonished at finding tumors of a more malignant aspect. The slides vanished, so that we cannot currently verify what it is that he saw. I do however have a few of the slides for the guinea pigs of experiment 770, which ran concurrently with the mouse study. Two of these guinea pigs seem to show early phases of carcinoma formation in one of the sites of adenomatoid epithelialization (Fig. 4). This supports Gardner's judgment on the mice.
A question is raised whether Dr. Vorwald expertly judged the cancers differ ently from the way Gardner did. I do not see how he could have. He had not studied the slides before 1949 and the slides vanished thereafter and are not mentioned at all in his 1951 report on Gardner's asbestos research. None of the animal protocols shows any participation by him in the microscopy reviews of the lung sections during the period 1933-1941, at which point he had joined the Navy. On his return to the Saranac Laboratory, Dr. Vorwald served mainly as the administrator of the Trudeau Foundation and performed no histology tasks. All the photomicrographs in the 1951 paper had been made prior to 1946 by Mr. Edward Gockler, the laboratory photog rapher, under the direction of Dr. Gardner.
Did Dr. Kenneth Lynch judge the Saramac Laboratory chrysotile cancers to be mere autogenous mouse adenomas? He was briefly involved. Soon after Dr. Gard ner's death in November 1946, Dr. Edward Packard, who served as temporary Medical Director of the Saranac Laboratory, mailed Dr. Gardner's manuscript and the animal protocols to Dr. Lynch for editorial refinements. Lynch also came to the laboratory, perhaps to look at the slides. Lynch was an important connoisseur of asbestos matters having published one of the first three American asbestos cancer case reports in 1935 [Lynch and Smith, 1935] and later describing 40 examples of the pathology of asbestosis [Lynch and Cannon, 1943] in deceased workers of asbestos textile factories. Dr. Lynch recommended that Dr. Gardner's manuscript be published unmodified. If he had judged that Dr. Gardner had made a' grievous interpretive mistake in calling some mouse tumors malignant, when they should have been clas sified as benign adenomas, he would have performed a disservice to the science of pathology, of which he was then a leading expert as Professor of Pathology at the University of South Carolina. He seems not to have questioned Dr. Gardner's eval uation of the tumors, but did express puzzlement over Dr. Vorwald's disinclination to release Gardner's cancer data in the planned posthumous publication of the Gardner monograph. This manuscript never was published despite Dr. Lynch's recommen dation and even though the Laboratory Board had set aside funds to have it published as a memorial to Dr. Gardner. It is also to be noted that Dr. Lynch initiated his own animal experimentation studies on mice to test for carcinogenicity of chrysotile. These ran for a number of years. By 1957, Dr. Lynch and colleagues had found that chrysotile evoked many tumors, but his paper did not reveal whether these were malignant. However, in 1962, Dr. Lynch invited me to his department in Charleston to advise his staff on how to conduct animal studies.in such a manner that " the same malignant neoplasia results" that had been achieved at the Saranac Laboratory could
also be a aerosoliz aggregati him, but and facil Saranac 1 a convict experime plished bi for nothii] a rcsearcl ports on sponsors
Dr. extend th his own f that every that all he new aven, to conduc mice) wo lures, abs numerical prior wor additional about can Gardner t research rj diseases 0 comparati responsibi indicates Ij as a dying was laudal of truth, f comments
REFEREfj
Braun DC, Tj Ind. H
Egilman, DS Med 3
liulcrlinc, PH Gardner LU. I
dust--| Lanza AJ ( Iy Lynch KM, (] Lynch KM, S
J Cane
J
Saranac Laboratory Asbestos Cancer Discoveries 605
ako be accomplished there. I found that they had not fully fiberized and adequately
iS
asbestos, so t o . their animals had inhaled relatively U |* a c ta j U e
Saranac Laboratory. Despite this frusiration, Lynch's actions seem to reflect clearly
a" "
^
Saianac laboratory had holy ,,duc
'S T
" - " n d T S r p o I d t QAMA in .952 and 1954.
for nothing after that had been published from the Saranac Laboratory. Dr. Lynch, as
a research consultant to Raybestos Corporation, would have receivedcopie r i j S S Laboratory research data. Raybestos was one of the QAMA .
1
"
funding from the NCI to
S w o i w " ^ n-S .T rh a p s because human beings am
prior work, but
fcZ T k n T L a y
research responsibilities on silicosis and tuberculosis, which then were maJorJ " 11^
ro rg e a -
" i sr
of truth. He deserves praise instead of the iconoclasm seeming y imp comments.
REFERENCES
B,, u,, DC, Tnran TO (.058): h a epidemiological stud, of lung cmwer in t a n miners. A.M .A. Are . S ^ J T o H y ' ^ t i S r Manipulation o l a t , arfmal I - * on ^brnno. c n c . Am 1 led
Lynch KM. a WM 11943): Asbc.m.s: Analysis o lt m y n m r o p s ^
Am
Lynch KM, Smith WA (1935): Pulmonary asbeslos.s III. Carcinoma ol tne .ung m
J Cuncer 24:56-64.
., I'k'.'HH.... ,i, .' Viti
606 Schcpcrs
Lynch KM, Mclvcr FA, Lain JK (1957): Pulmonary tumors in mice exposed to asbestos dust. Arch lnd
M erew lthcf E R A ^ m ^ -C hief Inspector of Factories report for 1947." London: His Majesty's Sa-
tioncry Office, pp 79-81. Scheoers GWH (1971): Lung tumors of primates and rodents, lnd Med Surg 31.I-/U . Schepers GWH, Durkan T m! Delahant A (1955): Effect of inhaled commerai hydrous calcium silicate
dust on animal tissues. Arch lnd Health 12:348-360.
D . . .. ,0 ,,
Vorwald AJ, Kark JW (1938): Pneumoconiosis and pulmonary carcinoma. Am J P atnU 4.w - x i .
Vorwald AJ, Durkan TM, Pratt PC (1951): Experimental studies of asbestosis. Arch lnd Hyg Occup Med
3:1-43.
APPENDIX Typescript Copies of Dr. Gardner's Handwritten Notes
Tum or findings in 11 mice exposed to chrysotile aerosol
Mouse no. 2-12 months. " Tumor mass in right lung-- no mtastass. Debat able whether a chronic abscess has resulted in acute or chronic organizing pneumo nia-- epithelial metaplasia or whether there is a true tumor. It ts different at least Horn
the ordinary mouse adenoma."
................
.,
Mouse no. 3-12 months. " Fibrosarcoma? of mediastinal tissue with retro
grade extension into the lungs."
......
Mouse no. 4-18 months. " Well marked epithelial hyperplasia in terminal
bronchiole. One small adenoma."
...
..
Mouse no. 5-19 months. " A large tumor mass involving almost the entire lett
lung. Large papillary adenocarcinoma, replacing a lobe of the left lung. Undifferen
tiated sarcomatoid tissue in the lung next to the tumor and mtastass to the liver and
Splee Mouse no. 6-20 months. " Partial collapse of hind legs. Small localized ade
noma in right lung." No microscopy description. Mouse no. 7-24 months. " Scattered nodules of tumor--round and white in
color. Rather large localized adenomatous nodules involving pulmonary parenchyma
aild ^Mouse no. 8-24 months. " Focal areas of cellular proliferation in walls of
respiratory bronchioles." Mouse no. 15-18 months. " Small localized tum or-apex of lower lo b e -
adenoma." Mouse no. 17-19 months. No tumor described. Mouse no. 18-20 months. " One tumor about 2 x 3 cm in upper portion of
lower lobe on right. Abdomen--Scattered throughout are many tumor masses of varying size-- one of which seems to have surrounded and obstructed the large
kWeMouse no. 19-24 months. " Ope large tumor-like mass in middle third of left lung. Well circumscribed and measuring about 6 mm in diameter. Adenoletomy-
ma? Since Dr. Gardner judged 9 of the 11 mice to have developed neoplasia, he calculated an incidence of 81.8%, which was Six times more prevalent than tumors usually encountered in this mouse species at the Saranac Laboratory when used in experiments other,than with chrysotile asbestos.
LETTER TO 1
II Re: Epider and Spont
Key words: occup
In their c exposure and sp studies strong f( and exposed abc evidence is hard
Thus Ales exposure to mci abortion but als factors, and the previous losses, though only 319.
In the firsti abortion (per 10 mercury) and 7. 141 of the 239 < cation was incoj centration was n| below the 1 p.g/1, the exposed cata to 14.3, whereas unexposed pregi abortion rate inj Armitage test ga marginal differej dicated that onljj level of significi paternal urine g
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477 FOIST AVENUE. NEWYORK li. N.Y.
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Nr. J. P. Voodard
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I l nturnln tin alnutes of our Mating a t Saranac Lake. I ande com ainor eorractlcu la paacll which 1 think are dear.
I think you did a recarkf.ble job particu larly whan wa consider the sida Issues that vara dls< cussad as wall as the drumtic natura of the confer ence.
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X. Or. tehs* bald th at hi I t not j*pared w eawy jo t p ro jte t as mantianad la (1) tberrtf th a t Dr. William S alth , tlong
v lth Dr. Sutherland associated w ith him,, is doing scot of th is w ith f la tly ground asbestos, es w ell as with scma other noteriolfl.
2 . Dr. Vorvald gee* the following inform ation about p art <2) of the program, which, of eeuraa, Is given in a o rt d a ta li in the Saranno I#eboretory*s Proposal of SapWnbw 21, 1950t
a . Set ip a program oeeaistin i f 300 animals to be subjected to sabeatoa and 300 control animala.
b . The program ia lik e ly to la s t fo r two jo a ra .
a. It w o ^ probaMy Uko two marntoo to got tmtogh of the rig h t kind of animals ad got under woy.
d . Quoting Dr. Vcrvaldi "VO-hope to ahow or prove th a t canoer incidence ia not increased among those animals van i f ducted.* I t wee mentioned th a t such raa u lta are on the b asis of animal experim entation, the re s u lts a r t, speaking, tru e only of animala, and i t should be realiaed th a t tha scia ra a u lta might or night not hold tru e in the oaaa of banana.
I t vaa agreed th a t, while the long-range pregrm 1# going on, flaronao would previde each four months a progress rep o rt on tha work.
hors was sema question as to bear complete a pregreaa raport^ ihould be and i t waa agreed th a t a progress rep o rt might w all * o f no wore than two typew ritten pages to show in oonaiao formi
a . The work th a t has been am pleted up to th a t timo.
b . Sow the work la prgreasing a t the moment.
What tha futura wmrk laoka liba U . , aa to whan may ha axpeatad and wbathar or mat the prograi ia ahaad of schedule or behind schedule, and by how nueh.
d . What general eonlaee there are, i f * r , a t the m nant, vitheot giving detailed data an tha wort.
X. The present idea la th a t the two-year pro"r*i can be u*'*?*1 an aatim ated co st, a shown in Saranac** Proposal of eptembar 21, 1950, of *16,000 fo r tha f i r s t year, and *10,000 fo r a*004 year.