Document 7O7d88rLbRO1pZ0JEyxK7op2j
l THE CONCENTRATION OF LEAD IN THE PLASMA OF HUMAN BLOOD IN RELATION mo EXPOSURE TO LEAD, LuAD INTOXICATION, Aim THE ADI-IINIETT. AT ION OF BAL
Henry W. Ryder*, Jacob Cholak*21, and E. A. Kehoe2
It is commonly inferred that the concentration of lead in the
as it does in the whole blood,
Qf
plasma of the blood increases/with an increase ih^Sbsorption/ lead
on the part of experimental animals or men. It has also been
supposed that such an increase occurs in association with the onset
,
and thcl-r associates (1 and development of lead intoxication/,.and: Smith and Kathwei]/believed
increase. they found evidence of such an as2LB3gaBna^bsi^. (Previous work in this
field has been summarized by Bambach, Kehoe and Logan (l; in their
study of the plasma-cell partition of lead in the blood of rabbits.)
: r) Analytical data gathered over a period of years 3eemed to justify
doubt as to the validity of such inferences, and the matter has been
investigated systematically by measuring the concentration of lead in
the plasma of persons with different degrees of exposure to lead, with
and without lead poisoning, and of men in whose blood the concentration
dithiopropanol of lead has been altered quickly by the administration of^BAL).
The quantities of lead in samples of plasma obtained from the
blood of four groups of men observed in the years 194 p-1947 Have been
determined,, .and ithe, results. 1. 19 Garfield;Place, Cincinnati 2, Ohio.
N 24974
? or.a or, et
0 1.C n& : v^-2. 0.0,Cl .iP
:1p c : rd .ric.-ir.ietioauiy, in
a c -s o -,
' o -j - -y> ti - 0 -- ' rei n./.- n_\ e^ .j crs i; ,;o "
2 ; e o-.1-5 ' . Ci , i o r;
i
r ao .
jo
' I .n --
r?ane.
rj r* -n r, T n
: i ' ' - -: i
. .1 n b ' r cl i c a ii" r ~~ 1 c o
nee. -crc ; - z a c-x.i.ot : <= nus 1/sec. " e t a t i .3 f, i c a 1
that besend I'or tneir **nIid!.t--
IP C'5CC-HC 3
. r ? e of .scatterin' oicic; "cs -.a c 'c Ic c 'mp of' tne ''crf'^ntrptlon.
cue rata are cracsi orneci c-.. o _ar , c:.^is , n re ae v i.as i zi. a
re n s l or. ai*e
< _ . j. . i .
: o r. o e i i r a t i on (hie-, lb ana ko)
rata c.,?se oovert inua
ilotioal ir.3fchoas ive efficient end .Anbiasod estl:r
:S yaracietsrs that characterise t;ie fata.' chic t.:e errors
of t.ae analytical ,,,etnoa2 ax-? rfl-iciv5. rctner bn an .icccljc?
can be also visualised, c ' ex ?re ssirr- ^ ?e a. xunt found in
cancl^
Ci .X w u1 e .aiesncua o.
.' cuna ;.r .vim.'.e ! r
mta :i':n tic aecojid oaniu ent, are -ilosted
iO:'
91 UC
.licv rut i. an
LO .a...u air. -i.r I 01891
rCi c r r ^ 5 ci' .re ;ar"j ,.e'"j;*3 'Vr
roups ex ::an, cn =
-r ou >s o o: ibir.ed
". 3 s pscitro ` i's ri c-i ~ : i~cr!3 ol ffer-ences -.rpa : , . - o
i ri
.3 columns 1 and 1 relate <o fc.it
efcv/e-en consecutive s articles as estimated. by eacn r.et-:
ie i ir.~r 6:1
. n J.G..11 Cdoi; Mi
xH xerj GOi icn !*no -r t
nil" sample \va s loss man that in toe second;
xe leans of t ce ri.rct -lanolas mere e>3.2;.- ana oa, ,1
cono, onr-t r\o
ere -e . t>ucii differences ore founn fre-. aentl
on cos basis of ca^nce, os s:x;n n :
"r.:: tea'
c.f samples .. and & oere analyzed tne sane a a/,
ao.ole ,;as aianaled separately after it not collectca
absence of a; significant sear ciffersnce c*
i O C
.ndicates til t there is no cent a mration i-esraoin ir
on tr ecu ctx.cn ^toe --e ti le into tne min; cne 'ico.;
i -c
ere a Lie no'
j_` n o - i n C 0 ;3
' ^ 07* nr^ f.*^
ier; iithenja t u
,,i.so(ie r cncn
n o .13 v h r unce c t s > t 1 a f. i tic o' 1
nt
* a, UP. ? > .V' ) .
n uWgI.Li .J, T A
1 01392
oWO iLL.v.. 1 J -/ 1C -l 1 ' . 3 U .101 i 7 1'H.d. ~ 'a ;-.-i. 6 p-i~ ; - *-p
. > > ( * , > M'ri.J p
If i t p.". o rt an c e is t r s peer t - -a ->= ..3
'i'' f
ys tern at I: if fersrce cec ?9n ths tv/"> .e tomi . ' -> - n, -')
is s pec or or:ra phi c -.at ho a runrirr- 57
.3 . T. ^ ^ '
on one cv-=r:ape. -xa.'inatlor. ofl one ori. inai nna '' 1-Vo ~ .a ! i
-Ov;s t.iis to 03 due ir; lame cart to one low s ?ec cro-raoni
re suit s on tns rxv?
)ies of l!:ron, anu c .? last
on nul , in ootn on::.piss A ana f. osople3 analysed spactroscopica
on otner* nsn none the sane nates -ere not v-nlfor;r.l low.
The wo 1 no of chs sa:r. cles aralnea as a1
, -ii.U
<nr.A cs yn - atior.s ojf lead round were one sa-r^as -.Low fou;
in other i,en: in the nrouo. i'he su.v.oles taken tor
were alio sots of tsose taken for the colororr.etr i c araloui:
the discrepancy could not have been cue to the
and diluting'- of the say cles. .these two Ter, ha:, ruh a different
type of exposure to leu a c.ian *ny of tn.e other
keo, wl trout a jci.sk, -..si rip air ...c inters anu cor ones
humanclinc a factor./ iornerly used in tn..s nanufa cture of
-.it 3 lord py t . o "Old jPutch" -rocess. they we re
.ten . r cos 3 nee .> j.tn
j'/- j
"h r*) )i?s r.sn one sc licte-.i
ootairiea on 3rc; dul -/os couuied Tor* .or-?
fol' o '/ Lii
'o3ur s, o-scause or" ere oe "3iscenc? o
`.7:11 C-l
nsuxti . 0 2Tc.mt I'lst stated w9 s an eoor io.^1
>0 '. { r* ~ ~
r, a
i
OO O A 1 :oae 01 acute *aad 00 i serin".
116 3 0 0 X''**' 3 i ne i. L o t 0 rl "i 0 C '1 f I3 ' , 1X o
)In G 73">'>0 aXiOJ.''
ur ir." a
i n t res '. ' iu . - a 3U:i:0-I' Cl" sarolSS fro:'1 0 th/s
.;".en 1 i t r 00.1'iea d eross 01' exoosune to different ovoes o x *
".ax x r ;.ou.3 ie a d oust or fume sere bein' analyzed in one laboratory
d xxCi.
.vnlcri no systbuati0 difference oetv/een me
/' )
.-.eu.iods
observed. In beta of these len one sisters ti<
difference tietv/sen the .set nods us of foe same eras;
:e e uro rephi e method a varantno 70 and. 7of the- citklzone
ne-thed. The differences Lr. all likelihood could not
;n aus to Kind on sauiolin;:, since the probability of such
on occurrence would have oeer less then 1 r. y tncusa.no
esc:: c-1 se (Thole ~)
ioave no clinical e.\ donation to offer for
rer .osax1 * Sir' din .
nc: s of cue
PI A <1 A (O /! U I 5^4
- 1 ...
: c r?a shouailv .au-e
act Mat
xhciicate f--.t
L/ c _* _ x"1 ~ * * ^0 r' c ^ ^
'3
v/o -.'.s taoas', ana t na a suca d ifTerences are far
or.o me
MOGan
;. .anaG'
" ,<? v l -i 0^ ms .
amount (4-25,;) the7 ai'e a:,.all, ,,?.er. measured 0.* one J flc ucial
limit-s-::- of a simple sample by either method (iyOy), by me ranee of variation of clooo lead (0.01 to cv 1 r.n
over 10,000;.), by t.ns cvera ~e . iff erence ret.veer.
lead: o 0 mn v/ithout ocouoatlo. el exposure to lead auci ten
.'/ltd lead poisoniny due to omvpa c ional exposure to lea. oust and fame (9.0a? an: 0.2? my,; , 1000 ) : -n r>
y fiducial li.tit^ of ten withomu occupat 1 trial exposure oc
lean and t:e lo.veri.y f iv.ueial llmi cjf of ,,sr. ./itn lean poisoning
due to occupational exposure to lead (0.05 and 1.0 try,, 100;, ).
Table f also indicates that in certain -roues of
men the cpecfc;rorra ohic .etnoa ""Ives s/sue -.at i call- t.i
'7X '1 h S h ylH T", h r-=> :;i f, ` 'i.fi
= r* > ~ y| q rmj .r. <7 ,o [ f
aq :
1 -L C . 3 tutist i.ha^l"` si t P Ciee.nt. it. t -e -roue of misor.ed
p> v- - on o?tea with
in o -ic.; u. is c e taj-ac ic . if f orenco
-"I.
KWSWKE-'TSB
1 ' v-d ) : o a T r
ill
0 0p n7 5r
-iCfS t N v X'aui-3 m - .0
:o
:.ie
w - . . -- .' L - L
' nor.' r.,oe ;i;en. ana once oenaeru
.'.ount of 1
1 r> o r - o one c:\ ,'oi..a t
rsoenoe
-coerce a xoaa ael sonLn"
systematic. ciaviaoicns are r.oat easily oxolained acue r,
an an usual, but not reo.aj-kaole , candor, ear.1 jliny effect ; once v\ f`-* -f11` ".r f* * p c ')
?7r.oar '."or oi cr.s vorianc O r . C; ,-S -
:o r'ucif.ca
cual to ace c nroa ri sen o i cue e a n, for his vrj.urc.vs
y v'O
r '[ =*
o i' 'co-e errors ct : oe -ero'-oc
'ariur.css are e-use of the difference? ) r; t'e ' '.ref e;c e
. /Oi I- ',0.0
r ~l O
i:;oles A ana a ./hen eusvred i y
This is to 03 expected, for each pair -f v:-...v>los u: analysed
the atune uay, and. all the sauries v/er anal72eu u aun a
oerioa of two rr.ontns. fhe variance of the ui r,ni tone'hihrrca
was 3 mailer than that of toe t, pec tro rapui c i.etnon, c U w 1 : O
J7
.ynifloan sly so (e , or c\ = 1., ? >10,.}; c.ier- fore ones
'rar Ic.nces !:a"; be comb tree; to *?i ve a rore rella ole esti.aa te
variance of the ... i yf-> rence 3 . '' ve cov.bl ;'.si vari an ce
rt : re
>OUu "..LO3
li 01896
Table 1
Employment Data on Insulating Cross In Various Localities Including Those Selected for study
Location
Date of Start of Operations
Kumbci* of Men In Prosertt Crew Groups d ao to Years of Bxoosure
"Under 1-1.9 2-2.9 3-b Total 1
Percentage Original Cj How Employ*
-ist Oranere. J?.J. J'a* 1932 _...........
13 h ...33 .... .......100.0
ndianaoolis.Ind. June 1952 inctnnnti, Ohio' Hoy. 1952
1
3 - 3_______
100.0
1 1 ... 3 .......... ......66,7
loveland. Ohio - -Tan. 195a __ . . 1
ittsburrh,?a, ... 'larch 1955
1
oaten Mass. >lto Plains,0.
July .1935 _____ 1 nov.... 1933............ 7*
\
.. 3_
? 11
.... 83
3 - 3...........
h
13*
..... 66.7 66,7 . 25.0. ...
100.0
altlnore* !!&.
June 193k
Ibanv. H.Y.
Sail.. 1933
/
ofcal for All Loc nlltios Listod
/
on Selected.for Ltudy Indicates Lion Esnzninccl}
1 If
1-3 23 13
13...... m . Ik ..... 11
8
5 10
k
*
k* M....... 27
80.0 9
0
ss^^sassssrsss*
nu p6 GJ
Table 2
Dust Oaunfca on Semples Obtained Daring Insulation of a Residence
Description of Sample
Sample el, during hand packing
near worlsaeft at 5 ft.
_____
above. floor,............ . .
Sample #2, during hand packing 2 ft, behind, a workman at level of face
ample #1, during blowing 3 ft, behind! a worlaaan bales? level of faoe
lample #2, during blowing 1*5 to aide of work man. at face level
ample &3 during blowing,
at air pump during focdlr.r, at face level*
Volume of Samp>e In cu.ft.
5.5
5-4
4-93
5.0
10,0
;V> "I
Humber of i4tente in Thousands
nor cu. ft. after subtracting bl
Average of three daunts
Average fc site
310
220 130
6,000 8,200
7&>
/
r)
7loo
0
Tabic 3
\
Distribution of Hen Engaged In Insulating Buildings with Eagle-
Plcher Rock uool
According to ARe
Age in Years 20 - 2k 25 - 29 50 54
33 -39 4o 44
45-49 50-54.
Total; / ~ j
/
Frequency 2 9 5 h 2 2
3
27
o-i1 00 O O
I Tahlo k
Distribution of Men Engaged in Insulating Buildings with EagleRicher Rook Wool
According, to Sygtolla Blood Fraaeure
&T3f Of Bg loo -- 109 110 - 119 120 - 129 130 - 139 11*0 - 149 150 - 159 160 - 169 170 - 179 180 - 189
Total
Frequency 1 9
U
T 3 1 0 0 1
27
01 9 0:0
Distribution of Man Engaged in Insulating Buildings oith Eagle?Ichor Rook Wool
According to Dlaatollo Blood Prosgaro
fPu&tM 60 ~ 6k 65 - 69 70 - 7k
75 - 79
80 8I4. 85 - 89
90 - & 95-99
100 - 10k 105 - 109
fotal
Proouoncy 1 2 3 3
7
k
6
.0 /" i 0
1
27
i 01901
Table 6
Distribution of Men Engaged in Insulating Buildings tilth Eagler'icher nock v/ool
According to Leucocytes la the Blood
Leucocytes per ' ___ 0*. S5KU.______
6000 - 6900 7000 - 7900 8000 - 8900 9000 - 9900
10,000 - 10,900 11,000 - 11,900 1s2,000 - 12,900 ' r 13,000 - 13,900 16.000 - 16.900
Total
Frequency
2 in* 5
11 3 2 1 1 1 1
27
MtaMWkrtw*4*
Distribution of Hon Engaged, in noula ting Buildings nitl; Bagloiieho ,:ock . ool
Aoco.T-dln/T bo Erythrocytes In the Blood
Erythrocytes por e# ran. in Thouaanda
-3100 - 3500
3600 - 1*000
1400
1*500
1*600
5000
5100 - 5500
56o d
6000
Total
Frequency
1 0 n 11 2 2 27
01 9 0 0
Table 8
Distribution of Hen Engaged in Insulating Buildings with EaglePlo'aer Hook Wool
; According to Henaonlobin Percentage of the Blood
Percentage of Herao^obin 80 - Bk 85 89 90 - 9k 95-99
100 - 10I4.
105 - 109 no - nii
Total
'
/" !
(
/
Frequency 3 0 k 5 13
0 2
27
V& a 01904
Distribution of lion Ensscod in Insulating Du tidings with Bap,lo^iahar Rock '?ool
According to the occurrence of Stippled Erythrocytes In t^e 31ood
stippled Erythrocytes per gift? Fields
0-1 2-3
h- 5
6-7
0-9 10-11
i>.0 Total
Froijuency
12 2
It
3 3 2 1 27
01 5
-i
Table 10
Distribution of Men Engaged In Insulating Buildings alth Eagle Ploher Rook Wool
According to Load In tfre Blood
Lead In Milligrams per 100 Gragg Blood
0.00 - 0.009 0.01 - 0.019 0.02 - 0.029 0.03 - 0.039 O.Oij, - 0.0I4.9 0.05 - 0.0*19
Total
Frequent?
0 0 k 9
12 2
27
)
/
Mean Probable Error of Mean
Standard Deviation
0.006
+p. ooS
>/
Table 11
Distribution of Men Engaged la Insulating Buildings with EagleFlcher Rook Wool
According: to Lead f.n the Urine
Lea l In Milligrams per Liter of Uring
0*00 - 0*009 o.oi 0.019 0*02 - 0.029 0.03 - 0.039 o.ok - o.oU9 0.05 - 0.059 0.06 - 0.069 0.0? - 0.079 0.08 - 0.089 0.09 - 0.099
Ho Inform fcl 01^ TotdL
^
y
Frequency
0 8
k k
1 1 2 1 1 1 k
1
CVI
Mean Probable Error of Mean Standard Deviation
0.037 +0.00l|. 0*025
oFour Impossibly high results are not recorded since they were obviously contaminated In the process of collection*
Table 12
Distribution of d&a Engaged In Insulating Buddings with Eagle-
Plotter Book Wool
According to Arsenic In the Urine
Arsenic as ASgOa In Milligrams gor Liter of Urine
0*00 - 0*009 o.oi - o*oi9 0*02 * 0*029 0*05 - 0*039 o.oi* - 0.014-9 0.05 - 0.059 0.06 - 0*069
y' 0.07 - 0.079
j 0.10 - 0.109 0*12 - 0.129 0*16 - 0*169
.... .no. Xnfoiwation *.....
Total
Frequency
8
3
2 1 2
3
1 1 1 2 1
27
Mean Probable Error of Kean Standard Deviation
0.0U3C
p.o06 4H0.01&
o Two samples were of insufficient volume for the analysis* s
i 01908