Document gEg2qybkneng6Emy7jNJJrd5e
ANTWEitp BY
TZSTING RESTILTS FROM JUBM, 1995
1. Pu=)oso of the Blood Tostina Procr=m (STP)
Blood testina for the Presence of FC 95 (?FOS) and FC 143 (PFQR) was cc lated at the Antwerp Plant in June, 1995. This was undertaken to auantitate individual exposures as well as to cain additional insiahts into the mechanism of exposure. Svecificallv, the followina insichts were obtained throuch this vroaram:
A. IncLividual measures of PFOS and PFOA, chemistrv profiles, blood counts, and occupational histories were obtained on all Participants. (Ftedback to individuals has alreadv been done via indez>endent comunication. A samD7e of this lerter is included in the infoxmtion iDrecedinc7the
B. Areas within the Antwe= facilitv were compared to one another in te=s of individual 6=03ures.
C. Co=arisons of exposure levels were made to other fluorochemical manufacturina facilities.
D. An examination was made of the relationship of fluorochaulicalblood levels to other laboratorv Parameters.
2. What was dme
This ;)ro=am consisted of a medical and work historv cruestionnaire (see attached), blood chemistries (lipid levels, liver function tests, kidnev function tests, blood sucar, calcium), blood counts thamoclobin, homtocrit, white blood call count, Platelet count, differential counts), and blood levels of PFOA and PFOS. In addition, for those workers who were felt to )iave the Potential for more exposure blood hormone levels festradiol, testosterone, LB, FSE, sex hormone bindina alobulin, cortisol, 17-hvdroxv Prooesterone, TSH) were also done.
Multirle laboratories were used in the analvses. The United Hospital Lab in St. Paul, verfoz3aed blood cheilistrv and blood count tests an all particioents. Hormones were measured at the Universitv of Nimesota Dect. of Laboratorv Medicine and Patholoav. Standardized hormone assav kits were used. These kits were the same kits that have been used creviouslv in coni=ction with other testina vroar in Decatur and Cottace Grove. PEDA and PFOS tests were conducted via 3M,s Environmental Technolocrv Services in St.
Paul. The method used in this datezzination cons@sted of a standardized extraction technicue devolomed bv Ylinen et.
al. (Arch. Environ. Contan. Toxical. 14:713-717, 1985). This
technicrue uses tetrabutvlammonium to ion-nair with PFO and
PFOS in ser=, and the ion-vairs are extra-ced with ethvl
acetate. The abstraction was then analyzed usinc hich
Performance licuid chro-Atoorachv-thermoscrav
mass
sidectrometrv. This technicrue has been found reliable in Previous testina.
Obtainina the medical and work history Portion of this effort was handled locally by Antwero z)ersonnel, usinc the
Plant ohvsician to translate the auestionnaire from Enclish to Flemish. E=Iovees essentiallv filled in cuestionnaires with assista,,ice from Plant Personnel.
3. Dea=ii*tive results
Means, mini-i, and maximum values ace listed in Table I for 55 variables. This is a co=lete listina of variables for
which information was crathered. 93 individuals varticildated in the croar&zl. Their averaae aae was 36 vears. The mean PFOS value was 1.83 mm. The moan PFOA value was 1.13 upa.
The hiahest PFOS value was 9.9 vm while the hiahest PE'OA value was 13.2 1D=. Co=arison distributions for Cottaae Grove and Decatur Plants is listed in Asmandices I and 2.
Other mean values of interest included an averaae time
worked for 3M of 11 years, an averacre blood Pressure of 125/78, an averacre of ciaarette mokina of 15 vear3. an averaae of 9 d--inks Per week. an averaa* weicht of 163 lbs. ('74Ka), an averaae heicht of 5 feet, 9.6 inches (1*76.7 cm). and an averacre total cholesterol of 212 mcrt. He=alobin. whit* blood cell count, red blood cell count, Platelet count, liver function tests, and kidney function
tests all revealed only svoradic values out of the normal range.
Tables 2 and 3 indicate the relationshiid of PFOS and PFOA leV*13 tresoectiveiv) to location of the &--lovees' current iobs. As shown, the hiahest levels of PFOS were found in workers who cur=entlv are in the now :)art of buildina 3. Their averaae ?FOS level was 4.03 v= for 15 individuals. For PIPOS, backaround levels &re around 0.35 ID= based on administration and OC lab Personnel levels.
BuildLna 16 revc&2ed the hiabest PFQA Mean (2.8 cam for 13
individuals). Bar-karound levelsfor PFOA are around 0.5
0= in nOn-exiDozed iobs.
This same relationshild *xists when we *xam4-ned the loncest held i*b. In this case those people who had their loncest lob at builctina 3 had the hiahe3t PFOS levels (4.45 com for 15 people). Those who indicated that their lonaes". held lob was in Buildina 16 had the hiahest PFOA levels (2.86 Dom for 14 individuals) .
In terms of personal hvcriene and its effect on blood levels of fluor6chemLicals, in the Antwe= workers there does not appear to be anv relationship. There was no si=i!icant difference in P M or PFOS levels in those who washed their hands :frecruentlv vs. those who washed infreauentiv. Likewise, for those who laundered their work clothes freauentlv there were no differences in PFOA or PFOS levels vs. those who washed their clothes infrecruentiv. More frecruent skin contact with chemicals in ceneral did not seem to be related to hiaher PFCA or PFOS levels.
individuals indicated that thev had experienced the tallowina t%voes and numbers of diseases:
Hepatitis A or B. 5 individuals Cancer, tvpe =specified, I individual Abnormal liver tests. 4 individuals Prostatic hvdertroobv, 1 individual ostoolmrosis, 1 individual Diabetes nellitus, I individual
Tables 4A and B are correlation matrices of variables associated with PE'OA and PFOS for the entire crrout>of workers. This is a Prolizinarv step in the assessment of these chemicals to potential health problems. (The second step of this process is to do multivariate statistical analVBC3 Which Will be forthcomina under separate cover.) However, in oaneral, the siml* correlations are a oood rez)re3entation of what will show = in the multivariate analvaes. For the simle correlations, there are three Values listed. the correlation coefficient (too), the vvalue (middle) and the number of people in the analvsis (bottom). For a sianificant statistical association in this sett4na, a *-value of less than .01 is considered si;L:ficant. As the tables indicate, there were no strona associations with anv of the blood test results. There are weak associations (see below) of PM and alkaline r)hosvhatase (a -liver anzvme) as well as PFOS and creatinirse (an ineiicator of kidnev function) . In the latter, the relationship shows that with increasina PFOS levels. kidnev function inwroves. The relatiOU3hiP is therefore of no
clinicacloll3ecruence.
Tables SA and 9 are coirelation matrices of variables associated with PFW. and Pros for the arour of workers who
were fel,*.to have More likely O=osures.
Aaain, there are
few a33ociatic" that are si=ificant.
Alkaline choschatase
is not correlated with PFCA in this aroud. which Should have
more exoosure. Included in these tables are the hormone
values, some of which have been found to have associations
wit:h PM in the animal literature. Aaain, there is no
strona relationship indicated with any of the hormone
variables. There were, however, weak relationships found
between PFCA and trialvceride3 (corr. coef.-.48. D-.0005).
The si=ificance of which is in auestion, since this
relationshic has never appeared in the medical or toxicaloav
literature and is likelv to be a chance findinc.
4. Z=reos;ion
C>verall, the mean PFOA and PFOS values for Antwerc are lower than Cottaae Grove and Decatur. Also, the maxim= values are considerably lower than the other clants. my feelina is that exposure in Antwe= is minimal and see= to be under control. Whether this is due to a difference in lorocessina or to individual hvaiene/safetv cractices or all of these is not known.
Whatever exposures do take clace ae*z.to be focused in buildina 3 (new cart) in the case of PFOS and buildina 16 in the ca30 Of PEDA.
In ter= of diseases present in current workers (which represents an inen-lete ascertai=ent) there do not appear to be obvious croblms in excess. Neither are there diseases present which wou2d be of concern, relative to the animal literature.
In reaard to the blood chemistries and blood counts, these avaear to be it",-elatedto PFOS or PM levels. However, there are 9 individuals who have indicated som type of liver problem C=rentlv or in the Pazt. This appears to be
related to viral etiolcaies for the most =art. There were no relationshiva of liver function abno=alities and PEDA or ?FOS in the si=le correlations. This needs to be further assessed in the multivariable analyses.
Likewise, there do not appear to be relationshiz>s of PF'OA and Pro$ to =V of the hormones measured.
In te=3 of tht ceneral health carameters of the vlant,
there anosars to be considerable amokina as well as alcohol
use. 33% of the cartiCiDantS indicated that thev currently
smoke. (This is gre&tsr than the smoking rates in Mi=esc-&, which run around 25%.) 321 of the participants indicated that they have more than 10 alcohol-cont&inina cL-ink3 per week tranae was 10-42 d--inksper week). Smakina and drinking rates are clearly higher than in other chemical plants in the U.S. and probably reflect European customs to some dearee.
S. Racommmdations
Based on the above information the following sucoestions are being made. First of all, it makes sen e to looi further into ".heprocesses for buildings 3 and 16, since these had the highest levels of PFOA and ?FOS. It would make less sense to look at individual hygiene, since the results were fairly uniformly distributed over the 15 workers in this area. But, this is an option. Of concern would be the possibility of not only respirable exposure but also skin exposure.
it would be helpful for the plant to share this information with the work crews and to open up the dialogue between inciividualworkers and the plant physician in this topic matter. Additionally, it has been our practice in the US. to have periodic updates in regard to any important toxicoloc.rsytudi*3 that appear in the literature (human or ani=l),, in an onacing way. It's important to relay the info=ation that althouah presumed to be without human health problem, workers need to follow Strict safety precautions when working with them, as they would with any potential chemical exposure.
A r"at of this assessment tth-iilbde undertaken periodically. In the US. plants, ttlisassessment is peifo=ed every two years. It becomes more of an expected work practice and facilitates future communication with workers.
In the US., we are establishing a disease surveillance system for workers in the fluoroche3Licalplants. This is designed to identify distases in fluorochealicalworkers that have been described in animal studies. It is Used as a mechanism to further enhance our ability to expediently find about these issues, it they do occur. Alternatively, this would also Assist Us in defending the company ac.rairlsftalse
Although the Belgium regulations may prohibit this, sOmethinO similar to this would be helpful there. This should be explored in further detail.
The maltivariat* sta'tistical An&lvseS need to be finalized bar* before this oroltct is comlote. That should be takinc
place ever the next f&w wotks. The additional analyses are notexz)ectotdo alter the above c=nents. This effort w,@-11-
focus on the liver function tests, orimarilv.
One final note. It should be mentioned that the blood
aatherina and shizmina processefsrom Antwerp to Minnesota
occurred without a sinalo error. All tubes were collected and analyzed here without & 1039. Additionally, it annears that the plant carticiz)ati= for this effort was the hicrhest of anv of the flucror-hemical exam idroarams in the recent vast. The Deo:)Ie who belved with this effort in Antwe= need to be concrratulated on a iob well done.
Please feel free to call either of us with anv cruestions o-co=erits that You may have.
Jeffrey H. Mandel, M.D., X.P.H. Associat* Medical Director
Jean Burris, R.N., O.H.N., X.P.H. Proiect Co-ordinator
11/6/95
October 10, 1995
TO: FROM: Jeff Mandel,
M. D., 3M Medical
Department
Your blood test for fluorine this year has been completed. Two types of fluorine were measured. The first one reflects PC 143. Your measured level was 2.000 ppm (parts per million). The average for people at your plant was 1.5 ppm. The second results was for FC 95. Your measured level
was 4.200 ppm. The avexage for people at your plant was 1.9
PPM-.
if your level wax- greater than with your supervisor regarding chemicals.
3 ppm, you should check safe handling of these
We will continue to give you feedback about the significance of the blood levels, from a health perspective. In the meantime, we're recommending that all employees with potential exposure to these compounds use strict safety precautions whenever possible. Check with your supervisors if you have any quentionx about safe handling and proper protocti= issues.
Flut)rinTeest Results
DistributioonfFC95 Values atThree Locations:
Cottage Grove-1995,Antwerp-1995, and Deentur-I
x
90%
4
7 0%-
P 60% r so% c 40% n
lo%
20%
Girove stwerp
0%
ir
4t
FC95
ci
iM Lftd
0-1
2.1.3 3.1-4
6.1.7 7.1-8
9"-,o
11.1-12
13.1-14 14.1-15 15.1-16 16.1-17
19.1-20 >20
APPendix 2 S-aZ
on
Mae
eb
rA pool0" rA
rA
PRO&
CL
rA
eb
eD
FA 00
Mms valow
ABCU EXM
V con wanted for 3M Yrs wanted Bids.2 wwobom
-yn-"@fted aw& 3 c@tp-awt
Yrswonmd ft 3 am pwt
yon warimdfhwn iymmr
nuanMgal
Yrs worKM
UWADM
@ Yyyrysyyw.a.nit@e@d a
Yrs Worked OC Mb
Yrs waitedR" lab YrsworkoM;;;16-
Yrs tncurrcnt)o-b Y rsinlossbwd )ob
Yrs on )onibeldnon-IM ift Agg SunW Cl$aM=s Yum makw CLPMUCS-pw day ww AY9 rAP OW dOY VM MM MM A#C ROPPOD
ciprmn perday Age Metod AnnkM awobal Mofabsap ;F"lwmbngak" Drmkzmvockwbm wm drb*ft Drukw-omk sm
Drmb PW dw FC95 FC)43 metw
aw -Body Mm Led= Symiie bloodWomim
Dwmlic bl*Wpr@ Alk&Uoc PhospbOM Cbolemmi cracm Daid BU&ubm GLUM G G Tnm HDL CbokwmW LDL Chaiauni
SGOT SGFT ToW Biixubo
Tng"chm memovioa ow
Phift cow
PW likd C.J), 1 Wbne Blood
p 1"5 lngeracbewimlStudy
Tabic I
93-
93 9
46 -to '9
9 13 13 I1 14 9() 25 39 53 31 42 52 22 ot 82 3 77
93 93 93 93 93 93 92 92 92 92 92 92 92 92 92 92 1-2 92 93 93
93 93
mum
1
36.2366
1
1
11.2290
0.5m)
6.14"
0.
4.9892
0.0000
5j*%
o.owo
4.6010
o.osm
3.3456
a.a3oo
3.9422
A-OSOO
4.3769
10.S=
1.0000
30.1$12
0.0000
8.3086
0.0700
8.6631---
0.5000
9.1200
1.5000
5.9039
0.2000
16.5660
13.OOW
15.4118
0.0000
9.3929
0.0000
14im
o.oow
27.9091
20.ODW-
43132
0.000D
15.3171-
I.OOW
18.60W
o.oow
1IJ377
0.0=
9.2006
0.0ow
li"S
O.ODW
1.3=
O.ODW
1.13231
O.ODW
U.-3961
62.Ml
lal-9m 23.760 1252= 73.49" 74.2391 2112597 0.29" 0.2135 SIM91
344M t35.O$g7 25.4"1 43.7391
OJM3 114-MS 12942-S4"
6054
119.0700 17.9013 1looow 60.ODW 3 I.DDW 100.OOW OAM oim 60.ODW 12.0= 31.0ow 22-"" 13.OOW 2iLOOOD o-_mw 34.0000 129".0000
tsim
226.6129 4.&W 6.3677
132.ODW 3.75W
1 3.UW
mstuses
io-0000
2*?.2000
20-OOOID 20.0000
I 20.0= 11.0000
11.0000
11.0000
9.OOOD
1 21.0000
1
20.0000
19.DOW
21.0000
2 l.oow
t 22.000()
20.0000
35.ODW
25.0000
30.OODO 40.0000
25.00M
25-0000
72.0000
50.0000
42.0=
6.0000
9.9ow
131000
75.9943
243.0000
3 L5617 140.ODW
too.0ow
121.ODW
340.OOW
i.6=
0.
126.ODW 294.DDW
97.DDW
261.3730
%.ODW
122.0000
2.9000
6= -T"50-0000
5 1.20W
16.70W
344.0000
5.74W
13.3-0-0-0
CurrentDepartment .-4N!
Admia slidown I Admialitroties Ems 16 Bldg2 Waiib
ove, Bldg3 mad other f-4@f@ BMI 3.Admin, o Bldg3.New pire OMS 3,old & New BMI 3.old part
Other QC tAb-
, R&D IA6
Aii(weri1l995
Fluorocheinic2Situdy - AllEmployees llsiCrharts by I)epgrtmen,
1.600 LON
2.400
IFC"l ppas
2-5"
3.200 3.6" 4.00
Astwom 1995FloarochomileSdtudY- AllF@=Pioym corrdadons
AKPH A"= Pboq"UM
OLIN
CHOL
CREA C@n@
DSIL Dvva Biloubin
OLUC
CIGT G G. Tnm
HDL HDL-CMAMMOI
LDL LDL-Cbokmuw
SCODT SOOT
SOPT SGPT
Tabi*4A
FC143 0.2SI23 0.0066
92
Fc" 0.10593 03149
92
0.093291 0.4299
92
0.01262 0.9m
92
026131 0.0119
92
0.04017 0.703S
92
0.01595 O.Stol
92
-0.3n95 0.0017 92
-0.11343 0.2sl6 92
-0.11172 02890 9i
0.04M 0.6149
92
-0..15576. 0.13821 921
0.07419 0.4822
92
OA4351 0.6904
92
-0.11313 0.=O 92
-0.21665 0.03$D 92
0.20594 0.0419
92
0.072$6 0.4901
92
airms 0.4S73
0.0"70 CM76
92
0.01180 0.4332
92
O.IOU 0.91$D
92
coefli pvuiug nii-Siboefrworkers
Ant,,.=1"5 nuanwbenikw Study- AJIFapic)@om cormktkm
TBIL Tomi Biivubm
TRI ITrigi)@
FP-MADATE Hamsoiogy Dm
Hcr Hemumm
HGB HemoSlobin
MCH
MCHC
mcv
PLCT Pimin Cam
RBC Red siow
Wh@heaiiw-Celk
Tsbit49
FC143 i -O.OM3
OAD78 92
FCYS .0.10720
0.3091 92
Caffelsooncoctricnmnt p-vajue amber of worken
0O.w28n934-1[921
0.10%7 0.29SO
92
-0.159181 0.1273 1
93
-0.14235 om" I
93
0.03412 04=75
--931 1
0.03"] 0.60"
93
019450 0.06171
931
1 0.162131 0.12041
93 1
0.135" 0.13" 1
93
0.06"5" Fm-m
93"
0.122296 02403
93
OM= 1 O.QM 1
93
-0.07479 0.4id2 ;r
02=1 0.01431
0.070M a-wD6
93
-0.11574 Cam, 93
-O.DS7&4 osgl9
OAMSO asm
93
0.01 O.Mi
0.24%9 0.0152
93
Ajmwwp 1"5 FluenwjtmiedSft* - MOm v4* HormoneTating Carrakdons
LH Luwk=astwmora
FSH
PROLAC
TSH nlymd MM.IftR bonom
SHBO
CORRIA cartiow
DIMA4
RT Haig* wr woiot
aw Body Mm bwm
SY37UL Synche bloodpromn
TableSA
FC1431 0.08043 9.5797
30
0.2@62 0.0451
59
a.IL"4 0.1993
so
0.1 16 0.24"
so
01 OM"
so
4.15"7 02841 so
.0.11M OALIZ so
-0.15M 02M so
4.109M OA520 so
.0.00231 0.9973 so
0.0710' o.r2ii
so
FC" i 0.05385 0.7103
50
COMM= =Mffmml
p-vaim amwr Of woran
0.17411 0.2266
so
0.12919 0.3-712
50
0.16702 02463
so
0.1 0.2393
so
0.104W 0.4699
so
-O.IUOI 0.1909 so
0.1cm 0.4799
so
4)06M OAM
so
-0.17U3 02193 so
-O.WUI 0.9516 so