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TTEECCHHNNIICCAALL RREEPPOORRTT SSUUMMMMAARRYY
[FRp----------------
mest pr3mi Ss,o mdoomn TO: TECHNICAL COMMUNICATIONS CENTER - 201-2CM
_-- Toei rommental Laboratory (EE & PO)
TT feE FfaanottveeirfooofnfmrFFue1lnouutrooaorrloocccLhhh~eeebssmoiiireccanaatolltTsssy (EE & PC) BttEivoabluuamrtoionmnooffetthhmee BinosetncenrtraasionnFPootitmennsntiieald
of
PM
3422
Eva0.lua1tiosnacoofn the Bioconcentration Potential of FM 3422
D. L. Bacon
ETETT AA.LNN.. Wweell~teerr
I A Auug;uuss~t 1I6G. . ]19977F
f -- ~t. S0e2o2a2s n :
029367
wars I cm Es |HER Teg [] 00~.
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Tm, [emer ere Ee a, KEYWORD$:
mow
EE 47C- Div. | 23.. TDDheeoctloeerrmniitnnieeeneupxatcnardke/etoorraynsdipssacutlshe:waaryancfeorrFaYtes342o2f PU 3423 in EE & PC - Divo
Progress Report CURRENT OBJECTIVE: Progress Report i1.. EEvvaalluuaattee BBiiooccoonncceenmttrraattiioonn PPootteennttiiaall ooff FFMM 33442222.. 2. De~ermlne uptake and clearance rates of FM 3422 in
whole ~lsh sad/or issue.
3. Determine excretory pathway for FM 3422.
EE RE Ea FF ]uorOoU CcRheemmiT CcaaLlSs IG REPORT aeraACT AIISTRACT: (700 80 more I;IOO':~S0 wo~di] Thssormue Thil lintel mrmaters inforlPIll~-- a ouvoauindbyte +s dllt,lb~;ld by Ih, Tachncal T*chn~-*l CommuncanonsComer15 Cm'nmun~lt~Onl ~4nllr 10 (Aquatic)
Sonscits Toxicity istic: (Bioconcen-
tration
i
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iMaNTE
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Wprokop-236-38 R.Prokop-236-2
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[-- CONFIDENTIAL
11118855..00000011
EE
1185
33MMAA1100006666661199
a-2-
IINNTTRROODDUUCCTTIIOONR
Living organisms possess the ability to concentrate and
LivlnK orcanfsms possess the
accumulate high concentrations of
ability to
lipophilic
ocrognacneinctrcaotempoaundnds
accumulate high
esther directly
cforonmcetnhteriartioennsviorfonleipntopohrilifcroom~tghaenitcr
cfoom odposuonudrs ce,
either directly ~rom their environment or fro~ their food source
pheaonesoswhich is well docuseated (Burpstt, 1971; Gustafson,
apheno~enonwhich is
1870). This ability
well documented
to bioconcentrate
(~ seuermnientgtl, y
19no7n1-; t
oxic sub- Gustafson,
1970). This ability to h~oconcentrate seemingly non-toxic s~h-
stances might well pose & hazard for the ultimate predator species.
stances might well pose
This fovestigation
a hazard for the
was conducted to
udelttiemrmaitene pwrheedtahteorr
aspecies.
Th~s investiga~ion
fluorochestcal, FU322,
wdoaes s cbolnodcuocntecdenttoratdeeteirn~ionreganwihsemtshear nda
if
fluoroche~lcal, F~3422~ does bloconcentrate in organisms an~ if
50, does the material depurate rapidly. Selective organ systems
so, does the mater~al
were analyzed for the
depurate rapidly. Selective organ
subject fluorochemical as potential
uptake
were analyzed for the subject fluorochemtcai a~ poten~la~ uptake
ates.
sites.
Since
the
aquatic
environment
serves
ss
a
primary
mode
of
S~e the aquatic environment serves as a primary mode of
entry for FNI422 into the enviroment, this stidy ves conducted
entry for FW34~ into the environment,'this study was conducted
using the channel catfish lotalams punctatu)s 4 the test species.
The subject using the channel
catfish ~!~a~s pur~ta~.~)
fluorochemical, F3422 is a
wansi1t3e~egtersatnuslpaerciemsa. ter-
The subject fluorochemical, FM3422 is a w~ite granular mater-
ial, molecular weignt-S7), possessing physico-chemical properties
aZ, molecular ~eght-57~, possessing physlco-c~emlcal properties
which suggest that this material may bioconcentrate. Thus, the
which suggest that
material was found
this
to be
material may
relatively
boconcentrateo
water insoluble
andThpuoss, sethsesed
m a ahitegrhiadl iswtarsibfouutnidontocobeeffirceileanttiv,eldyatawawtheirchinsiosluibnldeicaatndivepoosfsesased
a high d~stribu~on coefficient, data which is ndicative of a
highly lipophilic molecule. This profile is generally accepted
highly lpophilic molecule. This profile ~s generally accepted
as that of a substance which will tend to bioconcentrate
as tha~ of a substance which w~1 tend to bioconcentrate.
M~ETTHHOODDSS
TThhee
hhyyddrroopphhoobbiicciittyy
ooff
FF~3324222
precluded
precluded
a
a
sinplistic
simplistic
determin-
determin-
ation ooff iittss wwaalteerr s~oolluubbiillilt~yy..
Use of the Veith-Comstock technique
Use o~ the Velth-Comstock technique
11118855..00000022
33MMAA1100006666662200
--3%-
(1075) wherein water in a constant-level reservoir was continu-
(1975) wherein water
ously saturated with
TinU34a22conbystacnitr-cluelvaetlingrestheervwoairterwasthrcooungthinu-
ously
a bed
saturated
of inert
with F~3422 by circulating
substrate impregnated with
the water
TM3A22.
through
Samples
for
a bed of Inert substrate impregnated
analytical ssalysis were obtained vis
w a isthampFlMi3n4g22p. ortS.ampRleesplifocarte
analytical analysis were obtained via a sampling port. Replicate
sstluud~iieess
vweerree
perforaed.
performed.
~Thee ddiissttrri~bbuuttiloomn ccooeeffffiicciieenmtt ooff FFMM3342222 1ian mn--oocctZaannooll//w~aatteerr wwaass
ddeetteerrnmlimneedd
uussiinngE
tthhee
m~etthhood~s
ddeesscerrilbbeedd
bhyy
CChhiioouu
eett..
al.
al.
(1977)
(1977)
and
FPuu~jiittea eett.. aall.. (1964)
C Chhaannnneell
ccaattffiisshh
((IIce~taaZlaarruuss
ppuunncce~aat~uuss))
were
were
acclimated
acclimated
to
to
the following test conditions for a minimus of 14 days:
the followinE
temperature,
test conditions
211C, 16-hour
for
Light
a
minimum of
and 8-hour
14
dark
phot days:
o
pe
r
i
o
d
with
temperature, 21~IC, 16-hour light and 8-hour dark phoSoperiod with
a 30 minute transition period and were fed daily (Tetra Min).
a 30 minute translt~on period a~d were fed daily (Tetra MID).
Fu3422, previously impregnated on 3.5 ma Class beads was
FM3422, previo~ly i~regnated on 3.5 ~ gl~s beads w~
Placed in & 114 1 aquarius, forming a layer approximstely 2 cm
placed ~n a 114 I Rquarlum, ~orm~ng a layer approximately 2 cm
above the gravel filter which was then covered by sand. The
above the gravel filter ~hich was then covered b~ sand. The
test tank was then filled with carbon-filtered well vater. This
test r~nk was t~en filled with carbon-filtere~ well wa~er. This
systen under continuous aerobic conditions generated a saturated
system u~der continuous aerobic conditions generated a saturated
water solution of FM3i22, having a final loading ratio of 0.55/
water solution of FM3422, havlng a final ]oading ratio of 0.5g/~.
Based on a previous study (1977) which indicated rapid uptake
Based on a previous study (1977) which indicated rapid uptake
and depuration rates for T3422 in this species, the bioconcentration
and depura~lon rates ~or FM3422 in this species, the bioconcentration
test was modified so that the uptake and clearance periods were
tesl was modified so that th~ upt~e and clearance periods were
seven und five days respectively
seven and five days respectively.
FFoolllloowwiinngg
tthhee
iinnttrroodduuccttiioonn
of
o[
the
the
channel
channel
catfish
catfish
into
into
the
the
experimental and control aquaria samples of 4 channel catfish and
ex~eri~ntal and control aquaria samples of 4 channel catfish and
three water samples. top, middle and bottom layer. for PA322
t~ree water samples, lop, middle and bottom layer, for FM342~
uptake analysis were obtained at the following time periods: control
uptake analysis were obzained a~ the ~ollowing time period~: control.
11118855..00000033
33MMAA1100006666662211
prior to introduction, 18 s-i4m-ites, one hour, tw hours. four hues.
etgat prior hotours, twelve ho introduction,ur1s5, sixteen minutes, ohonuersh,outr.wentwtyo hours. hours, twenty- four ht~ur-~,
four eighthohuorusr,s, antwd ealvtethweonutrys-, fsoiuxrteheonurhoinutresr, vetwlsenftyor a per hours, iod of twenty-
sfovuernhdoauyrss.. ~nTdheact htawneenltyc-afotruirehhowuerreinttehervn arlsemofoverdtopecriloedaraonfce
sCeavnekns dfoarys.two~heourcshisnaed1 fcinaatlfilsyh twraenresfethrerned to & fl removed otow-tchleraoruagnhcesystem
wa~vkinsg foflrowtworatheosursthr~odughfintahellytestrtanchsfaemrcreerds otof afouflrowwa-ttherrouvgohlumseysstem
phearvin2g h~o1u~rs.ra~Aessathmrpoluignhg ~rheesin~eenst idcehnat~iecrals ot~o tfohautr wofatethrevoulputmakees
Phase per 24of this hours. stAudsy~pw~aisngSnrseedgiiaotnely~dfeani~ciicsatledtoaat~da~teromfin~aetedupa~ teer
ph~e of th~s s~udy wgs
five anIynsd.ividual (whole fve days.
i~ed~tely
fish, 5-2)
i~itia~ed
and pooled
~d te~nated
tissue samples
after
(ae) wIenrdelvwlediugahled(,whotliessufeinsih,zedn,~)refarndigpeoraotleedd tsinsdsusetorseadmpliensethyl
a(cn=e2t)atewerperiworeit~oedt,het~asnsauleymtiizceadl, derteefrrmiigneartaitoend afoodr sFtIoZrZe.d ole in ethyl
ian wore blotced before the weighing procedure. The pooled
Sfaimshplewserecobnlsoitstteedd bofefotrhee tfhoellwoewiiKnhgint~isspureo:cedburraen., Tghiellsp,oolLeidver.
sfaamlplebsladcdoenrs,istKieddneoyf, ~bpuistfrooltlnotweisntEintsilssuter:actb,raisnk,in.Eilsluss,clelivaeard,
aExao]lrerbelnadder, k~dney, E~rolnZest~nal tract, skin, muscle and
see lemoTni.osue and water samples vere analyzed fer TX3A22 using 3
HoviotcT-iPssaucekar~dndmwodaetlerSs71~3l~gass ~cehrreomaatnoaglryazpehd efqoruipFpMe3d42~wituhs~n1a~
Hewlett-Pack~rd ~del 5713 K~ ~romato~r~ph e~uipped with an
eelleeccttrroonn ccaappttuurree ddeetteeccttoorr ((5i'%i~73)).. SSppeecciiffiiccaattiioonnss a~nndd operating
conditions were as follons: stainless sree columelength-s fost conditions vere as ~ollows: stainless s~eel colu~-lenE1h-6 x U/8", column packing snd suppors-10% Carbonsx 20 Kon Chromosors- x I/8"~ col~n packinK and suppor~-lO~ Carbowa~ 20 Mort Chromosorb-
W aacciidd wwa~shheedd 6600//8800 m~essh'h.: ooppeerraa~tiinnEg tteemappeerraattuurree--iissootthheerrmmaall 118800CC,,
was above 50% ddeet~eecct~oorr--330000CC;; ccaarrrriieerr g~a-s-55~% m~eathnanee iin~ aarrg~oon~.. RReeccoovveerryy rraattee was aboSvteati90s%t.ical treatment of the dats utilized the OM Trac system, MINITARS~a11%~spr~oIgcraaln.~reaBtimoecnotnceonftrtahteiodna~afacuttoirlsizeadndtuhepta3kMeTrraatce sycsotnesm, MsItNaIntTsABweIIreprcoaglrcauml.atedBiboacsoendcenotnraftoiromnulsfeactporrosposaendd buyptaakne ASrTatKe ccoonnm-ittse~ean~dsevweelroepincgalcaulsattaenddarbd~semdethonod ffoo~rulc~oendupcrtoipnogsbediobsyoncentration steteudideesvewliocphinfissh s%1a8n7d7a)r~ method for conductin bioconcen~ration
studies wi~h fish
11118855..00000044
33MMAA1100006666662222
--55--
RESULTS
RESULTS
The water solubility of Fi3422 was 50 ppb (Veith-Comstock
techniqTuhee) wactoeurplesdolwuibtihlittyheofaddFeMd342o~bsewravsat5i0onppbtna(tVeitthihs-Cocmh~etmoi~ckal
wtaeschnsilqiugeht)lycouvpolleadtilweith(Metnhedela,dde1d077o)b.servation t~a~ this chemical
was
slUiUsgshiitnnlggy tthhveeolammletithlhoeodd (ddMeeesnsdccerrlii,bbeedd19bb7yy7).CCh~iioouu,,
eett..
aall..
(1977)
(1977)
tthhee
aistribution coefficient for FM3422 was determined to be in excess
odfist1r0%i,butiinonan cn~-fofcitcaineonlt/vaftoerrFMsy3s4t~e2m.w~Vadleuteesrmionfedthi~so obredeirn oefxcess
om~agn1i0t5udeIn
~
are
ni-nodci~caantiovle/waof~erthesyshtiegmh.ly
Vlailpuoepshiloifc ~mhlasturoerdeorf
of
the
t~egsntitsuudbestaanrcee indicative of the highly lipophl]ic nature of the
zeal
suIInbnstccaoonnncsseii.ddeerraattiioonn
ooff
tthhee
sslliighhtzllyy
vvoollaattiillee
nnaattuurree
ooff
FH3422,
FM3422,
the test organises vere introduced into the newly filled experinen-
the
tal
Zaeqsu%ariourmgaannids~samwpelriengi~orfodbuoctehd chianntnoelthecantefwilsyh
afnidlleedxpoesxupreerimen-
wtaalteraqbueagrainumfiafntdeesn~pmliin~ugtesof lbaotterh. channel catfish and exposure
waEer
beECh
Table
1~aiftielelnusmtirnautteess thleatemre.an
concentrations
of
FM3422
in
Table la
Various layers
oifllutshetreaxtpeossutrhee
mean
water
.
concentrations
The test su
b
sot~anFcMe342w2as
iqn uite
evvaerniloyus dilsatyerrisbutoefd thtehroeuxgphoosuutretwheatearq.uarTihuem atsestinsduibcsattaendcebywc~oncqeunit-e
etvreantliyonsdiosftr0i.b4u9,ted0.~5h4r.ougahnodut0.5t2huet/a1quoafriuFmHAs2s2 lnindieth~etedtopb,y meiodndeleen-
traZions
ang lower
of 0.49, 0.54.
water layer of
and
the
0.s5qu2auri/um.
of
FSMi3n4c2e2 FMin342tZhewatsop,premsiedndtle
aasnd a lsouwseprenwsai~oen.r
leaxyceritaobfiltihtey
Guarium. Since
of the test org
an~i3s4m~s2
was
resu
ltDirnegseni~n
uasnusauaslusD@einsstiuornb,anceeac~oftabtihle~tbyottoofm tsheand~/eFstN31o2r2ganliasymesr wroeusludlticno~ntribute
t~onustuhael vadriisatbuirlbiatnyceofofmetahen bcoon~coe~ntrsastnido/nFM3v4a~l2ueslayaser iwnoduilcdated by the
mtoagn~ihteudvearoifabitlhietystaolnda~radnercroonrcen(tTraablteion1a)value~ as indicated by the
magnlluUdpoen ofana~lheysissIKnofdartOheererxoporsu(rTeabwlaetelra).samples for FMD4Z2
evidencUeponwasanoabltyasiisnedof thtahte
etxhipsosumraeterwiaatler
samples
was bein
g
forrapiFdMl~y422r,elease
d
evidence
into solu
twiaos
n
ob(tTaaiblneed
tha~
1b).
Tthheiss e
m~dalteariasluggwe~st
bin~
that
crosnplcde]nytrarteiloen~sse~
ianplporosaochliunYgioneq
u(iTlaibblre
iu]nb).v
al
uTehsesew
erdeataatstuarirneeadl
w
itthah~in
concentrtions
3 hour of
esxDpporsou~rcehinK equilibrium values were a~laine$ w~hin ] hour
exposure.
11118855..00000055
33MMAA1100006666662233
%-
-6-
TTaabbllee
1a
la
--
--
PMMeeearaninosCCoonncceenntrtraattiioonn
of
of
FNM22 FM342~.
Exposure
Exposure
Water:
Water:
Experimental
Period
Ssaumappliiinngg SSiittee
n .
ccoonncceennttrraattiloonnSu~i//tt
Top ayer
15 15
492.08
Top layer
usdare Taver
1
542.08 .49+_.06
~lddle layer
15
.54+_.06
Lover ayer
1
522.00
Lower layer
15
.52+_.04
"Mean concentration of exposure period + 5.E.
aMean concentration of exposure period ~ S.E.
Table 1b = Concentration (ppm) during Initial 4 Hours of test'
Table ib -- Concentration (ppm) during Initial 4 Hours of testa
Sampling Site
Sampling Site
Top ayer
Top layer
Muiiddddllee Tlaayyeerr DLoowveerr llaayyeerr
15 win
15 rain.
.a199 =.31 2
.23
3 hour
1 hour
a.4s5 .14s9 54
.54
2 hour
2 hour
a.43 a.47 a
.47
PExpressed as s1/t
4 hour
4 hour
5.35 .a422 55
,55
WWHHOOLLEE FFIISSHH UUPPTTAAKKEE AANYDD CCLLEEAARRAANNCCEE
UUppttaakkee
ooff
the
the
fflluuoorroocchheemmiiccaall
FTMH334Z222
bbyy
cchhaannnneell
ccaattffiisshh
hhaass
bbeeeenn ttaabbuullaatteedd ((TTaabbllee 22)) aanndd iilllluussttrraatteedd ((FFiiggss.. 21. , 22)).. DDuurriinngg
the first 23 our exposure period, both Fish A and Fish 8 showed
the first 24 hour exposure period, both Fish A and Flsh B showed
4a
rapid
r~pid
uuppttaakkee
ooff
tthhee
tteesstt
ssuubbssttaannccee..
TThhiiss iinniittiiaall wuppttsakkee rraattee
mmaayy bbee aattttrriibbuuttaabbllee ttoo mmoovveemmeenntt ooff FFM3344Z222 subsequent binding to lipophilic tissues.
saeAcrroossslssowettrhhee rc aiitnnelteeggor uufmmeeFnnAt~MZww2iitthh
subsequent btndin~ to lipophilic tissues. A slower rate of FM34~2
uptake was noted for both organisms which was possibly accounted for
uptake was noted for bo%h or~nism,~ which wa.% possibly accounted for
by a decressed water/organism concentration gradient. No uptake
by a decreased water/organism concenlration ~rsd~ent. No uptake
pP]laattee~a.uu iinnddiiccaattiivvee ooff aa sstteeaaddsy--ssttaattee waass oobbttaaiinneedd ffoolllloowwiinn~g cannaallyyssiiss
1118855..00000066
33MMAA1100006666662244
r=
-7-
Table
Table
hour 2 - FN3422 Uptake
2 rime -' FM3422 Uptske
Time
28 min.
4 2481 2
nhhhoooowuuurrrrsss hhoouurrss
11121602268 nhhnhhoooooouuuuuurrrrrrssssss
42422B40488 rhnhhhooooouuuuuerrrrrsssss
199276602 hhhhoooouuuurrr~sss
111124460448 hhhhoooouuuurrrrssss.
168 ho~rs
by Chanae) Fie A by Ch&nne~
:1
1.249 16
se58 5&62 10a641 i2110332:422 a1189100 2s3352125z0102
Catfish
Cstfish
(lotalcma (rI iee n ~
1:4
E1~2-d09 16sn170e04 212111150330 222055177 221207311998
158
putas! pu~eatus)
a* EExxpprreesssseedd 1ass vals.
ooff FF~M 33442222 ccoonntteenntt ooff tthhoossee ffiisshh ccoommpprriissiinngg tthhee ccoommppoossiittee oorrggaanniissmm AA ((FFiigguurree 11))., TThhee 1166S8--hnoouurr vvaalluuee ffoorr tthhee tteesstt fflluuoorroocch~eemmiiccaall mmaayy be a outlier us these values encompessiag the period from 72 =
be an outlier a~ these values encompassing the period from 72 -
120 hours suggest a plateau (steady state) at TY 3422 concentra-
120 hours suggest a plateau (steady state) at FM 3422 concentra-
ttiioonnss oo~f ~~220000 ~ugg//gg.. AA ppllautteeasuu eef~feecctt wwaass oobbsseerrvveedd ttoo ooccccuurr w wiitthh sample B, having an uptake value of approximately 220 ug/g PH 3422
sample B, having an uptake value of approximately 220 ~g/~ FM 3422
((FFiigguurree 22)).. CCoonncceennttrraattiioonnss ooff PFMU 33442222 bbiiooasccccuummullaatteedd bbyy tthheessee tteesstt oorrgEaanniJssemss wweerree oobbsseerrvveedd ttoo vvaarryy Iinnddeeppeennddeenntt ooff wwhhoollee ffiisshh wweeiigghhtt..
CClleeaarraannccee oof~ FFiMM 33442222 bbyy tthhee cchhaaannneel) ccaattffiisshh rreeqquuiirreedd iinn eexxcceessss ooff 55 ddaayyss ((TTaabbllee 33)).
11118855..00000077
33MMAA1100006666662255
8
-8-
Table 3 -- PU3422 Clearance of Tetalarus punciatas
TTiimmee 11155 nommiutnrn.. 242I hhhnoooouuuurrrrsss 12848 hhnnoooouuuurrrrssss 21110662 hhhBoooouuuurrrrssss 24224480 hhhnoooouuuurrrrssss 6477822 hhhhoooouuuurrrrssss 11922600 hhhooouuurrrs~s
o~hlolee FFiisshh AA 323060896 222256852902 25226663000 ~232358355. 22233-3778,b 212300-%00 101103866
WWhoolee FFiisshh BB 22311996 232310406929 222244042822 12Z175077567 2122009511050 222122297670 75226
78
a EExxpprreesssseedd aass ~vgg//gg-. b sSagmmppllee lloosstt
TTIISSSSUUEE AANNAALLYYSSIISS:: YMUUSSCCLLEE OOff tthhee ttiissssuuee aannaallyyzzeedd ffoorr FFMN33442222,, tthhee mmuussccllee llaayyeerr ooff tthhee
cchhaannnneell ccaattffiisshh vwaass ffoouunndd ttoo ppoosssseessss tthhee lleeaasstt pprrooppeennssiittyy ttoo
bbiiooaaccccuummuullaattee
tthhiiss
fflluuoorroocchheemmitccaall
(Table
(Table
4,
4,
Figure
Figure
3).
3).
A A
pPllaatteeasuu eeffffeecctt wwaass oobbsseerrvveedd Ttoo OocCcCuUr iinn tthhee ccoonncceennttrraattiioonn rraannggee
ooff 110000--220000 v~gg//gg ((TTaabbllee 44)).. TTiissssuuee wweeiigghhtt wwaass aann iinnddeeppeennddeenntt vvaarriiaabbllee,,
nnoott ~affffeecct~iinngE tthhee bbiiooaaccccuummuullaattiioonn lleevveell ooff FFHM33442222..
DDeeppuurr~attliconn ooff tthhee ssuubbjjeecctt fflluuoorroocchheemmiiccaall,, FFMU334A2Z22., wwaass ddeellaayyeedd,, a&pppprrooxxiimmaattee]lyy 5500%% ooff tthhee mmaatteerriiaal~ hh&avvtinngE cclleeaarreedd wwi~tthhiinn ffoouurr ddaavyss
((FFiig~uurree 33 TTaabbllee 53)).
TTIISSSSUUEE AAN~AALLYYSSIISS -- BBRRAAII~N0. GGAASSTTRROOIIN~TrEES~TTIIN~AALL TTRRAACCTT
UUppttaakkee oof~ FFMM33442222 bbyy bbrraaii~n aanndd tthhee g~assttrrooinntteess1t~inn=all t~rra~cct~ wvaass
eelleevvaatteedd dduuee ttoo tthhee 113~ppiidd nnaattuurree ooff tthheessee mmaatteerriiaallss (~TTaabbllee G6)).
BBrra~iinn uuppttaakkee ooff FFNM33442222 Ccoonnttiinnuueedd tThRrToOuUgEhNoOuLtT tthhee eexxppeer?immeenntt ((FFiigguurree 44))
11118855..00000088
33MMAA1100006666662266
-o-
-9-
TTaabbllee 44 --I--otFFaM Ula33r44u22s~2-PuUUrppctttaaakktuees bbMyyuscle Icta~a~ Pu~nrat~s ~cle
CToTinim~teerol C11135ohnom mtuirlnron.,l 4221 hhhhoooouuuurrrrsss. 12488 hhhhoooouuuurrrrssss 21110266 hhhhoooouuuurrrrssss 22424480 hhhhoooouuuurrrrssss 94775822 hhhhoooouuuurrrrssss
19205 nhoouursrs. 111124460448 hh~hoooouuuurrsrrsss.
168 hours
~Muu0ss.cc1llee <0.1 3'1 <0.1 15035 221a220 333a8189
166141198 111112238775 111135595373 47197
147
* EExxpprreesssseedd ~ass u~agl/sg..
TTaabbllee 55 ----
TTiimmee 11155 nmomiuinnr.. ~421 hhhhoooouuuurrrrsss 12488 hhhhoooouuuurrrrssss 21110626 hhhnoooouuuurrrrssss 42224084 hhnhoooouuuurrrrssss 34776228 hhhhoooouuuurrrrssss 11292600 hhhooouuurrrsss
FFUM33442222
CClleeaarraannccee ooff M Muussccllee 11112s87 111I20207888 111144427878 1u1184zm18? I15170752 16770772 677922
a? EExxpprreesssseedd aass ~ugg//cg..
IIoet~oollaar~uusa
ppuunmtaattuuss
mmuussccllee"a
11118855..00000099
33MMAA1100006666662277
"10
-10-
TTaabbllee 66 ---- FF{MhU3e4422B~2a-sUtUprptotaiaknkteeosbbtyyinTIaoolta~ltaarma~sctppuunoncf~taa~Tt-ou~ssalbbmrruaaeiinnpttuiinsscsstuuaeetus~sandd
CToTCfiniemmtnieetrtotell
BB<<3r0rua.a1ii-nn
GGaassttrrootianw8<tt0e1ae.s1sttiinnaall
Trace
Tract
2212I1 5hhhhnooosooiuuuuunrrrrr.sss
0252 8 28
i3<360, l
1112264&8 hhhhhhoooooouuuuuurrrrrrssssss
1111113015ss0050
12 41
554 1=0110
22210406 hhhhoooouuuurrrrssss
22214244809
4284 hhoouurrss
325225
222i210001%e1169
34778832 nhhhoooouuuurrrrssss
3233a528628
19260 hhoouurrss
6S0o66
==si230
510
533
.
111124630484 hnhhoooouuuurrrrsss
59650985558
6a5580s384
168 hours
905
533
2 EExxpprraesssseedd aass vis
Table
Table
7
7
--
--
oFFfM U334T4e22t22atCCanllieesaarrpaaunnnccseetaootffBBraraiinn
and
and
the
the
Gastrointnstinal
Gastrointestinal
Tract
Tract
of I~a~azu8 pun~z~z'#u~a
Tee
Brain
Br~n
GGaassttrrooiinntteessttiinnaall TTrraRcctt
21111 55hhhomoomuiuuinnrrr..sss
11617m86512212
$25523038210015
1228482 hhhhhhoooooouuuuuurrrrrrssssss
s6GS75i0081112222
525333006200257273
222i11004~26 nhhhnhoooooouuuuuurrrrrrssssss
582
si~18 35529559
1155228200600455355
24
1848 97272
hnhhhhoooooouuuuuurrrrrrssssss
523
35586 i35z0450
2523530~5539444330
19260 hhoouurrss
i423
nz390
120 hours
417
712
a EExxpprreesssseedd aass uwg//eg.
1118855..00001100
33MMAA1100006666662288
ue
-11-
TTaabbllee
88
----
FFt~uhe3344C22h22annUUepplttaukkCeeatfbbiyyshLL~ivveerr,,
Kidaey,
Kidney,
and
~nd
Gall
Gall
Bladder
Bladder
of
the Channel Cgtfish
TTiimmee
LiLivveerr
11551 mmhiionnu..r
<100..1i
2241 hhhhoooouuuurrrrsss 311I1IZ
12848 hhhhoooouuuurrrrssss
&633171
21110266 hhhhoooouuuurrrrssss 16998199
32224344083 hhhnnnoooooouuuuuurrrrrrssssss 121431364622911993
192796026 hhhhoooouuuurrrrssss
4s42866t119
111124460448 hhnhoooouuuurrrrssss. 345836680941
168 hours
561
a EExxpprreesssseedd aass ~ugg//g..
KKiiddaneeyy <00..11I E<<A00,,'I1I F735E779] 149970733 118499999
2a210s080e09 333345110953 413554229
GGaallll BBllaaddddeerr 0<<001.,I1 <<pw00e.l.tI1 15o<<800l..Ii 221214541585
1232244872213 1111553587885335 2231882577673153 11333882006851
TTaabbllee
9 8
----
ToFfHM
T33e44t222a2taCCrllueesaarraapmnuccneectabb}ty,usLLi~vveerr,,
Kidasy,
Klchuey,
and
and
Gall
Gall
Bladder
Bladder
TiTimmee
1155211 nnhm hioooinuunurr.rs
122483
hhhhoooouuuurrrrssss hhoouurrss
21110266 nnhhoooouuuurrrrssss
232247404828 hhnhhhoooooouuuuuurrrrrrssssss
199276620 hhhhoooouuuurrrrssss
120 hours
Laver
Liver
656575050504408 77575079879 445744028678 447a2223008 534751475635 031777666
507
Kidney
Kidney
22517641 54433637979 354395490970 s3i55561s935 232385561995 210328502313 221888525
Gall Blaader
Gall Bladder
131559440338 4511902208836868 353307725111008 244232442497517 823349919110522 2111824212121101 s61444991717
EExxpprreesssseedd 1ass uugg//8g..
11118855..00001111
33MMAA1100006666662299
:
-12-
-12-
With no apparent plateau effect. At 198 h the concentration of
with no apparent plateau effect, At 16g h the concentration of
M3422 1n this organ was equivalent to 905ug/g tissue. The brain
FM3422 in this organ was equivalent ~o 905~g/g tLseue. The brain
tissue levels of FN3422 remained elevated upon completion of the
tissue levels of FM3422 remained elevated upon completion of the
Clearance phase of this test; 417ug/g (Table 7, Figure 4)
clearance phase of this test; 417,g/g (Table 7, Figure 4).
TThhee
ggaassttrrooiinn% teessttiinnaall
ttrraacctt
uuppttaakkee
ooff
FFM~33442222
iiddeennttiiffiieedd
three
three
pphhaasseess:: rr~appildd ~anndd aslloo~w uupptta~kee c~oom~ponneennttss w wiitthh aa ddeem~onnssttrraabbllee ppllaatteeasuu
((TTaabbllee 66,, PFiigguurree 55)).. T~hhee ffiirrsstt ttwwoo pphhaasseess ppeerresiissZteedd ffoorr 2244 aanndd 48 nours respectively while the platesu effect was minimally of 96
48 hours respectively ~hlle the plateau effect
hhoouur~dduurraattiioonn.. AAss mmaayy bbee nnootteedd ((TTaabbllee 77 aanndd FFi~gguurree 55))., tthhiiss oorrggaann
4~4ld4 nnoott cclleeaarr ~FU3S442222 rreeaadailllyy,, rr~atthheerr aann ilnneexxppll~iccaabbllee rriissee in
oorrggaann ccoonntteenn%t ooff M~33442222oOccccuurrr~edd dduurriln~ggtthhee llaaZtt~eerr ssttaaggeess ooff ddee--
ppuurraaZtiioonn..
TTIISSSSUUEE A~NY ALSYSIISS -- G Ga~llllbbllaaddddeerr
TThaiiss oorrggaann ddeemmoonnststrraatteedd aa ddeellaayyeedd ""uuppttgakkee"" ooff FFi~313442222,, ddeetteeccttaabbllee
lleevveellss bbeeiinngg iinniittiiaallllyy nnootteedd aatt 1122 hhoouurrss eexxppoossuurree ((TTaabbllee 88).). TThhee
""uupptta~kee"" ppaatttteerrnn ddiiffffeerreedd ffrroomm tthhoossee ooff ootthheerr oorrggaann ssyysstteem~s bbeeiinngg
~anaallyyzzeedd iinn tthhaatt tthhee ccoonncceennttrraattiioonn ooff fflluuoorrooccbheemmiiccaa~l iinnccrreeaasseedd
tthhrroouugghhoouutt tthhee eexxppoossuurree ppeerriioodd.. TThhiiss oorrggaann sshheowweedd aanne~rrraattiicc cclleeaarr--
aannccee ppaatttteerrnn,, aann iinniittiiaall ddeeppuurtaattiioonn ffoolllloowweedd bbyy iinnccrreea~seedd lleovveellss ooff
f~lluuoorroocch~eemmicicaall,, aa pphneennoommeennconn w~hnilcc~h ~ vas oobVs~eerrvvee~d ttahrroouugg~hoouutt tthhee
rreemmaaiinnddeerr ooff tthhee eexxppeerriimmeenntt ((TTaabbllee 99 FFiigguurree 6)
The remaining tissues tested exhibited similar levels of
T~e remaining tissues tested e~ibited similar levels 0f
FFM H33442222 uuppttaakkee.. IInn aallll ccaasseess ~a sstteeaaddyy--ssttaattee ccoonncceennttrraattiioonn could could
bbee ccaallccuullaatteedd uussiinngg tthhee ppllaatteeaauu mmeeththood.d. D Deeppuurtaaitiioonn ddaattaa ddiidd not establish definitive evidence for the clearance of FM3422 by these
establish definitive evidence tot the clearance of FM3422 by t~ese
ttiissssuueess:: g giillllss,, sskkeelleettoonn aanndd sskkiinn..
TTh~ee
l]~ivveerr
ddiidd
eexxhhiibbiitt
pronounced
pronounced
ddeeppuurtaattiioonn ooff tthhee ttee~stt cchheemmiiccaall ffoolllloowwee~d bbyy rraappiidd uuppttaakkee., a phena phen-
oommeennoon~ aassssoocciiaatteedd w wittlhh ddeeppuurtaattiioonn ddaa~tva oobbtI.a~iinaee~d ffoorr Zthbee g~assttroro-
BLEstinal tract and the gal) Miadder
11118855..00001122
33MMAA1100006666663300
1 -13-
Te TAble 1I00 -- Comp~latolnonFaocftaWrhsoluerFiinsgh Ean rOrgpantooSyFvsitseaumzzrliSe
Sample
centra~ion Factors
rege
DurinsioEcxpoonscuernetratcoioFnM3422
Sample
yetgbtc
8ioccncentr.~ion
Whole Tish 01 10.8g245
575 Factor
mote Whole TFllsahn ##12 11.5024 lO.S+_~.5
06575
Skeleton Whole Fish #2
1.82.3 11.5~2.4
11.8+2.3
so406
501
SSkeenleton
2.909
53
GSkiins
s12.2 ~.9~.9
534
saz
GLiilvelrs
Ev .64+.2
an542
GKLKiuiidsdvnnteeerryyosstestioal
ES .51+. 1 1..3462!..4i
474
700 1700890
GGaasltroBilnatdedsertinal 10.341+..042
261506048%
BGraaliln Bladder
191.03 ,03+ .02
.19+ .03
1044 26548d 1344
MBurszcinle
7.082.0
m1
Muscle
7.0+~.0
~81
"Sa3aBCvCFeFr-a-geccaalwlcacutulelaratteecddoncuuessniitnnrggatppilloaantteeaaouuf mmFee3tt2hh2oo.dd C.52 ppm b"C"AhDsvaaetevtaeran~gee,xxdpparywreaestsBsesCereFddvcaosalssnuceemm.enewtannrsabt=!aieonS3ns..D0e..ofof FMp3l4a2t2e,au ~.e5f2fecptp.m
Seven day BCF value, absense of piateau effect.
1185.0013
1185.0013
33MMAA1100006666663311
--1u4--
Table 11 -- (UCphtaannkeel sSaammppilee wile Fish A
~hole Fish A
mole Fish B Br~ahoilne Fish B GGGBiarnlsalteinsrointestinal Gastro"iTnrtaecst tinal
Tract
LiLvievrer Gall Bladder Kidney Gall Bladder MKuisdcnleey
Muscle
skin SkSekilneton
Skeleton
CRaactteisCn)onstant of FX32: ia
U cUpoptntasaktkeaentrraatcteeomposite
Rapid
R~pid
co3n.s2t0a0n3t composite 5.7
63..24+31..03
5 .?
5.6
67..47+023..14
8.6
9.3
57..740+32..34
9.3
7.3
56..40+:32..43
7.3
7.3
6.0+2.4
7.3
44.550+22..33
66..33
82a?
-
48.2.010a.8
5.-4
41..08~:01..46
-5.4
6.73.2 1.8+0.6b
5.-9
63..72+031.20
3s8.9
3.1+1.0
3.5
fotalams PPhhaassee
punotati: SSllooww PPhhaassee
22..77 33..99 55.,11 22..77 14..44 33.66 3.- 0
3.0
3- 6
3.6
2.4
2.4
2a
UVUpaptltauakkeese
rsraaittmeeilaccroonnsastttaannatltl aattt is11e6688 phheorouiurorssds
b Values simS, far a~ all time periods
1185.0014
1185.0014
33MMAA1100006666663322
5 -15-
A
ttaabbuullaattiloonn
ooff
tthhee
bbilooccoonncceennttrraatliioonn
factors
~actors
(ECF)
(~CF)
determined
determined
at an approximate steady state, using the platesu method provided
eatvidaen ncaepprdoexmiomnastteratsitnegadythestaltiep,ophuisliincgittyheofplaFtMe3a4u22 me(tThaoblde,pr1o0v) ided
evidence
Although
dtheemognasltlratbilnagddetrhe polsispeopshsleldlctihtey hoi~gheFsMt342B2CP(Tfaobrlecomi0p)a.rative
Although
purposes
the gall bladder
these data can be
ignored possessed
the
for
highest
ressous
BCF
to be
for
dis
cussed. Of comparative
purposes these data can be ignored ~or reasons to be discussed. Of
the remaining organ systems the propensity to bioaccumulate FM3422
the
was
remaining organ systems the
mast prominent in the braln
panrod pgeansstirtyointotesbtioiancaclum truaclta.te
FM Th3e422edible
was ~z~ prominent n the braln and gastrointestlnal tract. The edible
portion, muscle, minimally bioconcentrated F3422
portion, muscle, minlmally bloconcentrated F~3422.
AA
ttaabbuullaattiioonn
oo~f
u upptta~kee
rate
rate
constants
constanls
for
~r
whole
whole
fish
fish
and
and
organ systens provides further evidence that the lipophilic nature of
organ syste~ provldes ~urther evidence that ~he lipophilic nature o~
Fu3422 does influence uptake rate (Table 11). Both brain and the
FM3422 does influence uplake rate (Table 11). Bo~h brain and
gastrointestinal tract had high uptake rate constants. A second
gastroinlestlual tract had high up1~e rate constants. A second
premise may be established that being the greater the surface ares
premise may be es~abllsbed that benE the greater the surface area
exposed to the material the greater the uptake rate, hence elevated
e~osed ~o the material the greater the up1~e rate, hence elevated
uup~tta~kee
rraattee
ccoonnssttaannttss
ffoorr
bbootthh
sskkiinn
and
and
ills.
gills.
The former instance
The for~r i~stance
provides a physiological basis for uptake while in the latter case
provides a p~ysiological basis ~or uptake while in the latter case
bbootthh
mmeecchhaanniiccaall
aancdd
physiological
physiological
mechanisms
~chansms
were
were
operative
operative.
Clearance rate constants could not be calculated due to data
Clearance rate constacts could nol be calculated due ~o data
vvaarriiaabbiilliittyy.
DpIrSsCcuUsSsSiIoOnN IInn tthheessee ssttuuddiieess tthhee pprriinncciippaall mmeecchhaan~isse~ss ffoorr inniitti~aal~ uupptta~kee of
FU3422 were the gills and integument. Substantisting evidence consist
FM3422 were the gill~ and integument. Substantiating evidence consist-
ing of uptake rate constants which exceeded all cther organ systems ex-
in of upt~e raze constant~ which exceeded R~I ether orgR~ syste~
copting brain. gastrointestinal tract and the gall bladder. The gl) eir-
cepting brain, gastrointestinal tracl an~ abe gall bladder. T~e gill clr-
ccuullasttiioonn ffuunnccttiioonnss aass a~ ttrraannssppoorrtt ssyysstteemm ddiissppeerrssiinngg tthhee fflluuoorroocchheemmiiccaall to various sites in the bods. The importance of this system in terms
to various s~es in t~e body. The importance of this syslem in term~
of both uptake and transport of foreign chemicals has been the
of bomb uptake and transportS, of foreigu c~emlca~s has been the
11118855..00001155
33MMAA1100006666663333
--1166--
subject of recent papers by Granmo and Kolberg (1975) and Bass
saunbdjeHcetathof (1r9e7c7e)n.t papers by Granmo and Kollberg (:97q) and Bass
and Movement Heath (1977). of PU3422 across the integument also contributes to
the
body
Movement of FM3422 across
burden of FHIAZ2 based on
UthpetakienteTgautmeenctonsatlasnots.contrDiebfuitneistiotno
otfhe thbeodyextbeunrtdenofofthiFsM34c2o2ntbraisbeudtioonn ucpatnnaokte breazedetcoeirtm~iznaendts.as Dtehefineixtaicotn
tor~antshpeoretxtepnatthwoa~y thhaiss ncootntrbeiebnutieosntabclainsnohtedbe determined as the exact
transportOupratphrwaeyviohuass sntotudybee(n1977) did demonstrate the existence of a
highly
Our
1'psd
plraeyveirouusndesr~luydying(19th7e7)Skdiind Wdheimocnhs~trhaeto,rrettihcealelxyistbeansecde
of
on
a
htihgehllyipo1p~hpiildicIiatyyer
o
funFdYe3r4l2y2lngshotuheld
skin which
serve as
a
Zshteoor~aegtetca(lbliyndibnags)ed
siotn e
the
for
tlhipsophcihZemiiccatly. o~VaFsMc3u4l2a2r spheorufludsisoenrveof asthiasstaorreaagecou(lbdinsdeirngv)e
site
to
~or
tra
nstphoirst
chtehemicfallu.orocVhaesmciuclaalr
pteor~outshleron soiftesthiisn
tahreea bocdoyu,ldhosveervveer,to
tthreansmpaogrntitutdhee
o~fuopreorcfhuesmiocnalis
to
an
outshkenrowsni.tesSi
miin l
atrhl~ y
.bodiyf,
onheowevvieerw,s
the
the
magnitude
1ipid laye
of
r
asper&~ubsiinodningis
an
site
unfkonrowFnU.32S2i,miltahrelyn,atuir~e
one
of
views
the
b~ihendilnigpidbecloanyeesr
ss
of
res lebvianndcieng
isnitdeete~romrinFiM3n4g22t,he
the nature
eae with
wohlicthhematerial
binding
may be
crbaencsop~osrtoed
reellseevwahnecre e
in
determining
the
e~;e
with
whic~
may
more
behig~hrla~Iyttnswwplaaoissrptiedddd-eecm~ooennnlstsstaetriwrahna~eitreneegdd.
previously in oprrgeavnisoustleyndeidn
our latoratory that the otuorbiloacboonrcaetnotrryat~ehatthethe
smuobrje e
chtighfllyuorlaicphiedm-iccoanltamionrieng
roeragdailnys.
tended
This
tfoindbion<g~ohnacsenbtereante
the
sssauunubdbbjssettgcaaatnnstttiri~aoaltituneeotddreoscbbtyy~ienmttaihhlceea]pptrrreaemcssoteernnettbyresstnttuudhddeiyy~..yc.ircTTrruTahalninassstppooorfrryittndsiyoonffsgt;eFFmhMMa33s4Eo2f222betehttneoo
the brain
the
fish seems
saenldf-geavsitdreonitnteasstitnhaelse
troarcgta, nsby
the
are
hicgihrlcyulavatsocruylarsy.s~.eEmvio~dentchee
o~bisthainseede~in
stheilsf-estvutddyen~sugasgestthsesethaotrgatnhse saurbejehcitghlcyhemviacsacluRairs. houEnvdidetnicgehtloybtaasineidt
this
oes
snottudydepsuurgagteestsapptrheactiantlhye.
sub~Beyctimpclhiecmaitcialon
is
a
btoiumnidlartisgihttulyatiaosn
may
does not
exist at
depurate
the oil
laapyperre/ciinatbe]g~u.e
ntBy
iinmtpelr~fcaactei,on thaer~einmyilarredusciitnugatitohne
may
oevxeisrtallat cotnhetriobilutiloanyeofr/tihnetein~tnetgumeinntterafsacae,soutrhceereboyf rfelduuorcoicnhgemtihceal for
ootvheerrallorgcaonnstriibn uttihoen boodfy the inlegu~nt as a sourc~= of fluorochemica] for
other
organs in
Organs
cthoentrboidbyu.ting
to
the
digestive
process
of
lstalsme runstatus
Organs contributin to the di~es~.ive pro~:ess of I~,t~=~r
1185.0016
1185.0016
33MMAA1100006666663344
--1177--
presented an interesting profile. The gall bladde-, serving as a
preresseernvoteidr
fanor inbiteleremsitinnugfacptrucrfei3deb.y
The
the
gliavlelr,blapdodses:e-s, sesedrvthneggraesataest
rceosnecervntoriartifoonr boft~eflm uoarnoucfhaecmtiucreadl boybsethrevedlivienr,thepsoessesstsueddiesth.e When greatest
concentration
Samples were
obotf aifnlueodrofcohrem FNi3c4a2l
2
oabnsaelrvyesdis
,in
d
ithsetseen
tisotundoief~t. he
~geanll
samples
bladder
were obtained
was observed,
ifonrdicFa~t3i4n2g2
athnaatlysaits,ourdisstaemnptl~iLnong
of the gal~
time we were
bladder was
in reality
anoablsyerzviendg,
a
icnodnicceanttirnagtetdha~s
a~
amp
our
le of
sampl.~ng
bile.
time
It is
we were
also
pirnobraeballeitythaatnalthyizsingorggancopnacretnitcriaptaetdessamipnletheofebxiclree,sionIt of~s FMa3l4s2o2 from
probable
the body.
that
The
tchiosmpoosrigtainonparoftlbeitlpeateiss
in the sxcre~lon of
such that given the
FlMi~p4o2p2hilfircoimty
the body. The composition
of FU 3422, binding sites,
of bile
complex
atisio
nsucahnd/~hoar~
cgoinvjeungattiheo
n
lipophilXcity
of this
fol~uoFrMoc3h4e2m~i,cablindtoinbgi
si~es,
liary
cocmopmopnleenxtastioins
aanddi/sotrinocotn.~puogsastiiboinliotfy.thisCon-
tfrlaucotrioocnhemoif~atlhe togalblilibalrayddecromwpiotnhenttshe isrossuldtiasnttincetmptpyoisnsgibiolfitiyt.s Con-
ctoranctteinotns
oifntothethegalglasbtlroaidndteerstwi~ntahl thteracrtesmualy~anatccoeumnpttyifnogr
of
th
e
its
sp
o
ra
d
i
c
contents into
nature of the
ctlhee ar@aanscteroicnutrevestifnoarl
t~ae~ may
this organ.
account
for
the
sporadic
nature
of the clearance
One may view the
curve ~or this organ.
sequence of events occuring
in
the
depuration
One may view the sequence of events oocurin~: in the deputation
pphhaassee ooff tthhiiss ssttuuddyy sass ii~t rreellaatteess ttoo tthhee ddi~ggeessttiivvee ssyysstteemm iinn tthhee
following manner: FH3422 is cleared at a measurabe rate by
Vfaorliloouwsin~orgmaannsn,er:beinFgM34t2r2ansispor~tleedaretdo tathe a lmievearsurbyable`heractiercubylatory
various
system.
organs,
Io the
being ~ranspor~ed to
liver. F322 either
b%ihendsl,ivecrombpylex~.ehse
circulatory
and/or becomes
system. In
a conjugate
the
of
nelwilvyer,manFuMf34a2c2tureeidthebirleb.indsT,he
~omplexes
bile -&
and/or
then st
o
becomes
red in
a conjugate o~ newly manufactured bile. The bile :s then stored in
tthhee ggaallll bbllaaddddeerr bbeeiinngg eexxpprreesssseedd iinnttoo tthhee dduuooddeennaall aarreeaa ooff tthhee
intestine. This material may-then be either excreted within fecal matter
inles~ine.
and/or some
TFhMi3s422matmeayriaulndemraygo,.r~ee-nupbteakeeitfhoerr
beoxdcirlerteddiswtirtihbiuntifoencal
matter
and/or some FM342~ may undergo re-uptake for bodil~' distribution.
EExccrreett~ioo.n ooff FFMM33442222 1Iss nnoott Ssoolleellyy vviiaa ffeecca~ mmaatttteerr aass za
similar scenario can be described for renal clearance wherein elevated
similar scenario
levels of FN3422
can
are
bmeaindteasicnreidbedthrfoourghrentahle
clearance wherein
first "2 hours of
deelpeuvra-ted
levels of FM3422 are maintained through the first "'2 hours of depur-
11118855..00001177
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TThhee eeddiibbllee ppoorrttiioonn ooff not bioaccumulate FN3422
the channel catf.sh, the
the
to
anchaanppnreel cicaabtfl:e.shex,
the
tent
muscle fillet, smuubssctlae ntfi~altlientg,
did
our
pnroetviboiuosacocbusmeurlvaatteioFnM34f2o2r
tthoisan tiaspspuree.ciable
extent
Substantiating
our prevIinougseneorbasle,rvantoioandvefrosretshiisgnstiwsseuree. observed during the duration
of
the
eIxn pegreinmereanlt,
atnotesatdivnegrseto
signs
the
nwoenr-etoxobisce)n-avteudreduorfingthitshe
cdhuermiactailon
oufndetrhe theexpecroinmdeinttionastteemstpilnogyedto inthethinson-ttesotx.ic nature of this chemical
under t~e condizions employed in r~Is rest.
concLUSIONS
CONCLUS IONS
This
study
of
the
ability
of
the
chanawl
catfish
(foalarus
punctatTuhtsio)s bsituodcyoncoofnttrhaeteabitlhietyfloufortohcehemcihcaanlnelFU3c4a2t2fishhas led to tho
pfuo,l~laotwui=n)gtoco~nciloucsoinocnesn:tra~e ~he fluo~oa~emi~Rl FM3422 h~ l~d to
1. followin~ cBoontchluslliopnosp:hilic organs and organs possessing a large
I. Both
surface area at
tlhiepowpa~tielri/corogragnansintanedrfaocreganpsosspeossssestsheinghigahelsatrgeuptake
sruartfeacceonsatraenatsa.t the water/organ interface possess the hi.eat uptake
ra~e
constants.
2. Tne brain
and
gastrointestinal
tract
have
BCF's
in
excess
of
2.
10% due
The
to
thberailnipoapnhdilgiacstrnoaitunrteestofinatlhe
tra,~t have
subject f
lBuCoFr'osch
emn i
ceaxlcess
of ~03 due zo the l~pophilic nature o~ the sub~ec~ fluoroch~mical.
3. The gall bladder duo to its storagn function shoved the
highest 3,conc~eentrgaatlilonblaodfdeFrN34d2u2e
to
on
its ~torag~ function
a ug/g bass.
showed
the
hghes~ concentration of FM3422 on a ~g/g
4. Whole fish or organ weight was an
.ndependent variable,
not
a
de4,termWihnoalnet
fish
in
or
the
boirogcaonncweenitgrhtatiwoans
an
of
_ndependent
322.
variable,
not a d5e.termEixncarnettioInn otfheFbMi34o2c2oncceonn~srisat~sionof obfoth urinary and fecal
Excretion of FM3422 consists of bo~:h urinary and
ppaatthhwwaayyss.
6. Clearance of FM3422 by components of the digestive system
contribu6t, es
Clearance of FM3422 by
to the erratic nature
ocfomptohenendtespuroaftitohne
digestive
curves
system
contributes
7.
to the
Fu3422
aterrtaheticexpnoastuurree
ocfonctehentrdaetpiuntnatidoind
curves.
not elicit
signs
of
toxic7.ity.~3t4h2e2refao~ret,he unedxeprosutrhee
ccoonndcietnitornastioonf
did
this
noetxpeerliimceintt,sigtnhsi
s
offluotrooxcihceitmyi,calthecraenfobree,conusniddeerretdhe ncono-ntdoixtiico.ns of this experiment, this
fluorochemical can be considered non-toxic.
A ier AN feo
ANW!vm~
11118855..00001188
33MMAA1100006666663366
|
--1199--
sB iIsBLLiIoOcGRRaAPPRHYY
1.
I.
BBTuassass,, nWMiicchhhaaeeell
L.
L.
sad
and
Alan
Alan
G.
G.
Meath.
Heath.
Water Research 11:
Wat,.*r Rese&rch I--I:
2. 4B9u7r-s5e0t2e,, B1.977.Science 174:608, 1971.
2. Burnett, R. Science 174:606, 1971.
33. Chioonu,CC. TT., TFhreaed:, SVe. tH., eSchic mendd4h lnvgs, lB).or~.y, and
4. EKaochonne,rt,JonR.n -L.ConEtnrvm.snS,ci.ASTTeHchD.arIe--1:G4u7i5,de.1i9n7e7s., 1977.
5.4. lnabarawy, Eaton, John U-. T. Techaical Chairman, ASTN Report, 1977. Draft GuideLines, 1877,
65..
fPuagdica, T., Elnabarawy,
Fuji~a, T.,
Imssa, M. T.
lwas~,
J., Hasech, C. J. An Chem. Technical Report, 197"~.
J., Hansch, C. J. Am Chem.
Soc.
Soc.
88:5175.
8__6:5175,
7. G1r9a6s4m,o, A. and 5. Kollbers. Water Research 10:189, 1976.
5. GGurasntmaof, sAo.nC,a.ndG.S. KEnovl.lbeSrcKi.. TeTcha.ter4R:e8s4e,aJ-1c9h70I.0:189, 1976.
98.. MGeunsdtearf,sonn,. C.TeGch. nicEanvl. ReSpclo.rt,Tec1h9.77.~:814, 1970.
19.. goi8n,t.a0 Comtock . Mendel, A. Technical Report, 4. 3. 1977. Fi Ren. Bord Ca.
Vei~h, G. D. and Comstock, V. M. J, Fish Res. Board Can.
10. weiter, 32: 1849, A. N.1975. Technical Report, 1977.
11. Welter, A. N, Tecbnlcal Report, 1977.
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