Document jyOM9Mep1RLmGdK3Rq5p3GqEy
AR226-2776
(SS INHALATION:
EMBRYO-FETAL TOXICITY AND TERATOGENICITY STUDY IN THE RAT HASKELL LABORATORY REPORT NO. 881-81 Copies to:
Company Sanitized. Does not contain TSCA CBI
FOR DU PONT USE ONLY
HASKELL
I. E.
DU
LABORATORY
PONT DE NEMOURS & CO., INC. FOR TOXICOLOGY AND INDUSTRIAL
MEDICINE
CENTRAL RESEARCH AND DEVELOPMENT DEPARTMENT
ELKTON ROAD, P. 0. BOX 50 NEWARK, DELAWARE 19711
JjB INHALATION:
EMBRYO-FETAL TOXIC ITYAND TERATOGENICITY STUDY IN THE RAT HASKELL LABORATORY REPORT NUMBER 881-81
Dates: Initiation (breeding date) - April 27, 1981 Completion (sacrifice date)- July 9, 1981
Date Written: Date Issued:
December 30, 1981 January 14, 1982
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_INHALATION: EMBRYO-FETAL TOXICITY ID TERATDGENIC-ITY STUDY IN THE RAT
HLR 881-81
REPORT BY:
W - ^ R. E. S^Tples, Ph.D.
Stuay Director Staff Teratologist Teratology Section Toxicology & Pathology
APPROVED BY:
i^s^ucQ
J. G.^/Aftosmis, D.V.M. Associate Director
Toxicology & Pathology
REVIEWED BY:
CAftM^uQ^^'^aAj!^
C. M. Barba
Auditor Quality Assurance Committee
RES/ms/mie
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HASKELL LABORATORY FOR TOXICOLOGY AND INDUSTRIAL MEDICINE
CENTRAL RESEARCH AND DEVELOPMENT DEPARTMENT
ELKTON ROAD, P. 0. BOX 50 NEWARK, DELAWARE 19711
QUALITY ASSURANCE DOCUMENTATION
STUDY: }jflifiWQ
HLR 881-8^
dpiplnhalation: Embryo-Fetal Toxicity and Teratogenicity Study in the Rat
QUALITY ASSURANCE AUDITS
Audited: July/August 1981
Date Findings Reported to Management and Study Director: August 14, 1981
Reported by;
CMB /mie
1/8/82
(y}A^usun^fwJwJ
C. M. Barba
Quality Assurance- Auditor
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EMBRYO-FETAL
UU INHALATION:
TOX[ICCiITTyT^^ADNrB1T]TERATOGENICITY
STUDY
IN
THE
RAT
HASKELL LABORATORY REPORT NUMBER 881-81
TABLE OF CONTENTS
TSiigtlneatuPraegePa.g.e.........................................
1 2
TQaubalelityof ACssounrtaennct.se. .D' .o.c.u.m.e. n. .ta.t.i.o.n. ........................................... ..
3 4
....................................
I. Summary ........................................ 7
II. Introduction .................................. 7
^ v
A. B.
Background
Protocol
................................
7 8
C. Purpose ...........................-.-..-.,.................................. 8
III. Materials and Methods ......................... 8
A. B.
Test Material
Animals
.............................
8 9
C. D.
SExtapetirsimtiec.na.tla. .l E.D.v.ea.slu.ig.an.ti.oa.nn.d. .P. .ro.c.e.d. .u.re.s. . .............. ..
10 15
....................
IV. Results ....................................... 15
A. B.
Eye Examination of Prospective Parents Maternal Exposure to C-8
....
15 16
C.
Clinical
Maternal
FSeigends COonbssuemrvpetdion. ........................ .. .. .. .. .. ..
16 17
D. E.
Maternal Body Weight Gain .. ...............................
17 18
F.
G.
MGraotsesrnEaxl aDmeiantahtsion..o.f..M..a.t.e.r.n.a.l..O.r.g.a.n.s..a.t....
H.
R
S
ep
acrifice
roductiv
e
.E..ff.e.c.t.s.
.
a.n.d.
.
B. .o.d.y
.
.W.e.i.g.h.t .
.o.f .
.
.
.
18
I.
the
Fetal
AOlftfesrpartiniogns....'................................................
19 20
J. Pup Alterations ........................... 20
V. Discussion .................................... 21
VI. Conclusion .................................... 23
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_[NHALATION: EMBRYO-FETAL TOXICITY 3D TERATOGENICITY STUDY IN THE RAT
HLR 881-81
TABLE OF CONTENTS (CONT)
VII.
VIII.
Acknowledgements
References ......
Page 23 24
TABLES:
I. Experimental Design: Exposure Levels and Distri bution of Mated Females Among Test Groups ... 26
.......... N II. FeDedaysCo6n-s1u5mpotfionGeisntaRtiaotns Exposed to
from
27
III. Reproduction and^Fetal Development in Rats
Exposed
to ^H[from Days
6-15
of
Gestation
.
.
28
IV. Fetal Malformations in Rats Exposed to jjfma7j
from Days 6-15 of Gestation ................. 31
V. Fetal Variations in Rats Exposed tpj^JKfrom
Days 6-15 of Gestation ....................... 33
VI. Reproduction and
ipment of Offspring of
Rats Exposed to
[from Days 6-15 of
Gestation
39
APPENDIX
A. Protocol
42
Amendment to the Protocol for Inhal Teratogenicity Study in Rats with
52
Amendment to the Protocol for Inhala-tj, Teratogenicity Study in Rats with
57
1 individual animal data available upon request
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INHALATION: EMBRYO-FETAL TOXICITY D TERATQGENICITY STUDY IN THE RAT
HLR 881-81
TABLE OF CONTENTS (CONT)
ATTACHMENTS
1. In-House Rgport: Inhalation Exposure ^Results
Teratology Study - Part I and Part II ......... 60
2. Letter, from J. M. Clinton to R. E. Staples,
4/24/81 ....................................... 73
3. Letter, from J. M. Clinton to R. E. Staples,
5/5/81 ........................................ 74
4. Memorandum, from W. D. Kerns to R. E. Staoles,
12/18/81 ...................................... 75
5. Memorandum, from W. D. Kerns to R. E. Staples,
12/21/81"...................................... 77
6- Letter, from.J. M. Clinton to R. E. Staples,
6/5/81 ........................................ 82
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(Jj INHALATION:
EMBRYO-FETAL TOXICITY^fiND TERATOGENICITY STUDY IN THE RAT
HASKELL LABORATORY REPORT NUMBER 881-81
I. SUMMARY
^l^----------f--|was administered to rats by inhalation
as a dust (whole body exposure) from Days 6 through 15 of
gestation at nominal concentrations of 0, 0.1, 1.0, 10.0,
and 25.0 mg/m3. The actual mean concentrations achieved
were Oa'nd'about 0.14 , 1.2, 9.9, and 21.0 mg/m3, respectively.
Maternal deaths occurred at the 25.0 mg/m3 concentration
only, but overt toxicity was evident among the surviving
dams and among those of the 10.0 mg/m3 group. A teratogenic
response was not demonstrated upon sacrificeof the dams on
of^d Day 21 of gestation at any concentration
tested.
Embryo-fetal toxicity was noted only at the^S^O mg/m3
concentration which was overtly toxic to the dams. Other
than for a temporary reduction in the body weight of the pups
raised by additional dams in the 25.0 mg/m3 group, no adverse
effect that was concentration-related was noted among the
till dams or their offspring
weaning. At the 10.0 mg/m3
lesvcheel,dyuilVedffwsaascrsiftiicUe
after toxic
but
not lethal to the dams; however, no-^dversefSS^ related
effect was noted among their offspring.
Hence, in this study, gptjwas not demonstrated to represent
a unique hazard to the conceptus.
II. INTRODUCTION
A. Background
^------^gy^^^g^^^^^^Q 3M Company for use ^n the manufacture of a variety oif
fluoropolymer dispersions, including some of Du Font's
Teflon products. A study of^the embryo-fetal toxicity and teratogenic potential ofUjpfwas requested by E. D. Champney, Polymer Produces Department, at a meeting held at Haskell Laboratory on April 9, 1981. This request was initiated in response to TSCA, Section 8(e)'s filed bv^SM between the last part of 1980 and March 20,
1981 onfUBlTfand on several related chemicals.1 The possTb% teratogenic activity reported to us by 3M included lens changes in the eyes of the
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") l<----y[NHALATION: EMBRYO-FETAL TOXICITY
.--AND TERATOOGGEE] NICITY STUDY IN THE RAT HLR 881-81
A. Background (cont)
near-term offspring of rats exposed to the test chemi cals by gavage from Days 6 through 15 of gestation.
It was not determined whether the lens changes persisted
after birth of the rat offspring.
B. Protocol (Appendix A)
it A draft protocol was distributed on April 24, 1981,
and an MR request was signed on May 6, 1981; the
protocol was issued on June 11, 1981, and
on December 3 and on .December 30 , 1981.
was amended
C. Purpose
This study was designed^ to^determine whether the
reported teratogenicity of[^BBJin the rat would be expressed after exposure by the inhalation route and,
if so, to establish an apparent "no-effect" concen
tration for the conceptus and to determine whether
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cghaainnegdeswpasertsoisati,daftienr ebstiartbhli.shmTehnet
information of workplace
standards for women of childbearing potential.
III. MATERIALS AND METHODS
The study consisted of two experiments (Tabi^ I 1.
Experiment I was a teratogenicity study in whichiffcwas given by inhalation, and the dams were sacrificed oir~the day before expected delivery (Day 21 G). The dams for Experi
II ment were exposed as in the first experiment, but were till allowed to give birth and the offspring were maintained
35 days postpartum (Day 35 PP).
A. Test Material
1. Physical charact
^ which sublimes at1
is
nd its struct
The""pur'lty of the sample
contaminantspresent wer
^were presen
TCS
,
formula
ed was'
a white powcular weight
nd and
or additfves
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NHALATION: EMBRYO-FETAL TOXICITY
AND TERATQGENICITY STUDY IN THE RAT
;R 4129-OOlf
HLR 881-81
Source^- The\----(sample
--------Q^as supplied
by
_
tE^Polymer
Products
Department. It was assigned Haskell Number
14,045.
3. Test concentrations - The Approximate Lethal Concentration of ^Bl^irT rats was 0.8 mg/L (800 mg/m3) after a single 4-hr exposure period by inhalation (head only) as a dust. Liver enlargement and corneal opacity resulted (1).
^--fwas administered to 7-8 week-old male Crl:(-D rats via inhalation as a dust at nominal concentrations of 0, 1, 8, and 80 mg/m3. Exposure (head only) was for 6 hr/day, 5 days/ week, for two weeks (2) . At the highest exposure level, some rats died and among the
survivors, body weight was decreased, and liver
weight was increased; these effects were not noted at the 8 mg/m3 concentration. In addition, the serum alkaline phosphatase level in the 8 and 80 mg/m3 groups was elevated significantly above the control value (3).
Based upon this information and that gained
from
rats,
a
thberijeCflpperxeptoessut rein
hon-piregnant female.
levels selected for
testing inthe current study were 25.0, 1.0,
0.1, and 0 mg/m3. After the first of two "Runs"
was conducted, the 25.0 mg/m3 exposure concen
tration was replaced by one at 10.0 mg/m3 in
response to severe toxicity expressed at the
initial concentration.
B. Animals
The rat was chosen 'J^or this test because previous toxicity testing oneg^Qwas conducted in this species.
The Crl:CD (SD)BR sl?iain was selected because the pre liminary teratogenicity test on^l^B^conducted for 3M
used the Sprague-Dawley (SD) derr^eST rat obtained from the same supplier, and because extensive background information from previous teratogenicity testing at Haskell Laboratory exists on this rat strain.
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IINHALATION: EMBRYO-FETAL TOXICITY -AND TERATQfiENICITY STUDY IN THE RAT
HLR 881-81
B. Animals (cont)
II, Female rats about 55 days of age (nulliparous)
were received from Charles River Breeding Laboratories,
Inc., North Wilmington, Massachusetts. For Run I,
they arrived on April 16, 1981, and weighed between
151.3 and 190.1 g. For Run
they arrived on
May 1, 1981, and weighed between 152.7 and 188.0 g.
Male rats of the same strain and from the same supplier
were used for-cohabitation with the ...females. .They
ranged in.:age from, that .of the females to about one.
month older.
.
.
Upon arrival at Haskell Laboratory, each female rat was identified by a combination of toe clips and ear punches and by a cage card bearing its assigned number. The male rats were identified by ear slash
and cage card. The rats were housed two per cage in suspended, wire-mesh, stainless steel cages. Purina Certified Rodent Chow 5002, Checkers and water from the Wilmington Suburban Water Corporation (WSWC) were
supplied ad libitum. A lighting cycle of 12 hr light:
12 hr dark (dark period was from 6:00 P. M. to 6:00 A. M.) was maintained throughout the study. Animal room temperature was maintained between 72 and
77F, and relative humidity was maintained between
36 and 70%.
Since the historical incidence of cataracts or opacities in adult CD rats is about 3% (personal communication with James Clinton, V.M..D? consultant
ophthalmologist), all prospective parental rats were
examined for these alterations before breeding. The eyes of each rat were dilated with 1% atropine ophthalmic solution and examined in-semidarkness by the_, consultant ophthalmologist using focal illumination,
indirect ophthalmoscopy, and, when indicated,' slit-
lamp microscopy. Affected rats were eliminated from the colony before the breeding began.
C. Experimental Design and Procedures (Table I)
The female rats were quarantined for 11 days (Run I)
or 12 days (Run II) after arrival at Haskell Laboratory
and then they were mated to .-he;._roal.RS identified under
III.B. on an as-needed basis. Mating was verified by
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^MINHALATION: EMBRYO-FETAL TOXICITY <TD TERATflfiENICITY STUDY IN THE RAT HLR 881-81
C. Experimental Design, and Procedures (cont)
it detection of spermatozoa in the vaginal lavage each
morning following overnight cohabitation. The day on
which spermatozoa were detected was designated as
Day 1
April
of
28
gestation (Day 1 G). For Run I, Day 1 G
and 29, 1981, for Breeding Lots A and B,
was
respectively; for Run II, was May 13, 14, and 15,
1981, for Breeding Lots A, B, and C, respectively. After the necessary number of females were bred for
each "Run" and before exposure to tf^ began, the
mated females were ranked by body weight and assigned
to groups by rotation in order of rank. The exposure
group that the first animal was assigned to was selected
randomly..
II, For Experiment I (females sacrificed before
parturition), a total of 24 mated, females were to have
been assigned to each group (12 females/group/Run).
However, due to the degree of maternal toxicity in
evidence in the 25.0 mg/m3 group in Run I,
tration was reduced to 10.0 mg/m3 for Run
this concen
and 15
mated females were assigned to this new group. Further
more, two more control groups (six mated females/group)
were added to Run II; one was pair-fed to the 25.0 mg/m3
group, and the other was pair-fed to the 10.0 mg/m3
group.
For Experiment II (females allowed to give birth)
in Run I, 12 mated female rats were distributed to
each group. It was not intended that more dams be
included in this experiment, but with the addition of
the 10.0 added to
mg/m3
both
I group in Run
the control and
I
, six mated females were
the 10.0 mg/m3 groups.
These were all the mated females available unless the
exposure period was extended for at least six more days.
The exposure of animals toMHyy inhalation was
conducted by the Acute InvestigawLons Section, Haskell
Laboratory. The inhalation route was selected because
it
to
is
be
the route by which Du Pont employees
exposed toQfQ The exposure period
are
was
likely
6 hr/day
from Days 6-15 G." Neither feed nor water was available
during the exposure period. The procedures used for
generation of^fyxposure levels and measurement of the
concentrations and particle size attained are attached
(Attachment 1).
.
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[INHALATION: EMBRYO-FETAL TOXICITY 'AND TERATQGENICITY STUDY IN THE RAT
HLR 881-81
C. Experimental Design and Procedures (cont)
The test groups were exposed (whole body) to the^----(\ in 150-liter-glass and stainless steel Rochester-type chambers within which the rats were housed individually in wiremesh modules. Breeding lots within exposure levels were rotated w^tlun the chambers daily. Chamber concentra tions ofI^Bflwere determined by gravimetric analysis either eacn" one-half hour (intermediate and high levels)
or each hour (low level) , and by a spectrophotometric technique (on each low level sample, and on 5-6 samples
per exposure day for the other levels tested). A cascade impactor was used to determine the particle size attained
only for the high concentration group on the first and tenth exposure days for Run I, and on the seventh and
tenth exposure days for Run II. Control rats were exposed
to in-house air in the same type of chamber for the same
duration of gestation. The temperatures of each chamber were recorded hourly for each day during the exposure
period.
After each exposure session, the rats were housed in suspended, wire-mesh cages (two females/cage), and the racks holding these cages were placed in a walk-in hood. Since air-flow was vertical, the rats for each group were
caged vertically such that the control group was on the
end with the low level next to it. Baffles were present
between cages, but, to further minimize the likelihood of airborne cross-contamination, a single baffle was placed
between the rack containing the groups exposed to the
two highest levels and the rack containing the low level
group and the controls.
For Experiment I, the dams were weighed on the day
of arrival, before breeding, and on Days 1, 6, 9, 13, 16,. and 21 G. They were observed for clinical signs and changes in demeanor upon arrival at Haskell Laboratory,
at breeding, and daily from Days 6-21 G. Feed consumption was measured during gestation (two females/cage due to
till till till space restriction) . The dams were coded, from before
sacrifice by cervical dislocation on Day 21 G,
all
maternal and fetal data were collected and
all
structural alterations noted among the fetuses were
classified, so that personnel involved did not know the
exposure group to which any dam or fetus belonged. The
identity of each fetus was retained at least
the
report was written. After sacrifice, the dams were
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04 INHALATION: EMBRYO-FETAL TOXICITY
--AND
ENICITY STUDY IN THE RAT
HLR 881-81
C. Experimental Design and Procedures (cont)
examined for gross pathologic changes, liver weight was
recorded, and reproductive status was determined. The number of corpora lutea and implantation sites were
counted, and the number and position of all live, dead,
and resorbed fetuses were recorded. The uterus of each
apparently "non-pregnant" rat was stained with ammonium sulfide to detect very early resorptions; data collected were used only to determine the incidence of pregnancy. The weight of the intact and empty uterus for each dam was recorded to allow calculation of actual maternal gain in body weight.
All live and dead fetuses were weighed and sexed externally and internally, and the live fetuses were
examined at a magnification of 2.5X (Ednalite) for external alterations. The Ednalite also was used to count the corpora lutea.
About one-half of the fetuses of each litter that
'were alive when removed from the dam were examined for
visceral alterations (4) ; in addition, all stunted or
malformed fetuses also were examined similarly. The
heads of all fetuses examined for visceral alterations
were fixed in Bouin's solution to permit examination
as described by Barrow and Taylor (5), but only those
from the 25.0 mg/m3 and control groups (Run I) were
sectioned free-hand and examined under a stereoscope.
This included examination of a vertical cross-section
through the center of the eyes as well as of one in
front of the eyes and another through the widest portion
of the head. Sections containing the eyes of three
fetuses from each litter of the 25.0 mg/m3 group and of
two fetuses from each litter of the control group were
processed
one fetal
histologically
head from each
for examination. In
of four litters from
Run
the
II,
10.0 mg/m3 group and the control group were examined
under a stereoscope after free-hand sectioning in front
of and behind the eyes, and through the widest portion
of the head. The eyes were left intact to minimize
processing artifacts. The slices containing the intact
eyes were processed histologically and examined. In
addition, the heads from all fetuses in the group pair-
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CNHALATION: EMBRYO-FETAL TOXICITY ^AND TERATQGENICITY STUDY IN THE RAT
HLR 881-81
C. Experimental Design and Procedures (cont)
fed to the 25.0 mg/m3 group and the heads from two
fetuses with dark eyes detected during external examina tion . (one from the 0.1 mg/m3 group and one from the 10.0 mg/m3 group) were processed by the method described
for Run I. Histologic specimens were examined by light
microscopy.
All fetuses, except for the heads of those that
were fixed in Bouin's solution, were fixed in 70% ethanol, eviscerated (if. not done previously), macerated
in 1% aqueous KOH solution, and stained with alizarin red S to permit examination for skeletal alterations. On an as-indicated basis at sacrifice, some tissues were
fixed in Bouin's solution for storage or for histologic evaluation.
till For Experiment II, the procedures used
Day 21 G
were the same as for Experiment I, except that the dams
were weighed less frequently during gestation (only on
Days 1, 6, and 21), feed consumption was not measured, and
the identity of each offspring within litters was not
retained. Before expected parturition, each dam was
housed in a 13" x 15" polycarbonate cage (with a wire-
mesh lid)that contained Bed-0-Cobs (1/4" size). The
bedding was changed weekly following the seventh day
postpartum (Day 7 PP). The date of parturition was noted
it and
was termed Day 1 PP. Each parturition day was
considered to begin at 9:00 A. M. The dams were weighed
and examined for clinical signs on Days 1, 7, 14, and
22 PP. For each test group, a Fertility Index (% matings
resulting in pregnancy) and a Gestation Index (% pregnant
resulting in live births) were calculated, and for each
litter, a Viability Index (% animals born that survived
to Day 4 PP) and a Lactation Index (% animals alive at
four days that survived to Day 22 PP) were calculated.
All dams were sacrificed on Day 22 PP.
The pups from each dam were counted, sexed, weighed,
and examined for external alterations toward the end of Day 1 PP. Thereafter, each pup was weighed and inspected for adverse clinical signs on Days 4, 1, 14, and 22 PP; pups with adverse signs were marked for subsequent identi
fication. Neither standardization of litters nor crossfostering was practiced. The eyes of the pups in all
groups of Run I (Experiment II) were examined by a consul
tant ophthalmologist on Days 15, 16, or 17 PP shortly
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INHALATION: EMBRYO-FETAL TOXICITY TERATDGENICITY STUDY IN THE RAT HLR 881-81
C. Experimental Design and Procedures (cont)
after the eyes opened. This examination was conducted
with the exposure levels coded. The eyes were
first dilated with atropine and then examined in
a semidark room by focal illumination, indirect
ophthalmoscopy, and, when indicated, by slit-
lamp microscopy. At sacrifice on Day 35 PP. each pup was exsanguinated with a guillotine, and its eyes were removed and fixed in Bouin's solution. D. Statistical Evaluation
The litter was used as the experimental unit for the
purpose of statistical evaluation (6). The significance of differences in the incidence of pregnancy, clinical
signs, and maternal death was determined by use of Fisher's exact probability test (7). A two-way analysis of variance was used to detect differences in feed con sumption among, breeding lots and among test groups. The significance of differences in feed consumption among groups was determined by a one-way analysis of variance.
Dunnetf's test (8) was used to test the statistical signif
icance of differences between the control and experimental groups in maternal body weight, in body weight gain, and in feed consumption when the one-way analysis of variance was significant. The presence of a concentration-related response in the incidence of structural alterations and other parameters was determined by Jonckheere's test (9). The significance of differences in incidence between the control group and individual experimental groups was determined by application of the Mann-Whitney U test (10). When more than 75% ties occurred in the data, the Fisher's exact probability test was applied (11). The level of significance selected was p<0.05.
In addition, several reproductive indices were calcu
lated for some results from Experiment II.
IV. RESULTS A. Eye Examination of Prospective Parents The eyes of 291 male and 357 female rats were examined
for Run I on April 24, 1981; 11 males and seven females
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M
NHALATION: EMBRYO-FETAL TOXICITY
ANI7 'TERATOCENICITY STUDY IN THE RAT
HLR 881-81
A. Eye Examination of Prospective Parents (cont)
II, were removed from the colony because their eyes were not
normal ophthalmoscopically (Attachment 2). For Run 210 females were similarly examined on May 5, 1981, and 13 were discarded (Attachment 3). The same males were used for both.runs.
B. Maternal Exposure tofMBH
The animal exposure levels achieved were reported in
detail by the Acute Investigations Section (Attach
ment I). In
centrations
brief, for
for 6 hr/day
Run I,
from
the
Days
nominal exposure con
6-15 G were 0, 0.1,
1.0, and 25.0 mg/m3; the average daily concentrations
achieved (x + S.D.) by gravimetric measurement were
0, 0.14^ 0.06, 1.2 j^ 0.5, and 21.0 j^ 9.7 mg/m3,
respectively. The average mean daily temperature in the
chambers was about 76F and ranged between 72.0 and
78.5F.
II, For Run
the nominal exposure levels were 0, 0.1,
1.0, and 10.0 mg/m3; the values similarly achieved were
0, 0.12 +_ 0.04, 1.1 ^ 0.6, and 9.9 ^ 5.4 mg/m3,
respectively. The average mean daily temperatures in
the chambers were between 76.4 and 77.3F, and indi
vidual temperatures recorded ranged between 72.2 and
78.6F.
For the two runs, between 73 and 88% of the fUS
particles in the chambers were respirable (Attacnmeht 1)
C. Clinical Signs Observed
In Experiment I, clinical signs noted during the
period of exposure that were concentration-related appeared only in the dams of the 10.0 and 25.0 mg/m3 groups. In both groups most of the dams developed wet abdomens, which began in the perineal area, had
chromodacryorrhea and chromorhinorrhea, and were unkempt.
In addition, three of the 12 dams in the 25.0 mg/m3 group died, and four of the remainder became very lethargic toward the end of the exposure period. Focal alopecia was somewhat more prevalent among the dams of
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NHALATION: EMBRYO-FETAL TOXICITY
GENICITY STUDY IN THE RAT HLR 881-81
C. Clinical Signs Observed (cont)
the 10.0 and 25.0 mg/m3 groups (5/15 and 4/12) than
among those of the control group (3/24), but the
differences were not statistically significant.
In Experiment II, concentration-related clinical
signs appeared only in the same two groups, and they
were similar in type and incidence. Again, in the
25.0 mg/m3 group, maternal deaths occurred (2/12 females).
No adverse clinical signs were noted among the dams of the pair-fed control groups.
D. Maternal Feed Consumption
II). Feed consumption
During the period of
was measured, onLv in exposure to[(B^,j the
Experiment feed con
I.
sumption of the dams in the 10.0--rncf""25.0 mg/m3 groups
was significantly less than that for the control group
(Table
Feed consumption returned to the control
value in the post-exposure period. No significant
differences were noted in this regard between the
control group and J-heoroups exposed to the two lowest concentrations ofj----J
The average amount of feed consumed by the pairfed control groups was not different statistically from that of the groups to which each was matched
(Table II).
E. Maternal Body Weight Gain
1. Experiment I
III). The body weight gain of the dams exposed tci^^ly
at the 25.0 mg/m3 concentration was significantly
less during the exposure period (Days 6-15 G) than
for the control group (Table
Although the
10.0 mg/m3 group also gained less weight during the
exposure period than the control group, the differ
ence was not statistically significant. Body weight
gain from D.ays^J.6-21 G was similar for the groups
exposed tow--I/and fb'r the control group. The body
17
i^OTpMy.SanrtizedD.oes nof contain TSCA <"'?(
<teBINHALATION: EMBRYO-FETAL TOXICITY
^-AND
ENICITY STUDY IN THE RAT
HLR 881-81
E. Maternal Body Weight Gain (cont)
1. Experiment I (cont) .
weight gain achieved by both the 10.0 and 25.0 mg/m3
groups after Day 6 G was at least as much as that gained by their respective pair-fed control groups.
2. Experiment II
From Days 6-21 G, the^naternal body weight gain of the groups exposed to--^gfchat were not sacrificed
at term was not significantly different from the control value (Table VI).
F. Maternal Deaths
In this^study, five dams died; all were in groups
exposed to ^^fet the 25.0 mg/m3 concentration (3/12 in Experiment I, and 2/12 in Experiment II).
=o{--^ In Experiment I, the dams were found dead on Days 12,
13, and 17 G (Table IV). The first was not necropsied;
both of the others had grossly observable liver changes,
and their uteri contained only resorbed fetuses. The
probable cause of death of the dam found dead on Day 17 G
was circulatory collapse. All three dams died after
showing considerable body weight loss, an unkempt appear
ance, a wet abdominal surface, and chromodacryorrhea and
cAhc^o-ommoorijl^iiinorrhea beginning on
to^----rjbr shortly thereafter.
the
first
day
of
exposure
and
In the
Experim second
ent
wa
s
I
I,
au
t
one
ops
i
dam was
ed on D
a
found y 11
G
dead when
on s
h
D e
ay b
e
9
ca
G
m
e
moribund (Table VI). The uteri of both contained
implantations. Their clinical signs-preceding death were
similar to those described above.
G. Gross Examination of Maternal Organs at Sacrifice
In Experiment I, dark
noted for two of the dams one dam in the 10.0 mg/m3 rectum and pelvic muscles 1.0 mg/m3 group.
red mottling of the lungs was in the 0.1 mg/m3 group and in
group. A hematoma between the
.was noted in one dam in the
- 18 SompanySanitized. Does not contain TSCA CBI
INHALATION: EMBRYO-FETAL TOXICITY ,AND TERATOGENICITY STUDY IN THE RAT
HLR 881-81
G.;. Gross Examination of Maternal Organs at Sacrifice (cont)
III). In addition, in the 25.0 mg/m3 group, actual liver
weight was significantly increased (Table
The
liver weights of the control groups that were pair-fed
to the 10.0 and 25,^.mg/m3 groups were significantly less
than those for the^tltflgroups to which they were paired,
and than that for tne "control group (Table III) . On a
relative weight basis (using corrected Day 21 G maternal
body weights) ,
groups exposed
ttohJeBliSvle&rt
weights (x +_ S.E.M.) 10.0 and 25.0 mg/m3
for the
(5.42 +_ 0.125,
and 6.46 + 0.222 ,f^spect2.vely) were still significantly
more (MWU - two-tailed) than that for their respective
pair-fed control groups (4.58 +_ 0.164, and 4.62 j^ 0.103).
On the same basis, all groups differed significantly from
the control group.
II, In Experiment
the dams were examined for clinical
signs and weighed on Day 22 PP (Table VI); they were then
sacrificed and discarded.
H. Reproductive Effects and Body Weight of the Offspring
In Experiment I, the maintenance of pregnancy and the
incidence of resorptions among th^ surviving dams were not
adversely affected by exposure toH^gat concentrations up
to and including 25.0 mg/m3 (Table'llI) . In Experiment II,
nsotraatdevdersthe aet ffweac^t^--o--rL--,refcpornocdeuncttriavteiopne-rrefolartmeadnc(eTawbales VdeIm) o. n
Parameters examiTTed Acluded Fertility Index, Gestation Index, Viability Index, and Lactation Index.
II, III). The mean body weight of fetuses in the 25.0 mg/m3
group was significantly decreased (p = 0.002) below the
control value (Table III); but, this also was the case
(p = 0.001) for the control group pair-fed to the
25.0 mg/m3 group (Table
The mean weight of the
fetuses in the 10.0 mg/m3 group, and in its pair-fed control
group, were not significantly different from the control
group (p>0.23). In Experiment
the neonates in the
25.0 mg/m'7 group also were significantly smaller than
those in the control group (p = 0.002) but by Day 4 PP,
the difference was no longer statistically significant
(Table VI).
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- 19 -
J------JINHALATIOEMNB:RYO-FETAL TOXIC ITY
.AND T.ERATQ.GENICITY STUDY IN THE RAT HLR 881-81
I. Fetal Alterations
1. Fetal Malformations
jconcentration-related increase in the incidence of external, visceral, or skeletal malformations was not detected (Table IV). No malformations-were seen among the fetuses from
dams exposed toQIRat 25.0 mg/m3. Similarly, coded
stereoscopic andTiistomorpho logic examination of
fetal eyes from heads that were fixed in Bouin's
solution did not reveal concentration-related structural alterations (Attachments 4 and 5).
2. Fetal Variations
The overall "percent fetuses with variations" per
litter did not increase significantly with increased
concentration offB9 (Table V) . This was the case
also for the two specific components of the total
incidence v.i.z.
"developmental variations," and "
"variations :-due to retarded development. " Among the
"developmental variations" a positive concentrationresponse.;also was not obtained for the incidence of subcutaneous hemafcomas; however, in the 25.0 mg/m3 group, their incidence was significantly increased (p = 0.05), but only upon application of the onetailed Mann-Whitney U test. Among the "variations due to retarded development," only the incidence of
partially ossified sternebrae in the 25.0 mg/m3 group was similarly increased (p = 0.04). Again, the incidence of partially ossified sternebrae was not concentration-related (Jonckheere's test).
In the control group that was pair-fed to the 25.0 mg/m3 group (Table V), the incidence of
partially ossified sternebrae was significantly
increased (p = 0.04 by the two-tailed MWU test) as was the incidence of variations regarded as being due to retarded development (p = 0.02).
J. Pup Alterations
Only one pup was observed to be malformed externally.
It occurred in the 0.1 mg/m3 group (Table VI). On
- 20 -
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(jpBtflNHALATION: EMBRYO-FETAL TOXICITY
^.AND TERAIiQCENICITY STUDY IN THE RAT
X----H--------U
HLR 881-81
^
-J
J. Pup Alterations (cont)
it it Day 19 PP,
was noted to have severe hydrocephaly and
an abnormal gait. Since it was moribund,
was sacri
ficed the next day.
II On Days 15, 16, or 17 PP, coded examination of the
pups' eyes in vivo from Run I did not reveal concen
tration-related malformations. Eye changes were detected
in six pups (Table Viand Attachment 6).; -three of. these
occurred--in' the" control- .gro-up;. and the remaining three
occurred in the 0.1 mg/m group. In'view of these nega
tive" result's, similar in vivo examination of the eyes of
the pups from Run
w-a-s not conducted.
II On Day 35 PP, all of the pups were sacrificed, and
their eyes were fixed in Bouin's solution. Since concen tration-related eye changes were not detected t:o this stage, in either the fetuses or the pups, pathologic
examination of the eyes of the pups of Runs I and was not conducted.
V. DISCUSSION
In this study, exposure t(^----(at a concentration of 25.0 mg/m3 for 6 hr/day from Days (?-15 G -was overtly toxic to rats in that 5/24 did not survive to term, and most of the survivors had'-:wet abdomens, reddish-brown discolor ation around the eyes, nose, and mouth, lethargy, decreased
feed consumption and body weight gain during the exposure period, andan.unkempt appearance. None of the 21 dams exposed toj----Tttt 10.0 nig/in3 died, but they showed
similar clftrtAA signs to a lesser degree than that seen at the 25.0 mg/n^J.evftl. Despite this degree of maternal toxicity, no evidence ofiff^relafced teratogenicity was detected.
The fetuses from the 25.0 mg/m3 group were significantly smaller than those from the control group. This probably was
due to the decrease in j^ateaaial feed consumption rather than to a direct response tcyBJPjsince the fetuses of the control
group pair-fed to the 2-?.0*fflg/m3 group also were significantly smaller than the control fetuses. Similarly, decreased maternal feed consumption also was probably responsible for the significant decrease in weight of the neonates in Experi
ment II.
/^.
-
21 -
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1INHALATION: EMBRYO-FETAL TOXICITY
'AND TERATQCENICITY STUDY IN THE RAT HLR 881-81
V. DISCUSSION (cont)
relatiMvaetewrneaigl hltivbearsisweiingdhitcactheadngeths aatmeoxnpgogsuroruepstc^onHlaS 10.0 mg/m3 or more resulted in significantly larger livers than in the control group. This effect also was noted in
previous toxicity tests with||f|(1, 2, 12, 13, 14) and
probably represented fatty degeneration accompanied by enzyme induction. This increase in liver weight occurred despite the significant decrease in body weight gain in
these groups which significantly reduced the relative liver
weights of the pair-fed control groups.
ofjfjor The incidence of resorptions was not ycraased above the
control value at any test concentration
among the
pair-fed control groups. The statist! callysignificant
decrease obtained in the 1.0 mg/m3 group was not concen-
Jbra,i on-related and hence was not'demonstrated to be due to
--4
The incidence of partially ossified sternebrae was
significantly increased among the fetuses of the 25.0 mg/m3
group by the Mann-Whitney U test (one-tailed). This varia
tion is indicative of developmental delay. Since its inci
dence
to be
was not concentration-related
directly due to ^^ILlexposure.
it was not demonstrated It also was probably
related to the decreased feed consumption of the dams, since
its incidence was even more frequent among the control dams
pair-fed to the 25.0 mg/m3 group.
Two fetuses were observed to have reddish eyes at sacri
fice. Histomorphologic examination revealed hyphemia or the presence of blood in the anterior chamber of the eye (Attach
ment 7). Their incidence was not concentration-related since one occurred in the 0.1 mg/m3 group and the other in the 10.0 mg/m3 group. . This alteration occurred in seven of- 6706
fetuses (0.10) from six of 681 litters (1.0%) among the control litters of past studies at Haskell Laboratory since
March, 1976.
Subcutaneous hematomas were detected in all groups including
the control groups . The difference in incidence between the 25.0 mg/m3 group (7.6%) and the control group (4.0%)
- 22 CompanySam-feed. Does nof contain TSCA CW
NHALATION: EMBRYO-FETAL TOXICITY TERATOGENICITY STUDY IN THE RAT
HLR 881-81
V. DISCUSSION (cont)
was statistically significant but only upon application of
a Mann-Whitney U one-tailed test. In addition, the incidence of fetuses with hematomas in the 25.0 mg/m3 group did not exceed the range of incidence contained among the control groups of past studies (4.6-9.0%) at Haskell Laboratory.
Therefore, it is not likely that the magnitude of this difference would be repeatable. Moreover, even if the
increase was repeatable, its occurrence would likely depend more upon the presence of t,fae~ covert toxicity in this group than upon a direct effect of^B^^er se. VI. CONCLUSION
Cyfffwas not demonstrated to be teratogenic even when administered to rats at overtly toxic concentrations from Days 6 through 15 of gestation. Concentration-related
embryo-fetal toxicity, expressed as decreased fetal weight,
occurred only at the highest concentration tested (25.0 mg/m3) which was overtly toxic to the dams. This decreased body weight persisted to Day 1 postpartum but not to Day 4
postpartum. After exposure toQiqat the 10.0 mg/m3 concen tration, which, was still toxic buT'not lethal to the dams,
no adversefli^yrelated effect was noted among their offspring.
Among the fetuses of the 25.0 mg/m3 group, a marginally significant increase in the incidence of hematomas also jc<u,rred; the increase was not demonstrated to be due to
5er se.
Hence, in this study,fWwas not demonstrated to
represent a unique hazard to T'ne'conceptus.
VII. ACKNOWLEDGEMENTS
The concentrations offftf^for inhalation were generated,
monitored, and analyzed by Vfe^cvite Investigations Section, Haskell Laboratory. Histologic specimens were prepared by the Pathology Section, Haskell Laboratory. Histomorphologic examination of the eyes and other tissues was conducted by William D. Kerns, D.V.M. , M.Sc. The in vivo eye examinations were conducted by James M. Clinton, V.M.D., Consultant in Comparative Ophthalmology. The remainder of the study was conducted by the Teratology Section, Haskell Laboratory.
-
23 -
S^QWiy. Sanitized. Does not contain TSCA CBI
[NHALATION: EMBRYO-FETAL TOXICITY FAND TERATQGENICITY STUDY IN THE RAT
HLR 881-81
VIII. REFERENCES
1. Unpublished Du Font Data, Haskell Laboratory:
2 .^Jnpublishf^d Dn Pont Data, Haskell Laboratory:
3 .U1--np--ub--li--sh--eCd--linD]uicaPol nPt aDthaotalo, gyHaRsekpeollrtL, a8b/o1r3a/t8o0ry. : 4. Staples, R. E., "Detection of visceral altera
tions in mammalian fetuses." Teratology, 9:A3 7 (1974). 5. Barrow, M. V., and W. J. Taylor, "A rapid method
for detecting malformations in rat fetuses."
J. Morph., _12_7(3);291-306 (1969). 6. Haseman, J. K., and M. D. Hogan, "Selection of
the experimental unit in teratology studies." Teratology, 3_2_:165-172 (1975). 7. Siegel, S., Nonparametrie Statistics for the Behavioral Sciences, McGraw-Hill, New York, pp. 96-104 (1956). 8. Steel, R. G. D., and H. H. Torrie, Principles and Procedures of Statistics, McGraw-Hill, New York, pp. 99-128 (1960). 9. Jonckheere, A. R., "A distribution-free K-sample test against ordered alternatives." Biometrika,
4JL:133-145 (1954) .
10. Mann, H. G., and D/ R. Whitney, "On a test of whether one or two random variables is sto chastically larger than the other." Ann. Math. Stat., 1^:50-60 (1947).
11. Haseman, J. K., and D. G. Hoel, ""Tables of Gehan's generalized Wilcoxon test with fixed point cen
soring." J. Statist. Comput. Simul., 3:117-135
(1974) .
- 24 -
^"Pany sanitized. Does notcontatn TSCA CB
INHALATION: EMBRYO-FETAL TOXICITY TERATQSENICITY STUDY IN THE RAT HLR 881-81
VIII. REFERENCES (cont)
12. JJnpublished Du Font Data, Haskell Laboratory: 13 .Unpublished Du Font Data, Haskell Laboratory: 14 .Jnpublished Du Pont Data, Haskell Laboratory:
Company Sanitized. Does not contain TSCA CW 25 -
TAE?LE I
EXPERIMENO."'AL DESIGN; EXPOSURE LEVELS AND DISTRIBUTION OF MATED FEMALES AMONG TEST GR
RnrU-rKNT I-r-
Exposure Levels
(ing/m3)
0
--
---
^Q
25.0
Number Mated Females/Group
Experiment I1 Experiment II2
12
12
12
12
12
12
12
12
Exppsure Perio
Days; Days Days; Days;
6-15 6-15 6-15 6-15
G3 /
G /--
G 1I
G (--
0
12
I ^ I 0.1
12
RUN
12
II 15
(0
I
PEXO;..4
6
I PF25.05
6
\ sf f 6
Days; 6-15 G (
Days, 6-15 G
Days:6-15 G
6
Days:6-15 G
Days 6-15 G l
Days 6-15 G (
II 0
1 all Experiment I females sacrificed on Day 21 G (Runs I and II
2 all Experiment females allowed to give birth and to raise t
o
offspring to at least Day 21 postpartum (Runs I and II)
B> G - day of gestation
3"
4 control group pair-fed to group givenM|1jat 10.0 mg,/m3
W 0
5 control group pair-fed to group given----W|aatt 25.0 mg;/m3
0 01
TABLE II
FEED CONSUMPTION3 IN RATS EXPOSED TdflBgFRODMAYS 6-15 OF GESTAT
Experiment I
_________Exposure Concentrations (mg/m3)__________
0.0
0.1
1.0
10.0
25.0
Pre-exposure period (Days 1-5 G)
Exposure period'1 (Days 6-15 G)
Post-exposure period'1 (Days 16-20 G) .
20.80.38 23.40.38 27.90.78
21.00.33 24.00.52 30.01.24
21.10.35 23.00.45 28.3t0.64
20.80.37 21.80.37(() 27.1t0.74
19.00.52 18.40.46(f' 27.4+0.52
___
20.3 20. 26.
a
-
gtS.E.M.; values for non-pregnant rats were excluded
b - nominal concentrations oEufHf
c - on each day of gestation, UuTi'exposed dams were given the amount of feed consumed
gestation day by selected rats in the corresponding exposure group; if the expo
housed two per cage, then their average consumption for each day was the amount the pair-fed rat
d - during the exposure and post-exposure periods, the rats were caged in pairs; the
unit used was:
total grams feed consumed per cage per day
number of rats per cage (() - significantly different from control value by Dunnett's test (p^O.05)
TABLE III
REPRODUCTION ^\ND F ETAL DEVELOF MENT IN RATE EXPOSED T0< ^ FROM DAY S 6-15 OF
Exposure (Soncentratioris8 (mg/m3)
Experiment I
0.0
0.1
1.0
10.0
25.0
P
10.0
Females
No. pregnant /
no. mated
23/2 4
24/24
23/24
15/15
8/12
6/6
No. deaths
0
0
0
0
3
0
No. litters
23
24
23
15
7
6
Mean no. corpora
lutea
14.50 ^
14.30.51 15.60.58
15.20.65 15.11.42 13.80.48
1
Mean no. implants 14.00 .51 13.40.41 13.80.28 14.2i0.22 14.00.62 14.00.63
i\j
00
1
Mean liver ,
weight(g)8'"
15.20 .30 15.00.30 15.40.35 16.10.50 18.00.78++ 12.80.50
^ Mean maternal
's
weight gain (g)
"0
Days 1-5
29.11 .99 29.1tl.01 32.511.00 29.01.39 27.21.97 26.21.11
f5
(/>
Days 6-15
57.61 .69 57.62.06 56.71.95 50.92.21 36.4t5.330 34.93.21(
I
i'
Days 16-21
71.42 .19 68.91.92 72.81.97
72.9t2.77 68.63.41 71.34.72
i
<D
Q.
Days 6-21
129.03.39 126.53.28 129.53.12 123.8t2.86 105.017.26" 106.214.7
0
0
Days 6-210^
56.71 .90 56.92,02 56.4t2.11
^
49.12.52 37.45.39 34.32.98
2
(0
3
0
5"
8
ffl 3
CO 0 >
0
5
TABLE III (CONT)
REPRODUCTION AND FETAL DEVELOPMENT IN RATS EXPOSED TO tf------ROMDAYS 6-15 OF
t
ts.)
\s
l
W
|a3
(/
.
(a 5 P-
0
0
(0 (A
3 0
"
|S"
g-
-^
0 > 0
S
Experiment I
Fetal Death
Mean no.
resorptions
Mean %
No. litters
with total resorption
Fetuses
No. live
Mean no. live
No. stunted
Mean weight (gf
0.0 1.00.15 6.61.02
0
299
.
13.00.47
1
4.00.04
.
Exposure Concentrations
0.1
1.0
(mg/m3) 10.0
25.0
P 10.0
0.80.20 5.31.34
++
0.50.12 +
3.80.87
0.70.21 5.21.47
0.80.55 5.93.50
0.70.49 4.12.94
0
0
305
12.70.39
0
3.90.05
305
13.30.28
0
3.90.04
0 0 0 202
13.510.34
92
13.10.70
80
13.30.21
0
1
0
3.90.07 3.60.12 3.90.12
TABLE III (CONT)
REPRODUCTION AND FETAL DEVELOPMENT IN RATS EXPOSED TO^BfcFROM DAYS 6-15 O
nominal concentrations of flBB
on each day of gestation, non-exposed dams were given the amount of feed consum
gestation day by selected rats in the corresponding exposure group; if the ex
were housed two per cage, then their average consumption for each day was the to the pair-fed rat
all females had visible sign of pregnancy evident at autopsy except for one in
group in which resorptlons were detected only by ammonium sulfide staining; d
this female were excluded from all other calculations
^S.E.M.
non-pregnant animals were excluded Day 21C body weight denotes the body weight of females excluding the products o
(i.e.. Day 21 corrected body weight)
^ o
Se stunted fe'tuses were excluded
'
significant dose-related response detected by Jonckheere's test (p^O.05)
<(> significantly different from control value by Dunnett's test (p^O.05)
+ significantly different from control value (one-tailed Mann-Whitney U test, p<0
++ significantly different from control value (two-tailed Mann-Whitney U test, p<0
(A 0 >
0 9
5
I .
w
fi)
L/-1
15.
^
'
a,
0
0 (D W
3
1 0
S"
5
-(
w
.^ a-
i
TABLE IV
FETAL Mi^LFORMATK3NS IN RATS1 EXPOSED 1'cffK1^0^. DAYS 6-1;) OF GESTAT L.'-'J
Experiment I
Exposure Coiicentratiol-is (mg/m3)
0.0
0.1
1.0
10.0
External Malformations
No. examined
Microphthalmia
299/23
d
305/24
305/23
l/l6
202/15
Visceral Malformations
No. examined
159/23
Great vessel malformation
Innominate artery-none
Renal papilla - none
Kidney - very small
^
Head Malformations
No. examined
I/I3
90/17
161/24
2^
l/l1
161/23
110/15
I/I8
1/1
19/6
Skeletal Malformations
No. examined Rib - fused - missing
299/23
l/l3 l/l1
305/24
305/23
202/15
25.0 92/7 51/7
51/7 92/7
Pair-
10.0 80/6 42/6
80/6
LJ N)
t'ff 1
O
f<
w
1R'
(D
a.
0 0 (D Uf
|
"
M".
3
-vt>
0 >
0
g
TABLE IV (CONT)
FETAL MALFORMATIONS IN RATS EXPOSED TO ------FROM DAYS 6-15 OF GESTATI
Experiment I
Total with Malformations
Avg. 7, Malformed Fetuses per
Litter (S.E.M.)
Exposure Concentrations"1 (mg/m3)
0.0
0.1
1.0
10.0
25.0
2/2
3/3
1/1
1/1
Pair-Fe 10.0
0.60.44 1.00.53 0.40.40 0.40.41
nominal concentrations o||^fR
if on each day of gestation, non-exposed dams were given the amount of feed consumed
same gestation day by selected rats in the corresponding exposure group;
the
rats were housed two per cage, then their average consumption for each day was
amount offered to the pair-fed rat c fetuses/litters
d blanks represent zero incidence
e fetus weighed 3.38 g; no variations detected f one fetus (3.44 g) also had a misaligned sternebra; the other fetus weighed 4.51
g fetus weighed 3.91 g and also had petechiae
h fetus weighed 3.25 g; no variations detected
i fetus weighed 3.78 g and also had slight hydroureter
,
J
stunted fetus weighed 2.41 g and also had calloused, thickened, and partially os
ribs, petechiae, partially ossified sternebra, misaligned sternebra, pulmonary arteries connected to main pulmonary artery by a common trunk
k no head malformations were noted
1 fetus weighed 3.82 g; no variations detected
TABLE 1V
FIiTAL VARIATIONS! IN RATS EXPOSED TO |
^ ROM DAYS bC-1j.-I); ur ->T-1 u^Ti-.t^STATION
Experiment I
External Variations
No. examined Hematoma
Petechia
Visceral Variations
No. examined
Renal papilla.
-reduced Renal pelvis
-large Pulmonary arteries
-common trunk
Head Variations
No. examined
Eye - blood in anterior chamber
Exposure Concentrati ons a (mg/m3)
0.0
0.1
1.0
10.0
299/23 12/10 31/13
305/24 16/12 38/17
305/23 11/7 30/16
202/15 5/4
33/14
159/23 I/I13 1/1 5/2
161/24
e
1/1
161/23 4/4
110/15 3/3
25.0
92/7
7^
9/5
51/7
1/1
90/17
1/1
1/1
19/6
1 /1
51/7
10. 80/
4/3 16/6 42/6
2/2
fI UB
W
S.
1
P-
0
LJ^
?
1
3 g
y
0
2
FETAL VARIATION;3 IN RATS
TABLE V (CC)NT)
]3XPOSED
TOfl----kF'RDM IS.Ui'1
nAVQ
JJJ1.I.Q
6u --J1- 5^ \Oj sF. C\-rFjj;STATION
Experiment I
Skeletal Variations
No. examined Sternebra
-misaligned(.1)^ -misaligned(2+)f
Centrum
-bipartite
-dumbbelled
Rib
-extra ossification
center -rudimentary
-extra
-beaded
-calloused
-wavy
Exposure
a
Concentrations
(mg/m3)
0.0
0.1
1.0
10.0
299/23
16/12 6/5
305/24
24/14 12/9
305/23
10/9 13/11
202/15
13/8 6/5
4/4
4/4
6/4
1/1
9/6
3/3
7/6
4/3
25.0
92/7
5/3 3/3
1/1 1/1
50/12 7/6
1/1
41/1511 3/3 1/1
3/2 1/1
39/151 3/3
26/6 3/3 1/1
1/1
22/7
2/2
2/1
10 80
3/ 1/ 2/
11/4
TABLE V (CONT)
FETAL VARIATIONS IN RATS EXPOST-n TO fl|| TTW DAYS 6-15 OF GESTATIO
Experiment I
Exposure Concentrations (mg/m3)
0.0
0.1
1.0
10.0
25.0
1
Skeletal Variations (cont)
No. examined with
heads
140/23
144/24
144/23
92/15
41/7
3
Skull bones
partially ossifiedd
-parietal
3/3
7/4
2/1
1/1
i
-interparietal
2/2
12/4-
1/1
4/2
-supraoccipital
3/3
9/5
2/2
1/1
-squamosal
2/2
2/1
2/1
Zygoma
-partially ossifieedd
I/I
2/2
1/1
Maxilla -partially ossifieedd
I/I
1/1
Hyoid
.-partially ossifie.edd
11/6.-
9/4
7/5
7/4
-unossified
4/2
15/6"1
13/9
2/2
TABLE V (CONT)
FETAL VARIATIONS IN RATS EXPOSED. TO ------ FROM DAYS 6-15 OF GESTATIO
Experiment I
Exposure Concentrations (mg/m8)
0.0
0.1
1.0
10.0
25.0
1
Skeletal Variations (cont)
Subtotal - Developmental Variations
No. affected
118/22
123/24
100/23
76/15
44/6
3
Avg. % Affected
Fetuses per Litter
(S.E.M.)
40.65.16 41.64.06 31.63.84 37.65.08 47.66.62 38.
Sternebra
-partially ossified
27/9
10/6
13/8
12/6
17/5-'1+
-unossified
3/2
3/2
4/2
Centrum
-partially ossified
2/2
Rib
-partially ossified
2/1
Ischium
-partially ossified
1/1
2/2
Pubis
-partially ossified
-unossified
4/3
1/1
TABLE V (CONT)
FETAL VARIATIONS IN RATS EXPOSED TO I----^ROM DAYS 6-15 OF GESTATIO
.EgperimentI
^xg^sur^_Con^ent^at^m_s^(mg/m3)
0.0
0.1
1.0
10.0
25.0
1
Skeletal Variations (cent)
Subtotal - Variations Hue
to Retarded
Development
No. affected
45/14
45/11
34/14
17/7
24/6
Avg. 7, Affected
Fetuses per Litter
(S.E.M.)
14.34.01 14.24.35 10.92.84 8.43.03 25.38.50 8.5
TOTAL
No. Fetuses with Variations
Avg. % Fetuses with Variations per
Litter (S.E.M.)
1^/22
140/24
123/23
87/15
55/6
3
48.75.07 49.44.42 40.13.43 42.85.14 58.45.98 42.
TABLE V (CONT)
.
FETAL VARIATIONS IN RATS EXPOSED TOfflB^FROM DAYS 6-15 OF GESTATIO
a - nominal concentrations of ----^
b - on each day of gestation, non-exposed dams were given the amount of feed consumed
same gestation day by selected rats in the corresponding exposure group; if the
exposed rats were housed two per cage, then their average consumption for each
was the amount offered to the pair-fed rat
c
-
fetuses/litters
'
d - slight hydroureter also was detected
1-5 e - blank cells indicate zero incidence
f - (1) and (2+) denote that 1, or 2 or more sternebrae
g - one was located in the cervical region, all others
h - 14 occurred in two litters
i - 16 occurred in two litters
j - 7 occurred in one litter
k - 18 occurred in two litters
occurred in one litter
m
-
11 occurred in two litters
n
-
4 occurred in one litter
+ - statistically significant difference detected only
(p^O.05)
were misaligned, were located in
if Mann-Whitney
respectively the lumbar re
U test is one
++- statistically significant difference detected by two-tailed Mann-Whitney U test
REPRODUCTION AND DEVELOPMENT OF OFFSPRING OF RATS EXPOSED TO tfkFP;OM DAYS 6-15
Experiment II
Females
a
Exposure Concentrations
(mg/m3)
0.0
0.1
1.0
10.0
No. pregnant/no, mated
No. deaths
No. litters Fertility Index W'1
Gestation Index (%)8
Mean maternal weight gain (g) Days 1-5 G
Days 6-21 G
Days 1 PP-22 PP
18/18
0
18 100 100
10/12
0
10
83.3
100
11/12
0
11
91.7
100
6/6
0 6
100 100
31.111.^
112.5t4.33 -3.410.58
31.8t2.08 115.88.07
-2.80.75
31.72.16 116.27.77
-2.0t0.81
28.22.44 118.93.28
-3.10.78
Offspring At delivery (Day 1 PP)
No. litters
No. live pups/litter No. live pups (%)
No. dead pups (%)
18
C
12.30.60, 222(99.6)
1(0.4)
10
12.10.80 121(99.2)
1(0.8)
11
11.21.27 123(98.4)
2(1.6)
6
/
13.30.67 80(100)
0(0)
1'ABLE VI (CONT)
REPRODUCTION AND DEVELOPMENT 1OF OFFSPRING CF RATS EXPOS ED TO^^ FRCIM DAYS 6-1-
Experiment II
a
Exposure Concentrations
(mg/m3)
0.0
0.1
1.0
10.0
Offspring (cont)
After delivery
No. dead
1
I11
0
0
No. cannibalized
0
2
0
0
0
No. live (Day 22 PP)
221i
118
123
80
u No. males/females 115/106 62/56 70/53 44/36
^W Viability Index W3
100
99.2
100
100
1
Lactation Index (7,)^
99.5
98.3
100
100
R"
(D
Mean weight (g)
0.
4
0
Day 1 PP'
Day 4 PP
3
6.80.11
10.310.25
7.00.18 10.90.32
6.70.18 10.90.39
6.60.23 9.90.43
&
Day 7 PP
0
15.00.44 15.610.46 15.9t0.63 14.8t0.69
0
5"
Day 14 PP
29.21.06 30.1t0.89 30.6tl.29 28.0tl.23
Day 22 PP
-<
W
50.11.82 51.4tl.73 52.0t2.46 48.4t2.15
0
>
Alterations
0
5
No. examined externally
222/181
121/10
123/11
80/6
No. malformed
l/l"1
No. eyes (pairs) examined in vivo
141/12
118/10
123/11
--
No. with alterations
3/3
3/2P
0
--
INHALATION: EMBRYO-FETAL TOXICITY AND TERATOGENICITY STUDY IN THE RAT
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.CompanySanitized. Does not contain TSCA CBI
41 -
CENTRAL RESEARCH AND DEVELOPMENT DEPARTMENT HASKELL LABORATORY FOR TOXICOLOGY
AND INDUSTRIAL MEDICINE
ELK TON ROAD NEWARK, DELAWARE
APPENDIX A
PROTOCO.
RATS WITH
FOR INHALATION TERATOGENICITY STUDY IN
&
I
I. BACKGROUND
. . . - This study was requested by fJBMBBMW1^'
Polymer Products Department tf--------i at a meeting held at Haskell Laboratory on April 9, 1981. The need for such a study *
emanated from TSCA Section 8(e)'s filed by
3M between the last part of 1980 and March 20, 1981. The adverse effects seen in studies conducted for 3M consisted of lens changes in the eyes of term offspring from rats exposed to the test chemicals by gavage from Days 6 through 15 of gestation. For additional infonna-
March 30, 1981.
draft of HFaosrketlhle LdaebvoerlaotpomryenRt eopfortthftiasl--,p--ro--to--c--o--l, --t--he^! on the known toxicity ofj||----------BB||Bj|^^----------
----Hg was reviewed, and inrorroation gleaned from 3M also was considered.
II. MATERIALS AND METHODS
The study consists of two experiments. Experiment
I will be a full teratogenicity study by^inhalation with
the dams sacrificed the day before expected delivery.
The dams for Experiment II will be exposed as in the first
experiment, but will be allowed to give birth and to raise their offspring to at least 22 days post partum.
* Du Pont classified information
Company Sanitized. Does not contain TSCA CBt
- 42 -
PROTOCOL -INHALATION TERATOGENICITY
PAGE 2
II. MATERIALS AND METHODS (CONT)
A. Test Chemical
received from the Polymer Products Department, was assigned HasJcell Number 14,045.
B. Animals
Crl:CD(SD)BR female rats 48-54 days of age (nulliparous), weighing about 170 g will be ordered from Charles River Breeding Laboratories, Inc., North Wilmington, Massachusetts. The rats will be quarantined for at least 1 week after arrival by air-conditioned truck. Upon arrival each will be identified by a combination of ear punches and toe clips, and by a unique identification number on a cage card. They will be mated to mature males of the same strain. Mating will be verified by detection of spermatozoa
in the vaginal lavage each morning (Day 1 of gestation) following overnight cohabitation.
The rat was selected for this study because 3M reported a positive teratogenic response in this species, and we wish to duplicate this finding at Haskell Laboratory. In addition, the degree of toxicity of this chemical was determined in this species at Haskell Laboratory. The Cri:CD(SD)BR strain was chosen because extensive background teratogenicity data exists at Haskell Laboratory only on this rat strain.
Since the historical incidence of cataracts or opacities in CD rats is 3%, according to consulting opthal-
mologist ^----MI------HW all animals will be screened for
these alterations before breeding. The screening procedure
will include examination of both eyes and elimination of
affected rats. C. Exposure by Inhalation
The inhalation route was selected since it is the
route by which Du Font employees are likely to be exposed
Company Sanitized. Does not contain TSCA CBI
43
PROTOCOL -INHALATION TERATOGENICITY
PAGE 3
C. Exposure by Inhalation (cont)
will
Days
__ The test groups will be exposed to the
--------------Bin Rochester Chambers; free moving Ta^:s be given whole body exposure for 6 hours/day from 6 through 15 of gestation. Chamber concentrations
every hour by gravimetric analysis and at least twice
daily by a spectrophotometric technique. Control rats will
be exposed to in-house air in the same type of chamber for
the same duration of gestation.
After each exposure session, the rats will be
housed in suspended wire-mesh cages (two females per cage),
and the racks holding these cages will be placed in a walk-in hood. The rats for each group will be caged vertically starting with the highest exposure level and
progressing to the lowest exposure level and then the control group. To minimize the likelihood of airborne
cross-contamination, a baffle will be placed between the
rack containing the groups exposed to the two highest levels and the rack containing the low level group and the
controls. In addition, in the latter rack, baffles will be
inserted, between each cage containing control rats and those containing rats exposed to the lowest concentration of the test chemical.
D. Exposure Levels
Concentrations recommended for testing are 25.0, 1.0, 0.1, and 0 mg/m3. Based on the limited toxicity data available at Haskell Laboratory and the results reported by 3M, these concentrations are expected to yield an "effect" level and an apparent "no-effect" level of exposure.
E. Animal Distribution
Before exposure, mated females will be ranked by
body weight and assigned to groups by rotation in order of
rank. The dose group the first animal is assigned to will
be selected randomly. If the distribution process results
in statistically significant differences in body weight
among groups before exposure, then minimal switching within
breeding dates will be used to alleviate the statistically
significant differences. A total of 24 mated females will
be assigned to each
will be assigned to
group for Experiment I. About
each group for Experiment II.
12 females
Mated rats
ill that are
or that do not gain weight properly"will be
discarded before distribution
-
44 -
CompanySanitized. Does not contain TSCA CBt
PROTOCOL -INHALATION TERATOGENICITY
PAGE 4
F. Husbandry
Upon arrival at Haskell Laboratory, the female rats will be housed two per cage in suspended wire-mesh steel cages. Purina Certified Rodent Chow, 5002, Checkers
and water from Wilmtngton Suburban Water Corporation (WSWC)
will be provided ad libitum.
The potential effects of dietary contaminants were considered and, on the basis of the manufacturer's data, the contaminant levels are believed to be within acceptable ranges. No other contaminants reasonably anticipated to be present in the feed are expected to interfere with the results of this study. The potential effects of water
contaminants reported by WSWC were considered and appear to be within acceptable ranges. To supplement the WSWC
data, Haskell Laboratory initiated an analytical program
that monitors these and other contaminants reasonably anti cipated to be present in its water supply.
G. Records Maintenance
Records will be maintained for each animal except that feed consumed daily will be noted as a total for the
animals caged together. The final report and raw data will be forwarded to the Information Section of Haskell Laboratory for archiving.
H. Safety Precautions and Disposal of Waste Material
Access to the inhalation laboratory will be limited
during the periods that rats are being placed into or
removed from the chambers. Chamber exhausts will be filtered through cotton filters and MSA charcoal filters before renting the air to the hood. Waste material containing
kB^B|||lBWtf----B1i^^------|will be packaged in polyethylene'^nedFiberpaks or plastic-lined waste bags for incineration at Stine Laboratory. All persons handling the test material
or exposed to the study animals will wear the protective
equipment and follow the safety procedures presented to the Process Hazards Review Committee.
CompanySanded. Does notcontatnTSCACBt
-
45 -
PROTOCOL -INHALATION TERATOGENICITY
PAGE 5
I. Parameters to be Studied
Experiment I - Full Teratogenicity Study
1. Dams
a. Body weight - weighed on the day of
arrival, before breeding, and on the
morning of Days 1, 6, 9, 13, 16, and 21 of gestation b. Feed consumption - the average amount
of feed consumed daily per rat for each group will be determined for
the pre-exposure, exposure, and postexposure time periods. The measurements
will be taken at the same time each
morning
c. Clinical signs - observed upon arrival, at breeding,, and daily at least from
Days 6 through 15 of gestation
d. Liver weight - absolute weights will
be taken and, if indicated, liver
weight will be presented relative to the corrected maternal body weight at the time of sacrifice e. Uterine weight - the intact and empty
uterus of each dam having one or more
fetuses will be weighed to permit
calculation of actual maternal body weight gain during gestation
f. Corpora lutea - counted and recorded
for each ovary g. Implantation sites - counted and recorded
for each pregnant rat; the uterus of each apparently "non-pregnant" rat will be stained with ammonium sulfide to detect very early resorptions
h. Resorptions - counted and recorded for each
rat (not those detected by stain only)
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- 46 -
PROTOCOL -INHALATION TERATOGENICITY
PAGE 6
I. Parameters to be Studied (cont)
2. Fetuses
a. Number, location, and condition recorded for each fetus
b. Fetal weight - recorded for all live
fetuses and those classified as "Dead"
fetuses
c. External alterations - detected and
recorded for all live fetuses
d. Soft tissue alterations - detected and
recorded for the first live fetus and
thereafter for every other live fetus
of each litter; all stunted fetuses and all live fetuses with external malforma tions also will be examined for soft
tissue alterations
The heads of all fetuses examined for soft tissue alterations will be fixed in Bouin's solution. Each will be
sliced in vertical cross-section in front
of the eyes, through the center of the eyes, and through the widest portion of the head as described by Barrow and Taylor ('69).1 The sections containing the eyes of at least the control and high
exposure levels will be processed by
the Histology group for examination by a
pathologist. Particular emphasis will
be placed on lens structure during examination.
e. Skeletal alterations - detected and
recorded for all fetuses (including
"Dead" fetuses); heads of fetuses examined for soft tissue alterations
will be excluded. All groups will be coded from just before sacrifice until all raw data are collected.
1 Barrow, M. V., and W. J. Taylor. J. Morph., 12^:291-306 (1969)
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47 -
CompanySanitized. Does not contain TSCA CBt
PROTOCOL -INHALATION TERATOGENICITY STUDY WITH
I. Parameters to be Studied (cont)
Experiment II - Extended Teratogenicity Study
1. Dams
a. Body weight - weighed on the day of
arrival, before breeding, Days 1, 6,
and 21 of gestation and 1, 1, 14, and 22 days post partum
b. Clinical signs - observed upon arrival, breeding daily, at least on Days 6,
through 15 of gestation, and on 1, 7,
14, and 22 days post partum. Adverse
effects observed at any other time
will be noted.
c. Date of delivery - noted for each dam
d. Reproductive indices
For each test group:
Fertility index (% matings resulting
in pregnancy) Gestation index (% matings resulting
in live births)
For each litter:
Viability index (.% animals born that
survived 4 days :or more)
Lactation index (% animals alive at 4 days that survived to 22 days
post partum)
Company Sanitized. Does not contain TSCA CBI
48
PROTOCOL -INHALATION TERATOGENICITY
PAGE 8
I. Parameters to be Studied (cont)
Experiment II - Extended Teratogenicity Study
2. Offspring
a. The number of live pups per litter and
the number of dead or cannibalized pups
per litter will be recorded on 1, 4, 1,
14, and 22 days post partum.
b. Sex ratio - recorded for each litter on
the date of delivery and for each dead pup. The sex ratio of pups alive
22 days post partum also will be presented.
c. Body weights - weighed 1, 4, 7, 14, and 22 days post partum
d. Clinical signs - observed 1, 4, 7, 14, and 22 days post partum. Pups with
adverse signs noted will be marked for
subsequent identification within the
litter.
e. External alterations - detected and
recorded for all live pups f. Soft tissue and skeletal alterations -
pups will not be examined for these
types of alterations unless otherwise indicated g. Eye examinations - the eyes of pups in
all groups will be examined by an
ophthalmologist shortly after the eyes
open. If eye alterations are detected
that appear to be compound-related, a
second examination may be conducted.
The groups will be coded for all examina tions. Pups with eye alterations will
be marked for identification at sacrifice.
At sacrifice, each pup will be exsanguinated
and its eyes will be removed. All eyes will be fixed and processed by the Histology
group for examination by a pathologist. The
identity of eyes from pups previously marked
will be retained. Otherwise, all eyes from pups will be identifiable only by dam number.
49 Company.Sanitized. Does not contain TSCA CBt
PROTOCOL -INHALATION TERATOGENICITY
STUDY WITH
PAGE 9
III. STATISTICS
Experiments I and II The litter will be used as the experimental unit.
The Fisher's Exact test will be used to determine
the significant differences in the incidence of pregnancy, and maternal pup mortality. Jonckheere's
test will be used to determine the presence of a dose response. Dunnett's test will be used for
testing the significance of differences in maternal
body weight and body weight gain. A two-way analy
sis of variance will be used to detect interaction between breeding lots and test groups. For all other parameters, the Mann-Whitney U test will be
applied to detect significant differences between the control group and individual experimental groups.
The level of significance will be p^O.05. In addi tion, the reproductive indices given earlier will
be calculated.
IV. CRITICAL DATES Starting Date (breeding): April 27, 1981 Completion: November 15, 1981
PpmpanySanKizetf. Does not contain TSCA CBI
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50 -
PROTOCOL -INHALATION TERATOGENICITY STUDY WITH
REPORT BY:
RTE^Stap 16 s
Study Director Staff Teratologist Teratology Section
Toxicology and Pathology
B. ^A. Burgess
Research Toxicologist Acute Investigations Toxicology and Pathology
;^>^J^.-'G,A. - ^ APPROVED
BY:
/
/r
(---'
./^
J. G. Aftosilis
Associate Director
Toxicology and Pathology
RES/BAB/mIe
6/9/81
jaZLjLAJ0 Y^^J^ G. L. Kennedy Chief .'
Acute Investigations
Toxicology and Pathology
Company Sanitized. Does not contain TSCA CBl
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CENTRAL RESEARCH AND DEVELOPMENT DEPARTMENT HASKELL LABORATORY FOR TOXICOLOGY AND INDUSTRIAL MEDICINE
APPENDIX A (CONT)
cc:
December 3, 1981
MEMORANDUM
TO; QUALITY ASSURANCE COMMITTEE - C. M. BARBA FROM: R. E. STAPLES
SUBJECT: .PROTOCOL AMENDMENT FOR TERATOGENICITY STUDY
study ofj_IA^nIHamBen^dHme^n^t ^toHtHh<
note thal^TeviatTon #3 S^the
study no longer pertains; all
examined for alterations.
mils atocol for the teratogenicity attached. Please
audit report |HHB| for this
skeletal specimens were
RES/mIe Attachment
Company Sanitized. Does not contain TSCA CBI
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52 -
I. E.
DU FONT DE NEMOURS & CO., INC.
CENTRAL RESEARCH AND DEVELOPMENT DEPARTMENT
HASKELL LABORATORY FOR TOXICOLOGY AND INDUSTRIAL MEDICINE
ELKTON ROAD
NEWARK, DEALWARE
AMENDMENT TO THE
PROTOCOL FOR INHALATION TERATOGENICITY STUDY IN
^
____,.
^^.
\----
--/
The following changes were made after initiation
of the study:
Page 6
II.
MATERIALS AND METHODS
I. Parameters to be Studied
Experiment I - Full Teratogenicity
Study
2. Fetuses
d. Soft tissue alterations
As stated in the protocol, the heads
of all fetuses examined for soft tissue
alterations were fixed in Bouin's solution
and retained for subsequent examination.
For 0.0
I Run
mg/m3
,
al
and
l
head specimens in 25.0 mg7m3 groups
the were
examined grossly after being sliced in
vertical cross-section in front of the eyes,
through the center of the eyes, and through
the widest portion of the head. These
specimens were embedded, and two specimens
from each litter in the 0.0 mg/m3 group and three from each litter in the 25.0
mg/m3 group were examined by a pathologist. Since no compound-related effects were detected grossly or microscopically, the
remaining specimens were not examined.
f
o
u
r
For
lit
Run
ters
I
Iin,
one
the
specimen from 0.0 mg/m3 and
each
10.0
of
mg/m3
groups was examined grossly. They were
sliced in vertical cross-section in front
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53 -
Company Sanitized. Does not contain TSCA CBl
AMENDMENT TO THE PROTOCOL FOR
INHALATION TERATOGENICITY STUDY
PAGE 2
d. Soft tissue alterations (cont)
of and behind the eyes and through the widest portion of the head. The eyes
were left intact to minimize processing artifacts. These specimens were pro
cessed and examined microscopically by a pathologist. Because no compoundrelated effects were detected grossly or microscopically, the remaining specimens were not examined.
Page 8
II.
MATERIALS AND METHODS
I. Parameters to be Studied
Experiment II - Extended Teratogenicity
2. Offspring
Study
g. Eye examinations
No compound-related effects were
detected in vivo by the ophthalmologist
among the pups from Run I, and the
II highest exposure level in Run
(10.0
mg/m3) was lower than that for Run I
(25.0 mg/m3). Therefore, the eyes of
pups from Run
were not examined in
II vivo by an ophthalmologist.
As stated in the protocol, each pup was exsanguinated at sacrifice and
its eyes were removed, fixed, and identi
fied. However, since no compound--related effects were detected in the previous
test specimens during clinical, gross, or
microscopic examination, the eye specimens were not processed or examined but were retained for storage.
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54 -
Company Sanded. Does not contain TSCA CBI
AMENDMENT TO THE PROTOCOL FOR INHALATION TERATOGENICITY STUDY
Page 9
II. MATERIALS AND METHODS
J. Retention of Specimens
All skeletal, head, and selected visceral
specimens, as well as histologic preparations,
will be retained till issuance of the final
report. Thereafter, they will be retained for
as long as the quality of the material affords proper evaluation.
CompanySanitized. Does not contain TSCA C81
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55 -
AMENDMENT TO THE PROTOCOL FOR INHALATION TERATOGENICITY STUDY
IN RATS WITH
REPORT BY:
/ L-^l^-^
R. ^. Staples
Study Director Staff Teratologist Teratology Section
Toxicology and Pathology
Research Tojxicologist Acute Investigations Toxicology and Pathology
APPROVED BY:
// J. G. Aftosmis
^--- Associate Director
Toxicology and Pathology
RES/mIe
12/3/81
^ ^fc^^^y
G. L. Kennedy^
Chief Acute Investigations
Toxicology and Pathology
Company Sanitized. Does not contain TSCA CBt - 56 -
CENTRAL RESEARCH AND DEVELOPMENT DEPARTMENT HASKELL LABORATORY FOR TOXICOLOGY
AND INDUSTRIAL MEDICINE
APPENDIX A (CONT)
B...:E:;Y .1 S E D
December 30, 1981
MEMORANDUM
TO: QUALITY ASSURANCE COMMITTEE - C. M. BARBA
FROM: R. E. STAPLES /C<f\J
FOR THE INHALATION TERATOGENICITY STUDY
An amendment to the protocol for the teratogenicity
RES/mIe
Attachment(l)
.noeTffotco"1*1'"'^^1"
57 -
REVISED
I. E.
DU PONT DE NEMOURS & CO., INC.
CENTRAL RESEARCH AND DEVELOPMENT DEPARTMENT
HASKELL LABORATORY FOR TOXICOLOGY AND INDUSTRIAL MEDICINE
ELKTON ROAD
NEWARK, DELAWARE
AMENDMENT TO THE PROTOCOL FOR
INHALATION TERATOGENICITY STUDY IN RATS
The following changes were made after initiation
of the study:
II. MATERIALS AND METHODS
D. Exposure Levels
II), II. e After severe clinical signs and mortality
occurred in females in the 25.0 mg/m3
exposure group (Run I), the exposure level
was reduced to 10.0 mg/m3 for Run
The
10.0 mg/m3 exposure group now consists of
12 of the females originally scheduled for
the 25.0 mg/m3 group (Run
and an
additional nine females. Fifteen of these
females will be used for Experiment I,
:six, for Experiment II.
Females in the 25.0 mg/m3 exposure group
consumed significantly less feed on the exposure days than did the control group. To help determine whether the reduced intake of feed would be responsible for any adverse effects that might be noted among the fetuses, control groups pair-fed to the 25.0 and the
10.0 mg/m3 groups were added to Run II.
Company Sanitized. Does not contain TSCA CBI 58 -
AMENDMENT TO THE PROTOCOL FOR INHALATION TERATOGENICITY
STUDY IN RATS WITH
REPORT BY:
R. E. staples Study Director Staff Teratologist
Teratology Section Toxicology and Pathology
W
/ "B. A/ Burgess
-Research Toxieologist Acute Investigations Toxicology and Pathology
APPROVED BY:
^ J.S. Aftosmis Associate Director Toxicology and Pathology
RES/mIe
12/30/81
Section Supervisor Acute Investigations Toxicology and Pathology
Company SanItFzed. Does not conWn TSfta cm - 59
FOR DU PONT USE ONLY
ATTACHMENT 1
Haskell
E. I. du Font de Nemours and Co., Inc.
Laboratory for Toxicology and Industrial
Elkton Road, P. 0. Box 50, Newark, Delaware 19711
Medicine
HASKELL LABORATORY IN HOUSE REPORT
Material Tested
Haskell No. 14.045
Other Codes
None
Study Initiated/Completed 5/2/81-5/13/81 - Part I
5/18/81-5/29/81 - Part II
Material Submitted by
Washington Works Polymer Products Department
IN-HOUSE REPORT: INHALATION EXPOSURE RESULTS FOR THE
^TERATOLOGY STUDY - PART I AND PART II
I. Introduction
This report summarizes the methodologies for generation and analysis of
exposure atmospheres for the inhalation teratology study of4 "~~ ------------^------Hft This test was conducted in two parts.
II. Procedures
A. Protocol
Pregnant Crl:CD rats for this study were supplied and cared for by
II, Haskell's teratology group. Dams were mated in lots, two for Part I and
three for Part
by caging them overnight with males. Mating was verified
by detection of spermatozoa in a vaginal lavage each morning following
overnight cohabitation.
Mated rats were assigned to the following test groups:
Part I
Group Group Group Group
I - Air Control
,,
IIIII (low) - Design Level of 0.1 mg/m (intermediate) - Design Level of 1.0 IV (high) - Design Level of 25.0 mg/m
mg/ m
Company Sanitized. Does not contain TSCA CBI
-
60 -
Part
II Group V - Air Control
,,
Group VI (low) - Design Level of 0.1 mg/m
-
Group VII (intermediate) - Design Level of l.Q mg/m
Group VIII (high) - Design Level of 10.0 mg/m
These groups were exposed to the indicated design concentrations for 6
hours a day on days 6 through 15 of gestation. Because of different breeding
II, dates a total of 11 exposures were necessary for Part I, and 12 exposures for
Part
to expose all animals on these gestation days.
Dams were exposed in 150 L glass and stainless steel chambers. During
'exposure, dams were housed in compartmentalized, stainless steel, wire mesh modules. These were stacked one over the other. X-Cold Bricks, placed on
the outside surface of the chambers, were used to control chamber
temperature.
'.
B. Atmospheric Generation
airtight, two stage glass apparatus composed of a round bottom reservoir and a cyclone shaped elutriator. A generation air stream introduced at the bottom of the reservoir carried dust particles upward to the elutriator. Dilution/carrier air entered tangentially into the top of the elutriator and swept airborne dust particles into the exposure chamber. Attached to the lower reservoir was a surface contact vibrator, which vibrated the entire apparatus minimizing buildup on apparatus walls.
The dust atmosphere was vented from the bottom of the chamber, passed
through a hand-made cotton fiber filter, and an MSA cartridge filter. Air,
thus filtered, was then exhausted into the hood.
C. Atmosphereic Analysis
Two methods were employed to determine chamber concentrations of
Gravimetric samples were taken from all chambers at regular
intervals (low @ 1 hr; intermediate and high @ 1/2 hour). A known
Jff----Mjff^ volume of chamber air was drawn though preweighed Gelman glass fiber
filters (Type AE, 25mm). Filters were reweighed andtf------BB concentration calculated from filter weight gain."
Filters were weighed on a Cahn Model 26 Automatic Electrobalance.
Chamber atmospheres were also analyzed by a spectrophotometric
desorbed with an acidified aqueous methylene blue solution. The
these conditions was extracted into chloroform and^UI^B
concentrations determined spectrophoto-
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Company Sanitized. Does not contain TSCA CBI
metrically by comparison with standards prepared in the same manner.
Samples were analyzed using a Bausch and Lomb Model 710 Spectrophotometer at a wavelength of 627.6 um.
All samples taken from the low level were analyzed by this
procedure. Due to the excessive labor involved however, only 5-6 samples per exposure were analyzed from the intermediate and high
levels. Filter samples taken from the control chamber were also
periodically analyzed.
A mean concentration (+ standard deviation) was calculated for each
exposure.
Chamber temperature was monitored each hour with a thermometer.
Oxygen depletion is not a problem with "all-air" systems, so oxygen
was not monitored during these exposures.
Due to the low design concentrations, particle size could be obtained from the high levels only. An eight stage Sierra Cascade Snpactor Model //218K was used to determine particle size.
III. Results
Test concentrations were not visible to the naked eye but particulate could be seen by turning off room lights and passing a flashlight beam
through the darkened chamber.
Control samples were indistinguishable from blanks.
II. Particle size samples were taken from the first and tenth exposures
during Part I. Mass median diameters for these samples were 1.4 and 2.8 u,
with 90 and 887, total respirable content. Particle size samples were taken
from the seventh and tenth exposures during Part
Mass median diameter
for these samples were 9.4 and 8.6 u, with 73 and 94% total respirable
content. The data would indicate that these atmospheres were of highly
respirable character.
Analytical results are summarized in Tables I through IV (Part I) and V
throught VIII (Part II):
Company Sanitized. Does not contain TSCA CBI 62
TABLE I
Low Level Analytical Data (Part I)
Exposure //
1 2 3 4 5 6 7 8 9
10 11
Mean^ Chamber Concentration (mg/m + S.D.)
Gravimetric
Spectrophotometric
0.12 + 0.06
0.08 + 0.05
0.14 j^ 0.07 0.18 ^ 0.08 0.13 ^ 0.05
0.08 + 0.03 0.12 + 0.04 0.12 + 0.06
0.12 + 0.08 0.18 j^ 0.10
0.09 + 0.04 0.13 + 0.09
0.13 ^ 0.06
0.09 + 0.04
0.12 j^ 0.02
0.10 ^ 0.02
0.13 + 0.03 0.11 j 0.05 0.12 + 0.04
0.10 + 0.04 0.12 + 0.03 0.14 ^ 0.02
Overall Meant
+ S.D.
0.14 + 0.06
0.11 + 0.05
f Mean and S.D. of all samples throughout exposure period.
Company Sanitized. Does not contain TSCA CBI
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TABLE II Intermediate Level Analytical Data (Part I)
Exposure //
1 2 3 4 5 6 7 8 9
10 11
Mean Chamber Concentration (mg/m"' + S.D.)
Gravimetric
Spectrophotometric
1.3. j^ 0.4
1.3 + 0.5
1.3 ^ 0.5
1.1 j^ 0.5
0.9 + 0.2
1.0 j^ 0.2
1.1 + 0.3
1.0 ^ 0.2
1.1 j^ 0.3
1.3 ^ 0.3
1.3 ^ 0.7
1.5 j^ 1.0
1.1 ^ 0.8
0.8 j^ 0.4
1.1 ^ 0.2
1.1 ^ 0.2
1.2 j^ 0.5
1.3 ^ 0.7
1.4 ^ 0.5
1.5 + 0.5
1.2 ^ 0.8
1.1 j: 0.2
Overall Meant + S.D.
1.2 + 0.5
1.2 + 0.5
t Mean and S.D. of all samples throughout the exposure period.
.Company Sanitized. Does not contain TSCA CBI
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64. -
TABLE III
High Level Analytical Data (Part I)
Exposure //
1 2 3 4 5 6 7 8 9
10 11
Mean Chamber Concentration (mg/m + S.D.)
Gravimistr:Lc
Spectrophiotc>metric
18.0 + 15,.7
24.6 j^ 2^(.2
15.9 ^ 5.,9
12.0 ^ 31.0
23.8 j^ 19.,4 18.2 ^ 5. 1 22.0 j^ 6. 5 23.0 ^ 4. 7
26.7 + 16i.8 18.8 j^ 1 .9 22.7 ^ 6 .6 19.9 j^ 5 .7
21.9 + 6. 4 21.0 ^ 8. 8
21.9 j^ 6 .6 18.5 j; 6 .4
21.7 ^ 7. 7
23.3 j^ 7 .4
21.7 + 10.0
14.8 j^ 5 .2
23.3 ^ 6. 2
24.1 j^ 7 .7
Overall Meant + S.D.
21.0 + 9. 7
20.5 + 10.0
T Mean and S.D. of all samples throughout the exposure period.
Company Sanitfzed. Does not contain TSCA CBI
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TABLE IV
Mean Chambe r Teaipe;ratiire Data (F'+S .D.) ( Part I)
Exposure #
1 2 3 4 5 6 7 8 9
10 11
Control 72.0 + 0.0 78.0 j^ 1.4 77.3 ^ 0.8 78.0 jb 1.1 77.3 j^ 1.5 76.6 j^ 0.9 77.4 j^ 0.5 78.5 j^ 0.8 76.4 + 1.1 77.3 j: 2.2 72.3 j^ 1.9
L iOW
77'.5 ^ C).6 77 .0 + 1 .7 75 .0 + 1 .3 76 .3 i.8 76 .2 j^ 1 .3 76 .6 + 0'.5 75.8 + 1 .6 77 .7 + 1 .5 76 .6 + 1 .8 75.8 + 1 .5 73.7 + 1 .5
Inte rmiediate 77.1 + 0.6 77.2 + 2.2 77.0 + 1.1 76.6 + 0.7 76.0 + 1.2 76.7 + 0.7 75.8 + 1.6 77.7 + 1.2 75.8 + 1.6 76.8 + 1.6 74.5 + 0.8
Hig:h
751.8 + 1.3 75 .8 j^ 2.9
75.5 + 1.0
76 .8 + 1.2 78 .2 + 1.2 76 .2 + 1.1 75 .8 + 2.5 77 .0 + 0.9 77 .6 + 1.1 77 .1 + 1.3 75 .0 + 1.1
Overall Meant 76.5 j^ 2.4 + S.D.
76.2 + 1.7
76.5 + 1.5
76.4 + 1.7
t Mean and S.D. of all values throughout exposure period.
companysanw^- Does not contain TSCA CBI
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TABLE V
Low Level Analytical Data (Part II)
Exposure //
1 2 3 4 5 6 7 8 9
10 11 12
3
Mean Chamber Concentration (mg/m + S.D.)
Gravimetric
Spectrophotometric
0.11 ^ 0.05
0.13 -\ 0.05
0.11 ^ 0.03
0.11 + 0.04
0.14^0.03
0.12 + 0.02
0.11 + 0.03
0.10 + 0.03
0.10^0.05
0.13 + 0.03
0.07 + 0.02 0.11 + 0.02
0.15 + 0.01
0.14 + 0.01
0.13 + 0.04
0.11 -\ 0.02
0.11 ^ 0.04
0.07 ^ 0.02
0.15^0.04
0.12 + 0.05
0.13 ^ 0.02 0.09 j^ 0.05
0.12 + 0.04
0.12 ^ 0.04
Overall Meant
0.12 + 0.04
0.11 + 0.04
t Mean and S.D. of all samples throughout exposure period.
Company Sanftfzed. does nofcorrtam TSCA CBl
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TABLE VI
Intermediate Level Analytical Data (Part II)
Exposure ft
1 2 3 4 5 6 7 8 9
10 11 12
Mean Chamber Concentration (mg/m + S.D.)
Gravimetric
Spectrophotometric
1.1 ^ 1.20
0.67 ^ 0.32
1.1 j^O.56 1.2 j^ 0.47
0.96^0.47
1.1 ^ 0.29
1.3 + 0.27 1.1 + 0.37 1.2 + 0.66
1.2 + 0.21 0.80 + 0.37 1.0 + 0.33
1.2 j^ 0.24
1.2 j^ 0.17
1.1 + 0.61
1.1 ^ 0.45
0.78 ^ 0.25
0.82 + 0.08
0.75 ^ 0.39
0.80 ^ 0.17
0.97 ^ 0.33 1.3 j^O.59
0.85 j 0.16 1.3 ^ 0.71
Overall Meant
1.1 + 0.56
0.98 + 0.37
t Mean and S.D. of all samples throughout exposure period.
Company SanWzecT. Does not contain TSCA CBI
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TABLE VII
High Level Analytical Data (Part II)
Exposure //
1 2 3 4 5 6 7
,. 8 9
10 11 12
Mean Chamber Concentration (mg/m + S.D.)
Gravimetric
Spectrophotometric
8.4 + 3.74
10.3 ^ 2.45
8.8 ^ 3.16
8.1 + 2.58
8.3 + 3.80
10.0 + 4.99
10.8 + 6.56
11.1 ^ 7.69
9.5 ^ 5.07
9.9 + 6.60
12.5^6.58
13.6 + 6.27
10.3 j^ 5.30
11.8 + 6.09
10.9 j^ 8.66
11.1 j 4.97
9.9 ^ 6.41
14.6 + 7.35
9.8^5.19
8.7 j 3.84
12.5 + 6.21 7.9 ^ 3.86
10.7 ^ 1.35
12.2 ^ 1.65
Overall Meant
9.9 ^ 5.41
11.1 + 5.3
t Mean and S.D. of all samples throughout exposure period.
Company Sanitized. Does not contain TSCA CBI
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TABLE VIII
Exposure //
1 2 3 4 5 6 7 8 9 10 11
12
Mean Chamber Temperature Data (F +S.D.) (Part II)
Control
Low
Intermediate
High
78.4+0.5 77.2+1.0
74.7+1.4 76.7^1.2
77.5+1.5 72.2+3.4
78.0^1.1 74.3+1.0
78.3^1.3 77.3+1.0
77.0 +_ 1.5
75.9+^2.6
75.6+1.4
76.8 +^ 1.7
77.1+^1.5
77.0+2.0
77.7 + 1.0
77.0+^2.3
78.4+0.8
78.1 +^ 1.3
76.8+^2.3
77.1+1.3 77.6+1.0
77.7+2.3 76.3+1.0 77.5+0.8
78.0+1.2 77.5+0.5 77.2+0.8
77.6+1.5 77.5+1.2 77.3+1.7
78.6+0.5 77.2+1.3
77.0+^1.7
77.9+^1.1
76.8+1.3 76.0+0.6
.75.9+^1.9 77.2 _+0.8 76.1+^0.7
77.6+^1.9
78.0+1.8
76.2+^1.8
75.3 + 0.8
74.8 + 0.8
76.0 + 0.9
75.3 + 1.0
Overall Meant 77.3 + 1.4 +S.D.
76.4+1.7
76.6+2.1
77.1+1.8
t Mean and S.D.of all values throughout the exposure period.
.CompanySan.'fized. Does not contain TSCA CB( 70 -
III, During exposure no clinical observations were noted in Groups I, II,
V, VI, or VII. A dry red discoloration around the mouth was observed the morning following the first exposure in Group IV and VIII rats, which persisted for the remainder of the exposure period. No other overt clinical
During Part I, four Group IV rats died during the exposure phase of the
test. One rat was found dead each day, on the mornings following the 3rd, 5th, 7th, and 8th exposures.
No deaths occurred during Part II.
Summary
The purpose of this study was to determine the teratogenic effects of in two parts, in which dams were exposed 6 hours/day on days 6 through day 15 of gestation.
Atmospheric concentrations were determined gravimetrically and spectrophotometrically. Mean gravimetric concentrations were 0, 0.14, 1.2
and 21.0 mg/m in Part I and 0, 0.12, 1.1, and 9.9 mg/m in Part II. These
results were confirmed by spectrophotometric analysis.
In Part I, no clinical observations were noted in rats exposed-to 0,
0.14, or 1.2 mg/m . Four rats died following exposure to 21.0 mg/m of
dry red discoloration around the mouth following each exposure.
During Part II, a dry red discoloration was observed around the mouths
of rats exposed to 9.9 mg/m following each exposure. No other clinical
signs were noted in any other test group.
'"P'n/S.n,,,,..,.
o... ,,,,, ,,,,,,,,, ^ ^
-
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**Reference:
L. F. Percival. "Determination of C- and Cg Dispersing Agents, Methylene
Blue Method". E. I. du Font de Nemours & Company. Plastics Polymer Products
Department Code No. W 240.240, issued 10/9/69. Washington Works Technical Library, 1st Circulation 5-20-68.
^ Work and Report by:
sS^
Clarence Hutt Technician
^ Stephen D. Nastr Technician
Supervised by:
I^^M \n<^./Jk (- 'Joseph C. Hamill Technologist
Reviewed by:
Approved by:
CH:SDN:tac:WP:12.2 Date Issued: December 18, 1981
^Si^JL^.^------4 ^
Gerald L. Kennedy, 0r.|
Section Supervisor
Acute Investigations
72
S,n,,,z.a.D..sno,con,a,nTSC.CB,
comply
DIPLOMATE; AMERICAN COLLEGE OF VETERINARY OPHTHALMOLOGISTS
ATTACHMENT 2
JAMES M. CLINTON. V. M. D.
ANIMAL EYE CLINIC AT SOUTH JERSEY ANIMAL HOSPITAL ROUTE 541 ABOVE CHURCH ROAD -- P. 0. BOX US MEDFORD. NEW JERSEY 08055
TELEPHONE (609) 654-0304
Haskell Laboratories Robert E. Staples, Ph.D.
Exam Date;
24 April 1981
Ophthalrnoscopic Summary
Both eyes of all of the male and female rats in the colony were
examined by focal illumination and indirect ophthalmoscopy. Mydriasis was achieved with 1% Atropine (1% Afcropisol,. Cooper, B3035, exp. 7/82),
and darkness, maintained until the following morning. Both eyes of all
rats were ophthalmoscopically normal except as follows:
Rat Number
301112 301116 301335 301194 301305 301231
301251
FEMALE RATS
Observations
Left Eye;
Right Eye Right Eye Right Eye Right Eye Right Eye
Right Eye
Posterior synechiae.
Focal retinal degeneration. Focal retinal degeneration. Focal retinal degeneration. Anterior synechiae from 2 to 4 o'clock.
Comeal opacities and subjacent anterior synechiae from 11 to 1 o'clock. Marked ventral enfcropion, blepharospasm.
MALE PATS
Rat Number
298494 298514 298429 298305 298299 298128 298083 298148 300058;
300130 300177
Observations
Left Eye: Superficial corneal vascularization. Bilateral superficial comeal vascularizafcion. Right Eye: Anterior synechiae from 1 to 3 o'clock, Left Eye: Anterior synechiaee Left Eye: Anterior synechiae. Right Eye: Superficial cornea! vascularizafcion.
Right Eye: Anterior synechiae from 9-11 o'clock.
Right Eye: Anterior synechiae at 9 o'clock. Bilateral anterior synechiae, nasal quadrant. Left Eye: Anterior synechiae. Left Eye; Anterior synechiae.
COMMENTS
The 18 rats described above were removed from the colony and euthanatized by Supervisor Alice Erwin. All of those rats remaining are ophfchalmoscopically normal and suitable for use in the forthcoming study.
^^7^--^ w<' CfS-
James M. Clinton, V.M.D.
73
Company SanRfeed. Does not contain TSCA C8I
DIFLOMATE; AMERICAN COLLEGE OF VETERINARY OPHTHALMOLOGISTS
ATTACHMENT 3
JAMES M. CLINTON. V. M. D. ANIMAL EYE CLINIC AT SOUTH JERSEY ANIMAL HOSPITAL
ROUTE 541 ABOVE CHURCH ROAD -. P. 0. BOX 115 MEDFORD. NEW JERSEY 08055
TELEPHONE (609) 654-0304
Haskell Laboratories Robert E. Staples, Ph.D.
Exam Date;
5 May 1981
Ophthalmoscopic Examination
Both eyes of 210 female rats vere examined by focal illumination, indirect ophthalmoscopy and, when indicated, slit-lamp microscopy. Mydriasis was produced with 1% atropine solution and the eyes examined in subdued light. The subdued light was maintained until the following
morning.
With just 13 exceptions, both eyes of all of the rats in the colony were ophthalmoscopically normal. The exceptions are listed below:
Rat Number
Observations
302217
Left Eye; Very pale ocular fundus.
302240
Bilateral pale ocular fundi.
302194 302201
Right Eye; Right Eye:
Focal retinal degeneration. Anterior synechiae 5-6 o'clock.
302248
Right Eye: Anterior synechiae, nasal quadrant., ".zith comeal''opacity.
302319
Right Eye:' Anterior synechiae from 11-1 o'clock.
302321
Left Eye: Very pale ocular fundus.
302339
Left Eye: Very pale ocular fundus.
302291
Right Eye; Anterior synechiae from 11-1 o'clock.
302356
Left Eye: Pale ocular fundus.
302357
Pale ocular fundi.
302351
Pale ocular fundi.
303360
Pale ocular fundi.
Comments
A-s soon as they were identified,'the 13 rats described above were
removed from the colony.
.""---^ M- &^-4-i^_
t--^
James M. Clinton, V.M.D.
74 Company Sanitized. Does not contain TSCA CB;
tti.UIMfkT-0
HASKELL LABORATORY
ATTACHMENT 4 December 18, 1981
MEMORANDUM
TO: FROM: SUBJECT:
R. E. Staples W. D. Kerns
All animals listed in the attached table were evaluated
microscopically for the presence of histomorphologic lesions in the fetal lens.
There were no microscopic lesions detected in any of the sections that were evaluated. Frequently, lenses contained arti facts that were attributed to trimming and processing.
WDK.-wfd
Company Sanfffzed. Does notconfa?" "''^Cft CR 75 -
SPECIMENS TO BE PREPARED FOR EVALUATION BY W. D. KERNS
The following fetuses had no eye alterations detected during external examination:
Dam Code
68
54
58
58
Fetus
Number
1
7
9
11
Observations during Head Examination
Not sufficient discoloration to be considered an alteration Not sufficient discoloration to be considered an alteration Not sufficient discoloration to be considered an alteration Not sufficient discoloration to be considered an alteration
CLL/as
9/30/81
jCompanySanitized. Does not contain TSCA CBl 75 -
HASKELL LABORATORY
ATTACHMENT 5
REVISED
December 21, 1981
MEMORANDUM
TO: FROM: SUBJECT:
R. E. Staples
/
^f^ ]}bh-
W. D. Kerns
^
I'
H-14045 - FETAL OPHTHALMIC
PATHOLOGY
There were no lesions present in either run that were considered to be related to the administration of the test compound.
The fetal heads from run two produced much better histological
preparations than those from run one.
WDK:wfd
Company Sanitized. Does not contain TSCA CB - 77 -
H-14045
TABLE 1
INDIVIDUAL ANIMAL HISTOPATHOLOGY DATA
Tissue*and Observation**
Fetal Eyes
Hyphema, focal
Run:
Exposure Level
(ms;/m3)
:
Dam lumber; Fetus Number;
I
0.00
40 35 35 38 12 12 15 15 11 11 03 03 13 13 03 11 11 05 03 10 0
NNNNNNNOON'O
* Tissue Accounting Code;
N = Both eyes (including lens) were within normal limits N'= Only one lens was present for histomorphologic evalu
within normal limits. 0 = Lens was not present in the sections submitted for e
L = Lesion observed
** Degree of Change (severity):
1 = Minimal 2 = Mild 3 = Moderate 4 = Marked
5 = Severe
s
i
H^4Q^^
TABLE 1 (Continued) INDIVIDUAL ANIMAL, HISTOPATHOLOGY DATA
Tissue*and Observation**
Fetal Eyes
Hyphema, focal
1
~~j U3
1
Bun;
I
Exposure Level
(mg/m3)
:
0.00
Dam Number:
23 25 25 30 30 40 43 43 ; 38 45
9
Fetus Number: 09 05 11 03 09 05 01 09 05 09 01
N' N
N' N' N
N
N
N
N
N
N
-
1 Code: See Table 1.
<rt
1
I
0
0
%
S.
1
3
-A
W 0 ?
S
H-14045
^^^^
TABLE: 1 (Continued) INDIVIDUAL ANIMAL HISTOPATHOLOGY DATA
Tissue* and Observation**
Run:
I
Exposure
Level (mg/rn3);
25.0
Dam Number:
3
3
6
6
6 19 19 19 221 22 22 2
Fetus Number: 07 13 01 05 11 01 11 13 03 07 09 0
Fetal Eyes Hyphema, focal
00
0
N' N' 0
fS'
N1
0.
N'. H
N
N
N' N
'rt
Code:
"0
5
w
1.
g
0.
0
0
S 3
1
S.
3
-1
W 0
0
S
See Table 1.
H-14045
TABLE 2
"INDIVIDUAL ANIMAL HISTOPATHOLOGY DATA
Tissue*and Observation**
Fetal Eyes Hyphema, focal
II Run;
Exposure Level
(mg/m3)
:
0.00
0.10
10
Dam Number:
78
75
101 55
99
105 74
Fetus Number:
04
06
13
07
09
02
05
N
N
N
N
L
N
N
2
Code: See Table 1.
t^r-rummc,; ^Ivif-KtL^AM LULL.EGE OF V6TERINARY OPHTHALMOLOGISTS
ATTACHMENT 6
JAMES M. CLINTON. V. M. D.
ANIMAL EYE CLINIC AT SOUTH JERSEY ANIMAL HOSPITAL ROUTE 541 ABOVE CHURCH ROAD -- P. 0. BOX 115 MEDFORD, NEW JERSEY 080S5
TELEPHONE (609) 654-0304
Haskell Laboratories R. E. Staples, Ph.D.
Exam Date:
5 June 1981
Ophthalmoscopic Examination Fl Generation of Ophthalmoscopically Nonnal Parents
First Run
Both eyes of all of the male and female rat pups obtained from. the
parents already determined to be Ophthalmoscopically normal were examined
by focal illumination, indirect ophthalmoscopy and, when indicated, slit-
lamp microscopy. Mydriasis was produced with 1% afcropine ophthalmic so
lution, and the eyes examined in semi-darkness. Semi-darkness was main tained until the following morning. The dose levels and group identities
^ere not disclosed to me.
Both eyes of all of the male and female rat pups were Ophthalmoscopic ally normal except as follows;
Litter No.
Offspring No.
Observations
301260
1
301154
301179
301117
301117
301072
Prominent filamentous opacities of eachposterior lens pole.
Prominent filamentous opacities of each posterior lens pole.
Prominent filamentous opacities of each posterior lens pole.
Left Eye: Focus of pre-refcinal hemorrhage of 2 disc diameters.
Right Eye: Incomplete mydriasis and red oval opacity on central endofchelium.
Right Eye: Pre-refcinal hemorrhage at peripheral nasal quadrant.
Comments
In my opinion, the lesions noted might typically occur in any well managed colony of rats. Although some 'of these young rats' eyes v/ere too small to be completely visualized by the means described, I believe that the anterior and posterior segments of most of the eyes were readily visualized.
At this juncture, I do not believe that the test material, as eval uated in this stud;'-, has produced ocular changes in the Fl generation.
-
82 -
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James M. Clinton. V.M.D.
Company Sanitized. Does not contain TSCA CB1