Document VGY82mpVD5RbmY3b0XZYzmm7o
STUDYCODE : K01-1815
ARL2G-022|
[Receipt No. T96-2503 Report No. T-4663
-3%)
FINAL REPORT
BACTERIAL REVERSE MUTATION TEST OF v-l
October, 1996
Hita Research Laboratories
Chemical Biotesting Center
Chemicals Inspection & Testing Institute
Japan DECEIVE=
000199
I (|
moon |i |
i
QUALITY ASSURANCE STATEMENT
HCihteamiRceaslesarIcnhspeLcatbioornato&rieTse,stiCnhgemIincasltatBi,otJeastpianng Center SpSonsoUr MIT3OMLIMMITO ED TSittuldey: coder KOL-18IS Bacterial reverse mutation test of v-1
`This report was audited by the Quality Assurance Section. 1, the undersigned, hereby declare that this report reflects
the original Japanese report.
Section Chief, Quality Assurance
Ono December 17, 1176
(Signature) [ i Mae
Keiji Shiraishi, B.S.
600200
Ko1-1815
1, the undersigned, hereby declare that this report provides a correct English translationofthe Final Report. (Study code No. K01-1815 issued on October 30, 1996)
) December 17, 1976
Shozo Ogura
Hita Research Laboratories
Chemical Biotesting Center
Chemicals Inspection & Testing Institute, Japan
600201
-
Ko1-1815
GSLTPATEMENT
Hita Research Laboratories, Chemical Biotesting Center
Chemicals Inspecti&on Testing Institute, Japan
SS ponsoU r MITO3MM LIMO ITED
Title
Bacterial reverse mutation test of v-1
StCudoy deN__oKOI.-18:15
1, the undersigned, hereby declare that this study was conducted in compliances with "Standards to be observed by Testing Institutions for Toxicity Investigations" (Japan's MOL, No.76, September 1, 1988).
Management: _S_ iginon rigineal d
Shigetaka Yamane, Ph. D.
October 30, 1996
G00202
KoL-1815
QUALITY ASSURANCE STATEMENT Hita Research Laboratories, Chemical Biotesting Center Chemicals Inspection & Testing Institute, Japan
SpS onsoU r: MITO3MM LIMO ITED
Title
Bacterial reverse mutation test of v1
`Study CodeNo KOL-1815
`This study was audited by the Quality Assurance Section and the study procedures were inspected on the following dates.
Dates of Inspections
Datesof Reports to
DatesofReports to
and Audits
Study Director
anagement
September 12, 1996
September13, 1996
September 17, 1996
October 1, 1996
October 1, 1996
October 1, 1996
October 30, 1996
October 30, 1996
October 30, 1996
1, the undersigned, hereby declare that this report provides an accurate descriptionof the
methods and procedures used in this study and that the reported results accurately reflect
the raw data obtained,
Section Chief, Quality Assurance: Siignoringine al d October 30, 1996 Keiji Shiraishi, B.S.
(00203
Ko1-1815
Study code:
KO1-1815
Test substance code: HR3291
Sponsor code:
5-030
TITLE Bacterial reverse mutation test of v-1
SPONSOR SUMITOMO 3M LIMITED
8-8, Minami-Hashimoto 3-chome Sagamihara-shi, Kanagawa, 229 Japan
TESTING FACILITY
Hita Research Laboratories, Chemical Biotesting Center Chemicals Inspection & Testing Institute, Japan
822, 3-chome, Ishii-machi, Hita, Oita 877, Japan
PURPOSE OF STUDY
The purpose of this study was to determine the mutagenic potential of the test
substance using Salmonella typhimurium and Escherichia coli.
TESTING METHOD
This study was conducted in accordance with the following guidelines: "Standards for
`Toxicity Investigations" (Japan's MOL, No.77, September 1, 1988).
`GLP COMPLIANCE
This study was carried out in compliance with the following GLP requirement:
"Standards to be observed by Testing Institutions for Toxicity Investigations" (Japan's MOL, No.76, September 1, 1988).
PERIOD OF STUDY
Commencementoftest:
Dose finding test:
Completionofobservation:
Presentationoffinal report:
September 17, 1996
September 25, 1996
October 14, 1996
October 30, 1996
00204
Kol-1815
LOCATION AND PERIOD FOR RETENTION OF RAW DATA Data and test substance are retained in the archives and the test substance storage roomofHita Research Laboratories for 10 years following the date ofthe notification specified under Item 1 of Article 57-2 of Industrial Safety & Health Law, respectively. After termination of the retention period, any measures taken are done so with the approvalofthe sponsor.
PERSON CONCERNED WITH STUDY Study Director
--Signedinoriginal October 30, 1996
Shozo Ogura Hita Research Laboratories Mutagenicity Section
Study Staff Person in chargeofStorage
Tsunehiko Inai, B.S. Shizuka Kouda
ANY UNEXPECTED SITUATIONS AND DEVIATIONS FROM PROTOCOL There were no unexpected situations and deviations from protocol which might have affected the test results.
C00205
Kol-1815
CONTENTS
MATERIALSANDMETHODS
1. TEST SUBAS NDPT OSIA TIVN ECONCTROELS~~ +ssssssessssssss 2
2 BACTERIAL STRAINS
erm------ 4
3. MEDIUMAND 9 MIX
[ES
4 PRE-CULTURES
sree
. PREPARATION OF TEST SUBSTANCE AND POSITIVE
CONTROLS
JE
6 METHODS
cnmsserters meres --
7. MICROSCOPIC OBSERVAANDTCIOLOONNY COUNTING === 8 INTERPRETOFARTESIUOLTNS ++eossssssssssseesssnsssinnsss 8
CONCLUSION
serene se----
REFERENCES
evens 9
APPENDIX TABLESAND FIGURES ++sreessssssssssssssssssnsssinss 1.6
00206
KoL-1815
SUMMARY The reverse mutation test of v1 was performed on Salmonella typhimurium strains TA100, TAIS3S, TASS, TAIS37 and a Escherichia coli strain WP2 uv using the preincubation method with and without metabolic activation. The results showed that the numbers of their revertant colonies for all strains in groups `which were treated with the test substance were less than twice thatofeach negative control with and without S9 Mix. `The numbers of the revertant colonies in the negative control and the positive controls `were within the background data in our laboratories. Based upon the above results, v1 was judged to have no reverse mutagenic potential under the present test conditions,
600207
--1-
Kol-1815
MATERIALS AND METHODS
1. TEST SUBSTANCE AND POSITIVE CONTROLS 11 Test substance (Information provided by the sponsor)
1) Name Potassium saltofN-ethyl-N-perfluorobutylsulfonylglycine Other name: v-1 CAS No.: 67584-51-4
2) LotNo. Lot1
3) Supplier SUMITOMO 3M LIMITED
4) Structural formula or rational formula (Outline of manufacturing method, in case both were unknown)
C4FsSONCH,CO0K
CoHs
(molecular formula CHFKNOLS)
5) Purity
97.3 wink
6) Impurities
KCI 2.7 ww
7) Physicochemical properties
Appearance at ordinary temperature: light gray powder
Molecular weight
42330
Stability
stable
Melting point
-
Boiling point
~
Vapor pressure
-
Partition coefficient
-
Solubility:
-
Degreeofsolubility
Water: 2S wihi*
DMSO: 25wh%*
Acetone: < 10 wA% Others: -- * Examined in our laboratories
,. 000208
01-1815
8) Storage conditions
room temperature
9) Care on handling
Gloves, a mask, 2 head cap and a lab coat were worn when handling.
12 Positive controls
1) 2-2-Furyl)-3-(-nitro-2-furyDacrylamide (AF-2)
Manufacturer: Wako Pure Chemical Industries, Ltd
Lot No
LEN0S71
Properties: reddish-orange crystalline powder
Purity
99.5%
Grade:
special grade
2) Sodium azide (NaNs)
Manufacturer: Wako Pure Chemical Industries, Ltd.
Lot No.
DLP2438
Properties: white crystalline
Purity
99.4%
Grade
special grade
3) 2:Methoxy-6-chloro-9-[3-(2-chloroethyl)-aminopropylaminoJacridine + 2HCI
(ICR-191)
Manufacturer: Polysciences, Inc.
Lot No.
412795
Properties yellow crystalline powder
Purity
-
Grade
--
4) 2-Aminoanthracene (2AA)
Manufacturer: Wako Pure Chemical Industries, Ltd.
Lot No.
DLR7869
Properties: yellowish-green-brown powder
Purity.
95.7%
Grade:
-
5) Storage conditions
A cold and dark place
6) Care on handing
Gloves, a mask, a head cap and a lab coat were worn when handling.
0G209
a=
:
Ko1-1815
2. BACTERIAL STRAINS 21 Strains selected
Salmonella typhimurium siwains TA100, TAS, TAIS3S and TAIS37 were obtained from Dr. B.N. Ames, UniversityofCalifornia, U.S.A. ,on June 20, 1990. A Escherichia coli strain WP2 uA was obtained from Japan Bioassay Laboratories, on April 6, 1995
S. phimurium strains TA100, TAS3S and a E. coli strain WP2 ur were used
for the detection of base-pair substitution mutation, while S. typhimurium strains
TA98 and TALS37 were for the detectionofframeshift mutation.
22 Storage
The test sulfoxide
strains were (DMS0)*/0.5
stored mi of
as frozen stock broth culture) at
cultures (0.045 ml of dimethyl 80C (ultra-deep freezer MDF-
291, Sanyo).
* Purity 2 99.0%,Lot No. CF103, Dojindo Laboratories
23 Characterizationofstrains
1)_ Characteristicsofstrains
Mutation on Mutation on Membrane Refactor
Strains
synthesis of excision mutation (pKM101)
amino acid _ repair ps)
Salmonella typhimurium
TAIS3S
hisGd6 Aur fa -
TAIS37
HisC3076 Aww fa -
TA
hisD3052 Aww fa +
TAI00
hisG4S Aww tfa +
Escherichia coli
WP2 urd
mw
Aud +
-
`The amino acid requirement for growth was demonstrated by using histidine for S. typhimurium strains and tryptophan for E. coli strain. The presence of Rfactor, membrane mutation and mutation on the ability to repair DNA lesions were confirmed by ampicilin resistance, sensitivity to crystal violet and UV sensitivity, respectively.
000210
a=
Kol-1815
2) Dateof characterization Salmonella typhimurium Escherichia coli
TAIS3S TAIS37 TA98 TA100 WP2 urd
July 18, 1996 June 7, 1996 June 7, 1996 March 6, 1996 April 18, 1996
3. MEDIUMAND $9 MIX
31 Medium
1) Minimal glucose agar plate (prepared in our Laboratories)
The medium was prepared as follows, and poured 30 mi into a petri dish
Components
Amount included in one litre
20 x Vogel-BonneEr
50 ml
40 wiv% Glucose
50 ml
Agar
15g
(1) Agar:
Bacto-Agar (Lot No. 71892AJB or 90800JA,
Difco Laboratories)
(2) Manufacturing date: dose finding test on September 11, 1996
main test on October 3, 1996
2) Soft agar
The solution containing 0.5 mM histidine and 0.5 mM biotin for S. typhimurium
strains or 0.5 mM tryptophan for E. coli strain was added to the soft agar
solution containing 0.6 W/v% agar (Bacto-Agar, Lot No. 71892AB, Difco
Laboratories) and 0.5 w/v% NaCl ina ratio of1 : 10.
32 $9 Mix
1) Ratliver $9 (Kikkoman Co., Ltd)
Induction method: SD male rats, 7-week-old (203-254 g), were
intraperitoneally administrated phenobarbital (30 mg/kg
* 1time, 60 mg/kg 3 times) and 5,6-benzoflavone
(80 mg/kg 1 time).
Lot No.
RAA-350 (manufactured on August 23, 1996,
purchased on September 4, 1996)
Storage:
-80T (ultra-deep freezer MDE-291, Sanyo)
2) Cofactor for 9 Mix (Oriental Yeast Industries, Ltd.)
Lot No.
999602
Storage:
20C (bio-freezer GS-2603, Nippon Freezer Ltd)
5
000211
KoL181s
3) Composition of $9 Mix NOAneDPmHlo,f4$u9moMlixNcAoDntHa,ine1d00 mumoll MofgC0l2,M33spodmioulm-KpCh,osphmaotelbuGf-f6e-rP,(54Hja7m.a4l) and 0.1 mi $9.
4 PRECULTURES cFornotmaitnhiengst1o0ckmiculttiureesn,t20bruoltohfNot.h2e b(acLtoetriNaol.su1s9p4en5s6i4o4n3w,aOsXinOoIcuDlaLtted.d) toaLn-dtutbhee. bbaycttehreiaMlocnulotdureshwaakseri(ncMubOatNedOaSt 3I7N1A%-,0.T5aiCtecfoCro.8,hLwtidt)h shTahkeinvgiaabtl5e0ceflilmceosu/nmtisn (cNalocvualsapteecd,frLoKmBthJeapvaalnu)east wthhiecehndweorfiendceutbeartmiionnedaraet s6h6o0wanmbbelyows,pectrophotometry
[Tao [tass
TASS | TAIS3T
[vNioa.bloefcells findg
21 a4 24
10m) eines | 21 | 21 |a0| 23 | 50]
5. 51
PREPARATION OF TEST SUBSTANCE AND POSITIVE CONTROLS Test substance
1) Preparation
LTohteNtoes.t Ks6ubBs7t4a,ncOetswuaksadPihsasromlavecdeuitnicdaisltiFlalcedtowrayt)etro(mdiasktiell5edwwiavte%rcfoonrcennetcrtaitoino,n
2)
and diluted with the same solvent to give appropriate concentrations. Stabilityof the test solution
No denaturation of the test solution was observed exothermic reaction until 2 hours after preparation.
for
the
color
and.
the
3) Preparation time
52
Prepared immediately before use and used within 0.5h at oom temperature, Positive controls
1) Preparation
NaNy was dissolved in distilled water (Lot No. K6B74). 24A were dissolved in DMSO (Lot No. D069),
~AF-2, ICR-191 and
o0R12
--6-
KOL-1815
2) Preparation time and storage condition SParneypoa)r.ed on every 3 months and stored at -80C (ultra-deep freezer MDF-291,
6 METHODS
The test was carried out for S. typhimurium strains TAIS3S, TAIS37, TA9S,
TA100 and a E. coli strain WP2 uvrA using the pre-incubation method both with
and without metabolic activation system. The plating was done in triplicate for
6.1
the negative control and in duplicate for the test substance and positive controls. Procedures
After 0.1 ml of the test substance solution, 0.5 ml of 0.1 M sodium phosphate
tbhueffmeirx(tpuHre7s.4w)erore $i9ncMuibxa,teadndfo0r.120mlmiofntahte 3ba7ct+eri0a.l5cCu.ltuTrweowemrle oafddtehde tsoofattaugbea,r
`was then added to each tube and poured onto minimal glucose agar plate.
After incubation for 48 h at 37 0.5C, the mumber of revertant colonies were
counted.
As the sterility test, each 0.1 ml of each bacterial suspension, test substance solution, $9 Mix or 0.1 M sodium phosphate buffer (pH 7.4) were smeared on a minimal glucose agar plate and incubated at 37 + 05C for 48 h, and then checked the bacterial contamination. Distilled water was used as a negative control, and the following positive controls were used for each bacterial strains.
TAIO0 TAIS3S WP2uwd TASS __ TAISH
SOMix(-) __AF-2 NaN; AF-2 AF2 ICR-191
001
0s
001
01
1
SOMix (+) __2AA 24A 244 2AA 244
1
2
10
0s
2
62 Dose selection
(ng/plate)
1) Dose finding test
The test was carried out at the highest dose of 5,000 ug/plate and 6 doses of
1,000, 500, 100, 50, 10nd S pg/plate.
As a result, growth inhibition was observed at 5,000 ug/plate both with and
without S9 Mix.
00213
--1-
01-1815 2) Main test
Based on the results of the dose finding test, a main test was performed at the highest dose of 5,000 pg/plate and 5 lower doses diluted with a geometric progression of2. 7. MICROSCOPIC OBSERVATION AND COLONY COUNTING 7.1 Microscopic observation The stateofrevertant colonies (size and number of colonies), depositionofthe test substance and the growth inhibition were examined with a stereo microscope. 7.2 Colony counting `The number of colonies were counted with a manual counter or a colony analyzer (CA-7 or CA-9, Toyo-sokki Co., Ltd). Correction for counting errors was made for measurements with the colony analyzer. Each plate was measured three times, and the average of these three measurements was adopted as the number of revertant colonies on the plate. The average for each dose was calculated from the valuesofthe plates used. ~ Decimalsofthe average figures were rounded off. 8. INTERPRETATION OF RESULTS The test substance was judged to be positive, when the number of revertant colonies was twice or moreofthe negative control, and when the dose-relationship and the reproducibility were obtained. Any statistical procedures were not used.
RESULTS `The numbers of their revertant colonies for all strains in groups which were treated with the test substance were less than twice that of each negative control with and without $9 Mix. The positive controls showed the distinct increase of revertant colonies, and the positive controls and the negative control were within a range of the background data in our laboratories.
000214
--8-
K01-1815 The growth inhibition was observed at more than 2,500 ug/plate both with and without 59 Mix There were no fluctuations which affected the test results since the sterility test confirmed the absenceofany micro-organisms.
CONCLUSION In conclusion, v -1 wasjudged to have no reverse mutagenic potential under the present test conditions,
REFERENCES I. Ministry of Labor (1991) Guidebook on Mutagenicity Tests using Micro-
organisms, New Edition (in Japanese) published by Japan Industrial Safety and Health Association, 2. Green MHL. and W.J. Muriel (1976) Mutagen testing using Trp* reversion in `Escherichia coli, Mutation Res, 38: 3-32. 3. Maron, DM, and BN. Ames (1983) Revised methods for the Salmonella `mutagenicity test, Mutation Res, 113: 173-215.
00215
--9-
Dose finding test Test substance: y=
ree
ST COPY AVAILABLE
vit) With(+) or |[cTeosmtesturbasttianocne|BealMsasberuboftireavteritaonntst(emmb| er of colporaiuessefpslhatiet)sve | Shr | Gehlw) w[100 [7h 1685 5 TA 98 [Tsh 1537
Czoo[BEmEfLwESaRlE [osDEo] e]tCn[2iScalct9ya]
boa toa] 59 Mix [oo lo[r mei an]25m] on]
eo [cw[hn]Sco Sn] oa] Oe
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08) [308
ETN EEEYHEIEIE
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25
votive |b |wr|wn |wa| wea |ow|
requiring i
+
colmieaplte 410 :
: 8 oi
Positive
-- [wn | wn| wn|
sain Cai] +|eTo [oo T+| A
Kusber of
13
[ta 3 C0 [35 C0 [6 Co [32 com [190 Soles Pareatbsis shos the se of ah plate, #* : Observed bacterial growth inhibition.
"AF-2: 2-(2-Furyl)-3-(S-nitro-2-furyl)acrylanide
ET)
146
hk 2-tmimnanthranone "Nay: Sodiua azide
000216
-ICR-191: 2-Methoxy-6-chloro-8-(3-(2-chloroethy1)-asinopropylanino)acridine:2HCI
Main test
ees
Test substance: v1
2 [fleFobhe WithCH) or |Test subatance
vithut() | comentraion|
Nash of revertants (omber of coloaieplate)
Buse-pu mistitation re_|_Pranesbpiet_s|
Shs | Gals) T[mmy 100 [tBn 1695|WPzu|Tvae98d| TBho 1637
E ETEE HEFE HE
59 Mix
13u2 s| 1 fw| %Amd
FE0) 10
om
[en[ECECw EC] Cw]
sr am]
SeSl 330) Ib am] 2
N HET FTEEE IE `negative |1g cs)
H a EE
wm or[[Et0ioown[BCoewFE%awlEimnCca]bBoonm]] [mo[ime]Sw]SC]Se] wi) IE FEIEEEI
Poe | em | 02 |wn |wz|wz | wm|
requiring
op
S00 |ma| 3 00 | 58Co [52 Co | Co [5 com | Positive
ra nii
aber platofe)
181
Sr [oi] gi(on[38 om [3 Com [28 Com[5 0| + hsered bacterial growth bition, Notes Parenthesis shows the mean of each plate.
"AP-2: 2-(2-Puryl)-3-(5-nitro-2-furyl)acrylanide
-Nak;: Sodiua azide
-"I2CMR:-1821-:Asi2n-oMaentthohxrya-c6e-ncehloro-9-(3-(2-chloroethy16)-0as0in2op1ro7pylasino) acridine-2HCl
Dose 15
finding
test
35 10
g
Eg I 2
KoL-1815 O:T 100 Da:iT4P21u5r0zs
. 50
EE
.
50 1000
Fig. 1 Dose-response curve without 9 Mix
5000
(ug/plate)
15
OT 100
CAHTPA2a15r3d5
Ta
2
25
2
50
50 10
501000
Fi.g. 2 Dose-response curve wi. th 9 Mix
600218
5000
(ug/plate)
Dose
4
finding
test
3
x
i
2
01-1815
Oita 8 OTA 1857
. 510
5 10
01000
|
Fig. 3 Dose-response curve without $9 Mix
5000
(ug/plate)
O:4 8 Oi 1837 a
2 3 2g x 3 21
. 510
50 100 .
50 100
Fig. 4 Dose-response curve with 59 Mix
600219
5000 (ue/plate)
Main test
151
5 10
8
3
32
Biissits
O:TA 100
O:TA 1535 ANP2uvr
155 ais
625
1250 250
Fig. 5 Dose-response curve wi.thout $9 Nix
(we/ite)
fa
25 100
8
3
&
O:TA 100
D:TA 1535 A:WP2urrd
156
Fi.g. 6
31
Dose-response
825
curve
with
1250
$9 Mix
600220
2500
5000
(ug/plate)
Main test
4
2a
2
i
&u
Miitts
0:14 98
O:TA 1537
156
3m
625
1250
2500
Fig. 7 Dose-response curve without 59 Mi. x
000
)
5
4
2 oy 5
8
i
22 1
om 8
O:TA 1537
156
13
625
1250
Fig. 8 Dose-response curve with 9 Mix
00221
2500 (ug/5p00l0ate)