Document yr7NYG3p15eRROGLxMXZBNvmr
STUDY CODE: KOI-1815
ReceiptNo. T96-2503 Report No. T4663
FINAL REPORT
BACTERIAL
REVERSE MUTATION OF v-1
TEST
October,1996
I-litRaesearch Laboratories
Chemical BiotestingCenter
ChemicalsInspectio&n TestingInstitute
Japan
R- 0 -\v
1-77y07
OUALITY ASSURANCE STATENENT
Hita Research LaboratoriesC,hemical BiotestmgCenter Chemicals Inspection& TestingInstitutJea,pan
S12onsor: SUMITOMO 3M LUAMD
Title:
Bacterialreversemutationtestof v -1
Study code: KOI-1815
This reportwas auditedby the QualityAssuranceSection. I,the undersigned,hereby declarethatthisreportreflects the originalJapanese report.
(Date) oca.,@
1
SectionChief,QualityAssurance (Signature)
KeijiShiraishiB,.S.
KOI-1815
I,the undersigned,hereby declarethatthisreportprovides a correctEnglishtranslatioonftheFinalReport. (Study code No. KO I-1815 issuedon October 30, 1996)
(date)
(signature) Shozo Ogura
Mta Research Laboratories Chemical BiotestingCenter Chemicals Inspection& TestingInstituteJ,apan
KOI-1815
GLP STATENIENT
Bta ResearchLaboratoriesC,hemicalBiotestingCenter ChemicalsInspection& TestingInstitutJea,pan
S12onsor: Title: StudyCode No.:
SUlyffTOMO 3M LMTED Bacteriarleversemutationtestof v -1 KOI-1815
I,the undersigned,herebydeclarethatthisstudywas conductedin complianceswith "Standardsto be observedby TestingInstitutiofnosrTo)dcityInvestigation(sJ"apares MOL, No.76, September1,1988).
Management:
- Signedinorip-inal ShigetakaYamane, Ph. D.
October30, 1996
K01-1915
QUALITY ASSURANCE STATEMENT
Mta ResearchLaboratoriesC,hemicalBiotestingCenter ChemicalsInspectio&n TestingInstitutJea,pan
S12onsor: Title: Study Code No.:
SUNUTOMO 3M LD4MD Bacteriarleversemutationtestof v -1 KOI-1815
This studywas auditedby theQualityAssuranceSectionand thestudyprocedureswere inspectedon thefollowingdates.
Dates of Inspections
Dates of Reportsto
Dates ofReportsto
and Audits
Study Director
Management
September 12, 1996
September 13,1996
September 17,1996
October 1,1996
October 1,1996
October 1,1996
October 30, 1996
October30, 1996
October 30, 1996
1,theundersigned,herebydeclarethatthisreportprovidesan accuratedescriptioonf the
methods and proceduresused inthisstudyand thatthereportedresultasccuratelryeflect
theraw dataobtained.
SectionChief,QualityAssurance:
Signedinoriginal KeijiShiraishBi.,S.
October 30, 1996
KOI-1815
Study code:
K01-1815
Testsubstancecode: BR3291
Sponsor code:
S-030
TITLE Bacteriarleversemutationtestof v -I
SPONSOR SUMITOMO 3M LIMITED 8-8,NEnami-Hashimoto 3-chome Sagamihara-shiK,anagawa, 229 Japan
TESTING FACILITY Mta ResearchLaboratoriesC,hemicalBiotestingCenter ChemicalsInspection& TestingInstitutJea,pan 822,3-chome, Ishii-machiI,-IitOai,ta877,Japan
PURPOSE OF STUDY The purpose of thisstudywas to determinethe mutagenicpotentiaolf the test substanceusingSalmonellatyphimuriumand Escherichicaoli.
TESTING METHOD Thisstudywas conductedinaccordancewiththefollowingguidelines":Standardsfor ToxicityInvestigation(sJ"apan'sMOL, No.77, September1,1988).
GLP COMPLIANCE This study was carriedout in compliancewith the followingGLP requirement: "Standardsto be observedby TestingInstitutiofnosr ToxicityInvestigafione.' (Japan'sMOL, No.76, September1,1988).
PERIOD OF STUDY Commencement of test: Dose findingtest: Completion of observation: Presentatioonf finarleport:
September 17,1996 September 25, 1996 October 14,1996 October 30, 1996
K01-1815
LOCATION AND PERIOD FOR RETENTION OF RAW DATA Data and testsubstanceareretainedin the archivesand the testsubstancestorage room of Mta ResearchLaboratoriefsor10 yearsfollowingthedateof thenotification specifieudnder Item 1 of Article57-2of IndustriaSlafety& HealthLaw, respectively.
Afterterminatioonf the retentiopneriod,any measurestakenare done so with the approvalof the sponsor.
PERSON CONCERNED Study Director:
WITH STUDY
Signed inoriszinal October30, 1996 Shozo Ogura letaResearchLaboratories MutagenicitySection
Study StaffPerson inchargeof Storage:
Tsunehiko InaiB,.S. ShizukaKouda
ANY UNEXPECTED SITUATIONS AND DEVIATIONS FROM PROTOCOL There were no unexpectedsituationasnd deviationfsrom protocolwhich might have affectedthe testresults.
KOI-1815
CONTENTS
SUMMARY
............................1............
MATERIALS AND METHODS 1.TEST SUBSTANCE AND POSITIVE 2.BACTERIAL STRAINS 3.MEDIUM AND S9 NHX 4.PRE-CULTURES
CONTROLS
...............2...
............................4...........
............................5...........
...o ..........................6.........
5.PREPARATION CONTROLS
6.METHODS
OF TEST SUBSTANCE
AND POSITIVE ............................6........... ............................7...........
7.MICROSCOPIC OBSERVATION AND COLONY COUNTING
...... 8
8.INTERPRETATION OF RESULTS
............................8...........
RESULTS
............................8...........
CONCLUSION
............................9...........
REFERENCES
............................9...........
APPENDIX TABLES AND FIGURES ........o ...................1-.6......
KOI-1815
SUNRVIARY
The reverse mutation test of v -1 was performed on Salmonella typhimurium strains TAIOO, TA1535, TA98, TA1537 and aescherichia colistrainWP2 uvra using the preincubationmethod with and without metabolicactivation. The resultsshowed thatthe numbers of theirrevertantcoloniesfor allstrainsin groups which were treatedwith the testsubstancewere lessthan twice thatof each negative controlwith and withoutS9 N4ix. The numbers of the revertantcoloniesinthe negafivecontroland the posifivecontrols were withinthebackground datainour laboratories. Based upon the above results,v -I was judged tohave no reversemutagenic potential under the presenttestconditions.
KOI-1815
MATERIALS AND NETHODS
TEST SUBSTANCE AND POSITIVE CONTROLS 1.1 Test substance(Informatiopnrovidedby thesponsor)
1) Name Potassiumsaltof N-ethyl-N-perfluorobutylsulfonylglycine Othername: v -I CAS No.: 67584-51-4
2) Lot No. Lot 1
3) Supplier SUNflTOMO 3M LIMITED
4) Structuraflormulaor rationaflormula(Outlineof manufacturingmethod,incase both were unknown)
C4F9SO2NCH2COOK I U2ki5
(molecularfomiula CgH7F9RNO4S)
5) Purity
97.3 w/wO/o
6) Impurities
KCI 2.7 w/wO/o
7) Physicochemicalproperties
Appearance atordinarytemperature: lightgraypowder
Molecularweight:
423.30
Stability: Meltingpoint:
stable -
Boilingpoint:
-
Vapor pressure:
-
Partitiocnoefficient:
-
Solubility:
-
Degree of solubility:
Water:
5 W/vo/o*
DMSO:
5 W/vo/o*
Acetone: < 10 w/vO/o
Others:
Examined inour laboratories
-2-
KOI-1815
8) Storageconditions
room temperature
9) Careon handling
Gloves,a mask, a head cap and a labcoatwere wom when handling.
1.2 Positivecontrols
1) 2-(2-Furyl)-3-(S-nitro-2-furyl)a(cArFy-l2a)mide
Manufacturer: Wako Pure ChemicalIndustrieLst,d.
Lot No.:
LEN0571
Properties: reddish-orangecrystallipnoewder
Purity:
99.5%
Grade:
specialgrade
2) Sodium azide (NaN3)
Manufacturer: Wako Pure ChemicalIndustriesL,td.
Lot No.:
DLP2438
Properties: white crystalline
Purity:
99.4%
Grade:
specialgrade
3) 2-Methoxy-6-chloro-9-[3-(2-chloroethyl)-aminopropylamino]a2cHrCiIdine
(ICR-191)
Manufacturer: PolysciencesI,nc.
Lot No. -.
412795
Properties: yellowcrystallipnoewder
Purity:
Grade:
4) 2-An@noanthracene(2AA)
Manufacturer: Wako Pure Chemical IndustrieLst,d.
Lot No.:
DLR7869
Properties: yellowish-green-browpnowder
Purity: Grade:
95.7% -
5) Storageconditions
A coldand dark place
6) Care on handling
Gloves,a mask, a head cap and a labcoatwere wom when handling.
3-
KOI-1815
2. BACTERIAL STRAINS 2.1 Strainsselected
Salmonella typhimurium strainsTAIOO, TA98, TA1535 and TA1537 were obtainedfrom Dr. B.N. Ames, UniversityofCaliforniaU,.S.A. on June 20, 1990.
A Escherichia coli strainWP2 Laboratorieso,n April6, 1995.
uvra was obtained from Japan Bioassay
S. typhimurium strainTsAIOO, TA1535 and a E. colistrainWP2 uvra were used for the detectionof base-pairsubstitutiomnutation,while S. typhimurium strains TA98 and TAI 537 were forthedetectionofframeshifmtutation. 2.2 Storage
The teststrainswere storedas frozen stock cultures(0.045 ml of dimethyl sulfoxid(eDMSO)*/0.5 ml of brothculturea)t -80'C (ultra-deefpreezerMDF291, Sanyo). * Purity '2-9:9.0%, Lot No. CF103, Dojindo Laboratories 2.3 Characterizatioonf strains 1) Characteristiocfsstrains
Strains
Mutationon synthesiosf amino acid
Mutationon excision repair
Membrane R-factor mutation (PKMIOI) (LPS)
Salmonelltayphimurium
TA1535
hisG46
TA1537
hisC3076
TA98
hisD3052
TAIOO
hisG46
Escherichiacoli
WP2 uvra
trp
LuvrB LuvrB LuvrB LuvrB
Z@uvrA
rfa
rfa
rfa
+
rfa
+
+
The amino acidrequirementforgrowth was demonstratedby usinghistidinfeor S. typhimurium strainsand tryptophanforE coli strain. The presence of Rfactor,membrane mutationand mutationon the abilittyo repairDNA lesionswere confirmedby ampiciuinresistances,ensitivitoy crystavlioletand UV sensitivity, respectively.
-4-
KO 1-1815
2) Date ofcharacterization Salmonellatyphimurium
Escherichiacoli
TA1535 TA1537 TA98 TAIOO WP2 uvra
July18, 1996 June 7, 1996 June 7, 1996 March 6, 1996 April18,1996
3. NEDIUM AND S9 NIIX
3.1 Medium
1) Minimalglucoseagarplate(preparedinourLaboratories)
The medium was preparedasfollows,and poured30 ml intoa petridish.
Components
Amount includedinone litre
20 x Vogel-BonnerE
50 mi
40 w/vO/oGlucose
50 mi
Agar
15 g
(1)Agar:
Bacto-Agar(LotNo. 71892AJB or90800JA,
DifcoLaboratories)
(2)Manufacturingdate: dose findingteston September 11,1996
main teston October3, 1996
2) Softagar
The solutioncontaining0.5 mM histidinaend 0.5 mM biotinforS. typhimurium
strainsor 0.5 mM tryptophanfor E. coli strainwas added to the soft agar
solutioncontainin0g.6 w/vl/oagar (Bacto-AgarL,ot No. 71892AJB, Difco
Laboratoriesa)nd 0.5w/v*/oNaCl ina ratioof I :10.
3.2 S9 Nfix
1) Rat liveSr9 (KikkomanCo.,Ltd.)
Inductionmethod:
SD male.rats7,-week-old(203-254g),were
intraperitoneaaldlmyinistratepdhenobarbita(l30 mglkg
x I time,60 mg/kg x 3 times)and 5,6-benzoflavone
(80mg/kg x Itime).
Lot No.:
RAA-3 50 (manufacturedon August 23, 1996,
purchasedon September4, 1996)
Storage:
-809C (ultra-deefpreezerMDF-29 1,Sanyo)
2) CofactorforS9 Mx (OrientaYleastIndustrieLst,d.)
Lot No.:
999602
Storage:
-209C (bio-freezGeSr-2603,Nippon FreezerLtd.)
5-
KO I-1815
3) Compositionof S9 Nfix
One n@ of S9 NEx contained8 gmol MgCI2, 33 gmol KCI, 5 gmol G-6-P, 4 gmol NADPK 4gmol NADK 100 gmol of 0.2M sodium-phosphatebuffer(pH 7.4) and 0.1 ml S9.
4. PRE-CULTURES
From the stockcultures2,0 glof thebacteriasluspensionwas inoculatedto L-tube containing10 n-dnutrienbtrothNo.2 (LotNo. 194 56443, OXOID Ltd.)and the bacteriaclulturewas incubatedat37 0.5*C for8 h with shakingat50 times/min by theMonod shaker(MONOSIN- H A, TaitecCo.,Ltd.) The viablecellcounts calculatedfrom the valueswhich were detern-dnedat660 mn by spectrophotometry (Novaspec,LKB Japan)atthe end ofincubationare shown below,
No. of
Dose
viablecells findingtest
Ux 109/n-@) Main test 1
TA100 2.1 2.1
TA1535 WP2 uvra
2.1
4.4
1 2.1 1 .0 1
TA98 2.4 2.3
TA1537 2.1
1__ 2.0
5. PREPARATION 5.1 Test substance
1) Preparation
OF TEST SUBSTANCE
AND POSITIVE CONTROLS
The testsubstancewas dissolvedin distillewdater (distillweadter forinjection,
Lot No. K6B74, Otsuka PharmaceuticalFactory)to make 5 w/vO/oconcentration and dilutedwith the same solventto giveappropriateconcentrations. 2) Stabilitoyf the testsolution
No denaturationof the testsolutionwas observedfor the color and the exothermicreactionuntil2 hours afterpreparation. 3) Preparationtime
Prepared immediatelybeforeuse and used within0.5 h atroom temperature. 5.2 Positivecontrols
1) Preparation
NaN3 was dissolvedin distillweadter (Lot No. K6B74). AF-2, ICR-191 and 2AA were dissolvedinDMSO (LotNo. CD069).
-6 -
KOI-1815
2) Preparationtimeand storagecondition Prepared on every3 months and storedat-809C (ultra-deefpreezerNMF-291, Sanyo).
6. METHODS The testwas carriedout for S. typhimurium strainsTAIS35, TA1537, TA98, TAIOO and a E. colistrainWP2 uvra usingthe pre-incubatiomnethod both with and without metabolicactivatiosnystem. The platingwas done in triplicatfeor the negativecontroland induplicateforthe testsubstanceand positivecontrols.
6.1 Procedures After 0.1 ml of the testsubstancesolution,0.5 ml of 0.1 M sodium phosphate buffer(pH 7.4)or S9 Nlix,and 0.1 ml ofthe bacteriaclulturewere added to a tube, the mixtureswere incubatedfor20 min at 37 0.5C. Two ml of the softagar was then added to each tube and poured onto.a minimal glucoseagar plate.
Afterincubationfor 48 h at 37 0.5C, the number of revertanctolonieswere counted.
As the sterilityest,each 0.1 rnlof each bacterialsuspension,testsubstance solution,S9 Nfix or 0.1 M sodium phosphatebuffer(pH 7.4)were smeared on a minimal glucoseagar plateand incubatedat 37 0.5@c for 48 h, and then checked the bacterialcontamination.Distillewdater was used as a negative control,and thefollowingpositivecontrolswere used foreach bacteriasltrains.
S9 Nfix S9 Nfix
TAIOO AF-2 0.01 2AA
1
TA1535 NaN3 0.5 2AA 2
WP2 uvra AF-2 0.01 2AA 10
TA98 AF-2 0.1 2AA 0.5
TA1537 ICR- 191
1 2AA
2
(gg/plate) 6.2 Dose selection
1) Dose findingtest The testwas carriedout at the highestdose of 5,000 gg/plateand 6 doses of 1,000, 500, 100, 50, 10 and 5 gg/plate. As a result,growth inhibitiownas observed at 5,000 gg/plateboth 'Withand withoutS9 Mix.
7-
KOI-1815
2) Main test Based on theresultsof the dose findingtest,a main testwas performedat the highestdose of 5,000 gg/plateand 5 lower doses dilutedwith a geometric progressionof2.
7. MICROSCOPIC OBSERVATION AND COLONY COUNTING 7.1 Microscopicobservation
The stateof revertanctolonies(sizeand number of colonies)d,epositionofthetest substanceand thegrowth inhibitiownere exan-dnedwith a stereomicroscope. 7.2 Colony counting The number of colonieswere counted witha manual counteror a colonyanalyzer (CA-7 orCA-9, Toyo-sokkiCo.,Ltd). Correctiofnorcountingerrorswas made formeasurementswiththecolonyanalyzer. Each platewas measuredthreetimes, and the averageof thesethreemeasurementswas adopted as the number of revertanctolonieson the plate. The averageforeach dose was calculatefdrom thevaluesof theplatesused. Decimalsof theaveragefigureswere rounded off
8. INTERPRETATION OF RESULTS The testsubstancewas judged to be positivew,hen the number of revertant colonieswas twiceor more ofthenegativecontrola,nd when thedose-relationship and thereproducibiliwteyre obtained. Any statistipcraolcedureswere notused.
RESULTS
The numbers of theirrevertanctoloniesforallstrainisngroupswhich were treatedwith the testsubstancewere lessthantwicethatofeach negativecontrolwith and without S9 Nfix.
The positivecontrolshowed the distincitncreaseof revertanctoloniesa,nd thepositive controlsand the negativecontrolwere withina rangeof the backgrounddatain our laboratories.
8-
K01-1915
The growth inhibitiwoans observedatmore than 2,500 gg/platbeoth with and without S9 NEX. There were no fluctuatiownhsich affectedthe testresultsincethe sterilitteyst confirmedtheabsenceof any micro-organisms.
CONCLUSION Inconclusion,v -1was judgedto have no reversemutagenicpotentiaulnder thepresent testconditions.
REFERENCES 1 Ministryof Labor (1991) Guidebook on MutagenicityTests using Micro-
organisms,New Edition(inJapanese)publishedby Japan IndustriaSlafetyand HealthAssociation, 2. Green M.H.L. and W.J. Muriel(1976)Mutagen testinugsingTrp+ reversioinn EscherichicaoliM,utationRes.,38: 3-32. 3. Maron, D.M., and B.N. Ames (1983) Revised methods for the Salmonella mutagenicity test,Mutation Res., 113: 173-215.
-9 -
Dose
finding
test
K01-1815
Test- substance* v - 1
With(+)or Test substance without(-) concentration
Numberof revertmts(mnberof colonies/pltte)
Base-p&irsubstitutiotnype
Frame3hifttype
S9 mix
(Ag/Pl"t') TA 100 TA 1535 WP2 uvr.4 TA 98 TA 1537
S9 Mix S9 Mix
negative control
5 10 50 100 500 1000 5000 negative control
5 10 50 100 500 1000 5000
90 101 ( 101) ill 118
( 114) -109
99 126 ( 113) 101 ( 104) 107 98 116 (107) 109 (114) 118 104
(100) 95 80* 76*( 78*) 110 95 95) 91 91 96 94) 104
102) 99 101
(96) go 105
(98) 91 100 (98) 96 93 (102) 110 120* 102*(
13
33
30
9
10 ( 12) 41 ( 37) 33 ( 31) 6 7)
14
37
1 31
7
1
1141 ( 13) 3445 ( 40) 3253 (29-) a9 -9)
11 (12) 19 (421
12
44
is (13) 39 (36) 1
8
32
12 (14)
16 16 7 (12)
33 (34) 34 48 (43) 38
8
30
(12)
34)
15
38
3*
33*
( 4*)
27*)
5*
20*
10
41
15 (12) 40 3B)
12
32
8 (10) 37 38)
12
39
11 (13) 35 38)
14
40
12
35
8 (10) 39 37)
15
33
8 (12) 35 34)
12
36
7 (10) 41 39)
9
32
(11)
32)
12
32
6* 8*) 25* 27*)
10*(
28*
1297 (23) 95
7) -
23 (25) 12 (11)
26
9
3316 (34 23 (24) 25
10 (10) 10 8 9 ( 9)
27 (Z7) 7 (-9)
27
10
io* 13*) 85**( 7*) 15*
34
23
36 34) 18 19)
33
16
34
15 34)
is)
34
17
30 (-32)
2F35
24)
34
31 ( 27) 17 16)
23
14
43 (44) 'o (22)
45
23
30 (37) 16 (19)
43
21 -
31 (35) 19 (20)
39
20
25*
24*)
0* ( 7*)
23*(_ _ 14$
Positive controlnot
reqmrng So Mix
Name
AF-2
Concentration (gg/plate) 0.01
Nober of 351 ( 381)
colonitalplate410
N&Ns 0.5 382 ( 384) 385
AF-2
AF-2
ICR-191
0.01
0.1
1
-
179 ( 184) 487 ( 527) 1734 (1851)
188
566
1968
Positive control requiring S9 Nil
Name
2M
2AA
concentration
(N@plate) I
1I
2
Nmber of 727
133
leolonies/pla1ti621
( 674) 1
158
( 146)
Notes Parenthesis shows the meam of each plate.
* : Observedbacterialgrowthinhibition.
2AA
10 I 650 ( 647) 644
2AA 0.5 304 ( 289)
ZM 2
149
-AF-2:2-(2-FurYl)-3-(5-nitro-2-furyl)acrylamide
-NaN3: Sodium azide -ICR-191: 2-Methoxy-6-chloro-9-(3-(2-chloroethy1)-aminopropylamina) acridine-2HCI .IIA- 9.-Iminnmn+hrApano
Main test
K01-1815
Test substance:v - 1
With(+)or Test substance
Rtmberof revertimt(smoberof colonies/plate)
without(-) concentration Base-piirsubstitutiotnype
Frameshifttype
89 mix
(Aglp"t') TA 100 TA 1535 WP2 uvr.4 TA 98 TA 1537
negative control
156
113
112 ( 110) 106 100 117 ( 109)
18
39
10 ( 15) 36 ( 37)
17
36
1
12
27
11 ( 13) ( 30)
33
28 25 ( 30) 38
28 ( 31) 34 _
13 10 ( 14) 19 8 ( 11) 1
S9 Mix
313 625 1250 2500 5000 negative control 156
132 (116) 100 119 (117) 114 104 103 (104) 82*(87*) 91* 79*(84*) 88* 1DB 117 (115) 120 103 (110) 116
11 15 ( 13) 10 (11) 11 12P 12 (12) 7* 8*( 8*)
0* 0*( 0*)
9 9 (11) 14
6 ( 7) 8
24
30
33 ( 29) 34 ( 32)
30 32 (31) 3334 (34)
36 50 (43)
32D9 (30) i
35*
21*
3 *( 33*) 3* 22*)
36*
l@188**(
35* (21*)
33* ) 24*
38
42
29 34) 46 (42)
34
39
4398 44) 3450 (38)
20 8 ( 14)
18 (21)
18 (23)
27
3* 9*( 6*) 0* 6*( 3*) 24 28 (26) 26 23 (29) 35
S9 Mix
313 97 (93) 9 (10) 12 47) 35 (41) 31 (29)
89
10
_u
46
26
625 109 (112) 11 (12) 35 36) 31 (34) 26 (26)
115
13
36
37
26
1250 ',',0( 2 111)
38
7-(-10)
41 (43) 26
2500
106* 121*)
8* 6*(
33* 7*) 38*( 36*)
37* 31*(
34*)
7*
1 136*(
14*(
103*
3$c
41*
24*
0*
5000
118*(ill*)1*( 2*)
33*(37*)
(24*) 24* --
7*( 4*)
Positive controlnot requrin
S9 mix
Name
AP-2
Concentration (R/Plate) 0.01 Number of 356
colonies/plate337 347)
NaNa
AF-2
AF-2
ICR-191
0.5
0.01
0.1
1
328
( 312)
133
( 123)
456
201;; ( 463) (2068)
295
113
470
2081
Positive control requiring S9 Mix
Name
2AA
Concentration-
(g@plate)
1
Nmber of 804 coloniies/plateA74 ( 839)
ZAA
21 191 ( 177) 163
2AA 10 582 ( 572) 561
2AA
0.5 1 276 ( 266) 255
2AA 2
171 159 (1765)]
Notes Parenthesisshowsthe mean of eachplate. * : Ob5ervedbacterialgrowthinhibition.
-AF-2:2-(2-Furyl)-3-(5-nitro-2-furyl)acrylamide
-NaN3: Sodium azide
-ICR-191: 2-Methoxy-6-chloro-9-(3-(2-chloroethy1)-aminopropylamino) acridine.2HC1
-2AA: 2-Aminoanthracene
D o s e finding 150-
test
ed
100-4
cu
4 0 ci
50-
K01-1815
0: TA 100 0: TA 1535
WP 2 vr.4
B-
0-= 5 10
50 100
B 500 1000
Fig. I Dose-response curve without S9 Mix
5000 g/plate)
150-
4c-u) co
10@
cn
ci
Cd 50-
0: TA 100 O:TA 1535 ,&:WP2uvr4
0
5 10
50 100
500 1000
Fig. 2 Dose-response curve with Sg Mix
5000 (,ai/1pat e)
D o s e finding 40-
test
30@
U3
20-
Cd
K01-1815
0: TA 98 13:TA 1537
10
0-
5 10
50 ioo
500 1000
Fig. 3 Dose-response curve without S9 Mix
5000 (gg/plate)
50-
40-
Cd 4
30-
20-E
0: TA 98 0: TA 1537
10-
0
5 10
50 100
500 1000
Fig. 4 Dose-response curve with S9 Mix
-5000 (gg/plate)
Main 150-
t e st
ed 4 100-
cn
KOI-1815
0: TA 100 13:TA 1535 &:WP2Lrvr,4
Cd 50cg
E3
B-
0-
156
313
625
1250
2500
Fig. 5 Dose-response curve without S9 Mix
5000 (gg/plate)
150-
cu
cd C. 100rn cu
50ce.
0: TA 100 0: TA 1535 A: WP2irvrj
0
156
313
625
1250
Fig. 6 Dose-response curve with Sg Mix
2500
5000
(gg/plate)
i 40-
3N
cu
0 20ci
10-
K01-1815
0: TA 98 0: TA 1537
0-
156
313
625
1250
2500
Fig. 7 Dose-response curve without Sg Mix
5000 (gg/plate)
50-
40-
Cd 4
300
"-4 0
2D-
cu 10-
0: TA 98 0: TA 1537
0156
313
625
1250
Fig. 8 Dose-response curve with S9 Mix
2500
5000
(9g/pIate)