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Nano Zinc Oxide NOAEL Studies

INCI: ZINC OXIDE

CAS: 1314-13-2

Raw No Observed Adverse Effect Level endpoint records grouped by source. This page does not render calculated Margin of Safety values.

COSMOS DB 10 endpoints
Source Endpoint Type Value Unit Species Route Duration Study Type Reference
COSMOS DB NOAEL 45 mg/kg bw/day swine oral 14 day Short Term Toxicity US FDA CFSAN PAFA; US FDA CFSAN PAFA Study
COSMOS DB NOAEL 99 mg/kg bw/day sheep oral 70 day Short Term Toxicity US FDA CFSAN PAFA; US FDA CFSAN PAFA Study
COSMOS DB NOAEL 100 mg/kg bw/day swine oral 14 day Short Term Toxicity US FDA CFSAN PAFA; US FDA CFSAN PAFA Study
COSMOS DB NOAEL 149 mg/kg bw/day cattle oral 4 day Special Toxicology Study US FDA CFSAN PAFA; US FDA CFSAN PAFA Study
COSMOS DB NOAEL 164 mg/kg bw/day swine oral 28 day Short Term Toxicity US FDA CFSAN PAFA; US FDA CFSAN PAFA Study
COSMOS DB NOAEL 172 mg/kg bw/day rat oral 252 day Chronic US FDA CFSAN PAFA; US FDA CFSAN PAFA Study
COSMOS DB NOAEL 400 mg/kg bw/day rat oral 56 day Short Term Toxicity US FDA CFSAN PAFA; US FDA CFSAN PAFA Study
COSMOS DB NOAEL 500 mg/kg bw/day rat oral 28 day Short Term Toxicity US FDA CFSAN PAFA; US FDA CFSAN PAFA Study
COSMOS DB NOAEL 600 mg/kg bw/day rat oral 21 day Short Term Toxicity US FDA CFSAN PAFA; US FDA CFSAN PAFA Study
COSMOS DB NOAEL 606 mg/kg bw/day rat oral 10 day Special Toxicology Study US FDA CFSAN PAFA; US FDA CFSAN PAFA Study
NTP ICE acute inhalation 2 endpoints
Source Endpoint Type Value Unit Species Route Duration Study Type Reference
NTP ICE acute inhalation LC50 >1.79 mg/L - Inhalation Duration=4 hr In Vivo; AcuteInhalNICEATM; Rat Acute Inhalation Toxicity sheet=Data; excel_row=4203; Record_ID=acute_inhalation_1832; Data_Type=In Vivo; Internal_Data_Source=AcuteInhalNICEATM; Mixture=Chemical; DTXSID=DTXSID7035016; Assay=Rat Acute Inhalation Toxicity; Endpoint=LC50; Response_Modifier=>; Response=1.79; Response_Unit=mg/L; Reference=REACH; URL=https://echa.europa.eu/registration-dossier/-/registered-dossier/16139/7/3/3/?documentUUID=d5093ff7-b3f3-4595-8fb5-707d8303b2e3; URL_CompTox=https://comptox.epa.gov/dashboard/chemical/details/DTXSID7035016
NTP ICE acute inhalation LC50 >5.7 mg/L - Inhalation Duration=4 hr In Vivo; AcuteInhalNICEATM; Rat Acute Inhalation Toxicity sheet=Data; excel_row=4202; Record_ID=acute_inhalation_1839; Data_Type=In Vivo; Internal_Data_Source=AcuteInhalNICEATM; Mixture=Chemical; DTXSID=DTXSID7035016; Assay=Rat Acute Inhalation Toxicity; Endpoint=LC50; Response_Modifier=>; Response=5.7; Response_Unit=mg/L; Reference=REACH; URL=https://echa.europa.eu/registration-dossier/-/registered-dossier/16139/7/3/3/?documentUUID=f0900b38-089f-4db8-a4a5-d11deef9b233; URL_CompTox=https://comptox.epa.gov/dashboard/chemical/details/DTXSID7035016
SCCNFP Opinion 5 endpoints
Source Endpoint Type Value Unit Species Route Duration Study Type Reference
SCCNFP Opinion NOAEL =0.5 mg/kg/day human oral 6 weeks NOAEL study p.7
SCCNFP Opinion NOAEL =40 % human oral developmental developmental toxicity Ref. : 29 2, p.14
SCCNFP Opinion NOAEL =42.5 mg/kg rabbit oral developmental developmental toxicity p.13
SCCNFP Opinion NOAEL =60 mg/kg rat oral developmental developmental toxicity p.14
SCCNFP Opinion NOAEL =3000 ppm rat - - NOAEL study p.7
SCCS Opinion 15 endpoints
Source Endpoint Type Value Unit Species Route Duration Study Type Reference
SCCS Opinion NOAEL =0.0225 mg/kg bw/d human oral - NOAEL study p.90
SCCS Opinion NOAEL =0.166 mg/kg bw/d human oral - NOAEL study p.90
SCCS Opinion NOAEL =0.225 mg/kg bw/day human oral - NOAEL study (Reference 44, sub III), p.90
SCCS Opinion NOAEL =0.83 mg/kg bw/d human oral - NOAEL study (Reference 44, sub III), p.90
SCCS Opinion NOAEL =0.9 mg/kg/d human oral - NOAEL study (Reference 44, sub III), p.90
SCCS Opinion NOAEL =1 mg/kg bw rat intravenous - repeated dose toxicity (References: 85, 94, 119), p.86
SCCS Opinion NOAEL =1 - human - - NOAEL study p.89
SCCS Opinion NOAEL =2 % human oral 18 days repeated dose toxicity p.89
SCCS Opinion NOAEL =4 - - inhalation 90 days NOAEL study p.13
SCCS Opinion NOAEL =20 % human oral 18 days repeated dose toxicity p.89
SCCS Opinion NOAEL =50 - mouse oral - NOAEL study (Reference 44, sub III), p.96
SCCS Opinion NOAEL =90 - - inhalation 90 days NOAEL study p.12
SCCS Opinion NOAEL =96 % - - - NOAEL study p.13
SCCS Opinion NOAEL =1000 mg/kg mouse oral - NOAEL study Reference: AR16), p.29
SCCS Opinion NOAEL =1518 - - - - NOAEL study p.13
ToxValDB DOE Wildlife Benchmarks 2 endpoints
Source Endpoint Type Value Unit Species Route Duration Study Type Reference
ToxValDB DOE Wildlife Benchmarks LOAEL =320 mg/kg bw/day Rat oral - repeat dose other STORED_SOURCE_RECORD=https://clowder.edap-cluster.com/files/65bd1d53e4b063812d68c240; RECORD_SOURCE_LEVEL=Extraction document; SOURCE_URL=https://rais.ornl.gov/documents/tm86r3.pdf; STUDY_GROUP=DOE Wildlife Benchmarks_dup_-_15511732_15511733:-:--; QC_CATEGORY=Programmatically extracted from structured data source; Source overall passed QC, but this record was not manually checked; QC_STATUS=not determined; SOURCE_HASH=ToxValhc_3ebf403078a5e913b57b05bc20466670
ToxValDB DOE Wildlife Benchmarks NOAEL =160 mg/kg bw/day Rat oral - repeat dose other STORED_SOURCE_RECORD=https://clowder.edap-cluster.com/files/65bd1d53e4b063812d68c240; RECORD_SOURCE_LEVEL=Extraction document; SOURCE_URL=https://rais.ornl.gov/documents/tm86r3.pdf; STUDY_GROUP=DOE Wildlife Benchmarks_dup_-_15511732_15511733:-:--; QC_CATEGORY=Programmatically extracted from structured data source; Source overall passed QC, but this record was not manually checked; QC_STATUS=not determined; SOURCE_HASH=ToxValhc_5842136dc14ffb68cb0f57e51d356058
ECHA 12 endpoints
Source Endpoint Type Value Unit Species Route Duration Study Type Reference
ECHA LEL =2.5 mg/m3 Rat inhalation - acute QUALITY=2 (reliable with restrictions); STORED_SOURCE_RECORD=https://clowder.edap-cluster.com/files/67c61b61e4b096bca876de2f; RECORD_SOURCE_LEVEL=Extraction document; SOURCE_URL=https://echa.europa.eu/; SUBSOURCE_URL=https://echa.europa.eu/registration-dossier/-/registered-dossier/10228/7/3/3?documentUUID=819bf807-93be-4ebf-8cda-44ec703048cc; YEAR=1969; ORIGINAL_YEAR=1969; STUDY_GROUP=ECHA IUCLID:15795745:M:--; QC_CATEGORY=Programmatically extracted from structured data source; Source overall passed QC, but this record was not manually checked; QC_STATUS=not determined; SOURCE_HASH=ToxValhc_ab3ff196fb47d292a28ee1e5d0bcd425
ECHA LEL ~4.6 mg/m3 Guinea Pig inhalation short-term; 6 days short-term QUALITY=2 (reliable with restrictions); STORED_SOURCE_RECORD=https://clowder.edap-cluster.com/files/67c61fd3e4b096bca877eff6; RECORD_SOURCE_LEVEL=Extraction document; SOURCE_URL=https://echa.europa.eu/; SUBSOURCE_URL=https://echa.europa.eu/registration-dossier/-/registered-dossier/24855/7/6/3?documentUUID=07ed0690-2bf9-419e-8ccc-30c37dab3fe1; YEAR=1977; ORIGINAL_YEAR=1977; STUDY_GROUP=ECHA IUCLID:15827097:M:--; QC_CATEGORY=Programmatically extracted from structured data source; Source overall passed QC, but this record was not manually checked; QC_STATUS=not determined; SOURCE_HASH=ToxValhc_592f1e6aa088d65cd7c4a8a8d2298d72
ECHA LEL =5 mg/m3 Rabbit inhalation - acute QUALITY=2 (reliable with restrictions); STORED_SOURCE_RECORD=https://clowder.edap-cluster.com/files/66059759e4b063812d6fa6de; RECORD_SOURCE_LEVEL=Extraction document; SOURCE_URL=https://echa.europa.eu/; SUBSOURCE_URL=https://echa.europa.eu/registration-dossier/-/registered-dossier/11214/7/3/3?documentUUID=fcaa6bea-650a-413b-94a6-3d002945fc60; YEAR=1982; ORIGINAL_YEAR=1982; STUDY_GROUP=ECHA IUCLID:15796094:M:--; QC_CATEGORY=Programmatically extracted from structured data source; Source overall passed QC, but this record was not manually checked; QC_STATUS=not determined; SOURCE_HASH=ToxValhc_4cd11eedad53117f0d834ca188afbb0c
ECHA LEL =7.8 mg/m3 Guinea Pig inhalation - acute QUALITY=2 (reliable with restrictions); STORED_SOURCE_RECORD=https://clowder.edap-cluster.com/files/66059759e4b063812d6fa6de; RECORD_SOURCE_LEVEL=Extraction document; SOURCE_URL=https://echa.europa.eu/; SUBSOURCE_URL=https://echa.europa.eu/registration-dossier/-/registered-dossier/10329/7/3/3?documentUUID=9335e422-4b04-439e-b32c-4a913c2da116; YEAR=2013; ORIGINAL_YEAR=2013; STUDY_GROUP=ECHA IUCLID_dup_Acute Toxicity Inhalation_15795975_15796897:M:--; QC_CATEGORY=Programmatically extracted from structured data source; Source overall passed QC, but this record was not manually checked; QC_STATUS=not determined; SOURCE_HASH=ToxValhc_084b71e7b0617cdc7e06127d20f0ba17
ECHA LEL ~731 ppm Sheep oral short-term; 14 days short-term QUALITY=2 (reliable with restrictions); STORED_SOURCE_RECORD=https://clowder.edap-cluster.com/files/66a7cb96e4b0a7c65d226a94; RECORD_SOURCE_LEVEL=Extraction document; SOURCE_URL=https://echa.europa.eu/; SUBSOURCE_URL=https://echa.europa.eu/registration-dossier/-/registered-dossier/24962/7/6/2?documentUUID=dfc1dee8-bb78-4fd3-b706-372ddde549af; YEAR=1996; ORIGINAL_YEAR=1996; STUDY_GROUP=ECHA IUCLID_dup_Repeated Dose Toxicity Oral_15830373_15832877_15836688_15840371_15842751_15843448_15845544:-:--; QC_CATEGORY=Programmatically extracted from structured data source; Source overall passed QC, but this record was not manually checked; QC_STATUS=not determined; SOURCE_HASH=ToxValhc_1af5230e229d1c877d2660e0a369d87a
ECHA LOAEL =125 mg/kg bw/day Rat oral subchronic; 90 days subchronic QUALITY=2 (reliable with restrictions); STORED_SOURCE_RECORD=https://clowder.edap-cluster.com/files/669eadc7e4b0a7c65d1c5fc5; RECORD_SOURCE_LEVEL=Extraction document; SOURCE_URL=https://echa.europa.eu/; SUBSOURCE_URL=https://echa.europa.eu/registration-dossier/-/registered-dossier/10329/7/6/2?documentUUID=9335e422-4b04-439e-b32c-4a913c2da116; YEAR=2013; ORIGINAL_YEAR=2013; TOXICOLOGICAL_EFFECT=histopathology: nonneoplastic; TOXICOLOGICAL_EFFECT_CATEGORY=nonneoplastic histopathology; STUDY_GROUP=ECHA IUCLID_dup_Repeated Dose Toxicity Oral_15847227_15847468_15848640_15848676_15848947_15848951_15850702_15850703_15850704_15850705_15850706_15850707_15850708_15850709_15850710_15850711_15850712_15850713:M/F:--; QC_CATEGORY=Programmatically extracted from structured data source; Source overall passed QC, and this record was expert reviewed; QC_STATUS=pass; SOURCE_HASH=ToxValhc_00676d649c76c64849dab92425be8636
ECHA NOAEC =1.96 mg/m3 Rat inhalation short-term; 10 days short-term QUALITY=1 (reliable without restriction); STORED_SOURCE_RECORD=https://clowder.edap-cluster.com/files/67c61fa0e4b096bca877e312; RECORD_SOURCE_LEVEL=Extraction document; SOURCE_URL=https://echa.europa.eu/; SUBSOURCE_URL=https://echa.europa.eu/registration-dossier/-/registered-dossier/13376/7/6/3?documentUUID=1bb64f22-9e4c-4f54-991f-a093ab5588fc; YEAR=2008; ORIGINAL_YEAR=2008; STUDY_GROUP=ECHA IUCLID:15826939:M:--; QC_CATEGORY=Programmatically extracted from structured data source; Source overall passed QC, but this record was not manually checked; QC_STATUS=not determined; SOURCE_HASH=ToxValhc_b860d08df8e8c7b27c1804413734155f
ECHA NOAEC =7.5 mg/m3 Rat inhalation - developmental QUALITY=1 (reliable without restriction); STORED_SOURCE_RECORD=https://clowder.edap-cluster.com/files/66a7d215e4b0a7c65d2316a1; RECORD_SOURCE_LEVEL=Extraction document; SOURCE_URL=https://echa.europa.eu/; SUBSOURCE_URL=https://echa.europa.eu/registration-dossier/-/registered-dossier/1803/7/9/3?documentUUID=93089a17-9c2c-4eaf-8903-70c9beb87b12; YEAR=2018; ORIGINAL_YEAR=2018; TOXICOLOGICAL_EFFECT=fetus: changes in sex ratio|fetus: fetal/pup body weight changes|fetus: changes in litter size and weights|fetus: external malformations|fetus: skeletal malformations|fetus: visceral malformations; TOXICOLOGICAL_EFFECT_CATEGORY=development; STUDY_GROUP=ECHA IUCLID_dup_Developmental Toxicity Teratogenicity_15820793_15821376_15821531_15821592_15821667:M/F:-fetal; QC_CATEGORY=Programmatically extracted from structured data source; Source overall passed QC, but this record was not manually checked; QC_STATUS=not determined; SOURCE_HASH=ToxValhc_128fb7ffc5b43921d687956bec6ca77a
ECHA NOAEL =31.25 mg/kg bw/day Rat oral subchronic; 90 days subchronic QUALITY=2 (reliable with restrictions); STORED_SOURCE_RECORD=https://clowder.edap-cluster.com/files/66a7cbd8e4b0a7c65d227c5d; RECORD_SOURCE_LEVEL=Extraction document; SOURCE_URL=https://echa.europa.eu/; SUBSOURCE_URL=https://echa.europa.eu/registration-dossier/-/registered-dossier/25400/7/6/2?documentUUID=a83e3d7f-2fc0-4f85-bebd-551b8cb28c3f; YEAR=2020; ORIGINAL_YEAR=2020; TOXICOLOGICAL_EFFECT=haematology|histopathology: non-neoplastic|organ weights and organ / body weight ratios; TOXICOLOGICAL_EFFECT_CATEGORY=hematology|nonneoplastic histopathology|organ weight; STUDY_GROUP=ECHA IUCLID_dup_Repeated Dose Toxicity Oral_15847227_15847468_15848640_15848676_15848947_15848951_15850702_15850703_15850704_15850705_15850706_15850707_15850708_15850709_15850710_15850711_15850712_15850713:M/F:--; QC_CATEGORY=Programmatically extracted from structured data source; Source overall passed QC, and this record was expert reviewed; QC_STATUS=pass; SOURCE_HASH=ToxValhc_88dff0c829a2181d0ba79bfeaabe8612
ECHA NOAEL =200 mg/kg bw/day Rat oral - developmental QUALITY=2 (reliable with restrictions); STORED_SOURCE_RECORD=https://clowder.edap-cluster.com/files/669eac6ee4b0a7c65d1bf122; RECORD_SOURCE_LEVEL=Extraction document; SOURCE_URL=https://echa.europa.eu/; SUBSOURCE_URL=https://echa.europa.eu/registration-dossier/-/registered-dossier/14696/7/9/3?documentUUID=e1d3e977-4ed0-49fc-861b-0d67daaf4fde; YEAR=1995; ORIGINAL_YEAR=1995; STUDY_GROUP=ECHA IUCLID_dup_Developmental Toxicity Teratogenicity_15820650_15820651_15820673_15820985_15820993_15821730_15824230_15824231_15824232_15824233_15824234_15824235:M/F:-fetal; QC_CATEGORY=Programmatically extracted from structured data source; Source overall passed QC, but this record was not manually checked; QC_STATUS=not determined; SOURCE_HASH=ToxValhc_70077948745acaa946b78013c60e2d4a
ECHA NOAEL ~240 mg/kg bw/day Sheep oral short-term; 28 days short-term QUALITY=2 (reliable with restrictions); STORED_SOURCE_RECORD=https://clowder.edap-cluster.com/files/66a7cc1ae4b0a7c65d228eec; RECORD_SOURCE_LEVEL=Extraction document; SOURCE_URL=https://echa.europa.eu/; SUBSOURCE_URL=https://echa.europa.eu/registration-dossier/-/registered-dossier/11214/7/6/2?documentUUID=fcaa6bea-650a-413b-94a6-3d002945fc60; YEAR=1982; ORIGINAL_YEAR=1982; STUDY_GROUP=ECHA IUCLID_dup_Repeated Dose Toxicity Oral_15831592_15833010_15836300_15838074_15839691_15841330_15845352:M:--; QC_CATEGORY=Programmatically extracted from structured data source; Source overall passed QC, but this record was not manually checked; QC_STATUS=not determined; SOURCE_HASH=ToxValhc_336b101d3d234b9fe42a8f72b142f3c3
ECHA NOAEL =400 mg/kg bw/day Rat oral - developmental QUALITY=2 (reliable with restrictions); STORED_SOURCE_RECORD=https://clowder.edap-cluster.com/files/669eabe9e4b0a7c65d1bc68a; RECORD_SOURCE_LEVEL=Extraction document; SOURCE_URL=https://echa.europa.eu/; SUBSOURCE_URL=https://echa.europa.eu/registration-dossier/-/registered-dossier/13376/7/9/3?documentUUID=1bb64f22-9e4c-4f54-991f-a093ab5588fc; YEAR=2008; ORIGINAL_YEAR=2008; STUDY_GROUP=ECHA IUCLID_dup_Developmental Toxicity Teratogenicity_15820650_15820651_15820673_15820985_15820993_15821730_15824230_15824231_15824232_15824233_15824234_15824235:M/F:-fetal; QC_CATEGORY=Programmatically extracted from structured data source; Source overall passed QC, and this record was expert reviewed; QC_STATUS=pass; SOURCE_HASH=ToxValhc_000740ca595654ca7a18084b25335caa
ToxValDB ECOTOX 15 endpoints
Source Endpoint Type Value Unit Species Route Duration Study Type Reference
ToxValDB ECOTOX LOEL =0.4 % Rat oral short-term; 20 days reproduction developmental LONG_REF=J. Nutr.95:287-294 Schlicker,S.A., and D.H. Cox Maternal Dietary Zinc, and Development and Zinc, Iron, and Copper Content of the Rat Fetus 1968; TITLE=Maternal Dietary Zinc, and Development and Zinc, Iron, and Copper Content of the Rat Fetus; AUTHOR=Schlicker,S.A., and D.H. Cox; DOI=10.1093/jn/95.2.287; QUALITY=Control type: Concurrent control; EXTERNAL_SOURCE_ID=68036; EXTERNAL_SOURCE_ID_DESC=ECOTOX Reference Number; STORED_SOURCE_RECORD=https://clowder.edap-cluster.com/files/6759bce8e4b0a7c65d37bc5f; RECORD_SOURCE_LEVEL=Extraction document; SOURCE_URL=https://cfpub.epa.gov/ecotox/; YEAR=1968; ORIGINAL_YEAR=1968; TOXICOLOGICAL_EFFECT=Accumulation: Residue|Biochemistry: Copper (Cu) content|Growth: Weight|Morphology: Weight; TOXICOLOGICAL_EFFECT_CATEGORY=body weight|other; STUDY_GROUP=ECOTOX_dup_EPA ORD_15594320_15597202:F:--; QC_CATEGORY=Data source QC'd by data provider prior to ECOTOX import; QC_STATUS=not determined; SOURCE_HASH=7e8a1f7aef69ecae9e6ec42af42e1af0
ToxValDB ECOTOX LOEL =4.8 mg/kg bw/day Rat oral subchronic; 42 days subchronic LONG_REF=- | Nutr. Res.20(3): 413-425 Subramanian,P., S. Sivabalan, V.P. Menon, and K. Vasudevan Influence of Chronic Zinc Supplementation on Biochemical Variables and Circadian Rhythms in Wistar Rats 2000; TITLE=Influence of Chronic Zinc Supplementation on Biochemical Variables and Circadian Rhythms in Wistar Rats; AUTHOR=Subramanian,P., S. Sivabalan, V.P. Menon, and K. Vasudevan; QUALITY=Control type: Concurrent control; EXTERNAL_SOURCE_ID=68812; EXTERNAL_SOURCE_ID_DESC=ECOTOX Reference Number; STORED_SOURCE_RECORD=https://clowder.edap-cluster.com/files/6759bce8e4b0a7c65d37bc5f; RECORD_SOURCE_LEVEL=Extraction document; SOURCE_URL=https://cfpub.epa.gov/ecotox/; YEAR=2000; ORIGINAL_YEAR=2000; TOXICOLOGICAL_EFFECT=Biochemistry: Iron content|Biochemistry: Thiobarbituric acid reactive substances|Enzyme(s): Ceruloplasmin activity; TOXICOLOGICAL_EFFECT_CATEGORY=clinical chemistry|enzyme activity|other; STUDY_GROUP=ECOTOX:15613045:M:--; QC_CATEGORY=Data source QC'd by data provider prior to ECOTOX import; Source overall passed QC, and this record was expert reviewed and revised from ECOTOX source; QC_STATUS=pass; SOURCE_HASH=2b51eee8eaf3867c51cf8a88986f58f1
ToxValDB ECOTOX LOEL =31.2 mg/kg bw/day Rat oral chronic; 120 days chronic LONG_REF=Int. J. Vitam. Nutr. Res.56:329-337 Shankar,S., P.R. Sundaresan, and S. Mohla Effect of Chronic Administration of Excess Dietary Vitamin A and Zinc on Lipid Metabolism in Rats 1986; TITLE=Effect of Chronic Administration of Excess Dietary Vitamin A and Zinc on Lipid Metabolism in Rats; AUTHOR=Shankar,S., P.R. Sundaresan, and S. Mohla; QUALITY=Control type: Concurrent control; EXTERNAL_SOURCE_ID=79334; EXTERNAL_SOURCE_ID_DESC=ECOTOX Reference Number; STORED_SOURCE_RECORD=https://clowder.edap-cluster.com/files/6759bce8e4b0a7c65d37bc5f; RECORD_SOURCE_LEVEL=Extraction document; SOURCE_URL=https://cfpub.epa.gov/ecotox/; YEAR=1986; ORIGINAL_YEAR=1986; TOXICOLOGICAL_EFFECT=Accumulation: Residue|Biochemistry: Cholesterol|Biochemistry: Total lipids|Biochemistry: Vitamin A; TOXICOLOGICAL_EFFECT_CATEGORY=clinical chemistry|other; STUDY_GROUP=ECOTOX_dup_EPA ORD_15595646_15596056:F:--; QC_CATEGORY=Data source QC'd by data provider prior to ECOTOX import; QC_STATUS=not determined; SOURCE_HASH=6bfe6812185848bb5fd44df8c4e3238f
ToxValDB ECOTOX LOEL =1000 ppm Rat oral short-term; 10 days short-term LONG_REF=J. Nutr. Biochem.15(4): 206-209 Szabo,J., M. Hegedus, G. Bruckner, E. Kosa, E. Andrasofszky, and E. Berta Large Doses of Zinc Oxide Increases the Activity of Hydrolases in Rats 2004; TITLE=Large Doses of Zinc Oxide Increases the Activity of Hydrolases in Rats; AUTHOR=Szabo,J., M. Hegedus, G. Bruckner, E. Kosa, E. Andrasofszky, and E. Berta; DOI=10.1016/j.jnutbio.2003.09.005; QUALITY=Control type: Concurrent control; EXTERNAL_SOURCE_ID=100797; EXTERNAL_SOURCE_ID_DESC=ECOTOX Reference Number; STORED_SOURCE_RECORD=https://clowder.edap-cluster.com/files/6759bce8e4b0a7c65d37bc5f; RECORD_SOURCE_LEVEL=Extraction document; SOURCE_URL=https://cfpub.epa.gov/ecotox/; YEAR=2004; ORIGINAL_YEAR=2004; TOXICOLOGICAL_EFFECT=Enzyme(s): Amylase|Enzyme(s): Lipase|Enzyme(s): Protease|Enzyme(s): Trypsin; TOXICOLOGICAL_EFFECT_CATEGORY=clinical chemistry|enzyme activity; STUDY_GROUP=ECOTOX:15595835:M:--; QC_CATEGORY=Data source QC'd by data provider prior to ECOTOX import; QC_STATUS=not determined; SOURCE_HASH=3bf0813b6a9b87a9152c2545dfb01d7d
ToxValDB ECOTOX LOEL =1200 ppm Rat oral short-term; 21 days short-term LONG_REF=Proc. Soc. Exp. Biol. Med.152:192-194 Ansari,M.S., W.J. Miller, M.W. Neathery, J.W. Lassiter, R.P. Gentry, and R.L. Kincaid Zinc Metabolism and Homeostasis in Rats Fed a Wide Range of High Dietary Zinc Levels 1976; TITLE=Zinc Metabolism and Homeostasis in Rats Fed a Wide Range of High Dietary Zinc Levels; AUTHOR=Ansari,M.S., W.J. Miller, M.W. Neathery, J.W. Lassiter, R.P. Gentry, and R.L. Kincaid; DOI=10.3181/00379727-152-39358; QUALITY=Control type: Concurrent control; EXTERNAL_SOURCE_ID=68021; EXTERNAL_SOURCE_ID_DESC=ECOTOX Reference Number; STORED_SOURCE_RECORD=https://clowder.edap-cluster.com/files/6759bce8e4b0a7c65d37bc5f; RECORD_SOURCE_LEVEL=Extraction document; SOURCE_URL=https://cfpub.epa.gov/ecotox/; YEAR=1976; ORIGINAL_YEAR=1976; TOXICOLOGICAL_EFFECT=Accumulation: Residue; TOXICOLOGICAL_EFFECT_CATEGORY=other; STUDY_GROUP=ECOTOX_dup_EPA ORD_15596631_15601911_15603183_15603184_15610362_15610363:M:--; QC_CATEGORY=Data source QC'd by data provider prior to ECOTOX import; QC_STATUS=not determined; SOURCE_HASH=f348fe139df36d6e82744086bb1c8a09
ToxValDB ECOTOX LOEL =2400 ppm Rat oral short-term; 21 days short-term LONG_REF=Proc. Soc. Exp. Biol. Med.152:192-194 Ansari,M.S., W.J. Miller, M.W. Neathery, J.W. Lassiter, R.P. Gentry, and R.L. Kincaid Zinc Metabolism and Homeostasis in Rats Fed a Wide Range of High Dietary Zinc Levels 1976; TITLE=Zinc Metabolism and Homeostasis in Rats Fed a Wide Range of High Dietary Zinc Levels; AUTHOR=Ansari,M.S., W.J. Miller, M.W. Neathery, J.W. Lassiter, R.P. Gentry, and R.L. Kincaid; DOI=10.3181/00379727-152-39358; QUALITY=Control type: Concurrent control; EXTERNAL_SOURCE_ID=68021; EXTERNAL_SOURCE_ID_DESC=ECOTOX Reference Number; STORED_SOURCE_RECORD=https://clowder.edap-cluster.com/files/6759bce8e4b0a7c65d37bc5f; RECORD_SOURCE_LEVEL=Extraction document; SOURCE_URL=https://cfpub.epa.gov/ecotox/; YEAR=1976; ORIGINAL_YEAR=1976; TOXICOLOGICAL_EFFECT=Accumulation: Residue; TOXICOLOGICAL_EFFECT_CATEGORY=other; STUDY_GROUP=ECOTOX_dup_EPA ORD_15596631_15601911_15603183_15603184_15610362_15610363:M:--; QC_CATEGORY=Data source QC'd by data provider prior to ECOTOX import; QC_STATUS=not determined; SOURCE_HASH=0bdf651349b67c89989a3353b736f777
ToxValDB ECOTOX LOEL =6010 ppm Mouse oral short-term; 10 days short-term LONG_REF=Am. J. Vet. Res.56(3): 334-339 Zhang,P., G.E. Duhamel, J.V. Mysore, M.P. Carlson, and N.R. Schneider Prophylactic Effect of Dietary Zinc in a Laboratory Mouse Model of Swine Dysentery 1995; TITLE=Prophylactic Effect of Dietary Zinc in a Laboratory Mouse Model of Swine Dysentery; AUTHOR=Zhang,P., G.E. Duhamel, J.V. Mysore, M.P. Carlson, and N.R. Schneider; QUALITY=Control type: Concurrent control; EXTERNAL_SOURCE_ID=86644; EXTERNAL_SOURCE_ID_DESC=ECOTOX Reference Number; STORED_SOURCE_RECORD=https://clowder.edap-cluster.com/files/6759bce8e4b0a7c65d37bc5f; RECORD_SOURCE_LEVEL=Extraction document; SOURCE_URL=https://cfpub.epa.gov/ecotox/; YEAR=1995; ORIGINAL_YEAR=1995; TOXICOLOGICAL_EFFECT=Accumulation: Residue; TOXICOLOGICAL_EFFECT_CATEGORY=other; STUDY_GROUP=ECOTOX:15597911:F:--; QC_CATEGORY=Data source QC'd by data provider prior to ECOTOX import; QC_STATUS=not determined; SOURCE_HASH=3d7064d679e5547a417477d10b588e85
ToxValDB ECOTOX NOEL =0.2 % Rat oral short-term; 23 days reproduction developmental LONG_REF=J. Nutr.98:303-311 Ketcheson,M.R., G.P. Barron, and D.H. Cox Relationship of Maternal Dietary Zinc During Gestation and Lactation to Development and Zinc, Iron and Copper Content of the Postnatal Rat 1969; TITLE=Relationship of Maternal Dietary Zinc During Gestation and Lactation to Development and Zinc, Iron and Copper Content of the Postnatal Rat; AUTHOR=Ketcheson,M.R., G.P. Barron, and D.H. Cox; DOI=10.1093/jn/98.3.303; QUALITY=Control type: Concurrent control; EXTERNAL_SOURCE_ID=78356; EXTERNAL_SOURCE_ID_DESC=ECOTOX Reference Number; STORED_SOURCE_RECORD=https://clowder.edap-cluster.com/files/6759bce8e4b0a7c65d37bc5f; RECORD_SOURCE_LEVEL=Extraction document; SOURCE_URL=https://cfpub.epa.gov/ecotox/; YEAR=1969; ORIGINAL_YEAR=1969; TOXICOLOGICAL_EFFECT=Biochemistry: Copper (Cu) content|Biochemistry: Iron content|Growth: Weight|Morphology: Weight; TOXICOLOGICAL_EFFECT_CATEGORY=body weight|other; STUDY_GROUP=ECOTOX_dup_EPA ORD_15595307_15595308_15595309_15599517:F:--; QC_CATEGORY=Data source QC'd by data provider prior to ECOTOX import; QC_STATUS=not determined; SOURCE_HASH=820fd639219c01a602809f6447952547
ToxValDB ECOTOX NOEL =0.5 % Rat oral short-term; 23 days reproduction developmental LONG_REF=J. Nutr.98:303-311 Ketcheson,M.R., G.P. Barron, and D.H. Cox Relationship of Maternal Dietary Zinc During Gestation and Lactation to Development and Zinc, Iron and Copper Content of the Postnatal Rat 1969; TITLE=Relationship of Maternal Dietary Zinc During Gestation and Lactation to Development and Zinc, Iron and Copper Content of the Postnatal Rat; AUTHOR=Ketcheson,M.R., G.P. Barron, and D.H. Cox; DOI=10.1093/jn/98.3.303; QUALITY=Control type: Concurrent control; EXTERNAL_SOURCE_ID=78356; EXTERNAL_SOURCE_ID_DESC=ECOTOX Reference Number; STORED_SOURCE_RECORD=https://clowder.edap-cluster.com/files/6759bce8e4b0a7c65d37bc5f; RECORD_SOURCE_LEVEL=Extraction document; SOURCE_URL=https://cfpub.epa.gov/ecotox/; YEAR=1969; ORIGINAL_YEAR=1969; TOXICOLOGICAL_EFFECT=Biochemistry: Copper (Cu) content|Biochemistry: Iron content|Feeding behavior: Food consumption|Morphology: Weight; TOXICOLOGICAL_EFFECT_CATEGORY=food and/or water consumption|other; STUDY_GROUP=ECOTOX_dup_EPA ORD_15595307_15595308_15595309_15599517:F:--; QC_CATEGORY=Data source QC'd by data provider prior to ECOTOX import; QC_STATUS=not determined; SOURCE_HASH=596aacdcd28c9a2288e4a05b7b0cb9f4
ToxValDB ECOTOX NOEL =20 % w/v Mouse dermal short-term; 5 days short-term LONG_REF=Food Chem. Toxicol.29(1): 57-64 Lansdown,A.B.G. Interspecies Variations in Response to Topical Application of Selected Zinc Compounds 1991; TITLE=Interspecies Variations in Response to Topical Application of Selected Zinc Compounds; AUTHOR=Lansdown,A.B.G.; DOI=10.1016/0278-6915(91)90063-d; QUALITY=Control type: Carrier or solvent control; EXTERNAL_SOURCE_ID=85721; EXTERNAL_SOURCE_ID_DESC=ECOTOX Reference Number; STORED_SOURCE_RECORD=https://clowder.edap-cluster.com/files/6759bce8e4b0a7c65d37bc5f; RECORD_SOURCE_LEVEL=Extraction document; SOURCE_URL=https://cfpub.epa.gov/ecotox/; YEAR=1991; ORIGINAL_YEAR=1991; TOXICOLOGICAL_EFFECT=Genetics: Mitotic index (# mitoses/total cells); TOXICOLOGICAL_EFFECT_CATEGORY=other; STUDY_GROUP=ECOTOX:15609914:M:--; QC_CATEGORY=Data source QC'd by data provider prior to ECOTOX import; QC_STATUS=not determined; SOURCE_HASH=1eaae6dcf15a303ca8c96864ec24098b
ToxValDB ECOTOX NOEL =97.46 ppm Rat oral short-term; 17 days developmental LONG_REF=Toxicology126:9-21 Bui,L.M., M.W. Taubeneck, J.F. Commisso, J.Y. Uriu-Hare, W.D. Faber, and C.L. Keen Altered Zinc Metabolism Contributes to the Developmental Toxicity of 2-Ethylhexanoic Acid, 2-Ethylhexanol and Valproic Acid 1998; TITLE=Altered Zinc Metabolism Contributes to the Developmental Toxicity of 2-Ethylhexanoic Acid, 2-Ethylhexanol and Valproic Acid; AUTHOR=Bui,L.M., M.W. Taubeneck, J.F. Commisso, J.Y. Uriu-Hare, W.D. Faber, and C.L. Keen; DOI=10.1016/s0300-483x(97)00171-6; QUALITY=Control type: Carrier or solvent control; EXTERNAL_SOURCE_ID=67778; EXTERNAL_SOURCE_ID_DESC=ECOTOX Reference Number; STORED_SOURCE_RECORD=https://clowder.edap-cluster.com/files/6759bce8e4b0a7c65d37bc5f; RECORD_SOURCE_LEVEL=Extraction document; SOURCE_URL=https://cfpub.epa.gov/ecotox/; YEAR=1998; ORIGINAL_YEAR=1998; TOXICOLOGICAL_EFFECT=Accumulation: Residue|Biochemistry: Metallothionein|Development: Abnormal|Development: Slowed, Retarded, Delayed or Non-development|Development: Weight|Growth: Weight gain|Histology: Hernia|Injury: Hydrocephaly|Morphology: Length|Reproduction: Resorbed embryos; TOXICOLOGICAL_EFFECT_CATEGORY=body weight|development|gross pathology|other|reproduction; STUDY_GROUP=ECOTOX:15597812:F:--; QC_CATEGORY=Data source QC'd by data provider prior to ECOTOX import; QC_STATUS=not determined; SOURCE_HASH=8ccaedbbc98616953ee2fae6f0e079aa
ToxValDB ECOTOX NOEL =160 mg/kg bw/day Rat multiple short-term; 7 days short-term LONG_REF=Br. J. Nutr.57(1): 35-44 Coppen,D.E., and N.T. Davies Studies on the Effects of Dietary Zinc Dose on 65Zn Absorption In Vivo and on the Effects of Zn Status on 65Zn Absorption and Body Loss in Young Rats 1987; TITLE=Studies on the Effects of Dietary Zinc Dose on 65Zn Absorption In Vivo and on the Effects of Zn Status on 65Zn Absorption and Body Loss in Young Rats; AUTHOR=Coppen,D.E., and N.T. Davies; DOI=10.1079/bjn19870007; QUALITY=Control type: Concurrent control; EXTERNAL_SOURCE_ID=68815; EXTERNAL_SOURCE_ID_DESC=ECOTOX Reference Number; STORED_SOURCE_RECORD=https://clowder.edap-cluster.com/files/6759bce8e4b0a7c65d37bc5f; RECORD_SOURCE_LEVEL=Extraction document; SOURCE_URL=https://cfpub.epa.gov/ecotox/; YEAR=1987; ORIGINAL_YEAR=1987; TOXICOLOGICAL_EFFECT=Growth: Weight; TOXICOLOGICAL_EFFECT_CATEGORY=body weight; STUDY_GROUP=ECOTOX:15594936:M:--; QC_CATEGORY=Data source QC'd by data provider prior to ECOTOX import; QC_STATUS=not determined; SOURCE_HASH=eef87ceb15d5156136369a42c6f74a52
ToxValDB ECOTOX NOEL =200 ppm Rat oral short-term; 21 days short-term LONG_REF=Toxicol. Appl. Pharmacol.84:12-24 Agarwal,D.K., S. Eustis, J.C. Lamb IV, C.W. Jameson, and W.M. Kluwe Influence of Dietary Zinc on Di(2-ethylhexyl)Phthalate-Induced Testicular Atrophy and Zinc Depletion in Adult Rats 1986; TITLE=Influence of Dietary Zinc on Di(2-ethylhexyl)Phthalate-Induced Testicular Atrophy and Zinc Depletion in Adult Rats; AUTHOR=Agarwal,D.K., S. Eustis, J.C. Lamb IV, C.W. Jameson, and W.M. Kluwe; DOI=10.1016/0041-008x(86)90412-6; QUALITY=Control type: Carrier or solvent control; EXTERNAL_SOURCE_ID=67779; EXTERNAL_SOURCE_ID_DESC=ECOTOX Reference Number; STORED_SOURCE_RECORD=https://clowder.edap-cluster.com/files/6759bce8e4b0a7c65d37bc5f; RECORD_SOURCE_LEVEL=Extraction document; SOURCE_URL=https://cfpub.epa.gov/ecotox/; YEAR=1986; ORIGINAL_YEAR=1986; TOXICOLOGICAL_EFFECT=Accumulation: Residue|Biochemistry: Cholesterol|Biochemistry: Sulfhydryl|Biochemistry: Triglycerides|Enzyme(s): Lactate dehydrogenase|Growth: Weight|Histology: Atrophy|Morphology: Organ weight in relationship to body weight|Morphology: Weight; TOXICOLOGICAL_EFFECT_CATEGORY=body weight|clinical chemistry|nonneoplastic histopathology|organ weight|other; STUDY_GROUP=ECOTOX:15594126:M:--; QC_CATEGORY=Data source QC'd by data provider prior to ECOTOX import; QC_STATUS=not determined; SOURCE_HASH=6adb079de583dee0dd1b140c8a0a1359
ToxValDB ECOTOX NOEL =7200 ppm Rat oral short-term; 21 days short-term LONG_REF=Proc. Soc. Exp. Biol. Med.152:192-194 Ansari,M.S., W.J. Miller, M.W. Neathery, J.W. Lassiter, R.P. Gentry, and R.L. Kincaid Zinc Metabolism and Homeostasis in Rats Fed a Wide Range of High Dietary Zinc Levels 1976; TITLE=Zinc Metabolism and Homeostasis in Rats Fed a Wide Range of High Dietary Zinc Levels; AUTHOR=Ansari,M.S., W.J. Miller, M.W. Neathery, J.W. Lassiter, R.P. Gentry, and R.L. Kincaid; DOI=10.3181/00379727-152-39358; QUALITY=Control type: Concurrent control; EXTERNAL_SOURCE_ID=68021; EXTERNAL_SOURCE_ID_DESC=ECOTOX Reference Number; STORED_SOURCE_RECORD=https://clowder.edap-cluster.com/files/6759bce8e4b0a7c65d37bc5f; RECORD_SOURCE_LEVEL=Extraction document; SOURCE_URL=https://cfpub.epa.gov/ecotox/; YEAR=1976; ORIGINAL_YEAR=1976; TOXICOLOGICAL_EFFECT=Accumulation: Residue; TOXICOLOGICAL_EFFECT_CATEGORY=other; STUDY_GROUP=ECOTOX_dup_EPA ORD_15596631_15601911_15603183_15603184_15610362_15610363:M:--; QC_CATEGORY=Data source QC'd by data provider prior to ECOTOX import; QC_STATUS=not determined; SOURCE_HASH=c5f39ca3364f03cd73d7afff30a2f997
ToxValDB ECOTOX NOEL =8400 ppm Rat oral short-term; 21 days short-term LONG_REF=Proc. Soc. Exp. Biol. Med.152:192-194 Ansari,M.S., W.J. Miller, M.W. Neathery, J.W. Lassiter, R.P. Gentry, and R.L. Kincaid Zinc Metabolism and Homeostasis in Rats Fed a Wide Range of High Dietary Zinc Levels 1976; TITLE=Zinc Metabolism and Homeostasis in Rats Fed a Wide Range of High Dietary Zinc Levels; AUTHOR=Ansari,M.S., W.J. Miller, M.W. Neathery, J.W. Lassiter, R.P. Gentry, and R.L. Kincaid; DOI=10.3181/00379727-152-39358; QUALITY=Control type: Concurrent control; EXTERNAL_SOURCE_ID=68021; EXTERNAL_SOURCE_ID_DESC=ECOTOX Reference Number; STORED_SOURCE_RECORD=https://clowder.edap-cluster.com/files/6759bce8e4b0a7c65d37bc5f; RECORD_SOURCE_LEVEL=Extraction document; SOURCE_URL=https://cfpub.epa.gov/ecotox/; YEAR=1976; ORIGINAL_YEAR=1976; TOXICOLOGICAL_EFFECT=Accumulation: Residue|Feeding behavior: Food consumption|Growth: Weight gain; TOXICOLOGICAL_EFFECT_CATEGORY=body weight|food and/or water consumption|other; STUDY_GROUP=ECOTOX_dup_EPA ORD_15596631_15601911_15603183_15603184_15610362_15610363:M:--; QC_CATEGORY=Data source QC'd by data provider prior to ECOTOX import; QC_STATUS=not determined; SOURCE_HASH=1a641f8969fcb6476372432011151f6f
ToxValDB GESTIS DNEL 2 endpoints
Source Endpoint Type Value Unit Species Route Duration Study Type Reference
ToxValDB GESTIS DNEL DNEL local =0.5 mg/m3 Human inhalation - Toxicity Value STORED_SOURCE_RECORD=https://clowder.edap-cluster.com/files/6543dd69e4b045b9ff7cd87e; RECORD_SOURCE_LEVEL=Extraction document; SOURCE_URL=https://www.dguv.de/ifa/gestis/gestis-dnel-liste/index-2.jsp; STUDY_GROUP=GESTIS DNEL_dup_-_15635797_15635798:-:--; QC_CATEGORY=Programmatically extracted from structured data source; Source overall passed QC, but this record was not manually checked; QC_STATUS=not determined; SOURCE_HASH=ToxValhc_0afe08211dcb59355f05b2290e8737f9
ToxValDB GESTIS DNEL DNEL systemic =5 mg/m3 Human inhalation - Toxicity Value STORED_SOURCE_RECORD=https://clowder.edap-cluster.com/files/6543dd69e4b045b9ff7cd87e; RECORD_SOURCE_LEVEL=Extraction document; SOURCE_URL=https://www.dguv.de/ifa/gestis/gestis-dnel-liste/index-2.jsp; STUDY_GROUP=GESTIS DNEL_dup_-_15635797_15635798:-:--; QC_CATEGORY=Programmatically extracted from structured data source; Source overall passed QC, but this record was not manually checked; QC_STATUS=not determined; SOURCE_HASH=ToxValhc_828b69a487421f7fe32e65e2f03a0056
ToxValDB NIOSH IDLH 2 endpoints
Source Endpoint Type Value Unit Species Route Duration Study Type Reference
ToxValDB NIOSH IDLH LEL =320 mg/m3 Human inhalation acute; 3 hours occupational LONG_REF=Hammond JW [1944]. Metal fume fever in the crushed stone industry. J Ind Hyg Toxicol 26(4):117-119.; STORED_SOURCE_RECORD=https://clowder.edap-cluster.com/files/68c9b384e4b02565fc7d7211; RECORD_SOURCE_LEVEL=Extraction document; SOURCE_URL=https://www.cdc.gov/niosh/idlh/; SUBSOURCE_URL=https://www.cdc.gov/niosh/idlh/1314132.html; YEAR=1994; ORIGINAL_YEAR=1994; TOXICOLOGICAL_EFFECT=nausea on the job, and chills, shortness of breath, and severe chest pains 2 to 12 hours later; STUDY_GROUP=NIOSH IDLH:15953833:-:--; QC_CATEGORY=Manually extracted from unstructured data source; Source overall passed QC, and this record was manually checked; QC_STATUS=pass; SOURCE_HASH=ToxValhc_ceb47f03f2e0fa564077f3be3b8daa9a
ToxValDB NIOSH IDLH LEL =600 mg/m3 Human inhalation acute; 12 minutes clinical LONG_REF=Sturgis CC, Thompson PD [1927]. Metal fume fever: I. Clinical observations on the effect of the experimental inhalation of zinc oxide by two apparently normal persons. J Ind Hyg 9(3):88-97.; STORED_SOURCE_RECORD=https://clowder.edap-cluster.com/files/68c9b384e4b02565fc7d7211; RECORD_SOURCE_LEVEL=Extraction document; SOURCE_URL=https://www.cdc.gov/niosh/idlh/; SUBSOURCE_URL=https://www.cdc.gov/niosh/idlh/1314132.html; YEAR=1994; ORIGINAL_YEAR=1994; TOXICOLOGICAL_EFFECT=headaches, chills, and fever with cough and a decrease in vital capacity which persisted for 15 hours after exposure; STUDY_GROUP=NIOSH IDLH:15953834:-:--; QC_CATEGORY=Manually extracted from unstructured data source; Source overall passed QC, and this record was manually checked; QC_STATUS=pass; SOURCE_HASH=ToxValhc_1e81bfe7ebdea3f6cc59db87bd89c690
Regulatory source 25 endpoints
Source Endpoint Type Value Unit Species Route Duration Study Type Reference
Regulatory source - 0.5 mg/kg/day human oral 6 weeks - p.7
Regulatory source - 3000 ppm rat - - - p.7
Regulatory source - 3000 ppm rat oral - - p.7
Regulatory source developmental toxicity 40 % human oral developmental developmental toxicity p.14
Regulatory source developmental toxicity 42.5 mg/kg rabbit oral developmental developmental toxicity p.13
Regulatory source developmental toxicity 60 mg/kg rat oral developmental developmental toxicity p.14
Regulatory source - 0.0225 mg/kg bw/d human oral - - p.90
Regulatory source - 0.166 mg/kg bw/d human oral - - p.90
Regulatory source - =0.166 mg /kg bw human oral - - p.90
Regulatory source - 0.225 mg/kg bw/day human oral - - p.90
Regulatory source - 0.83 mg/kg bw/d human oral - - p.90
Regulatory source - =0.83 mg /kg bw human oral - - p.90
Regulatory source - 0.9 mg/kg/d human oral - - p.90
Regulatory source - 1 - human - - - p.89
Regulatory source - 4 - - inhalation 90 days - p.13
Regulatory source - 20 % human oral - - p.89
Regulatory source - 50 - mouse oral - - p.96
Regulatory source - 90 - - inhalation 90 days - p.12
Regulatory source - 96 % - - - - p.13
Regulatory source - 1000 mg/kg mouse oral - - p.29
Regulatory source - 1518 - - - - - p.13
Regulatory source repeated dose toxicity 1 mg/kg bw rat intravenous - repeated dose toxicity p.86
Regulatory source repeated dose toxicity 2 % human oral 18 days repeated dose toxicity p.89
Regulatory source repeated dose toxicity 20 % human oral 18 days repeated dose toxicity p.89
Regulatory source repeated dose toxicity 20 % human oral - repeated dose toxicity p.89
openFDA substances 1 endpoint
Source Endpoint Type Value Unit Species Route Duration Study Type Reference
openFDA substances FDA UNII substance identifier SOI2LOH54Z UNII - - - chemical -