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Eytcheson,\ S.A.*\ ; Tetko,\ I.V.
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Which modern AI methods provide accurate predictions of toxicological end points? Analysis of Tox24 challenge results.
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Chem. Res. Toxicol. 38, 1443-1451 (2025)
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Roncaglioni,\ A.*\ ; Kovarich,\ S.*\ ; Mansouri,\ K.*\ ; Tetko,\ I.V.
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Advancing human and environmental safety science using \In Silico\\ methods.
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Chem. Res. Toxicol. 38, 1281-1282 (2025)
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Sturla,\ S.*\ ; Dai,\ J.*\ ; Kraegeloh,\ A.*\ ; Normura,\ D.*\ ; Tetko,\ I.V.\ ; Wang,\ Y.*\ ; Serrano,\ J.*
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Invitation to apply or nominate for membership in the early career board of \Chemical Research in Toxicology\.
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Chem. Res. Toxicol. 37, 127-128 (2024)
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Tetko,\ I.V.
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Tox24 Challenge.
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Chem. Res. Toxicol. 37, 825-826 (2024)
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Klambauer,\ G.*\ ; Clevert,\ D.A.*\ ; Shah,\ I.*\ ; Benfenati,\ E.*\ ; Tetko,\ I.V.
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Introduction to the special issue: AI meets toxicology.
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Chem. Res. Toxicol. 36, 1163-1167 (2023)
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Tetko,\ I.V.\ ; Klambauer,\ G.*\ ; Clevert,\ D.A.*\ ; Shah,\ I.*\ ; Benfenati,\ E.*
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Artificial intelligence meets toxicology.
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Chem. Res. Toxicol. 35, 1289-1290 (2022)
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Kleinstreuer,\ N.C.*\ ; Tetko,\ I.V.\ ; Tong,\ W.*
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Introduction to special issue: Computational toxicology.
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Chem. Res. Toxicol. 34, 171-175 (2021)
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Pardo,\ M.*\ ; Li,\ C.*\ ; Fang,\ Z.*\ ; Levin-Zaidman,\ S.*\ ; Dezorella,\ N.*\ ; Czech,\ H.\ ; Martens,\ P.*\ ; Käfer,\ U.*\ ; Gröger,\ T.M.\ ; Rüger,\ C.P.*\ ; Friederici,\ L.*\ ; Zimmermann,\ R.\ ; Rudich,\ Y.*
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Toxicity of water- and organic-soluble wood tar fractions from biomass burning in lung epithelial cells.
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Chem. Res. Toxicol. 34, 1588-1603 (2021)
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Wu,\ L.*\ ; Huang,\ R.*\ ; Tetko,\ I.V.\ ; Xia,\ Z.\ ; Xu,\ J.*\ ; Tong,\ W.*
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Trade off predictivity and explainability for machine-learning powered \r\npredictive toxicology: An in-depth investigation with Tox21 data sets.
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Chem. Res. Toxicol. 34, 541-549 (2021)
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Kleinstreuer,\ N.C.*\ ; Tong,\ W.*\ ; Tetko,\ I.V.
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Computational toxicology.
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Chem. Res. Toxicol. 33, 687-688 (2020)
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Pardo,\ M.*\ ; Qiu,\ X.*\ ; Zimmermann,\ R.\ ; Rudich,\ Y.*
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Particulate matter toxicity is Nrf2 and mitochondria dependent: The roles of metals and polycyclic aromatic hydrocarbons.
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Chem. Res. Toxicol. 33, 1110-1120 (2020)
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Novotarskyi,\ S.*\ ; Abdelaziz,\ A.*\ ; Sushko,\ Y.*\ ; Körner,\ R.*\ ; Vogt,\ J.*\ ; Tetko,\ I.V.
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ToxCast EPA \in vitro\ to \in vivo\ challenge: Insight into the rank-I model.
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Chem. Res. Toxicol. 29, 768-775 (2016)
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Neth,\ K.\ ; Lucio,\ M.\ ; Walker,\ A.\ ; Kanawati,\ B.\ ; Zorn,\ J.\ ; Schmitt-Kopplin,\ P.\ ; Michalke,\ B.
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Diverse serum manganese species affect brain metabolites depending on exposure conditions.
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Chem. Res. Toxicol. 28, 1434-1442 (2015)
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Patterson,\ A.D.*\ ; Carlson,\ B.A.*\ ; Li,\ F.*\ ; Bonzo,\ J.A.*\ ; Yoo,\ M.H.*\ ; Krausz,\ K.W.*\ ; Conrad,\ M.\ ; Chen,\ C.*\ ; Gonzalez,\ F.J.*\ ; Hatfield,\ D.L.*
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Disruption of thioredoxin reductase 1 protects mice from acute acetaminophen-induced hepatotoxicity through enhanced NRF2 activity.
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Chem. Res. Toxicol. 26, 1088-1096 (2013)
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Sterz,\ K.*\ ; Scherer,\ G.*\ ; Krumsiek,\ J.\ ; Theis,\ F.J.\ ; Ecker,\ J.*
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Identification and quantification of 1-hydroxybutene-2-yl mercapturic acid in human urine by UPLC- HILIC-MS/MS as a novel biomarker for 1,3-butadiene exposure.
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Chem. Res. Toxicol. 25, 1565-1567 (2012)
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Wittmaack,\ K.
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Reply to the letter to the editor regarding my article on dose metrics in nanotoxicity studies (Wittmaack, 2011).
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Chem. Res. Toxicol. 25, 7-10 (2012)
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Wittmaack,\ K.
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Novel dose metric for apparent cytotoxicity effects generated by in vitro cell exposure to silica nanoparticles.
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Chem. Res. Toxicol. 24, 150-158 (2011)
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Adam,\ T.*\ ; Mitschke,\ S.*\ ; Streibel,\ T.\ ; Baker,\ R.R.*\ ; Zimmermann,\ R.
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Quantitative puff-by-puff-resolved characterization of selected toxic compounds in cigarette mainstream smoke.
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Chem. Res. Toxicol. 19, 511-520 (2006)
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Maekawa,\ M.*\ ; Okamura,\ T.*\ ; Kasai,\ N.*\ ; Hori,\ Y.*\ ; Summer,\ K.H.\ ; Konno,\ R.*
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D-Amino-acid Oxidase Is Involved in D-Serine-Induced Nephrotoxicity.
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Chem. Res. Toxicol. 18, 1678-1682 (2005)
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Safe,\ S.*\ ; Wormke,\ M.*
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Inhibitory aryl hydrocarbon receptor-estrogen receptor alpha cross-talk and mechanisms of action.
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Chem. Res. Toxicol. 16, 807-816 (2003)
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Buters,\ J.T.M.*\ ; Mahadevan,\ B.*\ ; Quintanilla-Martinez,\ L.\ ; Gonzales,\ F.J.*\ ; Greim,\ H.*\ ; Baird,\ W.M.*\ ; Luch,\ A.*
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Cytochrome P450 1B1 Determines Susceptibility to Dibenzo[a,l]pyrene-Induced Tumor Formation.
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Chem. Res. Toxicol. 15, 1127-1135 (2002)
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Völkel,\ W.*\ ; Colnot,\ Th.*\ ; Csanády,\ G.A.\ ; Filser,\ J.G.\ ; Dekant,\ W.*
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Metabolism and Kinetics of Bisphenol A in Humans at Low Doses Following Oral Administration.
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Chem. Res. Toxicol. 15, 1281-1287 (2002)
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Melendez-Colon,\ V.J.*\ ; Luch,\ A.*\ ; Seidel,\ A.*\ ; Baird,\ W.M.*
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Formation of stable DNA adducts and apurinic sites upon metabolic activation of bay and fjord region polycyclic aromatic hydrocarbons in human cell cultures.
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Chem. Res. Toxicol. 13, 10-17 (2000)
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Luch,\ A.*\ ; Schober,\ W.*\ ; Soballa,\ V.J.*\ ; Raab,\ G.*\ ; Greim,\ H.\ ; Jacob,\ J.*\ ; Doehmer,\ J.*\ ; Seidel,\ A.*
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Metabolic activation of dibenzo[\a,l\]pyrene by human cytochrome P450 1A1 and P450 1B1 expressed in V79 Chinese hamster cells.
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Chem. Res. Toxicol. 12, 353-364 (1999)
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Bors,\ W.\ ; Michel,\ C.\ ; Dalke,\ C.\ ; Stettmaier,\ K.\ ; Saran,\ M.\ ; Andrae,\ U.
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Radical Intermediates during the Oxidation of Nitropropanes. The Formation of NO2 from 2- Nitropropane, Its Reactivity with Nucleosides, and Implications for the Genotoxicity of 2- Nitropropane.
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Chem. Res. Toxicol. 6, 302-309 (1993)
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Bors,\ W.\ ; Michel,\ C.\ ; Dalke,\ C.\ ; Stettmaier,\ K.\ ; Saran,\ M.\ ; Andrae,\ U.
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Radical intermediates during the oxidation of nitropropanes. The formation of NO\2\ from 2-nitropropane, its reactivity with nucleosides, and implications for the genotoxicity of 2-nitropropane.
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Chem. Res. Toxicol. 6, 302-309 (1993)
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