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Rodent carcinogenicity, prediction

Table 8.3 First NTP Comparative Exercise on the Prediction of Rodent Carcinogenicity Prediction Systems... Table 8.3 First NTP Comparative Exercise on the Prediction of Rodent Carcinogenicity Prediction Systems...
Lagunin AA, Dearden JC, Filimonov DA, Poroikov VV. Computer-aided rodent carcinogenicity prediction. Mutat Res 2005 586 138-46. [Pg.204]

Kitchin KT, Brown JL, Kulkami AP. 1992. Predictive assay for rodent carcinogenicity using in vivo biochemical parameters Operational characteristics and complementarity. Mutat Res 266 253-272. [Pg.216]

Moriguchi I, Hirano H, Hirono S. Prediction of the rodent carcinogenicity of some organic componnds from their chemical strnctnre nsing the FALS method. Environ Elealth Perspect 1996 104 1051-8. [Pg.492]

Helguera AM, Perez MAC, Gonzalez MP, Ruiz RM, Dfaz HG. A topological substructural approach applied to the computational prediction of rodent carcinogenicity. Bioorg Med them 2005 13 2477-88. [Pg.492]

Purdy R. A mechanism-mediated model for carcinogenicity model content and prediction of the outcome of rodent carcinogenicity bioassays currently being conducted on 25 organic chemicals. Environ Health Perspect 1996 104 1085-94. [Pg.493]

Helma C (2006) Lazy structure-activity relationships (lazar) for the prediction of rodent carcinogenicity and salmonella mutagenicity. Mol Divers 10 147-158... [Pg.204]

Zeiger E. 1987. Carcinogenicity of mutagens Predictive capability of the Salmonella mutagenesis assay for rodent carcinogenicity. Cancer Res 47(5) 1287-1296. [Pg.294]

Lewis, D. F., Iannides, C., and Parke, D. V. (1995) A retrospective evaluation of COMPACT predictions of the outcome of NTP rodent carcinogenicity testing. [Pg.518]

Figure n.1 The sensitivity and specificity of the in vitro regulatory tests in the prediction of rodent carcinogenicity. [Pg.244]

Kerckaert, G.A., LeBoeuf, R.A. Isfort, R.J. (1998) Assessing the predictiveness of the Syrian hamster embryo cell transformation assay for determining the rodent carcinogenic potential of single ring aromatic/nitroaromatic amine compounds. Toxicol. Sci., 41, 189-197... [Pg.311]

G. S. Omenn, S. Stuebbe, and L. B. Lave, Predictions of Rodent Carcinogenicity Testing Results Interpretation in Light of the Lave-Omenn Value-of-Information Model, Mol. Carcinog. 14 (1995) 57-45. [Pg.132]

Ashby, J., Prediction of rodent carcinogenicity for 30 Chemicals, Environ. Health Perspect., 104 (Suppl. 5), 1101-1104, 1996. [Pg.198]

Benigni, R., QSAR prediction of rodent carcinogenicity for a set of chemicals currently bioassayed by the US National Toxicology Program, Mutagenesis, 19, 83-89, 1991. [Pg.198]

Benigni, R., The first US National Toxicology Program exercise on the prediction of rodent carcinogenicity definitive results, Mutation Res., 387, 35 -5, 1997. [Pg.198]

Franke, R., Gruska, A., Giuliani, A., and Benigni, R., Prediction of rodent carcinogenicity of aromatic amines a quantitative structure-activity relationships model, Carcinogenesis, 22, 1561-1571, 2001. [Pg.199]

Goodman, G. and Wilson, R., Quantitative prediction of human cancer risk from rodent carcinogenic potencies a closer look at the epidemiological evidence for some chemicals not definitively carcinogenic in humans, Regul. Pharmacol. Toxicol., 14, 118-146, 1991. [Pg.199]


See other pages where Rodent carcinogenicity, prediction is mentioned: [Pg.85]    [Pg.85]    [Pg.485]    [Pg.99]    [Pg.102]    [Pg.29]    [Pg.93]    [Pg.4]    [Pg.134]    [Pg.267]    [Pg.262]    [Pg.376]    [Pg.376]    [Pg.116]    [Pg.249]    [Pg.74]    [Pg.190]    [Pg.192]    [Pg.195]   
See also in sourсe #XX -- [ Pg.85 ]




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