ToxEvaluator: an integrated computational platform to aid the interpretation of toxicology study-related findings
暂无分享,去创建一个
Thomas C. Wiegers | Carolyn J. Mattingly | D. Pelletier | Ahmed Enayetallah | C. Kibbey | Mark Gosink | P. Koza-Taylor | M. Lawton | C. Mattingly | D. Pelletier | Ahmed Enayetallah | M. Gosink | C. Kibbey | P. Koza-Taylor | M. Lawton
[1] David Weininger,et al. SMILES, a chemical language and information system. 1. Introduction to methodology and encoding rules , 1988, J. Chem. Inf. Comput. Sci..
[2] Carol A. Bocchini,et al. A new face and new challenges for Online Mendelian Inheritance in Man (OMIM®) , 2011, Human mutation.
[3] Sue Povey,et al. The HUGO Gene Nomenclature Database, 2006 updates , 2005, Nucleic Acids Res..
[4] Meir Glick,et al. Prediction of Biological Targets for Compounds Using Multiple-Category Bayesian Models Trained on Chemogenomics Databases , 2006, J. Chem. Inf. Model..
[5] Janan T. Eppig,et al. Allele, phenotype and disease data at Mouse Genome Informatics: improving access and analysis , 2015, Mammalian Genome.
[6] F. Westwood,et al. Statin-induced myopathy in the rat: relationship between systemic exposure, muscle exposure and myopathy. , 2009, Xenobiotica; the fate of foreign compounds in biological systems.
[7] M. Hayden,et al. Differential effect of the rs4149056 variant in SLCO1B1 on myopathy associated with simvastatin and atorvastatin , 2011, The Pharmacogenomics Journal.
[8] P. Zarrinkar,et al. High-throughput kinase profiling as a platform for drug discovery , 2008, Nature Reviews Drug Discovery.
[9] P. Willett. Searching techniques for databases of two- and three-dimensional chemical structures. , 2005, Journal of medicinal chemistry.
[10] A. Beaufrère,et al. Immune-mediated myopathy related to anti 3-hydroxy-3-methylglutaryl-coenzyme A reductase antibodies as an emerging cause of necrotizing myopathy induced by statins. , 2014, Joint, bone, spine : revue du rhumatisme.
[11] Juancarlos Chan,et al. Gene Ontology Consortium: going forward , 2014, Nucleic Acids Res..
[12] J. Bucher,et al. Evaluating the human relevance of chemically induced animal tumors. , 2004, Toxicological sciences : an official journal of the Society of Toxicology.
[13] John P. Overington,et al. ChEMBL: a large-scale bioactivity database for drug discovery , 2011, Nucleic Acids Res..
[14] N. Kiyosawa,et al. Cerivastatin induces type-I fiber-, not type-II fiber-, predominant muscular toxicity in the young male F344 rats. , 2011, The Journal of toxicological sciences.
[15] Thomas C. Wiegers,et al. Ranking Transitive Chemical-Disease Inferences Using Local Network Topology in the Comparative Toxicogenomics Database , 2012, PloS one.
[16] Howard L. Bleich,et al. Technical Milestone: Medical Subject Headings Used to Search the Biomedical Literature , 2001, J. Am. Medical Informatics Assoc..
[17] P. Neuvonen,et al. Drug interactions with lipid‐lowering drugs: Mechanisms and clinical relevance , 2006, Clinical pharmacology and therapeutics.
[18] Thomas C. Wiegers,et al. A CTD–Pfizer collaboration: manual curation of 88 000 scientific articles text mined for drug–disease and drug–phenotype interactions , 2013, Database J. Biol. Databases Curation.
[19] Tatiana A. Tatusova,et al. Gene: a gene-centered information resource at NCBI , 2014, Nucleic Acids Res..
[20] W. Fairbrother,et al. Toxicity profile of small-molecule IAP antagonist GDC-0152 is linked to TNF-α pharmacology. , 2013, Toxicological sciences : an official journal of the Society of Toxicology.
[21] L Xue,et al. Molecular descriptors in chemoinformatics, computational combinatorial chemistry, and virtual screening. , 2000, Combinatorial chemistry & high throughput screening.
[22] Thomas C. Wiegers,et al. The Comparative Toxicogenomics Database's 10th year anniversary: update 2015 , 2014, Nucleic Acids Res..
[23] G. Ginsburg,et al. The SLCO1B1*5 genetic variant is associated with statin-induced side effects. , 2009, Journal of the American College of Cardiology.