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Genomic interrogation of mechanism(s) underlying cellular responses to toxicants.

作者信息

Amin Rupesh P, Hamadeh Hisham K, Bushel Pierre R, Bennett Lee, Afshari Cynthia A, Paules Richard S

机构信息

National Institute of Environmental Health Sciences, National Institutes of Health, P.O. Box 12233, Mail Drop F1-05, Research Triangle Park, NC 27709, USA.

出版信息

Toxicology. 2002 Dec 27;181-182:555-63. doi: 10.1016/s0300-483x(02)00481-x.

Abstract

Assessment of the impact of xenobiotic exposure on human health and disease progression is complex. Knowledge of mode(s) of action, including mechanism(s) contributing to toxicity and disease progression, is valuable for evaluating compounds. Toxicogenomics, the subdiscipline which merges genomics with toxicology, holds the promise to contributing significantly toward the goal of elucidating mechanism(s) by studying genome-wide effects of xenobiotics. Global gene expression profiling, revolutionized by microarray technology and a crucial aspect of a toxicogenomic study, allows measuring transcriptional modulation of thousands of genes following exposure to a xenobiotic. We use our results from previous studies on compounds representing two different classes of xenobiotics (barbiturate and peroxisome proliferator) to discuss the application of computational approaches for analyzing microarray data to elucidate mechanism(s) underlying cellular responses to toxicants. In particular, our laboratory demonstrated that chemical-specific patterns of gene expression can be revealed using cDNA microarrays. Transcript profiling provides discrimination between classes of toxicants, as well as, genome-wide insight into mechanism(s) of toxicity and disease progression. Ultimately, the expectation is that novel approaches for predicting xenobiotic toxicity in humans will emerge from such information.

摘要

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