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Application of genomics in preclinical drug safety evaluation
Peter G Lord1, Alex Nie, Michael McMillian
1Johnson & Johnson Pharmaceutical Research & Development LLC, Raritan, NJ 08869, USA. plord@prdus.jnj.com
Abstract:
Understanding the response of biological systems to xenobiotics is fundamental to the evaluation of drug safety. Toxicologists have traditionally gathered pathological, morphological, chemical and biochemical information from in vivo studies of preclinical species in order to assess drug safety and to determine how new drugs can be safely administered to the human patient population. In recent years the emerging "-omics" technologies have been developed and integrated into preclinical studies in order to better assess drug safety by gaining information on the cellular and molecular events underlying adverse drug reactions. Genomics approaches in particular have become readily available and are being applied in several stages of drug development. The burgeoning literature on what has become known as "toxicogenomics" has for the most part highlighted successful applications of gene expression profiling in predictive toxicology, enabling decisions to be made on the developability of a compound early in the drug development process. It is also becoming apparent that toxicogenomic approaches are good starting points to develop experiments designed to gain a mechanistic insight into drug toxicities within and across species. Gene expression arrays permit the measurement of responses of essentially all the genes in the entire genome to be monitored, and knowledge of the function of the genes affected can identify the potential mechanisms to then be confirmed using conventional biochemical, toxicological and pathological approaches. As toxicologists put these technologies into practice they build up a knowledge base to better characterize toxicities at the molecular level and to make the search for much needed, novel biomarkers of toxicity more achievable.
Insights
Toxicogenomics uses gene expression profiling to predict drug safety and understand molecular mechanisms of toxicity. This approach aids early drug development decisions and identifies novel toxicity biomarkers.
Area of Science:
- Pharmacology and Toxicology
- Genomics
- Biomarker Discovery
Background:
- Traditional toxicology relies on in vivo studies for drug safety assessment.
- Emerging -omics technologies, particularly genomics, are integrated into preclinical studies.
- Toxicogenomics leverages gene expression profiling for enhanced drug safety evaluation.
Purpose of the Study:
- To assess drug safety by understanding biological responses to xenobiotics.
- To integrate genomics approaches into drug development for predictive toxicology.
- To gain mechanistic insights into drug toxicities across species.
Main Methods:
- Utilizing gene expression arrays to monitor genome-wide gene responses.
- Applying toxicogenomic approaches in preclinical studies.
- Confirming potential mechanisms with conventional biochemical, toxicological, and pathological methods.
Main Results:
- Gene expression profiling enables early decisions on compound developability.
- Toxicogenomic approaches provide mechanistic insights into drug toxicities.
- Development of a knowledge base for molecular-level toxicity characterization.
Conclusions:
- Toxicogenomics successfully aids predictive toxicology and early drug development.
- Gene expression data facilitates understanding of molecular events underlying adverse drug reactions.
- This field supports the identification of novel biomarkers for toxicity.
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