Pharmabiz
 

New genetic research method sheds light on drug metabolism

BaselWednesday, May 10, 2006, 08:00 Hrs  [IST]

Roche scientists present a new method for analyzing the metabolism of a commonly prescribed drug. The use of this mouse genetic analysis method may lead to a better understanding of how drugs are metabolized, which could facilitate more effective individualization of drug selection and dosing regimens in humans. The findings were published in Nature Biotechnology. According to the company release, this research utilized a computational method for mouse genetic analysis to identify factors that regulate the metabolism of warfarin, a widely used anticoagulant. The scientists discovered that this computational method can quickly identify genetic variants within drug metabolizing enzymes that contribute to different drug responses in mice and provides valuable information about genes that are likely to play a role in human drug metabolism. Therefore, the methodology could be applied to a wide range of medications and help Roche, as well as others, better understand drug metabolism, and subsequently drug toxicity. "This research and the computational method will help scientists and clinicians better understand the drugs they are developing, as well as the diseases they target," stated Gary Peltz, head of Genetics and Genomics at Roche in Palo Alto, California. "It can also be used to identify genetic susceptibility factors affecting drug-induced toxicity," Peltz added. While the research is at an early stage, Peltz notes, that the next step is to analyze other drugs of clinical importance, including one that induces liver toxicity. According to the authors, pharmacogenomic data can influence drug development and clinical practice. They note that use of pharmacogenomic information has the potential to increase drug efficacy, reduce side effects and improve treatment outcomes for patients. Therefore, it is essential that scientists develop effective strategies to identify genetic factors affecting the metabolism or response to current and future therapies.

 
[Close]