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Metabolism and toxicity of drugs. Two decades of progress in industrial drug metabolism.

机译:药物的代谢和毒性。工业药物代谢取得了二十年的进步。

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The science of drug metabolism and pharmacokinetics (DMPK) has developed significantly over the past 20 years, and its functional role in today's pharmaceutical industry has matured to the point where DMPK has become an indispensable discipline in support of drug discovery and development. While contributions to the lead optimization phase of discovery efforts have been particularly noteworthy in helping to select only the best drug candidates for entry into development, it should be recognized that the scope of DMPK spans the continuum of discovery through clinical evaluation and even into the post-marketing phase; as such, the breadth of DMPK's involvement is almost unique in contemporary pharmaceutical research. This perspective summarizes notable advances in the field, many of which have been made possible by technological developments in areas such as molecular biology, genetics, and bioanalytical chemistry, and highlights the critical nature of key partnerships between Drug Metabolism, Medicinal Chemistry, and Safety Assessment groups in attempting to advance drug candidates with a low potential for causing adverse events in humans. Finally, some speculative predictions are made of the future role of DMPK in pharmaceutical research, where current advances in our mechanistic understanding of the molecular processes that control the absorption, disposition, metabolism, elimination, and toxicity of drugs and their biotransformation products will combine to further enhance the impact of DMPK in drug discovery and development.
机译:在过去的20年中,药物代谢和药代动力学(DMPK)科学取得了长足发展,其在当今制药行业中的功能作用已经成熟到DMPK已成为支持药物发现和开发必不可少的学科。虽然在发现工作的领先优化阶段做出的贡献在帮助仅选择最佳候选药物进入研发方面尤其值得注意,但应该认识到,DMPK的范围涵盖了通过临床评估乃至后期发现的连续性-营销阶段;因此,DMPK的参与范围在当代药物研究中几乎是独一无二的。该观点总结了该领域的显着进展,其中许多进展是由于分子生物学,遗传学和生物分析化学等领域的技术发展而实现的,并强调了药物代谢,药物化学和安全性评估之间关键伙伴关系的关键性质。小组试图发展可能性低的候选药物,以引起人类不良事件。最后,对DMPK在药物研究中的未来作用做出了一些推测性的预测,在此方面,我们对控制药物及其生物转化产物的吸收,处置,代谢,消除和毒性的分子过程的机械理解的最新进展将结合在一起,进一步增强了DMPK在药物研发中的影响。

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