Selick Harold E, Beresford Alan P, Tarbit Michael H
Camitro Corporation, 4040 Campbell Avenue, Menlo Park, CA94025, USA.
Drug Discov Today. 2002 Jan 15;7(2):109-16. doi: 10.1016/s1359-6446(01)02100-6.
Absorption, distribution, metabolism and excretion (ADME) studies, are widely used in drug discovery to optimize the balance of properties necessary to convert leads into good medicines. However, throughput using traditional methods is now too low to support recent developments in combinatorial and library chemistry, which have generated many more molecules of interest. To the more enlightened practitioners of ADME science, this situation is generating both the problem and the solution: an opportunity is now forming, with the use of higher throughput ADME screens and computational models, to access this wide chemical diversity and to dissect out the rules that dictate a pharmacokinetic or metabolic profile. In the future we could see ADME properties designed-in from the first principles in drug design.
吸收、分布、代谢和排泄(ADME)研究在药物研发中被广泛应用,以优化将先导化合物转化为优质药物所需的各种性质之间的平衡。然而,传统方法的通量现在过低,无法支持组合化学和文库化学的最新发展,这些发展产生了更多感兴趣的分子。对于ADME科学领域更有见识的从业者来说,这种情况既带来了问题,也提供了解决方案:现在,利用高通量ADME筛选和计算模型,一个机会正在形成,以获取这种广泛的化学多样性,并剖析出决定药代动力学或代谢特征的规则。未来,我们可能会看到在药物设计中从第一原理出发设计ADME性质。