Wang Tao, Wu Mian-Bin, Zhang Ri-Hao, Chen Zheng-Jie, Hua Chen, Lin Jian-Ping, Yang Li-Rong
Department of Chemical and Biological Engineering, Zhejiang University, Hangzhou 310027, China.
Curr Top Med Chem. 2016;16(9):901-16. doi: 10.2174/1568026615666150825142002.
Compared with the increasing and widespread bacterial resistance to clinical medicines and the urgent need for cures of intractable diseases, there is a dramatic decline in the numbers of drugs reaching the market or clinical trials. Accordingly, it has become imperative to discover more rational and efficient strategies to design and develop novel drugs. Structure-based drug design/discovery (SBDD) is one of the computer-aided methods, by which novel drugs are designed or discovered based on the knowledge of 3D structures of the relevant specific targets. During the past few decades, the great potentials and success of SBDD have been seen in the field of drug discovery. In this review, we present an overview of the key mechanisms of SBDD, the frequently used computer programs in SBDD and the reported successful cases. Finally, several typical design processes of lead components from SBDD are also highlighted in detail, such as the discovery of inhibitors of G protein-coupled receptors (GPCRs), antibacterial drugs, and anti-cancer drugs.
与临床药物日益增加且广泛存在的细菌耐药性以及治愈疑难疾病的迫切需求相比,进入市场或临床试验的药物数量急剧下降。因此,发现更合理、高效的策略来设计和开发新型药物已变得势在必行。基于结构的药物设计/发现(SBDD)是一种计算机辅助方法,通过该方法,基于相关特定靶点的三维结构知识来设计或发现新型药物。在过去几十年中,SBDD在药物发现领域展现出了巨大潜力并取得了成功。在本综述中,我们概述了SBDD的关键机制、SBDD中常用的计算机程序以及已报道的成功案例。最后,还详细突出了SBDD中先导化合物的几个典型设计过程,例如G蛋白偶联受体(GPCR)抑制剂、抗菌药物和抗癌药物的发现。