School of Pharmacy, College of Pharmacy, Taipei Medical University, Taipei 110031, Taiwan.
College of Medicine, Taipei Medical University, Taipei 110031, Taiwan.
Bioorg Chem. 2023 Dec;141:106893. doi: 10.1016/j.bioorg.2023.106893. Epub 2023 Sep 27.
Diverse drug design strategies viz. molecular hybridization, substituent installation, scaffold hopping, isosteric replacement, high-throughput screening, induction and separation of chirality, structure modifications of phytoconstituents and use of structural templates have been exhaustively leveraged in the last decade to load the chemical toolbox of PARP inhibitors. Resultantly, numerous promising scaffolds have been pinpointed that in turn have led to the resuscitation of the credence to PARP inhibitors as cancer therapeutics. This review briefly presents the physiological functions of PARPs, the pharmacokinetics, and pharmacodynamics, and the interaction profiles of FDA-approved PARP inhibitors. Comprehensively covered is the section on the drug design strategies employed by drug discovery enthusiasts for furnishing PARP inhibitors. The impact of structural variations in the template of designed scaffolds on enzymatic and cellular activity (structure-activity relationship studies) has been discussed. The insights gained through the biological evaluation such as profiling of physicochemical properties andin vitroADME properties, PK assessments, and high-dose pharmacology are covered.
在过去的十年中,人们广泛采用了各种药物设计策略,如分子杂交、取代基安装、骨架跃迁、等排替换、高通量筛选、手性诱导和分离、植物成分的结构修饰以及结构模板的使用,以丰富 PARP 抑制剂的化学工具包。结果,确定了许多有前途的支架,这反过来又使人们重新相信 PARP 抑制剂是癌症治疗的药物。这篇综述简要介绍了 PARPs 的生理功能、药代动力学和药效学,以及 FDA 批准的 PARP 抑制剂的相互作用谱。全面涵盖了药物发现爱好者用于提供 PARP 抑制剂的药物设计策略。讨论了设计支架模板中的结构变化对酶和细胞活性(结构-活性关系研究)的影响。通过生物学评估获得的见解,如理化性质和体外 ADME 特性、PK 评估和高剂量药理学的分析都涵盖在内。