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双重靶向抗肿瘤药物发现的支架跳跃方法:机遇与挑战。

Scaffold hopping approaches for dual-target antitumor drug discovery: opportunities and challenges.

机构信息

School of Pharmacy, College of Pharmacy, Taipei Medical University, Taipei, Taiwan.

Department of Medicinal Chemistry, College of Pharmacy, University of Michigan, Ann Arbor, MI, USA.

出版信息

Expert Opin Drug Discov. 2024 Nov;19(11):1355-1381. doi: 10.1080/17460441.2024.2409674. Epub 2024 Oct 17.

Abstract

INTRODUCTION

Scaffold hopping has emerged as a practical tactic to enrich the synthetic bank of small molecule antitumor agents. Specifically, it enables the chemist to refine the lead compound's pharmacodynamic, pharmacokinetic, and physiochemical properties. Scaffold hopping opens up fresh molecular territory beyond established patented chemical domains.

AREA COVERED

The authors present the scaffold hopping-based drug design strategies for dual inhibitory antitumor structural templates in this review. Minor modifications, structure rigidification and simplification (ring-closing and opening), and complete structural overhauls were the strategies employed by the medicinal chemist to generate a library of bifunctional inhibitors. In addition, the review presents an overview of the computational methods of scaffold hopping (software and programs) and organopalladium catalysis leveraged for the synthesis of templates designed via scaffold hopping.

EXPERT OPINION

The medicinal chemist has demonstrated remarkable prowess in furnishing dual inhibitory antitumor chemical architectures. Scaffold hopping-based drug design strategies have yielded a plethora of pharmacodynamically superior dual modulatory antitumor agents. An integrated approach involving computational advancements, synthetic methodology advancements, and conventional drug design strategies is required to increase the number of scaffold-hopping-assisted drug discovery campaigns.

摘要

简介

支架跃迁已成为丰富小分子抗肿瘤药物合成库的实用策略。具体来说,它使化学家能够改进先导化合物的药效学、药代动力学和物理化学性质。支架跃迁开辟了超越既定专利化学领域的新分子领域。

涵盖领域

作者在本文中提出了基于支架跃迁的双抑制抗肿瘤结构模板的药物设计策略。药物化学家采用了一些策略来生成双功能抑制剂库,如微小修饰、结构刚性化和简化(环合和开环)以及完全结构改造。此外,本文还概述了用于通过支架跃迁设计模板的支架跃迁(软件和程序)和有机钯催化的计算方法。

专家意见

药物化学家在提供双抑制抗肿瘤化学结构方面表现出了非凡的能力。基于支架跃迁的药物设计策略已经产生了大量药效学上优越的双调节抗肿瘤药物。需要采用综合方法,包括计算方法的进步、合成方法的进步和传统药物设计策略,以增加支架跃迁辅助药物发现的数量。

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