Felber Jan G, Thorn-Seshold Oliver
Department of Pharmacy, Ludwig-Maximilians University of Munich; Butenandtstr. 5-13, D-81377 Munich, Germany.
JACS Au. 2022 Nov 15;2(12):2636-2644. doi: 10.1021/jacsau.2c00448. eCollection 2022 Dec 26.
Synthetic analogues of the DNA-alkylating cytotoxins of the duocarmycin class have been extensively investigated in the past 40 years, driven by their high potency, their unusual mechanism of bioactivity, and the beautiful modularity of their structure-activity relationship (SAR). This Perspective analyzes how the molecular designs of synthetic duocarmycins have evolved: from (1) early SAR studies, through to modern applications for directed cancer therapy as (2) prodrugs and (3) antibody-drug conjugates in late-stage clinical development. Analyzing 583 primary research articles and patents from 1978 to 2022, we distill out a searchable A0-format "Minard map" poster of ca. 200 key structure/function-tuning steps tracing chemical developments across these three key areas. This structure-based overview showcases the ingenious approaches to tune and target bioactivity, that continue to drive development of the elegant and powerful duocarmycin platform.
在过去40年里,由于其高效性、独特的生物活性机制以及结构-活性关系(SAR)的出色模块化,多卡霉素类DNA烷基化细胞毒素的合成类似物受到了广泛研究。本综述分析了合成多卡霉素的分子设计是如何演变的:从(1)早期的SAR研究,到现代作为(2)前药和(3)处于临床开发后期的抗体-药物偶联物用于定向癌症治疗。通过分析1978年至2022年的583篇主要研究文章和专利,我们提炼出了一张约200个关键结构/功能调节步骤的可搜索A0格式“米纳德地图”海报,描绘了这三个关键领域的化学发展历程。这种基于结构的概述展示了调节和靶向生物活性的巧妙方法,这些方法继续推动着优雅而强大的多卡霉素平台的发展。