计算生物学
药物发现
基因组编辑
计算机科学
化学
纳米技术
脚手架
组合化学
化学生物学
喹喔啉
硝基苯
骨骼结构
生物
小分子
生物信息学
构造(python库)
作者
Shuang Liu,Hua-Dong Li,Yao Chen,Hong‐Yan Bi,Dong-Liang Mo
标识
DOI:10.1002/chem.202600014
摘要
Skeletal editing has emerged as a transformative strategy in modern organic synthesis, enabling direct and precise modification of molecular frameworks to access diverse chemical space. This review summarizes advances in the skeletal editing of indoles over the past five years, a privileged scaffold ubiquitous in bioactive molecules and natural products. We focus on three principal strategies: (i) carbon-atom insertion via cyclopropanation/ring expansion sequences to furnish quinolines, often employing carbene precursors; (ii) nitrogen-atom insertion using nitrene or related reactive amine species to access quinazoline and quinoxaline cores; and (iii) ring-opening and subsequent recombination to construct polycyclic N-heterocycles. These methodologies are summarized in terms of their mechanistic pathways, substrate scopes, and functional group compatibilities. This review highlights skeletal editing as a powerful and step-economical routes to complex and valuable N-heterocycles that are difficult to be obtained through the traditional peripheral functionalization, offering new opportunities for drug discovery and materials science.
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