组合化学
化学
催化作用
吡啶
纳米技术
可重用性
药物发现
模块化设计
基质(水族馆)
回顾性分析
苯并咪唑
作者
Argha Saha,Avishek Pan,Devika Ghosh,Anirban Pal,Srimanta Guin,Archana Kumari Redhu,Vikram Gota,Debabrata Maiti
标识
DOI:10.1002/anie.202517867
摘要
The incorporation of nitrogen atoms into aromatic systems is a cornerstone of modern drug design, enabling precise modulation of molecular properties and enhanced bioactivity. Here, we report a general and efficient strategy for the first-time conversion of nitroarenes into pharmaceutically relevant pyridine heterocycles via a nitrene-mediated transformation. This process is driven by a bio-inspired iron-porphyrin catalyst that uniquely serves as a singlet oxygen reservoir, enabling the formation of aminopyridines via C5-carbon deletion through a controlled ring-editing cascade. The unprecedented selective C5-carbon deletion provides a powerful new retrosynthetic logic for heterocycle construction. The reaction proceeds under mild conditions, tolerates a wide range of functional groups, and offers broad substrate scope with high regioselectivity. Furthermore, the method's ability to efficiently convert nitroarenes into bioactive pyridine scaffolds via ipso-carbon deletion underscores its practicality and step economy. This modular platform also streamlines the synthesis of drug-like scaffolds from simple building blocks, as demonstrated by the late-stage functionalization of nimesulide derivatives with improved molecular docking and binding profiles. Overall, this work showcases a distinctive catalytic paradigm for heterocycle construction with direct implications for pharmaceutical development and molecular remodeling.
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