A General Strategy to Access Pharmaceutically Relevant Pyridines from Nitroarenes

A Argha Saha (Department of Chemistry, Indian Institute of Technology Bombay, Powai, Mumbai 400076, India) A Avishek Pan (Department of Chemistry Indian Institute of Technology Bombay Powai, Mumbai 400076 India) D Devika Ghosh (Department of Chemistry Indian Institute of Technology Bombay Powai, Mumbai 400076 India) A Anirban Pal (Department of Chemistry Indian Institute of Technology Bombay Powai, Mumbai 400076 India) S Srimanta Guin (Department of Chemistry, Centre for ML-driven Traditional Medicine & Catalysis) A Archana Kumari Redhu (Clinical Pharmacology Laboratory Advanced center for Treatment Research and Education in Cancer (ACTREC). Tata Memorial Center (TMC) Kharghar, Navi Mumbai 410210 India) V Vikram Gota (Clinical Pharmacology Laboratory Advanced center for Treatment Research and Education in Cancer (ACTREC). Tata Memorial Center (TMC) Kharghar, Navi Mumbai 410210 India) D Debabrata Maiti

Abstract

Abstract 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.

Article Details

Volume / Issue Vol. 65, Issue 6
Published February 02, 2026
ISSN 1433-7851
Publisher Wiley

Journal Info

Angewandte Chemie International Edition

Wiley

ISSN: 1433-7851 Physical Sciences

Authors (8)

A

Argha Saha

Department of Chemistry, Indian Institute of Technology Bombay, Powai, Mumbai 400076, India

A

Avishek Pan

Department of Chemistry Indian Institute of Technology Bombay Powai, Mumbai 400076 India

D

Devika Ghosh

Department of Chemistry Indian Institute of Technology Bombay Powai, Mumbai 400076 India

A

Anirban Pal

Department of Chemistry Indian Institute of Technology Bombay Powai, Mumbai 400076 India

S

Srimanta Guin

Department of Chemistry, Centre for ML-driven Traditional Medicine & Catalysis

A

Archana Kumari Redhu

Clinical Pharmacology Laboratory Advanced center for Treatment Research and Education in Cancer (ACTREC). Tata Memorial Center (TMC) Kharghar, Navi Mumbai 410210 India

V

Vikram Gota

Clinical Pharmacology Laboratory Advanced center for Treatment Research and Education in Cancer (ACTREC). Tata Memorial Center (TMC) Kharghar, Navi Mumbai 410210 India

D

Debabrata Maiti