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HFIP-assisted Brønsted acid-catalyzed ring opening of 1-azabicyclo[1.1.0]butane to access diverse C3-quaternary aza-azetidines and indole-azetidines.

作者信息

Hazra Subrata, Tyagi Arushi, Dutta Tuhin, Sahoo Rupam, Bandyopadhyay Boudhayan, Jindal Garima, Panda Santanu

机构信息

Department of Chemistry, Indian Institute of Technology Kharagpur, Kharagpur, India.

Department of Organic Chemistry, Chemical Science Division, Indian Institute of Science, Bangalore, India.

出版信息

Nat Commun. 2025 Sep 30;16(1):8679. doi: 10.1038/s41467-025-63680-z.

Abstract

Nitrogen-based heterocycles represent 60% of small-molecule-approved drugs. Increasing demand for sp-rich N-heterocyclic scaffolds as a bioisosteric replacement in drug discovery platforms has continued to drive the development of elegant methods for the synthesis of these important molecules. Among various N-heterocycles, azetidine has emerged as a valuable scaffold. Aza-azetidines, indole-azetidines, and spirocyclic azetidines with tertiary or quaternary C3-carbon make structural and/or functional parts of various important drug molecules. However, an efficient and catalytic synthetic strategy to access those important scaffolds is still missing in the literature. Herein, we report HFIP-assisted Brønsted acid-catalyzed strain-release driven ring opening of 1-azabicyclo[1.1.0]butane (ABB) to access aza-azetidines, indole-azetidines, and spirocyclic azetidines with quaternary C3-carbon in good yield. Detailed experimental and theoretical studies using DFT shed light on the reaction mechanism. We also find promising antibacterial activity in one of these indole-azetidine compounds against Staphylococcus aureus MTCC 1430.

摘要
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5827/12484546/7a06a3020265/41467_2025_63680_Fig1_HTML.jpg

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