化学
卡托普利
广谱
连续流动
组合化学
内科学
生化工程
医学
血压
工程类
作者
Antonella Ilenia Alfano,Sveva Pelliccia,Simona Barone,Luigi Cutarella,Sacha Cancade,Valerio Baia,E Cassese,Pasquale Russomanno,Nicolò Messano,Denia Frank,Lilia Weizel,M Rotter,Steffen Brunst,Thomas A. Wichelhaus,Ewgenij Proschak,Daniele Tedesco,Mattia Mori,Jean‐Denis Docquier,Vincenzo Summa,Margherita Brindisi
出处
期刊:PubMed
[National Institutes of Health]
日期:2025-08-15
标识
DOI:10.1021/acs.jmedchem.5c00750
摘要
Metallo-β-lactamases (MBL) production is one of the most alarming bacterial resistance mechanisms, conferring broad-spectrum resistance to most β-lactam antibiotics and combinations with β-lactamase inhibitors. Since no MBL inhibitors have been approved yet, the quest for novel, safe, and effective compounds, possibly endowed with broad-spectrum activity against clinically relevant MBLs, represents an urgent clinical need. Inspired by captopril, which behaves as a weak MBL inhibitor, we herein report a continuous flow protocol for the generation of new MBL inhibitors. We employed a Joullié-Ugi multicomponent reaction for generating two indoline-based subseries, reproducing the captopril binding mode, while increasing the hydrophobic interactions within the MBL active site. Interaction between inhibitors and five clinically relevant MBL isoforms (NDM-1, VIM-1, VIM-2, IMP-1, and IMP-7) was investigated by biochemical methods and rationalized through docking studies. Furthermore, the activity in clinical isolates in synergy with β-lactam antibiotics was assessed, thus paving the way to a further optimization campaign.
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