Related Experiment Video
Updated: Sep 3, 2026

Visualization of Bacterial Resistance using Fluorescent Antibiotic Probes
Published on: March 2, 2020
Targeting Metallo-β-Lactamases: Discovery of Novel Dihydro-Chromeno Pyrrole (dCPs) Derivatives for Combating
Pulkit Dhiman1,2, Satyajeet Das3, Arya B Narayanan1,2
1Division of Medicinal Chemistry, CSIR-Institute of Microbial Technology, Chandigarh160036, India.
Abstract:
Clinically approved therapies have established that combining β-lactam antibiotics with β-lactamase inhibitors is an effective strategy to counter antibiotic resistance; however, infections caused by metallo-β-lactamase (MBL) producing bacteria remain a critical unmet medical need. Building on our previous efforts targeting clinically relevant MBLs, including New Delhi metallo-β-lactamase (NDM), Verona integron-encoded metallo-β-lactamase (VIM), and imipenemase (IMP), we report the design and synthesis of 40 novel dihydro-chromeno-pyrrole (dCP) derivatives using a scaffold-hopping approach. Several compounds displayed potent MBL inhibition and lead compounds 74 and 91 effectively restored the activity of mmeropenem and imipenem against carbapenem-resistant Gram-negative pathogens. Optimization efforts focused on improving ADME properties while maintaining potency, and lead compounds were further evaluated for their pharmacokinetic profiles. Docking studies revealed favorable binding interactions of inhibitors with MBL proteins, supporting and justifying the observed inhibitory activity. Overall, this study provides a robust framework for lead optimization and identifies promising candidates for preclinical development.
Related Concept Videos
Clinical Significance of Antibiotic Resistance
Inhibitors of Gram-positive Cell Wall Synthesis
Mechanism of Antibiotic Resistance in MRSA
Inhibitors of Bacterial DNA Synthesis

