Aug 2026· Journal of Medical Genetics and Clinical Biology· Vol 3, pp. 136-160· 0 citations
TL;DR
These findings position tinidazole-based nitrones as highly promising candidates for the development of next-generation antimicrobial agents to combat resistant pathogens.
Abstract
Objective: The rapid emergence of multi-drug resistant (MDR) bacterial pathogens has intensified the search for novel antimicrobial scaffolds. This study reports the design, synthesis, and biological evaluation of a new series of nitrone derivatives based on the Tinidazole scaffold. Methods: A library of compounds (M1–M3) was synthesized via the condensation of various aryl-substituted benzaldehydes with tinidazole-derived hydroxylamine intermediates. The molecular structures and stereochemical configurations of the synthesized hybrids were rigorously confirmed using spectral characterization techniques, including FT-IR, 1H NMR, 13C NMR, and Mass Spectrometry, which consistently indicated the formation of the stable (Z)-isomeric form. Results: The in vitro biological evaluation revealed that these nitrone derivatives possess potent broad-spectrum antibacterial activity against Gram-positive (Staphylococcus aureus) and Gram-negative (Klebsiella pneumoniae) clinical isolates. Notably, compounds M1 (4-F), M2 (H), and M3 (4-Br) exhibited exceptional zones of inhibition (ZOI) ranging from 41 to 46 mm at the highest concentrations, significantly outperforming the standard drug (ST), which reached a maximum ZOI of 22 mm. Furthermore, the compounds demonstrated significant antioxidant potential in the DPPH radical scavenging assay. Novelty: The Structure-Activity Relationship (SAR) analysis suggests that the electronic and lipophilic modulation of the aryl-substituted nitrone framework, particularly with halogenated substituents, plays a pivotal role in enhancing membrane permeability and bactericidal efficacy. These findings position tinidazole-based nitrones as highly promising candidates for the development of next-generation antimicrobial agents to combat resistant pathogens.
Background: Klebsiella pneumoniae is a clinically significant, multidrug-resistant (MDR) pathogen in humans and a major contributor to hospital-acquired infections, leading to increased morbidity and mortality due to limited treatment options. Molecular Operating Environment (MOE) software was used for molecular dockin...
Athraa Nasser Abed, N. Nasser, Mahmood M. Fahad· International Journal of Adv...· 0 citations
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AIM
The longstanding use of sulfonamides has contributed to the emergence of multidrug-resistant (MDR) pathogens, posing a major challenge to antimicrobial therapy worldwide. In response, a series of sulfonamide-linked coumarinyl-imidazolone derivatives (6a-t) were rationally designed and synthesized to identify potent...
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