Aug 2026· Scientific Reports· Vol 16· 0 citations· 55 references
Medicine
TL;DR
Overall, the functionalized heterocycles, particularly compounds 4 and 13, represent promising dual-acting candidates with potent antibacterial, antibiofilm, and selective anticancer activities.
Abstract
The development of novel antimicrobial and anticancer agents remains a priority due to rising drug resistance and high systemic toxicity of current treatments. A series of novel pyrazole (2–6), pyrimidine (7–10), and pyridine/oxazinone (11–14) derivatives were synthesized from a chalcone scaffold (1). They were evaluated for antimicrobial, antibiofilm (Pseudomonas aeruginosa), and cytotoxic (HepG2 cells) activities. Molecular docking and qRT-PCR were performed to study their mechanism. Pyrazoles 3–5 and oxazinone 13 showed potent antibacterial activity against S. aureus (MIC = 2–3.12 µg/mL). Compounds 4 and 13 effectively eradicated P. aeruginosa biofilms, achieving a ≥ 5 log10 reduction within 4 h at 0.8 × MIC, driven by disruption of the bacterial respiratory chain. For anticancer activity, compounds 10 and 13 selectively reduced HepG2 cell viability to 35–40% via oxidative stress-mediated apoptosis. Mechanistically, compound 4 reduced gyrB expression in E. coli by approximately 4.6-fold, while molecular docking supported its interaction with the ATP-binding pocket of DNA gyrase. Overall, the functionalized heterocycles, particularly compounds 4 and 13, represent promising dual-acting candidates with potent antibacterial, antibiofilm, and selective anticancer activities.
Pyrazole-1,3,4-thiadiazine-linked isoxazole derivatives, specifically 6n and 6o, are identified as potential candidates for the development of novel antibacterial and antibiofilm drugs.
Reddycherla Venkatesh, K. Chennakesavulu, Reddy G. Ramanjaneya· Current Organic Synthesis· 0 citations
Mechanistic studies indicated that compounds 5c and 5f inhibited cancer cell growth predominantly by inducing apoptosis rather than cell cycle arrest, indicating favourable selectivity.
Rachel Alveera Menezes, Navas Shereef Ellyan, M. M. et al.· RSC Advances· 0 citations
The escalating threat of antimicrobial resistance demands new therapeutic agents. This study reports the synthesis, characterization, and biological evaluation of novel benzothiophene–quinoxaline–oxadiazole hybrids. The core framework was constructed via phase‐transfer catalysis to yield compound
1a
, which under...
O. B. Omoyeni, N. O. Omisore· ChemistrySelect· 0 citations
A novel series of pyrimidine-based N-heterocyclic hybrids incorporating 1,2,4-triazole (10a–10j) and benzotriazole (11a–11j) moieties was synthesized and evaluated for antibacterial activity against a panel of Gram-positive and Gram-negative bacterial pathogens. The structures of all synthesized compounds were confirme...
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A new series of thiazole-based carbamate hybrids was synthesized to develop improved antibacterial and antifungal agents and several derivatives emerged as promising antimicrobial candidates through combined biological and computational evaluation.
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