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具有增强抗生素功效潜力的银纳米颗粒(ZASNPs)的合成、表征、遗传毒性评估及抗菌应用

Synthesis, characterization, genotoxicity assessment and antibacterial applications of silver nanoparticles (ZASNPs) with antibiotic efficacy enhancement potential.

作者信息

Quadri Nikita, Setty Manganahalli Manjunath, Awasthi Anshumali, Nayak Usha, Singh Minakshi, Sharma Sharad

机构信息

Department of Pharmacognosy, Manipal College of Pharmaceutical Sciences (MCOPS), Manipal Academy of Higher Education (MAHE), Manipal, 576104, Karnataka, India.

Drug Safety Assessment (DSA), Novel Drug Discovery and Development (NDDD), Lupin Limited (Research Park), Pune, 412115, Maharashtra, India.

出版信息

Nanoscale. 2025 Jan 16;17(3):1555-1567. doi: 10.1039/d4nr03608e.

Abstract

This study aimed to develop alternative antibacterial treatments by combining traditional herbal knowledge with modern nanotechnology. This approach targets multiple bacterial strains, combats antibiotic resistance, and offers solutions for treating infections alone or with antibiotics. Phyto-nano synthesis, using plants like DC., is highlighted for its safer and stable nanoparticle production. This study successfully synthesized spherical silver nanoparticles (∼6.2 ± 5.1 nm) from , which showed no genotoxicity but effective bactericidal activity against various bacteria. Additionally, these nanoparticles enhanced the antimicrobial effects of several antibiotics, suggesting their potential for more effective treatments with lower doses and reduced side effects.

摘要

本研究旨在通过将传统草药知识与现代纳米技术相结合来开发替代性抗菌治疗方法。这种方法针对多种细菌菌株,对抗抗生素耐药性,并为单独使用或与抗生素联合治疗感染提供解决方案。利用诸如DC. 等植物进行的植物纳米合成因其能生产更安全、稳定的纳米颗粒而受到关注。本研究成功地从……合成了球形银纳米颗粒(约6.2±5.1纳米),这些纳米颗粒无遗传毒性,但对各种细菌具有有效的杀菌活性。此外,这些纳米颗粒增强了几种抗生素的抗菌效果,表明它们具有以更低剂量和更少副作用进行更有效治疗的潜力。

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