Pharmacology Division, CSIR-National Botanical Research Institute, Lucknow, 226001, India; Academy of Scientific and Innovation Research (AcSIR), Ghaziabad, 201002, India.
Pharmacology Division, CSIR-National Botanical Research Institute, Lucknow, 226001, India.
Microb Pathog. 2022 Sep;170:105678. doi: 10.1016/j.micpath.2022.105678. Epub 2022 Jul 9.
Quorum sensing (QS)-regulated bacterial biofilm formation is a crucial issue in causing resistance against existing antibiotics. There is a considerable necessity to disrupt the interrelationship between bacterial QS, virulence, and biofilm formation. Disabling QS could be a novel tactic of great clinical importance. Here, we biosynthesized silver nanoparticles (Ka-AgNPs) using the aqueous leaf extract of Koelreuteria paniculata as a reducing and capping agents. The UV-Vis spectroscopy confirmed the synthesis of Ka-AgNPs as a characterization peak observed at 420 nm. TEM image revealed the spherical shape distribution of Ka-AgNPs with average particle size of 30.0 ± 5 nm. The anti-QS activity of Ka-AgNPs was tested against a bio-indicator bacterium Chromobacterium violaceum 12472 and a multi-drug resistant model strain of Pseudomonas aeruginosa (PAO1). The results demonstrated that the Ka-AgNPs superiorly inhibited QS-regulated virulence factors in PAO1 without affecting cell viability compared to chemically synthesized AgNPs (Cs-AgNPs). The Ka-AgNPs effectively suppressed the formation of biofilm of PAO1. RT-PCR results revealed that the Ka-AgNPs inhibited the expression of QS-regulated virulence genes of PAO1. These results suggest that the phyto-synthesized AgNPs could be used as promising anti-infective agents for treating drug-resistant P. aeruginosa.
群体感应(QS)调控的细菌生物膜形成是导致现有抗生素耐药性的一个关键问题。破坏细菌 QS、毒力和生物膜形成之间的相互关系是非常必要的。抑制 QS 可能是一种具有重要临床意义的新策略。在这里,我们使用黄葛树的水提叶提取物作为还原和封端剂来生物合成银纳米粒子(Ka-AgNPs)。紫外-可见光谱证实了 Ka-AgNPs 的合成,在 420nm 处观察到特征峰。TEM 图像显示 Ka-AgNPs 的球形分布,平均粒径为 30.0±5.0nm。我们测试了 Ka-AgNPs 对生物指示剂 Chromobacterium violaceum 12472 和多药耐药模型菌株铜绿假单胞菌(PAO1)的抗 QS 活性。结果表明,与化学合成的银纳米粒子(Cs-AgNPs)相比,Ka-AgNPs 优越地抑制了 PAO1 中 QS 调控的毒力因子,而对细胞活力没有影响。Ka-AgNPs 能有效抑制 PAO1 生物膜的形成。RT-PCR 结果表明,Ka-AgNPs 抑制了 PAO1 中 QS 调控的毒力基因的表达。这些结果表明,植物合成的 AgNPs 可作为治疗耐多药铜绿假单胞菌的有前途的抗感染药物。