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银纳米颗粒与抗生素的协同活性:阿普拉霉素对抗……

Synergistic activity of silver nanoparticles and antibiotics: apramycin against .

作者信息

Gimenez-Ingalaturre Ana C, Abad-Álvaro Isabel, Chueca Patricia, Goñi Pilar, Laborda Francisco

机构信息

Group of Analytical Spectroscopy and Sensors (GEAS), Institute of Environmental Sciences (IUCA), University of Zaragoza Pedro Cerbuna 12 50009 Zaragoza Spain

Group of Water and Environmental Health, Institute of Environmental Sciences (IUCA) Domingo Miral s/n 50009 Zaragoza Spain.

出版信息

Nanoscale Adv. 2025 Aug 21. doi: 10.1039/d5na00404g.

Abstract

The combination of silver nanoparticles and conventional antibiotics could be a promising alternative strategy to fight against antimicrobial resistance. The occurrence of synergistic bactericidal activity between these combinations is supported by a large number of studies, but there is still a great lack of information about the action mechanisms. In this study, a direct analytical method for the detection and quantification of silver content in cells based on single cell inductively coupled plasma mass spectrometry (SC-ICP-MS), in combination with microscopy and microbiological techniques, has been used. Quantification of silver accumulated in bacteria exposed to combinations of silver(i) or silver nanoparticles and apramycin can help elucidate the synergistic mechanisms of silver-antibiotic combinations. The combination of silver with apramycin resulted in the occurrence of synergistic effects, allowing the reduction of silver(i), silver nanoparticle and apramycin concentrations (from 4- to 16-fold) while preserving the individual bactericidal effects of each antimicrobial. Severe damage in bacteria walls, including double membrane rupture and cytoplasm leakage, was observed when the combination of apramycin and silver was used. In general, the presence of apramycin has promoted silver uptake by bacteria.

摘要

银纳米颗粒与传统抗生素的联合使用可能是对抗抗菌耐药性的一种有前景的替代策略。大量研究支持了这些组合之间协同杀菌活性的存在,但关于其作用机制仍存在大量信息空白。在本研究中,一种基于单细胞电感耦合等离子体质谱(SC-ICP-MS)检测和定量细胞中银含量的直接分析方法,结合显微镜和微生物技术,被加以运用。对暴露于银(I)或银纳米颗粒与阿普拉霉素组合的细菌中积累的银进行定量,有助于阐明银-抗生素组合的协同机制。银与阿普拉霉素的组合产生了协同效应,在保持每种抗菌剂各自杀菌效果的同时,可降低银(I)、银纳米颗粒和阿普拉霉素的浓度(降低4至16倍)。当使用阿普拉霉素和银的组合时,观察到细菌细胞壁受到严重损伤,包括双层膜破裂和细胞质泄漏。总体而言,阿普拉霉素的存在促进了细菌对银的摄取。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/db68/12458696/7c11b8480e15/d5na00404g-f1.jpg

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