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银纳米颗粒:抗菌活性、细胞毒性以及与N-乙酰半胱氨酸的协同作用

Silver nanoparticles: Antimicrobial activity, cytotoxicity, and synergism with N-acetyl cysteine.

作者信息

Hamed Selwan, Emara Mohamed, Shawky Riham M, El-Domany Ramadan A, Youssef Tareq

机构信息

Faculty of Pharmacy, Department of Microbiology and Immunology, Helwan University, Cairo, Egypt.

Faculty of Pharmacy, Department of Microbiology and immunology, Kafr El Sheikh University, Egypt.

出版信息

J Basic Microbiol. 2017 Aug;57(8):659-668. doi: 10.1002/jobm.201700087. Epub 2017 May 22.

Abstract

The fast progression of nanotechnology has led to novel therapeutic interventions. Antimicrobial activities of silver nanoparticles (Ag NPs) were tested against standard ATCC strains of Staphylococcus aureus (ATCC 9144), Escherichia coli (O157:H7), Pseudomonas aeruginosa (ATCC 27853), and Candida albicans (ATCC 90028) in addition to 60 clinical isolates collected from cancer patients. Antimicrobial activity was tested by disk diffusion method and MIC values for Ag NPs alone and in combination with N-acetylcysteine (NAC) against tested pathogens were determined by broth microdilution method. Ag NPs showed a robust antimicrobial activity against all tested pathogens and NAC substantially enhanced the antimicrobial activity of Ag NPs against all tested pathogens. Synergism between Ag NPs and NAC has been confirmed by checkerboard assay. The effect of Ag NPs on tested pathogens was further scrutinized by Transmission Electron Microscope (TEM) which showed disruption of cell wall in both bacteria and fungi. Ag NPs abrogated the activity of respiratory chain dehydrogenase of all tested pathogens and released muramic acid content from S. aureus in culture. The cytotoxic effect of Ag NPs alone and in combination with NAC was examined using human HepG2 cells and this revealed no cytotoxicity at MIC values of Ag NPs and interestingly, NAC reduced the cytotoxic effect of Ag NPs at concentrations higher than their MIC values. Taken together, Ag NPs have robust antimicrobial activity and NAC substantially enhances their antimicrobial activities against MDR pathogens which would provide a novel safe, effective, and inexpensive therapeutic approach to control the prevalence of MDR pathogens.

摘要

纳米技术的快速发展带来了新的治疗干预措施。除了从癌症患者中收集的60株临床分离株外,还测试了银纳米颗粒(Ag NPs)对金黄色葡萄球菌(ATCC 9144)、大肠杆菌(O157:H7)、铜绿假单胞菌(ATCC 27853)和白色念珠菌(ATCC 90028)的标准ATCC菌株的抗菌活性。采用纸片扩散法测试抗菌活性,通过肉汤微量稀释法测定Ag NPs单独以及与N-乙酰半胱氨酸(NAC)联合对受试病原体的最低抑菌浓度(MIC)值。Ag NPs对所有受试病原体均表现出强大的抗菌活性,NAC显著增强了Ag NPs对所有受试病原体的抗菌活性。棋盘法已证实Ag NPs与NAC之间存在协同作用。通过透射电子显微镜(TEM)进一步仔细观察了Ag NPs对受试病原体的影响,结果显示细菌和真菌的细胞壁均受到破坏。Ag NPs消除了所有受试病原体呼吸链脱氢酶的活性,并使培养物中金黄色葡萄球菌的胞壁酸含量释放出来。使用人肝癌细胞系HepG2检测了Ag NPs单独以及与NAC联合的细胞毒性作用,结果显示在Ag NPs的MIC值下未观察到细胞毒性,有趣的是,在高于其MIC值的浓度下,NAC降低了Ag NPs的细胞毒性作用。综上所述,Ag NPs具有强大的抗菌活性,NAC显著增强了它们对多重耐药病原体的抗菌活性,这将为控制多重耐药病原体的流行提供一种新型的安全、有效且廉价的治疗方法。

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