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银、氧化锌及混合的银锌氧化物胶体纳米颗粒对被THP-1细胞系吞噬的人型结核分枝杆菌的杀菌作用。

Bactericidal impact of Ag, ZnO and mixed AgZnO colloidal nanoparticles on HRv Mycobacterium tuberculosis phagocytized by THP-1 cell lines.

作者信息

Jafari Alireza, Mosavari Nader, Movahedzadeh Farahnaz, Nodooshan Saeedeh Jafari, Safarkar Roya, Moro Rossella, Kamalzadeh Morteza, Majidpour Ali, Boustanshenas Mina, Mosavi Tahereh

机构信息

Anti-microbial Resistance Research Center, Immunology and Infectious Diseases Institute (IIDI), Iran University of Medical Sciences, Tehran, Iran; Visiting PhD student, Institute for Tuberculosis Research, College of Pharmacy, University of Illinois at Chicago, Chicago, IL, USA.

Reference Laboratory for Bovine Tuberculosis, Razi Vaccine and Serum Research Institute, Agricultural Research Education and Extension Organization, Tehran, Iran.

出版信息

Microb Pathog. 2017 Sep;110:335-344. doi: 10.1016/j.micpath.2017.07.010. Epub 2017 Jul 11.

Abstract

The purpose of this research project was to infection of human macrophages (THP-1) cell lines by HRv strain of Mycobacterium tuberculosis (HRvMTB) and find out the ratio/dilution of mixture silver (Ag NPs) and zinc oxide nanoparticles (ZnO NPs) whose ability to eliminate phagocytized bacteria compared to rifampicin. The colloidal Ag NPs and ZnO NPs were synthesized and their characteristics were evaluated. The THP-1 cell lines were infected with different concentration of HRvMTB. Next, the infected cells were treated with different ratios/dilutions of Ag NPs, ZnO NPs and rifampicin. The THP-1 were lysed and were cultured in Lowenstein-Jensen agar medium, for eight weeks. The TEM and AFM images of NPs and HRvMTB were supplied. It is observed that Ag NPs, 2:8 and 8:2 did not have any anti-tubercular effects on phagocytized HRvMTB. Conversely, ZnO NPs somehow eliminated 18.7 × 10 CFU ml of HRvMTB in concentration of ∼ 0.468 ppm. To compare with 40 ppm of rifampicin, ∼ 0.663 ppm of 5:5 had the ability to kill of HRvMTB, too. Based on previous research, ZnO NPs had strong anti-tubercular impact against HRvMTB to in-vitro condition, but it was toxic in concentration of ∼ 0.468 ppm to both of THP-1 and normal lung (MRC-5) cell lines. It also seems that 5:5 is justified because in concentration of ∼ 0.663 ppm of 5:5, phagocytized HRvMTB into the THP-1 had died without any toxicity effects against THP-1 and also MRC-5 cell lines. It is obvious that the mixture of colloidal silver and zinc oxide NPs with ratio of 5:5 would be trustworthy options as anti-tubercular nano-drugs in future researches.

摘要

本研究项目的目的是用结核分枝杆菌H37Rv株(HRvMTB)感染人巨噬细胞(THP-1)细胞系,并找出银纳米颗粒(Ag NPs)和氧化锌纳米颗粒(ZnO NPs)混合物的比例/稀释度,其与利福平相比消除吞噬细菌的能力。合成了胶体Ag NPs和ZnO NPs并评估了它们的特性。用不同浓度的HRvMTB感染THP-1细胞系。接下来,用不同比例/稀释度的Ag NPs、ZnO NPs和利福平处理感染的细胞。裂解THP-1细胞并在罗-琴氏琼脂培养基中培养八周。提供了NPs和HRvMTB的透射电子显微镜(TEM)和原子力显微镜(AFM)图像。观察到,Ag NPs(2:8和8:2)对吞噬的HRvMTB没有任何抗结核作用。相反,ZnO NPs在浓度约为0.468 ppm时以某种方式消除了18.7×10 CFU/ml的HRvMTB。为了与40 ppm的利福平进行比较,5:5比例约为0.663 ppm时也有杀死HRvMTB的能力。基于先前的研究,ZnO NPs在体外条件下对HRvMTB有很强的抗结核作用,但在浓度约为0.468 ppm时对THP-1和正常肺(MRC-5)细胞系均有毒性。5:5比例似乎也是合理的,因为在5:5比例约为0.663 ppm时,吞噬到THP-1中的HRvMTB已死亡,且对THP-1和MRC-5细胞系均无毒性作用。显然,在未来的研究中,5:5比例的胶体银和氧化锌NPs混合物作为抗结核纳米药物将是可靠的选择。

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