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首页> 外文期刊>Jundishapur Journal of Microbiology >Novel Formulated Zinc Oxide Nanoparticles Reduce Hwp1 Gene Expression Involved in Biofilm Formation in Candida albicans with Minimum Cytotoxicity Effect on Human Cells
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Novel Formulated Zinc Oxide Nanoparticles Reduce Hwp1 Gene Expression Involved in Biofilm Formation in Candida albicans with Minimum Cytotoxicity Effect on Human Cells

机译:新型配制的氧化锌纳米颗粒降低了白色念珠菌生物膜形成中涉及的Hwp1基因表达,对人体细胞的细胞毒性作用最小

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Drug resistance in Candida species, has emerged as a major problem in the public health system worldwide. Application of nanoparticles is proposed as a novel and potential agent for reduction of drug resistance burdens.The current study was conducted to evaluate the effects of zinc oxide nanoparticles (ZnO NPs containing chitosan and linoleic acid) on hyphae cell wall proteins (Hwp1) gene expression, a crucial gene in pathogenicity of Candida albicans, and cytotoxicity on human hepatocyte carcinoma (HepG2) cells as well as the production of Reactive Oxygen Species (ROS).The effects of novel ZnO NPs on expression of Hwp1 gene of C. albicans was analyzed using quantitative real-time polymerase chain reaction (qRT-PCR) in comparison to fluconazole as a standard drug. Reactive Oxygen species production was examined in macrophages treated with ZnO NPs relative to non-treated cells. Also, the cytotoxicity effects of ZnO NPs were assessed using the MTT assay against HepG2 cell line.The findings indicated that ZnO NPs significantly decreased the level of Hwp1 gene expression in standard and clinical isolates of C. albicans. Increased level of ROS production in macrophages was found in the presence of ZnO NPs in concentration-dependent manner compared to the control group without exposure of ZnO NPs (P = 0.001). Furthermore, ZnO NPs did not show cytotoxicity activity on HepG2 cells at different concentrations (P & 0.05).Taken together, the newly synthesized ZnO NPs may be a suitable candidate for inhibition of the critical gene responsible for biofilm dispersion and the control of Candida infection with limited cytotoxicity on human cells. However, more studies are required for support of its effect in vitro and in vivo.
机译:念珠菌物种的耐药性已成为全球公共卫生系统中的主要问题。提出应用纳米颗粒作为减轻耐药性负担的新型和潜在的药物。本研究旨在评估氧化锌纳米颗粒(含有壳聚糖和亚油酸的ZnO NPs)对菌丝细胞壁蛋白(Hwp1)基因表达的影响。 ,是白色念珠菌致病性的关键基因,对人肝癌细胞(HepG2)具有细胞毒性,并产生活性氧(ROS)。分析了新型ZnO NP对白色念珠菌Hwp1基因表达的影响。与氟康唑为标准药物相比,使用定量实时聚合酶链反应(qRT-PCR)。相对于未处理的细胞,在用ZnO NPs处理的巨噬细胞中检查了活性氧的产生。此外,采用MTT法检测了ZnO NPs对HepG2细胞系的细胞毒性作用。结果表明,ZnO NPs显着降低了白色念珠菌标准品和临床分离株中Hwp1基因的表达水平。与没有暴露ZnO NPs的对照组相比,在存在ZnO NPs的情况下发现巨噬细胞中ROS的产生水平呈浓度依赖性(P = 0.001)。此外,ZnO NPs在不同浓度下对HepG2细胞均未显示出细胞毒性活性(P> 0.05)。综上所述,新合成的ZnO NPs可能是抑制负责生物膜分散和控制念珠菌的关键基因的合适候选物。感染,对人细胞的细胞毒性有限。然而,需要更多的研究来支持其体外和体内的作用。

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