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Electropermeabilization effect of nanoelectropulse on Candida albicans: An in vitro study

机译:纳米电脉冲对白色念珠菌的电渗透作用:体外研究

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Candida albicans is an opportunistic human fungal pathogen t hat normally resides in the digestive system. The Candida albicans cell wall is composed of mannoprotein, β-Glucan and chitin. To explore the antitumor activity of components produced by Candida albicans, nanoelectropulse was introduced in t his study. Candida albicans viability after nanoelectropulse exposure were assessed by colony-forming unit (CFU) assay and fluorescence microscope. Morphological changes of Can dida albicans were observed by scanning electron microscopy (SEM). Also, the total nitric oxide concentration after nanoelectropulse exposure were estimated by the total nitric oxide assay Kit. Finally, the antitumor activity of Candida albicans components were investigated by CCK-8 assay and Annexin V-FITC/PI apoptosis assay in Hela and Cal-27 cancer cell line s. Results suggested that there is a window effect of nanoelectropulse on Candida albicans. High field strength (40kV/cm, 100 pulses) of nanoelectropulse has an electropermeabilizatio n effect on Candida albicans. Additionally, Candida albicans components isolated from 40kV/cm, 100 pulses exhibited good antitumor activity against Hela and Cal-27 cancer cell line s. More importantly, our results revealed that nanoectropulse can significantly affects the Candida albicans to get β-Glucan and Nitric Oxide. Undoubtedly, β-Glucan and Nitric Oxide play an important role in anticancer activity. This is a proof-of-concept study, and provides the first evidence of the nanoectropulse might take Candida albicans for further potential deve lopment as a valuable therapeutic option for cancer patients.
机译:白色念珠菌是通常存在于消化系统中的机会性人类真菌病原体。白色念珠菌细胞壁由甘露糖蛋白,β-葡聚糖和几丁质组成。为了探索白色念珠菌产生的成分的抗肿瘤活性,在他的研究中引入了纳米电脉冲。通过集落形成单位(CFU)分析和荧光显微镜评估纳米电脉冲暴露后白色念珠菌的生存能力。通过扫描电子显微镜(SEM)观察白色念珠菌的形态变化。另外,通过总一氧化氮测定试剂盒估算了纳米电脉冲暴露后的总一氧化氮浓度。最后,通过CCK-8试验和膜联蛋白V-FITC / PI凋亡试验在Hela和Cal-27癌细胞系中研究了白色念珠菌组分的抗肿瘤活性。结果表明纳米电脉冲对白色念珠菌有窗口效应。纳米电脉冲的高场强(40kV / cm,100个脉冲)对白色念珠菌具有电透性作用。另外,从40kV / cm,100个脉冲分离的白色念珠菌组分对Hela和Cal-27癌细胞系表现出良好的抗肿瘤活性。更重要的是,我们的研究结果表明,纳米电脉冲可以显着影响白色念珠菌获得β-葡聚糖和一氧化氮。毫无疑问,β-葡聚糖和一氧化氮在抗癌活性中起着重要的作用。这是一项概念验证研究,并提供了纳米喷射可能将白色念珠菌用于进一步潜在开发的初步证据,将其作为癌症患者的有价值的治疗选择。

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