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首页> 外文期刊>Journal of nanoparticle research: An interdisciplinary forum for nanoscale science and technology >Cytotoxicity evaluation of nanoclays in human epithelial cell line A549 using high content screening and real-time impedance analysis
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Cytotoxicity evaluation of nanoclays in human epithelial cell line A549 using high content screening and real-time impedance analysis

机译:高含量筛选和实时阻抗分析法评价纳米黏土在人上皮细胞A549中的细胞毒性

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摘要

Continuously expanding use of products containing nanoclays for wide range of applications have raised public concerns about health and safety. Although the products containing nanoclays may not be toxic, it is possible that nanomaterials may come in contact with humans during handling, manufacture, or disposal, and cause adverse health impact. This necessitates biocompatibility evaluation of the commonly used nanoclays. Here, we investigated the cytotoxic effects of platelet (Bentone MA, ME-100, Cloisite Na ~+, Nanomer PGV, and Delite LVF) and tubular (Halloysite, and Halloysite MP1) type nanoclays on cultured human lung epithelial cells A549. For the first time with this aim, we employed a cell-based automated high content screening in combination with real-time impedance sensing. We demonstrate varying degree of dose- and time-dependent cytotoxic effects of both nanoclay types. Overall, platelet structured nanoclays were more cytotoxic than tubular type. A low but significant level of cytotoxicity was observed at 25 μg/mL of the platelet-type nanoclays. A549 cells exposed to high concentration (250 μg/mL) of tubular structured nanoclays showed inhibited cell growth. Confocal microscopy indicated intracellular accumulation of nanoclays with perinuclear localization. Results indicate a potential hazard of nanoclaycontaining products at significantly higher concentrations, which warrant their further biohazard assessment on the actual exposure in humans.
机译:包含纳米粘土的产品的不断扩展的用途广泛,引起了公众对健康和安全的关注。尽管含有纳米粘土的产品可能无毒,但纳米材料在处理,制造或处置过程中可能会与人体接触,并对健康造成不利影响。这需要对常用的纳米粘土进行生物相容性评估。在这里,我们研究了血小板(Bentone MA,ME-100,Cloisite Na〜+,Nanomer PGV和Delite LVF)和管状(Halloysite和Halloysite MP1)型纳米粘土对培养的人肺上皮细胞A549的细胞毒性作用。为此,我们首次采用了结合实时阻抗感应的基于细胞的自动化高内涵筛选。我们证明了两种纳米粘土类型的剂量和时间依赖性细胞毒性作用的程度不同。总体而言,血小板结构的纳米粘土比管状的具有更高的细胞毒性。在25μg/ mL的血小板型纳米粘土中观察到了较低但显着的细胞毒性水平。暴露于高浓度(250μg/ mL)的管状结构纳米粘土的A549细胞显示出抑制的细胞生长。共聚焦显微镜检查表明胞核内有纳米粘土在细胞内积累。结果表明,含有高浓度纳米粘土的产品可能具有潜在危害,这有必要对其在人体中的实际暴露进行进一步的生物危害评估。

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