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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Does shape matter? Bioeffects of gold nanomaterials in a human skin cell model
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Does shape matter? Bioeffects of gold nanomaterials in a human skin cell model

机译:形状重要吗?金纳米材料在人体皮肤细胞模型中的生物效应

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Gold nanomaterials (AuNMs) have distinctive electronic and optical properties, making them ideal candidates for biological, medical, and defense applications. Therefore, it is imperative to evaluate the potential biological impact of AuNMs before employing them in any application. This study investigates two AuNMs with different aspect ratios (AR) on mediation of biological responses in the human keratinocyte cell line (HaCaT) to model potential skin exposure to these AuNMs. The cellular responses were evaluated by cell viability, reactive oxygen species (ROS) generation, alteration in gene and protein expression, and inflammatory response. Gold nanospheres, nominally 20 nm in diameter and coated with mercaptopropane sulfonate (AuNS-MPS), formed agglomerates when dispersed in cell culture media, had a large fractal dimension (D _f = 2.57 ± 0.4) (i.e., tightly bound and densely packed) and were found to be nontoxic even at the highest dose of 100 μg/mL. Highly uniform, 16.7 nm diameter, and 43.8 nm long polyethylene glycol-capped gold nanorods (AuNR-PEG) also formed agglomerates when dispersed into the cell culture media. However, the agglomerates had a smaller fractal dimension (D _f = 1.28 ± 0.08) (i.e., loosely bound) and were found to be cytotoxic to the HaCaT cells, with a significant decrease in cell viability occurring at 25 μg/mL and higher. Moreover, AuNR-PEG caused significant ROS production and up-regulated several genes involved in cellular stress and toxicity. These results, combined with increased levels of inflammatory and apoptotic proteins, demonstrated that the AuNR-PEG induced apoptosis. Exposure to AuNS-MPS, however, did not show any of the detrimental effects observed from the AuNR-PEG. Therefore, we conclude that shape appears to play a key role in mediating the cellular response to AuNMs.
机译:金纳米材料(AuNMs)具有独特的电子和光学特性,使其成为生物,医学和国防应用的理想选择。因此,在任何应用中使用AuNM之前,必须评估它们的潜在生物学影响。这项研究调查了两种不同长宽比(AR)的AuNM在介导人角质形成细胞系(HaCaT)中的生物学反应方面的作用,以模拟潜在的皮肤暴露于这些AuNM的情况。通过细胞活力,活性氧(ROS)生成,基因和蛋白质表达的改变以及炎症反应来评估细胞反应。金纳米球标称直径为20 nm,并涂有巯基丙烷磺酸盐(AuNS-MPS),当分散在细胞培养基中时会形成附聚物,其分形维数大(D _f = 2.57±0.4)(即紧密结合并密集堆积)并且被发现即使在最高剂量为100μg/ mL时也无毒。当高度均匀,直径为16.7 nm,长为43.8 nm的聚乙二醇封端的金纳米棒(AuNR-PEG)分散到细胞培养基中时,也会形成团聚体。但是,团聚体的分形维数较小(D _f = 1.28±0.08)(即松散结合),并且发现对HaCaT细胞具有细胞毒性,在25μg/ mL或更高浓度下细胞活力显着下降。此外,AuNR-PEG引起大量的ROS产生,并上调了涉及细胞应激和毒性的几个基因。这些结果,结合增加的炎症和凋亡蛋白水平,表明AuNR-PEG诱导凋亡。但是,暴露于AuNS-MPS并没有显示出从AuNR-PEG观察到的任何有害作用。因此,我们得出结论,形状似乎在介导对AuNMs的细胞反应中起关键作用。

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