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Biochemical Changes in Human Cells Exposed to Low Concentrations of Gold Nanoparticles Detected by Raman Microspectroscopy

机译:用拉曼光谱法检测到低浓度金纳米粒子对人体细胞的生化变化

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摘要

The toxicological implications of nanoparticles deserve accurate scientific investigation for the protection of human health. Although toxic effects involve specific organs, the events that cause them have their origin from biochemical modifications of some cellular constituents. Therefore, a first analysis to evaluate the effects due to the action of nanoparticles is achieved by investigation of in vitro cells, which allows the identification of the cellular modifications caused by nanoparticles (NPs) even at much lower doses than the lethal ones. This work evaluated the Raman microspectroscopy capability to monitor biochemical changes occurring in human cells as a consequence of exposure to a suspension of gold nanoparticles with a non-cytotoxic concentration. Human keratinocyte cells were used as a model cell line, because they are mainly involved in environmental exposure. A trypan blue assay revealed that the investigated concentration, 650 ng/mL, is non-cytotoxic (about 5% of cells died after 48 h exposure). Specific Raman spectral markers to represent the cell response to nanoparticle exposure were found (at 1450 and 2865 cm−1) in the cytoplasm spectra, with the aid of ratiometric and principal component analysis.
机译:纳米粒子的毒理学意义值得为保护人类健康进行准确的科学调查。尽管毒性作用涉及特定的器官,但引起它们的事件起源于某些细胞成分的生物化学修饰。因此,通过研究体外细胞可实现对纳米颗粒作用产生的影响进行评估的第一个分析,即使在低于致死剂量的情况下,也可以鉴定出由纳米颗粒(NPs)引起的细胞修饰。这项工作评估了拉曼显微光谱法监测因暴露于具有非细胞毒性浓度的金纳米颗粒悬浮液而在人细胞中发生的生化变化的能力。人类角质形成细胞被用作模型细胞系,因为它们主要参与环境暴露。锥虫蓝试验表明,所研究的浓度650 ng / mL无细胞毒性(暴露48 h后约有5%的细胞死亡)。在比例和主成分分析的帮助下,在细胞质光谱中发现了特定的拉曼光谱标记(代表1450和2865 cm -1 处的细胞)对纳米颗粒暴露的反应。

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