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Quantitative assessment of cellular uptake and differential toxic effects of HgSe nanoparticles in human cells

机译:HGSE纳米粒子在人细胞中的蜂窝摄取和差异毒性作用的定量评估

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Bio-formation and biodistribution of mercury selenide (HgSe) nanoparticles (NPs). as the ultimate metabolic product in the Hg detoxification pathway, is an important environmental and toxicological issue not well understood nowadays. In this work, we revealed for the first time the cellular uptake and accumulation of HgSe NPs in one embryonic and one tumour human cell line (HEK 293 and HeLa). For this purpose, HgSe NP standards were synthesized, well characterized and surface-engineered to endow them with stability in aqueous and cellular culture media. The native fluorescence emission of the HgSe NPs enabled the assessment of their cellular distribution and constituted the starting point of a pioneering comparative study of the cytotoxicity of HgSe NPs and that induced by the widely studied inorganic mercury(Ⅱ) and methylmercury in the two human cell lines. The three Hg species investigated significantly differed in their degree of toxicity. While HgSe NPs did not induce a significant effect in cell viability, even at relatively high Hg concentrations; lower exposure levels of Hg~(2+) and MeHg~+ alone, and even in the presence of other Se species (selenite), caused acute cytotoxicity. A negligible release of Hg~(2+) from the NP surface was observed under the incubation conditions used. Cellular uptake of HgSe NPs and Hg~(2+) and MeHg~+ compounds was quantified also by ICP-MS. Results indicated that Hg incorporation when cells were exposed to the same Hg concentration added as nanoparticles (41%) and MeHg~+ (36%) is quite similar, instead of the decrease observed for Hg~(2+) uptake (8%). Therefore, the null cell cytotoxicity effect observed for HgSe NPs cannot be ascribed to a lower Hg internalization in the cells.
机译:生物形成和汞硒化族(Hgse)纳米颗粒(NPS)的生物分布。作为HG解毒途径中的最终代谢产物,是如今的重要环境和毒理学问题。在这项工作中,我们首次揭示了在一个胚胎和一个肿瘤人细胞系(HEK 293和HeLa)中Hgse NP的细胞吸收和积累。为此目的,合成HGSE NP标准,其特征在于和表面设计,以赋予它们在水性和细胞培养基中的稳定性。 HGSE NPS的本机荧光发射使其蜂窝分布的评估,并构成了Hgse NPS细胞毒性的开创性比较研究的起点,并且由广泛研究的无机汞(Ⅱ)和两种人细胞中甲基汞诱导线条。研究的三种HG物种在其毒性程度显着不同。虽然Hgse NPS在细胞活力中没有诱导显着影响,但即使在相对较高的Hg浓度下也是如此;单独的Hg〜(2+)和MeHg〜+的较低曝光水平,即使在存在其他SE物种(硒沸石)中,也导致急性细胞毒性。在使用的培养条件下观察到来自NP表面的可忽略Hg〜(2+)的释放。通过ICP-MS量化Hgse NPS和Hg〜(2+)和MeHG〜+化合物的细胞吸收。结果表明,当细胞暴露于加入的相同的Hg浓度(41%)和MeHg〜+(36%)时,Hg掺入时相似,而是对于Hg〜(2+)摄取(8%)观察到的减少而不是降低。因此,对Hgse NPS观察到的零细胞细胞毒性效应不能归因于细胞中的较低的Hg内化。

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  • 来源
    《Journal of Analytical Atomic Spectrometry》 |2020年第9期|1979-1988|共10页
  • 作者单位

    Department of Physical and Analytical Chemistry University of Oviedo Avda. Julian Claveria 8 33006 Oviedo Spain;

    Department of Physical and Analytical Chemistry University of Oviedo Avda. Julian Claveria 8 33006 Oviedo Spain;

    Department of Analytical Chemistry University of Granada 18071 Granada Spain;

    Laboratory of Toxicology and Environmental Health Graduate School of Pharmaceutical Sciences Chiba University Chuo Chiba 260-8675 Japan;

    Department of Physical and Analytical Chemistry University of Oviedo Avda. Julian Claveria 8 33006 Oviedo Spain;

    Department of Physical and Analytical Chemistry University of Oviedo Avda. Julian Claveria 8 33006 Oviedo Spain;

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