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首页> 外文期刊>Toxicology Research >Eco-friendly synthesis of glutathione-capped CdTe/CdSe/ZnSe core/double shell quantum dots: their cytotoxicity and genotoxicity effects on Chinese hamster ovary cells
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Eco-friendly synthesis of glutathione-capped CdTe/CdSe/ZnSe core/double shell quantum dots: their cytotoxicity and genotoxicity effects on Chinese hamster ovary cells

机译:环保合成谷胱甘肽 - 封装Cdte / Cdse / ZnSe /双壳量子点:它们对中国仓鼠卵巢细胞的细胞毒性和基因毒性影响

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摘要

In this work, we report green one-pot synthesis, cytotoxicity and genotoxicity of glutathione-capped CdTe/CdSe/ZnSe heterostructured quantum dots (QDs) using a label-free xCELLigence RTCA system as well as the Cytokinesis Blocked Micronucleus assay. The as-synthesised nanocrystals displayed good optical properties and were spherical in shape with an average particle diameter of 5.9 +/- 1.13 nm. The intracellular uptake study showed that most of the as-synthesised glutathione stabilized QDs penetrated the cell membranes and were found randomly localized in the cytoplasm of Chinese Hamster Ovary (CHO) cells even at a lower concentration of 0.5 mu g ml(-1). The QDs showed no cytotoxicity to Chinese Hamster Ovary (CHO) cells at six concentrations tested (0.5, 1.0, 2.5, 5.0, 10, and 25 mu g ml(-1)). However, at 50 and 100 mu g ml(-1) the material was cytotoxic at significant p values of 3.1 x 10(-4) and 9.47 x 10(-10), respectively. Likewise, the material was found to be genotoxic at almost all concentrations tested. The genotoxicity of the nanocrystals in question confers unfavorable potential to all complex heterostructured nanocrystals. Hence, more studies are needed to negate the prevailing assumption that multishell passivation provides enough protection against intracellular QD core dissolution or the production of reactive oxygen species (ROS) before these nanomaterials can be used in vivo for human health applications.
机译:在这项工作中,我们使用无标记的Xcelligence RTCA系统以及细胞因子阻断的微核测定报告谷胱甘肽封端的谷胱甘肽的合成,细胞毒性和基因毒性的谷胱甘肽封装的CDTE / CDSE / CDSE / CDSE / ZnSe异构化量子点(QDS)。作为合成的纳米晶体显示出良好的光学性质,并且具有5.9 +/- 1.13nm的平均粒径的球形。细胞内摄取性研究表明,大多数和合成的谷胱甘肽稳定的QDS均渗透细胞膜,并且发现甚至以0.5μgmm(-1)的较低浓度,甚至在中国仓鼠卵巢(Cho)细胞的细胞质中随机局部地局部化。 QD在测试的六个浓度(0.5,1.0,2.5,5.0,10和25μgml(-1))上向中国仓鼠卵巢(Cho)细胞没有细胞毒性。然而,在50和100μgmml(-1)下,材料分别是3.1×10(-4)和9.47×10(-10)的显着P值的细胞毒性。同样地,在测试的几乎所有浓度下发现该材料是基因毒性。纳米晶体的遗传毒性赋予所有复杂的异质结构纳米晶体不利的潜力。因此,需要更多的研究来否定多孔钝化钝化在这些纳米材料用于人体健康应用中的体内用于细胞内QD核心溶解或反应性氧物质(ROS)的普遍保护足够的保护。

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  • 来源
    《Toxicology Research》 |2019年第6期|共7页
  • 作者单位

    Univ Johannesburg Dept Chem Sci Appl Chem Doornfontein Campus POB 17011 Johannesburg South Africa;

    Univ Johannesburg Dept Chem Sci Appl Chem Doornfontein Campus POB 17011 Johannesburg South Africa;

    Natl Inst Occupat Hlth Biochem &

    Toxicol Sect Johannesburg South Africa;

    Univ Johannesburg Dept Chem Sci Appl Chem Doornfontein Campus POB 17011 Johannesburg South Africa;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 药学;
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