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首页> 外文期刊>Acta biomaterialia >The effect of nanoparticle degradation on poly(methacrylic acid)-coated quantum dot toxicity: the importance of particle functionality assessment in toxicology.
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The effect of nanoparticle degradation on poly(methacrylic acid)-coated quantum dot toxicity: the importance of particle functionality assessment in toxicology.

机译:纳米颗粒降解对聚(甲基丙烯酸)涂层量子点毒性的影响:颗粒功能评估在毒理学中的重要性。

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Colloidal semiconductor nanoparticles (quantum dots) have attracted a lot of interest in technological and biomedical research, given their potent fluorescent properties. However, the use of heavy-metal-containing nanoparticles remains an issue of debate. The possible toxic effects of quantum dots remain a hot research topic and several questions such as possible intracellular degradation of quantum dots and the effect thereof on both cell viability and particle functionality remain unresolved. In the present work, poly(methacrylic acid)-coated CdSe/ZnS quantum dots were synthesized and characterized, after which their effects on cultured cells were evaluated using a multiparametric setup. The data reveal that the quantum dots are taken up through endocytosis and when exposed to the low pH of the endosomal structures, they partially degrade and release cadmium ions, which lowers their fluorescence intensity and augments particle toxicity. Using the multiparametric method, the quantum dots were evaluated at non-toxic doses in terms of their ability to visualize labeled cells for longer time periods. The data revealed that comparing different particles in terms of their applied dose is challenging, likely due to difficulties in obtaining accurate nanoparticle concentrations, but evaluating particle toxicity in terms of their biological functionality enables an easy and straightforward comparison.
机译:胶体半导体纳米颗粒(量子点)具有强大的荧光特性,因此在技术和生物医学研究中引起了极大的兴趣。然而,含重金属纳米粒子的使用仍然是一个争论的问题。量子点的可能的毒性作用仍然是研究的热点,诸如量子点的可能的细胞内降解及其对细胞活力和颗粒功能性的影响等若干问题仍未解决。在本工作中,合成并表征了聚(甲基丙烯酸)涂层的CdSe / ZnS量子点,然后使用多参数设置评估了它们对培养细胞的影响。数据显示量子点通过内吞作用吸收,当暴露于内体结构的低pH值时,它们会部分降解并释放镉离子,从而降低其荧光强度并增强颗粒毒性。使用多参数方法,以无毒剂量评估了量子点在较长时间内可视化标记细胞的能力。数据表明,比较不同颗粒的应用剂量具有挑战性,这可能是由于难以获得准确的纳米颗粒浓度所致,但是根据生物学功能评估颗粒毒性可以轻松,直接地进行比较。

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