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Fate and transformation of silver nanoparticles in different biological conditions

机译:不同生物条件下银纳米粒子的命运和转化

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摘要

The exploitation of silver nanoparticles (AgNPs) in biomedicine represents more than one third of their overall application. Despite their wide use and significant amount of scientific data on their effects on biological systems, detailed insight into their in vivo fate is still lacking. This study aimed to elucidate the biotransformation patterns of AgNPs following oral administration. Colloidal stability, biochemical transformation, dissolution, and degradation behaviour of different types of AgNPs were evaluated in systems modelled to represent biological environments relevant for oral administration, as well as in cell culture media and tissue compartments obtained from animal models. A multimethod approach was employed by implementing light scattering (dynamic and electrophoretic) techniques, spectroscopy (UV–vis, atomic absorption, nuclear magnetic resonance) and transmission electron microscopy. The obtained results demonstrated that AgNPs may transform very quickly during their journey through different biological conditions. They are able to degrade to an ionic form and again reconstruct to a nanoparticulate form, depending on the biological environment determined by specific body compartments. As suggested for other inorganic nanoparticles by other research groups, AgNPs fail to preserve their specific integrity in in vivo settings.
机译:生物医学中银纳米粒子(AgNP)的利用代表其整体施用的三分之一以上。尽管他们对其对生物系统的影响有广泛的使用和大量的科学数据,但仍然缺乏详细的洞察体内命运。本研究旨在阐明口服给药后AgNP的生物转化模式。在建模的系统中评估了不同类型AgNP的胶体稳定性,生物化学转化,溶解和降解行为,以代表对口服给药相关的生物环境,以及从动物模型获得的细胞培养基和组织隔间。通过实施光散射(动态和电泳)技术,光谱学(UV-Vis,原子吸收,核磁共振)和透射电子显微镜来采用多替代方法。所获得的结果表明,AgNPS可以在通过不同的生物条件的旅程中非常快速地转化。它们能够降解到离子形式并再次重建于纳米颗粒形式,这取决于由特定体积确定的生物环境。如其他研究组的其他无机纳米颗粒所提出的,AGNPS未能在体内设置中保持其特定的完整性。

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