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Silver nanoparticles in complex biological media: assessment of colloidal stability and protein corona formation

机译:复杂生物介质中的银纳米颗粒:胶体稳定性和蛋白质电晕形成的评估

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Engineered silver nanoparticles (AgNPs) are among the most used nanomaterials in consumer products, therefore concerns are raised about their potential for adverse effects in humans and environment. Although an increasing number of studies in vitro and in vivo are being reported on the toxicity of AgNPs, most of them suffer from incomplete characterization of AgNPs in the tested biological media. As a consequence, the comparison of toxicological data is troublesome and the toxicity evaluation still remains an open critical issue. The development of a reliable protocol to evaluate interactions of AgNPs with surrounding proteins as well as to assess their colloidal stability is therefore required. In this regard, it is of importance not only to use multiple, easy-to-access and simple techniques but also to understand limitations of each characterization methods. In this work, the morphological and structural behaviour of AgNPs has been studied in two relevant biological media, namely 10 % FBS and MP. Three different techniques (Dynamic Light Scattering, Transmission Electron Microscopy, UV-Vis spectroscopy) were tested for their suitability in detecting AgNPs of three different sizes (10, 40 and 100 nm) coated with either citrate or polyvinylpyrrolidone. Results showed that UV-Vis spectroscopy is the most versatile and informative technique to gain information about interaction between AgNPs and surrounding proteins and to determine their colloidal stability in the tested biological media. These findings are expected to provide useful insights in characterizing AgNPs before performing any further in vitro/in vivo experiment.
机译:工程银纳米颗粒(AgNPs)是消费产品中使用最广泛的纳米材料之一,因此,人们越来越关注它们对人类和环境的潜在危害。尽管有越来越多的关于AgNPs毒性的体外和体内研究报告,但其中大多数在所测试的生物介质中均遭受AgNPs不完全表征的困扰。结果,毒理学数据的比较是麻烦的,毒性评估仍然是一个开放的关键问题。因此,需要开发一种可靠的方案来评估AgNP与周围蛋白质的相互作用并评估其胶体稳定性。在这方面,重要的是不仅要使用多种易于使用的简单技术,而且要了解每种表征方法的局限性。在这项工作中,已经在两种相关的生物介质,即10%FBS和MP中研究了AgNPs的形态和结构行为。测试了三种不同的技术(动态光散射,透射电子显微镜,UV-Vis光谱)对检测涂覆有柠檬酸盐或聚乙烯吡咯烷酮的三种不同尺寸(10、40和100 nm)的AgNP的适用性。结果表明,UV-Vis光谱学是获得有关AgNP与周围蛋白质之间相互作用的信息并确定其在被测生物介质中的胶体稳定性的最通用和最有用的技术。这些发现有望在进行任何进一步的体外/体内实验之前为表征AgNPs提供有用的见识。

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