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Colloidal stability of silver nanoparticles in biologically relevant conditions

机译:生物学相关条件下银纳米颗粒的胶体稳定性

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Understanding the colloidal stability of nanoparticles (NPs) plays a key role in phenomenological interpretation of toxicological experiments, particularly if single NPs or their aggregates or agglomerates determine the dominant experimental result. This report examines a variety of instrumental techniques for surveying the colloidal stability of aqueous suspensions of silver nanoparticles (AgNPs), including atomic force microscopy, dynamic light scattering, and colorimetry. It was found that colorimetry can adequately determine the concentration of single AgNPs that remained in solution if morphological information about agglomerates is not required. The colloidal stability of AgNPs with various surface capping agents and in various solvents ranging from cell culture media to different electrolytes of several concentrations, and in different pH conditions was determined. It was found that biocompatible bulky capping agents, such as bovine serum albumin or starch, that provided steric colloidal stabilization, as opposed to purely electrostatic stabilization such as with citrate AgNPs, provided better retention of single AgNPs in solution over a variety of conditions for up to 64 h of observation.
机译:理解纳米颗粒(NPs)的胶体稳定性在毒理学实验的现象学解释中起着关键作用,特别是如果单个NPs或其聚集体或团聚体决定了主要的实验结果。本报告研究了用于测量银纳米颗粒(AgNPs)的水悬浮液胶体稳定性的多种仪器技术,包括原子力显微镜,动态光散射和比色法。已发现,如果不需要有关团聚体的形态学信息,比色法可以充分确定溶液中残留的单个AgNPs的浓度。测定了具有各种表面封端剂的AgNPs在各种溶剂(从细胞培养基到几种浓度的不同电解质)以及在不同pH条件下的胶体稳定性。已发现,与纯柠檬酸AgNPs等纯静电稳定剂相比,提供空间胶体稳定作用的生物相容性大体积加帽剂(如牛血清白蛋白或淀粉)在各种条件下均可更好地保留单个AgNPs在溶液中。到64小时的观察。

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