金纳米粒子的生物分布研究进展:尺寸、表面电荷和给药途径的影响。

Bashiru K Sodipo, Zainab Kasim Mohammed
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引用次数: 0

摘要

纳米医学是纳米技术在医学中的应用。为了改善金纳米粒子(GNPs)的转化和临床应用,需要更好地了解纳米粒子的理化性质与系统参数和体内性能的关系。本综述介绍了理化性质(表面电荷和尺寸)和给药途径对 GNPs 生物分布的影响。文章还介绍了作为 GNPs 生物分布障碍的蛋白质电晕(一种独特的生物标识符)的作用,以及为改善生物分布而设计 GNPs 的进展。蛋白质很容易吸附在循环中的带电(阴离子和阳离子)功能化 GNP 上,从而影响其生物分布的动态。虽然中性电荷(非离子和齐聚物)涂层可为 GNPs 上蛋白质电晕的形成提供隐身效果,但非离子涂层的 GNPs 会因免疫原性反应而加速血液清除 (ABC),而齐聚物则不会。研究发现,尺寸小于 50 纳米的较小 GNP 可在多个器官中循环。GNPs 的给药途径决定了吸附在纳米粒子上的血清蛋白。
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Advances in biodistribution of gold nanoparticles: the influence of size, surface charge, and route of administration.

To improve the translational and clinical applications of gold nanoparticles (GNPs) in medicine there is a need for better understanding of physicochemical properties of the nanoparticles in relation to the systemic parameters andin-vivoperformance. This review presents the influence of physicochemical properties (surface charges and size) and route of administration on the biodistribution of GNPs. The role of protein corona (PC) (a unique biological identifier) as a barrier to biodistribution of GNPs, and the advances in engineered GNPs towards improving biodistribution are presented. Proteins can easily adsorb on charged (anionic and cationic) functionalized GNPs in circulation and shape the dynamics of their biodistribution. Non-ionic coatings such as PEG experience accelerated blood clearance (ABC) due to immunogenic response. While zwitterionic coatings provide stealth effects to formation of PC on the GNPs. GNPs with sizes less than 50 nm were found to circulate to several organs while the route of administration of the GNPs determines the serum protein that adsorbs on the nanoparticles.

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