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各向异性纳米颗粒在溶液和血液中的流动。

The flow of anisotropic nanoparticles in solution and in blood.

作者信息

Lovegrove Jordan Thomas, Kent Ben, Förster Stephan, Garvey Christopher J, Stenzel Martina H

机构信息

Centre for Advanced Macromolecular Design School of Chemistry The University of New South Wales Sydney New South Wales Australia.

Forschungszentrum Jülich GmbH Jülich Germany.

出版信息

Exploration (Beijing). 2023 Oct 10;3(6):20220075. doi: 10.1002/EXP.20220075. eCollection 2023 Dec.

Abstract

The alignment of anisotropic nanoparticles in flow has been used for a range of applications such as the preparation of strong fibres and the assembly of in-plane aligned 1D-nanoobjects that are used for electronic devices, sensors, energy and biological application. Important is also the flow behaviour of nanoparticles that were designed for nanomedical applications such as drug delivery. It is widely observed that non-spherical nanoparticles have longer circulation times and a more favourable biodistribution. To be able to understand this behaviour, researchers have turned to analyzing the flow of non-spherical nanoparticles in the blood stream. In this review, an overview of microfluidic techniques that are used to monitor the alignment of anisotropic nanoparticles in solution will be provided, which includes analysis by small angle X-ray scattering (SAXS) and polarized light microscopy. The flow of these nanoparticles in blood is then discussed as the presence of red blood cells causes margination of some nanoparticles. Using fluorescence microscopy, the extent of margination can be identified, which coincides with the ability of nanoparticles to adhere to the cells grown along the wall. While these studies are mainly carried out in vitro using blood, initial investigations in vivo were able to confirm the unusual flow of anisotropic nanoparticles.

摘要

各向异性纳米颗粒在流动中的排列已被用于一系列应用,如制备高强度纤维以及组装用于电子器件、传感器、能源和生物应用的面内排列的一维纳米物体。对于设计用于纳米医学应用(如药物递送)的纳米颗粒的流动行为也很重要。人们广泛观察到,非球形纳米颗粒具有更长的循环时间和更有利的生物分布。为了能够理解这种行为,研究人员已转向分析非球形纳米颗粒在血流中的流动。在这篇综述中,将概述用于监测溶液中各向异性纳米颗粒排列的微流控技术,其中包括通过小角X射线散射(SAXS)和偏振光显微镜进行的分析。然后讨论这些纳米颗粒在血液中的流动,因为红细胞的存在会导致一些纳米颗粒边缘化。使用荧光显微镜,可以确定边缘化的程度,这与纳米颗粒粘附到沿壁生长的细胞的能力一致。虽然这些研究主要是在体外使用血液进行的,但体内的初步研究能够证实各向异性纳米颗粒的异常流动。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d3ca/10742203/022a2f345875/EXP2-3-20220075-g008.jpg

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