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血浆黏度是光散射法评估细胞外囊泡的关键因素。

Viscosity of Plasma as a Key Factor in Assessment of Extracellular Vesicles by Light Scattering.

机构信息

Department of Chemistry and Biochemistry, University of Ljubljana, Faculty of Chemistry and Chemical Technology, SI-1000 Ljubljana, Slovenia.

Department of Polymer Chemistry and Technology, National Institute of Chemistry, SI-1001 Ljubljana, Slovenia.

出版信息

Cells. 2019 Sep 6;8(9):1046. doi: 10.3390/cells8091046.

Abstract

Extracellular vesicles (EVs) isolated from biological samples are a promising material for use in medicine and technology. However, the assessment methods that would yield repeatable concentrations, sizes and compositions of the harvested material are missing. A plausible model for the description of EV isolates has not been developed. Furthermore, the identity and genesis of EVs are still obscure and the relevant parameters have not yet been identified. The purpose of this work is to better understand the mechanisms taking place during harvesting of EVs, in particular the role of viscosity of EV suspension. The EVs were harvested from blood plasma by repeated centrifugation and washing of samples. Their size and shape were assessed by using a combination of static and dynamic light scattering. The average shape parameter of the assessed particles was found to be ~ 1 (0.94-1.1 in exosome standards and 0.7-1.2 in blood plasma and EV isolates), pertaining to spherical shells (spherical vesicles). This study has estimated the value of the viscosity coefficient of the medium in blood plasma to be 1.2 mPa/s. It can be concluded that light scattering could be a plausible method for the assessment of EVs upon considering that EVs are a dynamic material with a transient identity.

摘要

从生物样本中分离的细胞外囊泡 (EVs) 是一种很有前途的医学和技术材料。然而,缺少可重复产生收获材料浓度、大小和成分的评估方法。尚未开发出用于描述 EV 分离物的合理模型。此外,EV 的身份和起源仍然不清楚,相关参数也尚未确定。本工作的目的是更好地了解在 EV 收获过程中发生的机制,特别是 EV 悬浮液粘度的作用。通过对样品进行多次离心和洗涤从血浆中收获 EVs。使用静态和动态光散射的组合评估它们的大小和形状。评估颗粒的平均形状参数被发现约为 1(外泌体标准品为 0.94-1.1,血浆和 EV 分离物为 0.7-1.2),属于球形壳(球形囊泡)。这项研究估计血液中介质的粘度系数为 1.2 mPa/s。可以得出结论,考虑到 EV 是一种具有瞬态身份的动态物质,光散射可能是评估 EV 的合理方法。

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