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研究肝素亲和层析法用于细胞外囊泡的纯化和分级。

Investigating heparin affinity chromatography for extracellular vesicle purification and fractionation.

机构信息

Department of Biochemical Engineering, University College London, Bernard Katz Building, Gower Street, London WC1E 6BT, UK.

ReNeuron, Pencoed Business Park, Pencoed, Bridgend, Mid Glamorgan CF35 5HY, UK.

出版信息

J Chromatogr A. 2022 May 10;1670:462987. doi: 10.1016/j.chroma.2022.462987. Epub 2022 Mar 22.

Abstract

The purification of extracellular vesicles (EVs) remains a major hurdle in the progression of fundamental research and the commercial application of EV-based products. In this study, we evaluated the potential of heparin affinity chromatography (HAC) to purify neural stem cell-derived EVs as part of a multistep process. Bind-elute chromatography, such as HAC, is an attractive method of purification because it is highly scalable, robust and can be automated. Our findings support an interaction between EVs and heparin. The recovery of EVs using HAC based on particle counts was a minimum of 68.7%. We found HAC could remove on average 98.8% and 99.0% of residual protein and DNA respectively. In addition to EV purification, HAC was used to separate EVs into three populations based on their affinity to the heparin column. Within these populations, we detected differences in the expression of the exosome-associated protein TSG101 and the tetraspanin immunophenotype. However, the significance of these observations is not clear. Overall HAC shows promise as a potential purification method to capture EVs and this study proposes a novel application of HAC for EV fractionation. Moving forward, a better understanding of the heparin-EV interaction would be required before HAC can be more widely adopted for these applications.

摘要

外泌体(EVs)的纯化仍然是基础研究和基于 EV 的产品商业化应用进展的主要障碍。在这项研究中,我们评估了肝素亲和层析(HAC)作为多步过程的一部分来纯化神经干细胞衍生 EVs 的潜力。结合洗脱色谱法,如 HAC,是一种很有吸引力的纯化方法,因为它具有高度可扩展性、稳健性并且可以自动化。我们的研究结果支持 EVs 与肝素之间的相互作用。基于颗粒计数的 HAC 回收 EVs 的效率至少为 68.7%。我们发现 HAC 可以分别去除平均 98.8%和 99.0%的残留蛋白和 DNA。除了 EV 纯化之外,HAC 还可用于根据其与肝素柱的亲和力将 EV 分离为三个群体。在这些群体中,我们检测到与外泌体相关的蛋白 TSG101 和四跨膜蛋白免疫表型的表达存在差异。然而,这些观察结果的意义尚不清楚。总体而言,HAC 作为一种潜在的捕获 EV 的纯化方法显示出前景,本研究提出了 HAC 用于 EV 分组的新应用。展望未来,需要更深入地了解肝素-EV 相互作用,然后才能更广泛地将 HAC 应用于这些应用。

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