Isolating Small Extracellular Vesicles from Small Volumes of Blood Plasma using size exclusion chromatography and density gradient ultracentrifugation: A Comparative Study.

Fang Kong, Megha Upadya, Andrew See Wong Weng, Rinkoo Dalan, Ming Dao
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Abstract

Small extracellular vesicles (sEVs) are heterogeneous biological vesicles released by cells under both physiological and pathological conditions. Due to their potential as valuable diagnostic and prognostic biomarkers in human blood, there is a pressing need to develop effective methods for isolating high-purity sEVs from the complex milieu of blood plasma, which contains abundant plasma proteins and lipoproteins. Size exclusion chromatography (SEC) and density gradient ultracentrifugation (DGUC) are two commonly employed isolation techniques that have shown promise in addressing this challenge. In this study, we aimed to determine the optimal combination and sequence of SEC and DGUC for isolating sEVs from small plasma volumes, in order to enhance both the efficiency and purity of the resulting isolates. To achieve this, we compared sEV isolation using two combinations: SEC-DGUC and DGUC-SEC, from unit volumes of 500 μl plasma. Both protocols successfully isolated high-purity sEVs; however, the SEC-DGUC combination yielded higher sEV protein and RNA content. We further characterized the isolated sEVs obtained from the SEC-DGUC protocol using flow cytometry and mass spectrometry to assess their quality and purity. In conclusion, the optimized SEC-DGUC protocol is efficient, highly reproducible, and well-suited for isolating high-purity sEVs from small blood volumes.

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用大小排斥色谱法和密度梯度超离心分离法从小体积血浆中分离细胞外小泡:一项比较研究。
小细胞外囊泡(sev)是细胞在生理和病理条件下释放的异质生物囊泡。由于sev在人类血液中作为有价值的诊断和预后生物标志物的潜力,迫切需要开发从复杂的血浆环境中分离高纯度sev的有效方法,血浆中含有丰富的血浆蛋白和脂蛋白。粒径排除色谱(SEC)和密度梯度超离心(DGUC)是两种常用的分离技术,在解决这一挑战方面表现出了希望。在本研究中,我们旨在确定SEC和DGUC在小血浆体积中分离sev的最佳组合和序列,以提高分离得到的sev的效率和纯度。为了实现这一点,我们比较了两种组合:SEC-DGUC和DGUC-SEC,从单位体积的500 μl等离子体中分离sEV。两种方案都成功分离出高纯度sev;而SEC-DGUC组合sEV蛋白和RNA含量较高。我们进一步用流式细胞术和质谱法对SEC-DGUC方案获得的分离sev进行了表征,以评估其质量和纯度。综上所述,优化后的SEC-DGUC方案高效、可重复性高,适用于小血容量高纯度sev的分离。
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