Ultrafiltration with size-exclusion liquid chromatography for high yield isolation of extracellular vesicles preserving intact biophysical and functional properties
Nordin, Joel Z.; Lee, Yi; Vader, Pieter; Mäger, Imre; Johansson, Henrik J.; Heusermann, Wolf; Wiklander, Oscar P B; Hällbrink, Mattias; Seow, Yiqi; Bultema, Jarred J.; Gilthorpe, Jonathan; Davies, Tim; Fairchild, Paul J.; Gbrielsson, Susanne; Meisner-Kober, Nicole C.; Lehtiö, Janne; Smith, C. I Edvard; Wood, Matthew J A; Andaloussi, Samir E L
(2015) Nanomedicine: Nanotechnology, Biology, and Medicine, volume 11, issue 4, pp. 879 - 883
(Article)
Abstract
Extracellular vesicles (EVs) are natural nanoparticles that mediate intercellular transfer of RNA and proteins and are of great medical interest; serving as novel biomarkers and potential therapeutic agents. However, there is little consensus on the most appropriate method to isolate high-yield and high-purity EVs from various biological fluids. Here, we
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describe a systematic comparison between two protocols for EV purification: ultrafiltration with subsequent liquid chromatography (UF-LC) and differential ultracentrifugation (UC). A significantly higher EV yield resulted from UF-LC as compared to UC, without affecting vesicle protein composition. Importantly, we provide novel evidence that, in contrast to UC-purified EVs, the biophysical properties of UF-LC-purified EVs are preserved, leading to a different in vivo biodistribution, with less accumulation in lungs. Finally, we show that UF-LC is scalable and adaptable for EV isolation from complex media types such as stem cell media, which is of huge significance for future clinical applications involving EVs. From the Clinical Editor: Recent evidence suggests extracellular vesicles (EVs) as another route of cellular communication. These EVs may be utilized for future therapeutics. In this article, the authors compared ultrafiltration with size-exclusion liquid chromatography (UF-LC) and ultra-centrifugation (UC) for EV recovery.
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Keywords: Biophysical properties, Extracellular vesicles, Size-exclusion liquid chromatography, Ultracentrifugation, Ultrafiltration, Molecular Medicine, Bioengineering, Biomedical Engineering, General Materials Science, Medicine (miscellaneous), Pharmaceutical Science, Journal Article, Research Support, Non-U.S. Gov't
ISSN: 1549-9634
Publisher: Elsevier Inc.
(Peer reviewed)