Dual size-exclusion chromatography for efficient isolation of extracellular vesicles from bone marrow derived human plasma

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作者
Jik-Han Jung
Woojin Back
Junyong Yoon
Hyeonjeong Han
Ka-Won Kang
Byeonghyeon Choi
Hyesun Jeong
Jaena Park
Hyunku Shin
Woojune Hur
Yeonho Choi
Sunghoi Hong
Hyun Koo Kim
Yong Park
Ji-Ho Park
机构
[1] Korea Advanced Institute of Science and Technology (KAIST),Department of Bio and Brain Engineering and KAIST Institute for Health Science and Technology
[2] Korea University College of Medicine,Division of Hematology
[3] Korea University College of Medicine,Oncology, Department of Internal Medicine
[4] Korea University,Department of Thoracic and Cardiovascular Surgery and Department of Biomedical Sciences
[5] Korea University,School of Biosystems and Biomedical Sciences
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Isolation of pure extracellular vesicles (EVs), especially from blood, has been a major challenge in the field of EV research. The presence of lipoproteins and soluble proteins often hinders the isolation of high purity EVs upon utilization of conventional separation methods. To circumvent such problems, we designed a single-step dual size-exclusion chromatography (dSEC) column for effective isolation of highly pure EVs from bone marrow derived human plasma. With an aim to select appropriate column design parameters, we analyzed the physiochemical properties of the major substances in bone marrow derived plasma, which include EVs, lipoproteins, and soluble proteins. Based on these findings, we devised a novel dSEC column with two different types of porous beads sequentially stacked each other for efficient separation of EVs from other contaminants. The newly developed dSEC columns exhibited better performance in isolating highly pure EVs from AML plasma in comparison to conventional isolation methods.
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