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Asymmetric depth‐filtration: A versatile and scalable method for high‐yield isolation of extracellular vesicles with low contamination

We developed a novel asymmetric depth filtration (DF) approach to isolate extracellular vesicles (EVs) from biological fluids that outperforms ultracentrifugation and size‐exclusion chromatography in purity and yield of isolated EVs. By these metrics, a single‐step DF matches or exceeds the performa...

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Autores principales: Chernyshev, Vasiliy S., Chuprov‐Netochin, Roman N., Tsydenzhapova, Ekaterina, Svirshchevskaya, Elena V., Poltavtseva, Rimma A., Merdalimova, Anastasiia, Yashchenok, Alexey, Keshelava, Amiran, Sorokin, Konstantin, Keshelava, Varlam, Sukhikh, Gennadiy T., Gorin, Dmitry, Leonov, Sergey, Skliar, Mikhail
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9451526/
https://www.ncbi.nlm.nih.gov/pubmed/35942823
http://dx.doi.org/10.1002/jev2.12256
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author Chernyshev, Vasiliy S.
Chuprov‐Netochin, Roman N.
Tsydenzhapova, Ekaterina
Svirshchevskaya, Elena V.
Poltavtseva, Rimma A.
Merdalimova, Anastasiia
Yashchenok, Alexey
Keshelava, Amiran
Sorokin, Konstantin
Keshelava, Varlam
Sukhikh, Gennadiy T.
Gorin, Dmitry
Leonov, Sergey
Skliar, Mikhail
author_facet Chernyshev, Vasiliy S.
Chuprov‐Netochin, Roman N.
Tsydenzhapova, Ekaterina
Svirshchevskaya, Elena V.
Poltavtseva, Rimma A.
Merdalimova, Anastasiia
Yashchenok, Alexey
Keshelava, Amiran
Sorokin, Konstantin
Keshelava, Varlam
Sukhikh, Gennadiy T.
Gorin, Dmitry
Leonov, Sergey
Skliar, Mikhail
author_sort Chernyshev, Vasiliy S.
collection PubMed
description We developed a novel asymmetric depth filtration (DF) approach to isolate extracellular vesicles (EVs) from biological fluids that outperforms ultracentrifugation and size‐exclusion chromatography in purity and yield of isolated EVs. By these metrics, a single‐step DF matches or exceeds the performance of multistep protocols with dedicated purification procedures in the isolation of plasma EVs. We demonstrate the selective transit and capture of biological nanoparticles in asymmetric pores by size and elasticity, low surface binding to the filtration medium, and the ability to cleanse EVs held by the filter before their recovery with the reversed flow all contribute to the achieved purity and yield of preparations. We further demonstrate the method's versatility by applying it to isolate EVs from different biofluids (plasma, urine, and cell culture growth medium). The DF workflow is simple, fast, and inexpensive. Only standard laboratory equipment is required for its implementation, making DF suitable for low‐resource and point‐of‐use locations. The method may be used for EV isolation from small biological samples in diagnostic and treatment guidance applications. It can also be scaled up to harvest therapeutic EVs from large volumes of cell culture medium.
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spelling pubmed-94515262022-09-10 Asymmetric depth‐filtration: A versatile and scalable method for high‐yield isolation of extracellular vesicles with low contamination Chernyshev, Vasiliy S. Chuprov‐Netochin, Roman N. Tsydenzhapova, Ekaterina Svirshchevskaya, Elena V. Poltavtseva, Rimma A. Merdalimova, Anastasiia Yashchenok, Alexey Keshelava, Amiran Sorokin, Konstantin Keshelava, Varlam Sukhikh, Gennadiy T. Gorin, Dmitry Leonov, Sergey Skliar, Mikhail J Extracell Vesicles Research Articles We developed a novel asymmetric depth filtration (DF) approach to isolate extracellular vesicles (EVs) from biological fluids that outperforms ultracentrifugation and size‐exclusion chromatography in purity and yield of isolated EVs. By these metrics, a single‐step DF matches or exceeds the performance of multistep protocols with dedicated purification procedures in the isolation of plasma EVs. We demonstrate the selective transit and capture of biological nanoparticles in asymmetric pores by size and elasticity, low surface binding to the filtration medium, and the ability to cleanse EVs held by the filter before their recovery with the reversed flow all contribute to the achieved purity and yield of preparations. We further demonstrate the method's versatility by applying it to isolate EVs from different biofluids (plasma, urine, and cell culture growth medium). The DF workflow is simple, fast, and inexpensive. Only standard laboratory equipment is required for its implementation, making DF suitable for low‐resource and point‐of‐use locations. The method may be used for EV isolation from small biological samples in diagnostic and treatment guidance applications. It can also be scaled up to harvest therapeutic EVs from large volumes of cell culture medium. John Wiley and Sons Inc. 2022-08-09 2022-08 /pmc/articles/PMC9451526/ /pubmed/35942823 http://dx.doi.org/10.1002/jev2.12256 Text en © 2022 The Authors. Journal of Extracellular Vesicles published by Wiley Periodicals, LLC on behalf of the International Society for Extracellular Vesicles. https://creativecommons.org/licenses/by-nc/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc/4.0/ (https://creativecommons.org/licenses/by-nc/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited and is not used for commercial purposes.
spellingShingle Research Articles
Chernyshev, Vasiliy S.
Chuprov‐Netochin, Roman N.
Tsydenzhapova, Ekaterina
Svirshchevskaya, Elena V.
Poltavtseva, Rimma A.
Merdalimova, Anastasiia
Yashchenok, Alexey
Keshelava, Amiran
Sorokin, Konstantin
Keshelava, Varlam
Sukhikh, Gennadiy T.
Gorin, Dmitry
Leonov, Sergey
Skliar, Mikhail
Asymmetric depth‐filtration: A versatile and scalable method for high‐yield isolation of extracellular vesicles with low contamination
title Asymmetric depth‐filtration: A versatile and scalable method for high‐yield isolation of extracellular vesicles with low contamination
title_full Asymmetric depth‐filtration: A versatile and scalable method for high‐yield isolation of extracellular vesicles with low contamination
title_fullStr Asymmetric depth‐filtration: A versatile and scalable method for high‐yield isolation of extracellular vesicles with low contamination
title_full_unstemmed Asymmetric depth‐filtration: A versatile and scalable method for high‐yield isolation of extracellular vesicles with low contamination
title_short Asymmetric depth‐filtration: A versatile and scalable method for high‐yield isolation of extracellular vesicles with low contamination
title_sort asymmetric depth‐filtration: a versatile and scalable method for high‐yield isolation of extracellular vesicles with low contamination
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9451526/
https://www.ncbi.nlm.nih.gov/pubmed/35942823
http://dx.doi.org/10.1002/jev2.12256
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