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Biological membranes in EV biogenesis, stability, uptake, and cargo transfer: an ISEV position paper arising from the ISEV membranes and EVs workshop

Paracrine and endocrine roles have increasingly been ascribed to extracellular vesicles (EVs) generated by multicellular organisms. Central to the biogenesis, content, and function of EVs are their delimiting lipid bilayer membranes. To evaluate research progress on membranes and EVs, the Internatio...

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Autores principales: Russell, Ashley E., Sneider, Alexandra, Witwer, Kenneth W., Bergese, Paolo, Bhattacharyya, Suvendra N., Cocks, Alexander, Cocucci, Emanuele, Erdbrügger, Uta, Falcon-Perez, Juan M., Freeman, David W., Gallagher, Thomas M., Hu, Shuaishuai, Huang, Yiyao, Jay, Steven M., Kano, Shin-ichi, Lavieu, Gregory, Leszczynska, Aleksandra, Llorente, Alicia M., Lu, Quan, Mahairaki, Vasiliki, Muth, Dillon C., Noren Hooten, Nicole, Ostrowski, Matias, Prada, Ilaria, Sahoo, Susmita, Schøyen, Tine Hiorth, Sheng, Lifu, Tesch, Deanna, Van Niel, Guillaume, Vandenbroucke, Roosmarijn E., Verweij, Frederik J., Villar, Ana V., Wauben, Marca, Wehman, Ann M., Yin, Hang, Carter, David Raul Francisco, Vader, Pieter
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Taylor & Francis 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6853251/
https://www.ncbi.nlm.nih.gov/pubmed/31762963
http://dx.doi.org/10.1080/20013078.2019.1684862
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author Russell, Ashley E.
Sneider, Alexandra
Witwer, Kenneth W.
Bergese, Paolo
Bhattacharyya, Suvendra N.
Cocks, Alexander
Cocucci, Emanuele
Erdbrügger, Uta
Falcon-Perez, Juan M.
Freeman, David W.
Gallagher, Thomas M.
Hu, Shuaishuai
Huang, Yiyao
Jay, Steven M.
Kano, Shin-ichi
Lavieu, Gregory
Leszczynska, Aleksandra
Llorente, Alicia M.
Lu, Quan
Mahairaki, Vasiliki
Muth, Dillon C.
Noren Hooten, Nicole
Ostrowski, Matias
Prada, Ilaria
Sahoo, Susmita
Schøyen, Tine Hiorth
Sheng, Lifu
Tesch, Deanna
Van Niel, Guillaume
Vandenbroucke, Roosmarijn E.
Verweij, Frederik J.
Villar, Ana V.
Wauben, Marca
Wehman, Ann M.
Yin, Hang
Carter, David Raul Francisco
Vader, Pieter
author_facet Russell, Ashley E.
Sneider, Alexandra
Witwer, Kenneth W.
Bergese, Paolo
Bhattacharyya, Suvendra N.
Cocks, Alexander
Cocucci, Emanuele
Erdbrügger, Uta
Falcon-Perez, Juan M.
Freeman, David W.
Gallagher, Thomas M.
Hu, Shuaishuai
Huang, Yiyao
Jay, Steven M.
Kano, Shin-ichi
Lavieu, Gregory
Leszczynska, Aleksandra
Llorente, Alicia M.
Lu, Quan
Mahairaki, Vasiliki
Muth, Dillon C.
Noren Hooten, Nicole
Ostrowski, Matias
Prada, Ilaria
Sahoo, Susmita
Schøyen, Tine Hiorth
Sheng, Lifu
Tesch, Deanna
Van Niel, Guillaume
Vandenbroucke, Roosmarijn E.
Verweij, Frederik J.
Villar, Ana V.
Wauben, Marca
Wehman, Ann M.
Yin, Hang
Carter, David Raul Francisco
Vader, Pieter
author_sort Russell, Ashley E.
collection PubMed
description Paracrine and endocrine roles have increasingly been ascribed to extracellular vesicles (EVs) generated by multicellular organisms. Central to the biogenesis, content, and function of EVs are their delimiting lipid bilayer membranes. To evaluate research progress on membranes and EVs, the International Society for Extracellular Vesicles (ISEV) conducted a workshop in March 2018 in Baltimore, Maryland, USA, bringing together key opinion leaders and hands-on researchers who were selected on the basis of submitted applications. The workshop was accompanied by two scientific surveys and covered four broad topics: EV biogenesis and release; EV uptake and fusion; technologies and strategies used to study EV membranes; and EV transfer and functional assays. In this ISEV position paper, we synthesize the results of the workshop and the related surveys to outline important outstanding questions about EV membranes and describe areas of consensus. The workshop discussions and survey responses reveal that while much progress has been made in the field, there are still several concepts that divide opinion. Good consensus exists in some areas, including particular aspects of EV biogenesis, uptake and downstream signalling. Areas with little to no consensus include EV storage and stability, as well as whether and how EVs fuse with target cells. Further research is needed in these key areas, as a better understanding of membrane biology will contribute substantially towards advancing the field of extracellular vesicles.
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spelling pubmed-68532512019-11-22 Biological membranes in EV biogenesis, stability, uptake, and cargo transfer: an ISEV position paper arising from the ISEV membranes and EVs workshop Russell, Ashley E. Sneider, Alexandra Witwer, Kenneth W. Bergese, Paolo Bhattacharyya, Suvendra N. Cocks, Alexander Cocucci, Emanuele Erdbrügger, Uta Falcon-Perez, Juan M. Freeman, David W. Gallagher, Thomas M. Hu, Shuaishuai Huang, Yiyao Jay, Steven M. Kano, Shin-ichi Lavieu, Gregory Leszczynska, Aleksandra Llorente, Alicia M. Lu, Quan Mahairaki, Vasiliki Muth, Dillon C. Noren Hooten, Nicole Ostrowski, Matias Prada, Ilaria Sahoo, Susmita Schøyen, Tine Hiorth Sheng, Lifu Tesch, Deanna Van Niel, Guillaume Vandenbroucke, Roosmarijn E. Verweij, Frederik J. Villar, Ana V. Wauben, Marca Wehman, Ann M. Yin, Hang Carter, David Raul Francisco Vader, Pieter J Extracell Vesicles Position Paper Paracrine and endocrine roles have increasingly been ascribed to extracellular vesicles (EVs) generated by multicellular organisms. Central to the biogenesis, content, and function of EVs are their delimiting lipid bilayer membranes. To evaluate research progress on membranes and EVs, the International Society for Extracellular Vesicles (ISEV) conducted a workshop in March 2018 in Baltimore, Maryland, USA, bringing together key opinion leaders and hands-on researchers who were selected on the basis of submitted applications. The workshop was accompanied by two scientific surveys and covered four broad topics: EV biogenesis and release; EV uptake and fusion; technologies and strategies used to study EV membranes; and EV transfer and functional assays. In this ISEV position paper, we synthesize the results of the workshop and the related surveys to outline important outstanding questions about EV membranes and describe areas of consensus. The workshop discussions and survey responses reveal that while much progress has been made in the field, there are still several concepts that divide opinion. Good consensus exists in some areas, including particular aspects of EV biogenesis, uptake and downstream signalling. Areas with little to no consensus include EV storage and stability, as well as whether and how EVs fuse with target cells. Further research is needed in these key areas, as a better understanding of membrane biology will contribute substantially towards advancing the field of extracellular vesicles. Taylor & Francis 2019-11-08 /pmc/articles/PMC6853251/ /pubmed/31762963 http://dx.doi.org/10.1080/20013078.2019.1684862 Text en © 2019 The Author(s). Published by Informa UK Limited, trading as Taylor & Francis Group on behalf of The International Society for Extracellular Vesicles. http://creativecommons.org/licenses/by-nc/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution-NonCommercial License (http://creativecommons.org/licenses/by-nc/4.0/), which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Position Paper
Russell, Ashley E.
Sneider, Alexandra
Witwer, Kenneth W.
Bergese, Paolo
Bhattacharyya, Suvendra N.
Cocks, Alexander
Cocucci, Emanuele
Erdbrügger, Uta
Falcon-Perez, Juan M.
Freeman, David W.
Gallagher, Thomas M.
Hu, Shuaishuai
Huang, Yiyao
Jay, Steven M.
Kano, Shin-ichi
Lavieu, Gregory
Leszczynska, Aleksandra
Llorente, Alicia M.
Lu, Quan
Mahairaki, Vasiliki
Muth, Dillon C.
Noren Hooten, Nicole
Ostrowski, Matias
Prada, Ilaria
Sahoo, Susmita
Schøyen, Tine Hiorth
Sheng, Lifu
Tesch, Deanna
Van Niel, Guillaume
Vandenbroucke, Roosmarijn E.
Verweij, Frederik J.
Villar, Ana V.
Wauben, Marca
Wehman, Ann M.
Yin, Hang
Carter, David Raul Francisco
Vader, Pieter
Biological membranes in EV biogenesis, stability, uptake, and cargo transfer: an ISEV position paper arising from the ISEV membranes and EVs workshop
title Biological membranes in EV biogenesis, stability, uptake, and cargo transfer: an ISEV position paper arising from the ISEV membranes and EVs workshop
title_full Biological membranes in EV biogenesis, stability, uptake, and cargo transfer: an ISEV position paper arising from the ISEV membranes and EVs workshop
title_fullStr Biological membranes in EV biogenesis, stability, uptake, and cargo transfer: an ISEV position paper arising from the ISEV membranes and EVs workshop
title_full_unstemmed Biological membranes in EV biogenesis, stability, uptake, and cargo transfer: an ISEV position paper arising from the ISEV membranes and EVs workshop
title_short Biological membranes in EV biogenesis, stability, uptake, and cargo transfer: an ISEV position paper arising from the ISEV membranes and EVs workshop
title_sort biological membranes in ev biogenesis, stability, uptake, and cargo transfer: an isev position paper arising from the isev membranes and evs workshop
topic Position Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6853251/
https://www.ncbi.nlm.nih.gov/pubmed/31762963
http://dx.doi.org/10.1080/20013078.2019.1684862
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