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MIFlowCyt-EV: a framework for standardized reporting of extracellular vesicle flow cytometry experiments

Extracellular vesicles (EVs) are small, heterogeneous and difficult to measure. Flow cytometry (FC) is a key technology for the measurement of individual particles, but its application to the analysis of EVs and other submicron particles has presented many challenges and has produced a number of con...

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Autores principales: Welsh, Joshua A., Van Der Pol, Edwin, Arkesteijn, Ger J.A., Bremer, Michel, Brisson, Alain, Coumans, Frank, Dignat-George, Françoise, Duggan, Erika, Ghiran, Ionita, Giebel, Bernd, Görgens, André, Hendrix, An, Lacroix, Romaric, Lannigan, Joanne, Libregts, Sten F.W.M., Lozano-Andrés, Estefanía, Morales-Kastresana, Aizea, Robert, Stephane, De Rond, Leonie, Tertel, Tobias, Tigges, John, De Wever, Olivier, Yan, Xiaomei, Nieuwland, Rienk, Wauben, Marca H.M., Nolan, John P., Jones, Jennifer C.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Taylor & Francis 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7034442/
https://www.ncbi.nlm.nih.gov/pubmed/32128070
http://dx.doi.org/10.1080/20013078.2020.1713526
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author Welsh, Joshua A.
Van Der Pol, Edwin
Arkesteijn, Ger J.A.
Bremer, Michel
Brisson, Alain
Coumans, Frank
Dignat-George, Françoise
Duggan, Erika
Ghiran, Ionita
Giebel, Bernd
Görgens, André
Hendrix, An
Lacroix, Romaric
Lannigan, Joanne
Libregts, Sten F.W.M.
Lozano-Andrés, Estefanía
Morales-Kastresana, Aizea
Robert, Stephane
De Rond, Leonie
Tertel, Tobias
Tigges, John
De Wever, Olivier
Yan, Xiaomei
Nieuwland, Rienk
Wauben, Marca H.M.
Nolan, John P.
Jones, Jennifer C.
author_facet Welsh, Joshua A.
Van Der Pol, Edwin
Arkesteijn, Ger J.A.
Bremer, Michel
Brisson, Alain
Coumans, Frank
Dignat-George, Françoise
Duggan, Erika
Ghiran, Ionita
Giebel, Bernd
Görgens, André
Hendrix, An
Lacroix, Romaric
Lannigan, Joanne
Libregts, Sten F.W.M.
Lozano-Andrés, Estefanía
Morales-Kastresana, Aizea
Robert, Stephane
De Rond, Leonie
Tertel, Tobias
Tigges, John
De Wever, Olivier
Yan, Xiaomei
Nieuwland, Rienk
Wauben, Marca H.M.
Nolan, John P.
Jones, Jennifer C.
author_sort Welsh, Joshua A.
collection PubMed
description Extracellular vesicles (EVs) are small, heterogeneous and difficult to measure. Flow cytometry (FC) is a key technology for the measurement of individual particles, but its application to the analysis of EVs and other submicron particles has presented many challenges and has produced a number of controversial results, in part due to limitations of instrument detection, lack of robust methods and ambiguities in how data should be interpreted. These complications are exacerbated by the field’s lack of a robust reporting framework, and many EV-FC manuscripts include incomplete descriptions of methods and results, contain artefacts stemming from an insufficient instrument sensitivity and inappropriate experimental design and lack appropriate calibration and standardization. To address these issues, a working group (WG) of EV-FC researchers from ISEV, ISAC and ISTH, worked together as an EV-FC WG and developed a consensus framework for the minimum information that should be provided regarding EV-FC. This framework incorporates the existing Minimum Information for Studies of EVs (MISEV) guidelines and Minimum Information about a FC experiment (MIFlowCyt) standard in an EV-FC-specific reporting framework (MIFlowCyt-EV) that supports reporting of critical information related to sample staining, EV detection and measurement and experimental design in manuscripts that report EV-FC data. MIFlowCyt-EV provides a structure for sharing EV-FC results, but it does not prescribe specific protocols, as there will continue to be rapid evolution of instruments and methods for the foreseeable future. MIFlowCyt-EV accommodates this evolution, while providing information needed to evaluate and compare different approaches. Because MIFlowCyt-EV will ensure consistency in the manner of reporting of EV-FC studies, over time we expect that adoption of MIFlowCyt-EV as a standard for reporting EV- FC studies will improve the ability to quantitatively compare results from different laboratories and to support the development of new instruments and assays for improved measurement of EVs.
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spelling pubmed-70344422020-03-03 MIFlowCyt-EV: a framework for standardized reporting of extracellular vesicle flow cytometry experiments Welsh, Joshua A. Van Der Pol, Edwin Arkesteijn, Ger J.A. Bremer, Michel Brisson, Alain Coumans, Frank Dignat-George, Françoise Duggan, Erika Ghiran, Ionita Giebel, Bernd Görgens, André Hendrix, An Lacroix, Romaric Lannigan, Joanne Libregts, Sten F.W.M. Lozano-Andrés, Estefanía Morales-Kastresana, Aizea Robert, Stephane De Rond, Leonie Tertel, Tobias Tigges, John De Wever, Olivier Yan, Xiaomei Nieuwland, Rienk Wauben, Marca H.M. Nolan, John P. Jones, Jennifer C. J Extracell Vesicles Article Extracellular vesicles (EVs) are small, heterogeneous and difficult to measure. Flow cytometry (FC) is a key technology for the measurement of individual particles, but its application to the analysis of EVs and other submicron particles has presented many challenges and has produced a number of controversial results, in part due to limitations of instrument detection, lack of robust methods and ambiguities in how data should be interpreted. These complications are exacerbated by the field’s lack of a robust reporting framework, and many EV-FC manuscripts include incomplete descriptions of methods and results, contain artefacts stemming from an insufficient instrument sensitivity and inappropriate experimental design and lack appropriate calibration and standardization. To address these issues, a working group (WG) of EV-FC researchers from ISEV, ISAC and ISTH, worked together as an EV-FC WG and developed a consensus framework for the minimum information that should be provided regarding EV-FC. This framework incorporates the existing Minimum Information for Studies of EVs (MISEV) guidelines and Minimum Information about a FC experiment (MIFlowCyt) standard in an EV-FC-specific reporting framework (MIFlowCyt-EV) that supports reporting of critical information related to sample staining, EV detection and measurement and experimental design in manuscripts that report EV-FC data. MIFlowCyt-EV provides a structure for sharing EV-FC results, but it does not prescribe specific protocols, as there will continue to be rapid evolution of instruments and methods for the foreseeable future. MIFlowCyt-EV accommodates this evolution, while providing information needed to evaluate and compare different approaches. Because MIFlowCyt-EV will ensure consistency in the manner of reporting of EV-FC studies, over time we expect that adoption of MIFlowCyt-EV as a standard for reporting EV- FC studies will improve the ability to quantitatively compare results from different laboratories and to support the development of new instruments and assays for improved measurement of EVs. Taylor & Francis 2020-02-03 /pmc/articles/PMC7034442/ /pubmed/32128070 http://dx.doi.org/10.1080/20013078.2020.1713526 Text en © 2020 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/ 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 Article
Welsh, Joshua A.
Van Der Pol, Edwin
Arkesteijn, Ger J.A.
Bremer, Michel
Brisson, Alain
Coumans, Frank
Dignat-George, Françoise
Duggan, Erika
Ghiran, Ionita
Giebel, Bernd
Görgens, André
Hendrix, An
Lacroix, Romaric
Lannigan, Joanne
Libregts, Sten F.W.M.
Lozano-Andrés, Estefanía
Morales-Kastresana, Aizea
Robert, Stephane
De Rond, Leonie
Tertel, Tobias
Tigges, John
De Wever, Olivier
Yan, Xiaomei
Nieuwland, Rienk
Wauben, Marca H.M.
Nolan, John P.
Jones, Jennifer C.
MIFlowCyt-EV: a framework for standardized reporting of extracellular vesicle flow cytometry experiments
title MIFlowCyt-EV: a framework for standardized reporting of extracellular vesicle flow cytometry experiments
title_full MIFlowCyt-EV: a framework for standardized reporting of extracellular vesicle flow cytometry experiments
title_fullStr MIFlowCyt-EV: a framework for standardized reporting of extracellular vesicle flow cytometry experiments
title_full_unstemmed MIFlowCyt-EV: a framework for standardized reporting of extracellular vesicle flow cytometry experiments
title_short MIFlowCyt-EV: a framework for standardized reporting of extracellular vesicle flow cytometry experiments
title_sort miflowcyt-ev: a framework for standardized reporting of extracellular vesicle flow cytometry experiments
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7034442/
https://www.ncbi.nlm.nih.gov/pubmed/32128070
http://dx.doi.org/10.1080/20013078.2020.1713526
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