Minimal information for studies of extracellular vesicles (MISEV2023): From basic to advanced approaches

细胞外小泡 胞外囊泡 微泡 小泡 计算机科学 计算生物学 细胞外 化学 细胞生物学 生物 生物化学 小RNA 基因
作者
Joshua A Welsh,Deborah C. I. Goberdhan,Lorraine O’Driscoll,Edit I. Buzás,Cherie Blenkiron,Benedetta Bussolati,H. Cai,Dolores Di Vizio,Tom A. P. Driedonks,Uta Erdbrügger,Per Svenningsen,Qing‐Ling Fu,Andrew F. Hill,Metka Lenassi,Sai Kiang Lim,Mỹ G. Mahoney,Sujata Mohanty,Maléne Møller Jørgensen,Rienk Nieuwland,Takahiro Ochiya,Susmita Sahoo,Ana Cláudia Torrecilhas,Lei Zheng,Andries Zijlstra,Sarah Abuelreich,Reem Bagabas,Paolo Bergese,Esther Bridges,Marco Brucale,Dylan Burger,Randy P. Carney,Emanuele Cocucci,Beth Coyle,Edveena Hanser,Adrian L. Harris,Norman J. Haughey,An Hendrix,Alexander R. Ivanov,Tijana Jovanović‐Talisman,Jana Zárubová,Vroniqa Ku'Ulei‐lyn Faustino,Diego Kyburz,Cecilia Lässer,Kathleen M. Lennon,Sun Young Lee,Adam L. Maddox,Elena S. Martens‐Uzunova,Rachel R. Mizenko,Lauren A. Newman,Andrea Ridolfi,Eva Rohde,Tatu Rojalin,Andrew Rowland,András Saftics,Ursula S. Sandau,Julie A. Saugstad,Julie Constanzo,Simon Swift,Dmitry Ter‐Ovanesyan,Juan Pablo Tosar,Zivile Useckaite,Zivile Useckaite,Zoltán Varga,Edwin van der Pol,Luke van der Koog,Martijn J. C. van Herwijnen,Marca H. M. Wauben,Ann M. Wehman,David W. Greening,Alan Zimmerman,Clotilde Théry,Kenneth W. Witwer,Ramaroson Andriantsitohaina,Fabienne Archer,Nandini Asokan,Anaïs Bécot,Jean‐Marie Bach,Sébastien Banzet,Yonis Bare,Clotilde Billottet,Olivier Blanc‐Brude,Wilfrid Boireau,Amandine Bonifay,Steffi Bösch,Chantal M. Boulanger,Alain Brisson,Olivier Burgy,Sophie Cavallero,Federico Cocozza,Pascal Colosetti,Julie Constanzo,André Cronemberger Andrade,Daniele D’Arrigo,Thibaud Dauphin,Lila Drittanti,Céline Elie-Caille,Annie Frelet-Barrand,Jessica Gobbo,Jacky G. Goetz,Coralie L. Guérin,Vincent Hyenne,Mehdi Kabani,Elena Khomyakova,David Laurin,James E. Rothman,Soazig Le Lay,Quentin Lemaire,Xavier Loyer,Quentin Lubart,Elise Madec,Cécile E. Malnou,Lorena Martín‐Jaular,Benjamin Mary,Violaine Moreau,Mathilde Mosser,Christian Néri,Guillaume van Niel,Danièle Noël,Liliia Paniushkina,Max Piffoux,Graça Raposo,Sophie Rome,Quentin Roux,Julien Saint‐Pol,Jessica Schiavi-Tritz,Aleksei Tikhonov,Émilie Velot,Lucas Walther,Pascale Zimmermann
出处
期刊:Journal of extracellular vesicles [Wiley]
卷期号:13 (2) 被引量:473
标识
DOI:10.1002/jev2.12404
摘要

Abstract Extracellular vesicles (EVs), through their complex cargo, can reflect the state of their cell of origin and change the functions and phenotypes of other cells. These features indicate strong biomarker and therapeutic potential and have generated broad interest, as evidenced by the steady year‐on‐year increase in the numbers of scientific publications about EVs. Important advances have been made in EV metrology and in understanding and applying EV biology. However, hurdles remain to realising the potential of EVs in domains ranging from basic biology to clinical applications due to challenges in EV nomenclature, separation from non‐vesicular extracellular particles, characterisation and functional studies. To address the challenges and opportunities in this rapidly evolving field, the International Society for Extracellular Vesicles (ISEV) updates its ‘Minimal Information for Studies of Extracellular Vesicles’, which was first published in 2014 and then in 2018 as MISEV2014 and MISEV2018, respectively. The goal of the current document, MISEV2023, is to provide researchers with an updated snapshot of available approaches and their advantages and limitations for production, separation and characterisation of EVs from multiple sources, including cell culture, body fluids and solid tissues. In addition to presenting the latest state of the art in basic principles of EV research, this document also covers advanced techniques and approaches that are currently expanding the boundaries of the field. MISEV2023 also includes new sections on EV release and uptake and a brief discussion of in vivo approaches to study EVs. Compiling feedback from ISEV expert task forces and more than 1000 researchers, this document conveys the current state of EV research to facilitate robust scientific discoveries and move the field forward even more rapidly.
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