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Special considerations for studies of extracellular vesicles from parasitic helminths: A community‐led roadmap to increase rigour and reproducibility

Over the last decade, research interest in defining how extracellular vesicles (EVs) shape cross‐species communication has grown rapidly. Parasitic helminths, worm species found in the phyla Nematoda and Platyhelminthes, are well‐recognised manipulators of host immune function and physiology. Emergi...

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Autores principales: White, Ruby, Sotillo, Javier, Ancarola, María Eugenia, Borup, Anne, Boysen, Anders Toftegaard, Brindley, Paul J., Buzás, Edit I., Cavallero, Serena, Chaiyadet, Sujittra, Chalmers, Iain W., Cucher, Marcela A., Dagenais, Maude, Davis, Chelsea N., Devaney, Eileen, Duque‐Correa, Maria A., Eichenberger, Ramon Marc, Fontenla, Santiago, Gasan, Thomas A., Hokke, Cornelis H., Kosanovic, Maja, Kuipers, Marije E., Laha, Thewarach, Loukas, Alex, Maizels, Rick M., Marcilla, Antonio, Mazanec, Hynek, Morphew, Russell M., Neophytou, Kyriaki, Nguyen, Linh Thuy, Nolte‐‘t Hoen, Esther, Povelones, Michael, Robinson, Mark W., Rojas, Alicia, Schabussova, Irma, Smits, Hermelijn H., Sungpradit, Sivapong, Tritten, Lucienne, Whitehead, Bradley, Zakeri, Amin, Nejsum, Peter, Buck, Amy H., Hoffmann, Karl F.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9816087/
https://www.ncbi.nlm.nih.gov/pubmed/36604533
http://dx.doi.org/10.1002/jev2.12298
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author White, Ruby
Sotillo, Javier
Ancarola, María Eugenia
Borup, Anne
Boysen, Anders Toftegaard
Brindley, Paul J.
Buzás, Edit I.
Cavallero, Serena
Chaiyadet, Sujittra
Chalmers, Iain W.
Cucher, Marcela A.
Dagenais, Maude
Davis, Chelsea N.
Devaney, Eileen
Duque‐Correa, Maria A.
Eichenberger, Ramon Marc
Fontenla, Santiago
Gasan, Thomas A.
Hokke, Cornelis H.
Kosanovic, Maja
Kuipers, Marije E.
Laha, Thewarach
Loukas, Alex
Maizels, Rick M.
Marcilla, Antonio
Mazanec, Hynek
Morphew, Russell M.
Neophytou, Kyriaki
Nguyen, Linh Thuy
Nolte‐‘t Hoen, Esther
Povelones, Michael
Robinson, Mark W.
Rojas, Alicia
Schabussova, Irma
Smits, Hermelijn H.
Sungpradit, Sivapong
Tritten, Lucienne
Whitehead, Bradley
Zakeri, Amin
Nejsum, Peter
Buck, Amy H.
Hoffmann, Karl F.
author_facet White, Ruby
Sotillo, Javier
Ancarola, María Eugenia
Borup, Anne
Boysen, Anders Toftegaard
Brindley, Paul J.
Buzás, Edit I.
Cavallero, Serena
Chaiyadet, Sujittra
Chalmers, Iain W.
Cucher, Marcela A.
Dagenais, Maude
Davis, Chelsea N.
Devaney, Eileen
Duque‐Correa, Maria A.
Eichenberger, Ramon Marc
Fontenla, Santiago
Gasan, Thomas A.
Hokke, Cornelis H.
Kosanovic, Maja
Kuipers, Marije E.
Laha, Thewarach
Loukas, Alex
Maizels, Rick M.
Marcilla, Antonio
Mazanec, Hynek
Morphew, Russell M.
Neophytou, Kyriaki
Nguyen, Linh Thuy
Nolte‐‘t Hoen, Esther
Povelones, Michael
Robinson, Mark W.
Rojas, Alicia
Schabussova, Irma
Smits, Hermelijn H.
Sungpradit, Sivapong
Tritten, Lucienne
Whitehead, Bradley
Zakeri, Amin
Nejsum, Peter
Buck, Amy H.
Hoffmann, Karl F.
author_sort White, Ruby
collection PubMed
description Over the last decade, research interest in defining how extracellular vesicles (EVs) shape cross‐species communication has grown rapidly. Parasitic helminths, worm species found in the phyla Nematoda and Platyhelminthes, are well‐recognised manipulators of host immune function and physiology. Emerging evidence supports a role for helminth‐derived EVs in these processes and highlights EVs as an important participant in cross‐phylum communication. While the mammalian EV field is guided by a community‐agreed framework for studying EVs derived from model organisms or cell systems [e.g., Minimal Information for Studies of Extracellular Vesicles (MISEV)], the helminth community requires a supplementary set of principles due to the additional challenges that accompany working with such divergent organisms. These challenges include, but are not limited to, generating sufficient quantities of EVs for descriptive or functional studies, defining pan‐helminth EV markers, genetically modifying these organisms, and identifying rigorous methodologies for in vitro and in vivo studies. Here, we outline best practices for those investigating the biology of helminth‐derived EVs to complement the MISEV guidelines. We summarise community‐agreed standards for studying EVs derived from this broad set of non‐model organisms, raise awareness of issues associated with helminth EVs and provide future perspectives for how progress in the field will be achieved.
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spelling pubmed-98160872023-01-06 Special considerations for studies of extracellular vesicles from parasitic helminths: A community‐led roadmap to increase rigour and reproducibility White, Ruby Sotillo, Javier Ancarola, María Eugenia Borup, Anne Boysen, Anders Toftegaard Brindley, Paul J. Buzás, Edit I. Cavallero, Serena Chaiyadet, Sujittra Chalmers, Iain W. Cucher, Marcela A. Dagenais, Maude Davis, Chelsea N. Devaney, Eileen Duque‐Correa, Maria A. Eichenberger, Ramon Marc Fontenla, Santiago Gasan, Thomas A. Hokke, Cornelis H. Kosanovic, Maja Kuipers, Marije E. Laha, Thewarach Loukas, Alex Maizels, Rick M. Marcilla, Antonio Mazanec, Hynek Morphew, Russell M. Neophytou, Kyriaki Nguyen, Linh Thuy Nolte‐‘t Hoen, Esther Povelones, Michael Robinson, Mark W. Rojas, Alicia Schabussova, Irma Smits, Hermelijn H. Sungpradit, Sivapong Tritten, Lucienne Whitehead, Bradley Zakeri, Amin Nejsum, Peter Buck, Amy H. Hoffmann, Karl F. J Extracell Vesicles Position Papers Over the last decade, research interest in defining how extracellular vesicles (EVs) shape cross‐species communication has grown rapidly. Parasitic helminths, worm species found in the phyla Nematoda and Platyhelminthes, are well‐recognised manipulators of host immune function and physiology. Emerging evidence supports a role for helminth‐derived EVs in these processes and highlights EVs as an important participant in cross‐phylum communication. While the mammalian EV field is guided by a community‐agreed framework for studying EVs derived from model organisms or cell systems [e.g., Minimal Information for Studies of Extracellular Vesicles (MISEV)], the helminth community requires a supplementary set of principles due to the additional challenges that accompany working with such divergent organisms. These challenges include, but are not limited to, generating sufficient quantities of EVs for descriptive or functional studies, defining pan‐helminth EV markers, genetically modifying these organisms, and identifying rigorous methodologies for in vitro and in vivo studies. Here, we outline best practices for those investigating the biology of helminth‐derived EVs to complement the MISEV guidelines. We summarise community‐agreed standards for studying EVs derived from this broad set of non‐model organisms, raise awareness of issues associated with helminth EVs and provide future perspectives for how progress in the field will be achieved. John Wiley and Sons Inc. 2023-01-05 2023-01 /pmc/articles/PMC9816087/ /pubmed/36604533 http://dx.doi.org/10.1002/jev2.12298 Text en © 2023 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/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Position Papers
White, Ruby
Sotillo, Javier
Ancarola, María Eugenia
Borup, Anne
Boysen, Anders Toftegaard
Brindley, Paul J.
Buzás, Edit I.
Cavallero, Serena
Chaiyadet, Sujittra
Chalmers, Iain W.
Cucher, Marcela A.
Dagenais, Maude
Davis, Chelsea N.
Devaney, Eileen
Duque‐Correa, Maria A.
Eichenberger, Ramon Marc
Fontenla, Santiago
Gasan, Thomas A.
Hokke, Cornelis H.
Kosanovic, Maja
Kuipers, Marije E.
Laha, Thewarach
Loukas, Alex
Maizels, Rick M.
Marcilla, Antonio
Mazanec, Hynek
Morphew, Russell M.
Neophytou, Kyriaki
Nguyen, Linh Thuy
Nolte‐‘t Hoen, Esther
Povelones, Michael
Robinson, Mark W.
Rojas, Alicia
Schabussova, Irma
Smits, Hermelijn H.
Sungpradit, Sivapong
Tritten, Lucienne
Whitehead, Bradley
Zakeri, Amin
Nejsum, Peter
Buck, Amy H.
Hoffmann, Karl F.
Special considerations for studies of extracellular vesicles from parasitic helminths: A community‐led roadmap to increase rigour and reproducibility
title Special considerations for studies of extracellular vesicles from parasitic helminths: A community‐led roadmap to increase rigour and reproducibility
title_full Special considerations for studies of extracellular vesicles from parasitic helminths: A community‐led roadmap to increase rigour and reproducibility
title_fullStr Special considerations for studies of extracellular vesicles from parasitic helminths: A community‐led roadmap to increase rigour and reproducibility
title_full_unstemmed Special considerations for studies of extracellular vesicles from parasitic helminths: A community‐led roadmap to increase rigour and reproducibility
title_short Special considerations for studies of extracellular vesicles from parasitic helminths: A community‐led roadmap to increase rigour and reproducibility
title_sort special considerations for studies of extracellular vesicles from parasitic helminths: a community‐led roadmap to increase rigour and reproducibility
topic Position Papers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9816087/
https://www.ncbi.nlm.nih.gov/pubmed/36604533
http://dx.doi.org/10.1002/jev2.12298
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