Oral administration of bovine milk-derived extracellular vesicles induces senescence in the primary tumor but accelerates cancer metastasis

Dietary extracellular vesicles (EVs) could potentially be absorbed by the intestinal tract of the host and exert multiple phenotypic changes. Here, the authors isolate and characterize EVs from raw and commercial bovine milk and show orally administered EVs to have a context specific role in promoti...

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Autores principales: Monisha Samuel, Pamali Fonseka, Rahul Sanwlani, Lahiru Gangoda, Sing Ho Chee, Shivakumar Keerthikumar, Alex Spurling, Sai V. Chitti, Damien Zanker, Ching-Seng Ang, Ishara Atukorala, Taeyoung Kang, Sanjay Shahi, Akbar L. Marzan, Christina Nedeva, Claire Vennin, Morghan C. Lucas, Lesley Cheng, David Herrmann, Mohashin Pathan, David Chisanga, Sean C. Warren, Kening Zhao, Nidhi Abraham, Sushma Anand, Stephanie Boukouris, Christopher G. Adda, Lanzhou Jiang, Tanmay M. Shekhar, Nikola Baschuk, Christine J. Hawkins, Amelia J. Johnston, Jacqueline Monique Orian, Nicholas J. Hoogenraad, Ivan K. Poon, Andrew F. Hill, Markandeya Jois, Paul Timpson, Belinda S. Parker, Suresh Mathivanan
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Publicado: Nature Portfolio 2021
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spelling oai:doaj.org-article:a210d2d7abd146b99318109f85a7d3552021-12-02T18:02:46ZOral administration of bovine milk-derived extracellular vesicles induces senescence in the primary tumor but accelerates cancer metastasis10.1038/s41467-021-24273-82041-1723https://doaj.org/article/a210d2d7abd146b99318109f85a7d3552021-06-01T00:00:00Zhttps://doi.org/10.1038/s41467-021-24273-8https://doaj.org/toc/2041-1723Dietary extracellular vesicles (EVs) could potentially be absorbed by the intestinal tract of the host and exert multiple phenotypic changes. Here, the authors isolate and characterize EVs from raw and commercial bovine milk and show orally administered EVs to have a context specific role in promoting or suppressing primary tumor growth and metastasis in multiple mouse tumor models.Monisha SamuelPamali FonsekaRahul SanwlaniLahiru GangodaSing Ho CheeShivakumar KeerthikumarAlex SpurlingSai V. ChittiDamien ZankerChing-Seng AngIshara AtukoralaTaeyoung KangSanjay ShahiAkbar L. MarzanChristina NedevaClaire VenninMorghan C. LucasLesley ChengDavid HerrmannMohashin PathanDavid ChisangaSean C. WarrenKening ZhaoNidhi AbrahamSushma AnandStephanie BoukourisChristopher G. AddaLanzhou JiangTanmay M. ShekharNikola BaschukChristine J. HawkinsAmelia J. JohnstonJacqueline Monique OrianNicholas J. HoogenraadIvan K. PoonAndrew F. HillMarkandeya JoisPaul TimpsonBelinda S. ParkerSuresh MathivananNature PortfolioarticleScienceQENNature Communications, Vol 12, Iss 1, Pp 1-16 (2021)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Monisha Samuel
Pamali Fonseka
Rahul Sanwlani
Lahiru Gangoda
Sing Ho Chee
Shivakumar Keerthikumar
Alex Spurling
Sai V. Chitti
Damien Zanker
Ching-Seng Ang
Ishara Atukorala
Taeyoung Kang
Sanjay Shahi
Akbar L. Marzan
Christina Nedeva
Claire Vennin
Morghan C. Lucas
Lesley Cheng
David Herrmann
Mohashin Pathan
David Chisanga
Sean C. Warren
Kening Zhao
Nidhi Abraham
Sushma Anand
Stephanie Boukouris
Christopher G. Adda
Lanzhou Jiang
Tanmay M. Shekhar
Nikola Baschuk
Christine J. Hawkins
Amelia J. Johnston
Jacqueline Monique Orian
Nicholas J. Hoogenraad
Ivan K. Poon
Andrew F. Hill
Markandeya Jois
Paul Timpson
Belinda S. Parker
Suresh Mathivanan
Oral administration of bovine milk-derived extracellular vesicles induces senescence in the primary tumor but accelerates cancer metastasis
description Dietary extracellular vesicles (EVs) could potentially be absorbed by the intestinal tract of the host and exert multiple phenotypic changes. Here, the authors isolate and characterize EVs from raw and commercial bovine milk and show orally administered EVs to have a context specific role in promoting or suppressing primary tumor growth and metastasis in multiple mouse tumor models.
format article
author Monisha Samuel
Pamali Fonseka
Rahul Sanwlani
Lahiru Gangoda
Sing Ho Chee
Shivakumar Keerthikumar
Alex Spurling
Sai V. Chitti
Damien Zanker
Ching-Seng Ang
Ishara Atukorala
Taeyoung Kang
Sanjay Shahi
Akbar L. Marzan
Christina Nedeva
Claire Vennin
Morghan C. Lucas
Lesley Cheng
David Herrmann
Mohashin Pathan
David Chisanga
Sean C. Warren
Kening Zhao
Nidhi Abraham
Sushma Anand
Stephanie Boukouris
Christopher G. Adda
Lanzhou Jiang
Tanmay M. Shekhar
Nikola Baschuk
Christine J. Hawkins
Amelia J. Johnston
Jacqueline Monique Orian
Nicholas J. Hoogenraad
Ivan K. Poon
Andrew F. Hill
Markandeya Jois
Paul Timpson
Belinda S. Parker
Suresh Mathivanan
author_facet Monisha Samuel
Pamali Fonseka
Rahul Sanwlani
Lahiru Gangoda
Sing Ho Chee
Shivakumar Keerthikumar
Alex Spurling
Sai V. Chitti
Damien Zanker
Ching-Seng Ang
Ishara Atukorala
Taeyoung Kang
Sanjay Shahi
Akbar L. Marzan
Christina Nedeva
Claire Vennin
Morghan C. Lucas
Lesley Cheng
David Herrmann
Mohashin Pathan
David Chisanga
Sean C. Warren
Kening Zhao
Nidhi Abraham
Sushma Anand
Stephanie Boukouris
Christopher G. Adda
Lanzhou Jiang
Tanmay M. Shekhar
Nikola Baschuk
Christine J. Hawkins
Amelia J. Johnston
Jacqueline Monique Orian
Nicholas J. Hoogenraad
Ivan K. Poon
Andrew F. Hill
Markandeya Jois
Paul Timpson
Belinda S. Parker
Suresh Mathivanan
author_sort Monisha Samuel
title Oral administration of bovine milk-derived extracellular vesicles induces senescence in the primary tumor but accelerates cancer metastasis
title_short Oral administration of bovine milk-derived extracellular vesicles induces senescence in the primary tumor but accelerates cancer metastasis
title_full Oral administration of bovine milk-derived extracellular vesicles induces senescence in the primary tumor but accelerates cancer metastasis
title_fullStr Oral administration of bovine milk-derived extracellular vesicles induces senescence in the primary tumor but accelerates cancer metastasis
title_full_unstemmed Oral administration of bovine milk-derived extracellular vesicles induces senescence in the primary tumor but accelerates cancer metastasis
title_sort oral administration of bovine milk-derived extracellular vesicles induces senescence in the primary tumor but accelerates cancer metastasis
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/a210d2d7abd146b99318109f85a7d355
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