CRISPR-enhanced human adipocyte browning as cell therapy for metabolic disease

Worldwide pandemics of obesity and diabetes prompt an urgent need for new approaches to their prevention and cure. Here the authors present a CRISPR-based strategy that enhances the therapeutic potential of human adipocytes when implanted in obese mice.

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Autores principales: Emmanouela Tsagkaraki, Sarah M. Nicoloro, Tiffany DeSouza, Javier Solivan-Rivera, Anand Desai, Lawrence M. Lifshitz, Yuefei Shen, Mark Kelly, Adilson Guilherme, Felipe Henriques, Nadia Amrani, Raed Ibraheim, Tomas C. Rodriguez, Kevin Luk, Stacy Maitland, Randall H. Friedline, Lauren Tauer, Xiaodi Hu, Jason K. Kim, Scot A. Wolfe, Erik J. Sontheimer, Silvia Corvera, Michael P. Czech
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Lenguaje:EN
Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/9db95209ec9c4296b7f96552abbf9db0
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spelling oai:doaj.org-article:9db95209ec9c4296b7f96552abbf9db02021-11-28T12:32:12ZCRISPR-enhanced human adipocyte browning as cell therapy for metabolic disease10.1038/s41467-021-27190-y2041-1723https://doaj.org/article/9db95209ec9c4296b7f96552abbf9db02021-11-01T00:00:00Zhttps://doi.org/10.1038/s41467-021-27190-yhttps://doaj.org/toc/2041-1723Worldwide pandemics of obesity and diabetes prompt an urgent need for new approaches to their prevention and cure. Here the authors present a CRISPR-based strategy that enhances the therapeutic potential of human adipocytes when implanted in obese mice.Emmanouela TsagkarakiSarah M. NicoloroTiffany DeSouzaJavier Solivan-RiveraAnand DesaiLawrence M. LifshitzYuefei ShenMark KellyAdilson GuilhermeFelipe HenriquesNadia AmraniRaed IbraheimTomas C. RodriguezKevin LukStacy MaitlandRandall H. FriedlineLauren TauerXiaodi HuJason K. KimScot A. WolfeErik J. SontheimerSilvia CorveraMichael P. CzechNature PortfolioarticleScienceQENNature Communications, Vol 12, Iss 1, Pp 1-17 (2021)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Emmanouela Tsagkaraki
Sarah M. Nicoloro
Tiffany DeSouza
Javier Solivan-Rivera
Anand Desai
Lawrence M. Lifshitz
Yuefei Shen
Mark Kelly
Adilson Guilherme
Felipe Henriques
Nadia Amrani
Raed Ibraheim
Tomas C. Rodriguez
Kevin Luk
Stacy Maitland
Randall H. Friedline
Lauren Tauer
Xiaodi Hu
Jason K. Kim
Scot A. Wolfe
Erik J. Sontheimer
Silvia Corvera
Michael P. Czech
CRISPR-enhanced human adipocyte browning as cell therapy for metabolic disease
description Worldwide pandemics of obesity and diabetes prompt an urgent need for new approaches to their prevention and cure. Here the authors present a CRISPR-based strategy that enhances the therapeutic potential of human adipocytes when implanted in obese mice.
format article
author Emmanouela Tsagkaraki
Sarah M. Nicoloro
Tiffany DeSouza
Javier Solivan-Rivera
Anand Desai
Lawrence M. Lifshitz
Yuefei Shen
Mark Kelly
Adilson Guilherme
Felipe Henriques
Nadia Amrani
Raed Ibraheim
Tomas C. Rodriguez
Kevin Luk
Stacy Maitland
Randall H. Friedline
Lauren Tauer
Xiaodi Hu
Jason K. Kim
Scot A. Wolfe
Erik J. Sontheimer
Silvia Corvera
Michael P. Czech
author_facet Emmanouela Tsagkaraki
Sarah M. Nicoloro
Tiffany DeSouza
Javier Solivan-Rivera
Anand Desai
Lawrence M. Lifshitz
Yuefei Shen
Mark Kelly
Adilson Guilherme
Felipe Henriques
Nadia Amrani
Raed Ibraheim
Tomas C. Rodriguez
Kevin Luk
Stacy Maitland
Randall H. Friedline
Lauren Tauer
Xiaodi Hu
Jason K. Kim
Scot A. Wolfe
Erik J. Sontheimer
Silvia Corvera
Michael P. Czech
author_sort Emmanouela Tsagkaraki
title CRISPR-enhanced human adipocyte browning as cell therapy for metabolic disease
title_short CRISPR-enhanced human adipocyte browning as cell therapy for metabolic disease
title_full CRISPR-enhanced human adipocyte browning as cell therapy for metabolic disease
title_fullStr CRISPR-enhanced human adipocyte browning as cell therapy for metabolic disease
title_full_unstemmed CRISPR-enhanced human adipocyte browning as cell therapy for metabolic disease
title_sort crispr-enhanced human adipocyte browning as cell therapy for metabolic disease
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/9db95209ec9c4296b7f96552abbf9db0
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