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Estrogen Regulates the Satellite Cell Compartment in Females

Skeletal muscle mass, strength, and regenerative capacity decline with age, with many measures showing a greater deterioration in females around the time estrogen levels decrease at menopause. Here, we show that estrogen deficiency severely compromises the maintenance of muscle stem cells (i.e., sat...

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Autores principales: Collins, Brittany C., Arpke, Robert W., Larson, Alexie A., Baumann, Cory W., Xie, Ning, Cabelka, Christine A., Nash, Nardina L., Juppi, Hanna-Kaarina, Laakkonen, Eija K., Sipilä, Sarianna, Kovanen, Vuokko, Spangenburg, Espen E., Kyba, Michael, Lowe, Dawn A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6655560/
https://www.ncbi.nlm.nih.gov/pubmed/31291574
http://dx.doi.org/10.1016/j.celrep.2019.06.025
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author Collins, Brittany C.
Arpke, Robert W.
Larson, Alexie A.
Baumann, Cory W.
Xie, Ning
Cabelka, Christine A.
Nash, Nardina L.
Juppi, Hanna-Kaarina
Laakkonen, Eija K.
Sipilä, Sarianna
Kovanen, Vuokko
Spangenburg, Espen E.
Kyba, Michael
Lowe, Dawn A.
author_facet Collins, Brittany C.
Arpke, Robert W.
Larson, Alexie A.
Baumann, Cory W.
Xie, Ning
Cabelka, Christine A.
Nash, Nardina L.
Juppi, Hanna-Kaarina
Laakkonen, Eija K.
Sipilä, Sarianna
Kovanen, Vuokko
Spangenburg, Espen E.
Kyba, Michael
Lowe, Dawn A.
author_sort Collins, Brittany C.
collection PubMed
description Skeletal muscle mass, strength, and regenerative capacity decline with age, with many measures showing a greater deterioration in females around the time estrogen levels decrease at menopause. Here, we show that estrogen deficiency severely compromises the maintenance of muscle stem cells (i.e., satellite cells) as well as impairs self-renewal and differentiation into muscle fibers. Mechanistically, by hormone replacement, use of a selective estrogen-receptor modulator (bazedoxifene), and conditional estrogen receptor knockout, we implicate 17β-estradiol and satellite cell expression of estrogen receptor α and show that estrogen signaling through this receptor is necessary to prevent apoptosis of satellite cells. Early data from a biopsy study of women who transitioned from peri- to post-menopause are consistent with the loss of satellite cells coincident with the decline in estradiol in humans. Together, these results demonstrate an important role for estrogen in satellite cell maintenance and muscle regeneration in females.
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spelling pubmed-66555602019-07-24 Estrogen Regulates the Satellite Cell Compartment in Females Collins, Brittany C. Arpke, Robert W. Larson, Alexie A. Baumann, Cory W. Xie, Ning Cabelka, Christine A. Nash, Nardina L. Juppi, Hanna-Kaarina Laakkonen, Eija K. Sipilä, Sarianna Kovanen, Vuokko Spangenburg, Espen E. Kyba, Michael Lowe, Dawn A. Cell Rep Article Skeletal muscle mass, strength, and regenerative capacity decline with age, with many measures showing a greater deterioration in females around the time estrogen levels decrease at menopause. Here, we show that estrogen deficiency severely compromises the maintenance of muscle stem cells (i.e., satellite cells) as well as impairs self-renewal and differentiation into muscle fibers. Mechanistically, by hormone replacement, use of a selective estrogen-receptor modulator (bazedoxifene), and conditional estrogen receptor knockout, we implicate 17β-estradiol and satellite cell expression of estrogen receptor α and show that estrogen signaling through this receptor is necessary to prevent apoptosis of satellite cells. Early data from a biopsy study of women who transitioned from peri- to post-menopause are consistent with the loss of satellite cells coincident with the decline in estradiol in humans. Together, these results demonstrate an important role for estrogen in satellite cell maintenance and muscle regeneration in females. 2019-07-09 /pmc/articles/PMC6655560/ /pubmed/31291574 http://dx.doi.org/10.1016/j.celrep.2019.06.025 Text en This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Article
Collins, Brittany C.
Arpke, Robert W.
Larson, Alexie A.
Baumann, Cory W.
Xie, Ning
Cabelka, Christine A.
Nash, Nardina L.
Juppi, Hanna-Kaarina
Laakkonen, Eija K.
Sipilä, Sarianna
Kovanen, Vuokko
Spangenburg, Espen E.
Kyba, Michael
Lowe, Dawn A.
Estrogen Regulates the Satellite Cell Compartment in Females
title Estrogen Regulates the Satellite Cell Compartment in Females
title_full Estrogen Regulates the Satellite Cell Compartment in Females
title_fullStr Estrogen Regulates the Satellite Cell Compartment in Females
title_full_unstemmed Estrogen Regulates the Satellite Cell Compartment in Females
title_short Estrogen Regulates the Satellite Cell Compartment in Females
title_sort estrogen regulates the satellite cell compartment in females
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6655560/
https://www.ncbi.nlm.nih.gov/pubmed/31291574
http://dx.doi.org/10.1016/j.celrep.2019.06.025
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