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Role of small proliferative adipocytes: possible beige cell progenitors

Despite extensive investigation, the mechanisms underlying adipogenesis are not fully understood. We previously identified proliferative cells in adipose tissue expressing adipocyte-specific genes, which were named small proliferative adipocytes (SPA). In this study, we investigated the characterist...

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Autores principales: Taguchi, Koichiro, Kajita, Kazuo, Kitada, Yoshihiko, Fuwa, Masayuki, Asano, Motochika, Ikeda, Takahide, Kajita, Toshiko, Ishizaka, Tatsuo, Kojima, Itaru, Morita, Hiroyuki
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Bioscientifica Ltd 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7040459/
https://www.ncbi.nlm.nih.gov/pubmed/31990671
http://dx.doi.org/10.1530/JOE-19-0503
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author Taguchi, Koichiro
Kajita, Kazuo
Kitada, Yoshihiko
Fuwa, Masayuki
Asano, Motochika
Ikeda, Takahide
Kajita, Toshiko
Ishizaka, Tatsuo
Kojima, Itaru
Morita, Hiroyuki
author_facet Taguchi, Koichiro
Kajita, Kazuo
Kitada, Yoshihiko
Fuwa, Masayuki
Asano, Motochika
Ikeda, Takahide
Kajita, Toshiko
Ishizaka, Tatsuo
Kojima, Itaru
Morita, Hiroyuki
author_sort Taguchi, Koichiro
collection PubMed
description Despite extensive investigation, the mechanisms underlying adipogenesis are not fully understood. We previously identified proliferative cells in adipose tissue expressing adipocyte-specific genes, which were named small proliferative adipocytes (SPA). In this study, we investigated the characteristics and roles of SPA in adipose tissue. Epididymal and inguinal fat was digested by collagenase, and then SPA were separated by centrifugation from stromal vascular cells (SVC) and mature white adipocytes. To clarify the feature of gene expression in SPA, microarray and real-time PCR were performed. The expression of adipocyte-specific genes and several neuronal genes was increased in the order of SVC < SPA < mature white adipocytes. In addition, proliferin was detected only in SPA. SPA differentiated more effectively into lipid-laden cells than SVC. Moreover, differentiated SPA expressed uncoupling protein 1 and mitochondria-related genes more than differentiated SVC. Treatment of SPA with pioglitazone and CL316243, a specific β3-adrenergic receptor agonist, differentiated SPA into beige-like cells. Therefore, SPA are able to differentiate into beige cells. SPA isolated from epididymal fat (epididymal SPA), but not SPA from inguinal fat (inguinal SPA), expressed a marker of visceral adipocyte precursor, WT1. However, no significant differences were detected in the expression levels of adipocyte-specific genes or neuronal genes between epididymal and inguinal SPA. The ability to differentiate into lipid-laden cells in epididymal SPA was a little superior to that in inguinal SPA, whereas the ability to differentiate into beige-like cells was greater in inguinal SPA than epididymal SPA. In conclusion, SPA may be progenitors of beige cells.
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spelling pubmed-70404592020-02-27 Role of small proliferative adipocytes: possible beige cell progenitors Taguchi, Koichiro Kajita, Kazuo Kitada, Yoshihiko Fuwa, Masayuki Asano, Motochika Ikeda, Takahide Kajita, Toshiko Ishizaka, Tatsuo Kojima, Itaru Morita, Hiroyuki J Endocrinol Research Despite extensive investigation, the mechanisms underlying adipogenesis are not fully understood. We previously identified proliferative cells in adipose tissue expressing adipocyte-specific genes, which were named small proliferative adipocytes (SPA). In this study, we investigated the characteristics and roles of SPA in adipose tissue. Epididymal and inguinal fat was digested by collagenase, and then SPA were separated by centrifugation from stromal vascular cells (SVC) and mature white adipocytes. To clarify the feature of gene expression in SPA, microarray and real-time PCR were performed. The expression of adipocyte-specific genes and several neuronal genes was increased in the order of SVC < SPA < mature white adipocytes. In addition, proliferin was detected only in SPA. SPA differentiated more effectively into lipid-laden cells than SVC. Moreover, differentiated SPA expressed uncoupling protein 1 and mitochondria-related genes more than differentiated SVC. Treatment of SPA with pioglitazone and CL316243, a specific β3-adrenergic receptor agonist, differentiated SPA into beige-like cells. Therefore, SPA are able to differentiate into beige cells. SPA isolated from epididymal fat (epididymal SPA), but not SPA from inguinal fat (inguinal SPA), expressed a marker of visceral adipocyte precursor, WT1. However, no significant differences were detected in the expression levels of adipocyte-specific genes or neuronal genes between epididymal and inguinal SPA. The ability to differentiate into lipid-laden cells in epididymal SPA was a little superior to that in inguinal SPA, whereas the ability to differentiate into beige-like cells was greater in inguinal SPA than epididymal SPA. In conclusion, SPA may be progenitors of beige cells. Bioscientifica Ltd 2020-01-28 /pmc/articles/PMC7040459/ /pubmed/31990671 http://dx.doi.org/10.1530/JOE-19-0503 Text en © 2020 The authors http://creativecommons.org/licenses/by/4.0/ This work is licensed under a Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/) .
spellingShingle Research
Taguchi, Koichiro
Kajita, Kazuo
Kitada, Yoshihiko
Fuwa, Masayuki
Asano, Motochika
Ikeda, Takahide
Kajita, Toshiko
Ishizaka, Tatsuo
Kojima, Itaru
Morita, Hiroyuki
Role of small proliferative adipocytes: possible beige cell progenitors
title Role of small proliferative adipocytes: possible beige cell progenitors
title_full Role of small proliferative adipocytes: possible beige cell progenitors
title_fullStr Role of small proliferative adipocytes: possible beige cell progenitors
title_full_unstemmed Role of small proliferative adipocytes: possible beige cell progenitors
title_short Role of small proliferative adipocytes: possible beige cell progenitors
title_sort role of small proliferative adipocytes: possible beige cell progenitors
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7040459/
https://www.ncbi.nlm.nih.gov/pubmed/31990671
http://dx.doi.org/10.1530/JOE-19-0503
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