Cargando…

In Vitro-Generated Hypertrophic-Like Adipocytes Displaying PPARG Isoforms Unbalance Recapitulate Adipocyte Dysfunctions In Vivo

Reduced neo-adipogenesis and dysfunctional lipid-overloaded adipocytes are hallmarks of hypertrophic obesity linked to insulin resistance. Identifying molecular features of hypertrophic adipocytes requires appropriate in vitro models. We describe the generation of a model of human hypertrophic-like...

Descripción completa

Detalles Bibliográficos
Autores principales: Aprile, Marianna, Cataldi, Simona, Perfetto, Caterina, Ambrosio, Maria Rosaria, Italiani, Paola, Tatè, Rosarita, Blüher, Matthias, Ciccodicola, Alfredo, Costa, Valerio
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7290899/
https://www.ncbi.nlm.nih.gov/pubmed/32455814
http://dx.doi.org/10.3390/cells9051284
_version_ 1783545784313053184
author Aprile, Marianna
Cataldi, Simona
Perfetto, Caterina
Ambrosio, Maria Rosaria
Italiani, Paola
Tatè, Rosarita
Blüher, Matthias
Ciccodicola, Alfredo
Costa, Valerio
author_facet Aprile, Marianna
Cataldi, Simona
Perfetto, Caterina
Ambrosio, Maria Rosaria
Italiani, Paola
Tatè, Rosarita
Blüher, Matthias
Ciccodicola, Alfredo
Costa, Valerio
author_sort Aprile, Marianna
collection PubMed
description Reduced neo-adipogenesis and dysfunctional lipid-overloaded adipocytes are hallmarks of hypertrophic obesity linked to insulin resistance. Identifying molecular features of hypertrophic adipocytes requires appropriate in vitro models. We describe the generation of a model of human hypertrophic-like adipocytes directly comparable to normal adipose cells and the pathologic evolution toward hypertrophic state. We generate in vitro hypertrophic cells from mature adipocytes, differentiated from human mesenchymal stem cells. Combining optical, confocal, and transmission electron microscopy with mRNA/protein quantification, we characterize this cellular model, confirming specific alterations also in subcutaneous adipose tissue. Specifically, we report the generation and morphological/molecular characterization of human normal and hypertrophic-like adipocytes. The latter displays altered morphology and unbalance between canonical and dominant negative (PPARGΔ5) transcripts of PPARG, paralleled by reduced expression of PPARγ targets, including GLUT4. Furthermore, the unbalance of PPARγ isoforms associates with GLUT4 down-regulation in subcutaneous adipose tissue of individuals with overweight/obesity or impaired glucose tolerance/type 2 diabetes, but not with normal weight or glucose tolerance. In conclusion, the hypertrophic-like cells described herein are an innovative tool for studying molecular dysfunctions in hypertrophic obesity and the unbalance between PPARγ isoforms associates with down-regulation of GLUT4 and other PPARγ targets, representing a new hallmark of hypertrophic adipocytes.
format Online
Article
Text
id pubmed-7290899
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-72908992020-06-17 In Vitro-Generated Hypertrophic-Like Adipocytes Displaying PPARG Isoforms Unbalance Recapitulate Adipocyte Dysfunctions In Vivo Aprile, Marianna Cataldi, Simona Perfetto, Caterina Ambrosio, Maria Rosaria Italiani, Paola Tatè, Rosarita Blüher, Matthias Ciccodicola, Alfredo Costa, Valerio Cells Article Reduced neo-adipogenesis and dysfunctional lipid-overloaded adipocytes are hallmarks of hypertrophic obesity linked to insulin resistance. Identifying molecular features of hypertrophic adipocytes requires appropriate in vitro models. We describe the generation of a model of human hypertrophic-like adipocytes directly comparable to normal adipose cells and the pathologic evolution toward hypertrophic state. We generate in vitro hypertrophic cells from mature adipocytes, differentiated from human mesenchymal stem cells. Combining optical, confocal, and transmission electron microscopy with mRNA/protein quantification, we characterize this cellular model, confirming specific alterations also in subcutaneous adipose tissue. Specifically, we report the generation and morphological/molecular characterization of human normal and hypertrophic-like adipocytes. The latter displays altered morphology and unbalance between canonical and dominant negative (PPARGΔ5) transcripts of PPARG, paralleled by reduced expression of PPARγ targets, including GLUT4. Furthermore, the unbalance of PPARγ isoforms associates with GLUT4 down-regulation in subcutaneous adipose tissue of individuals with overweight/obesity or impaired glucose tolerance/type 2 diabetes, but not with normal weight or glucose tolerance. In conclusion, the hypertrophic-like cells described herein are an innovative tool for studying molecular dysfunctions in hypertrophic obesity and the unbalance between PPARγ isoforms associates with down-regulation of GLUT4 and other PPARγ targets, representing a new hallmark of hypertrophic adipocytes. MDPI 2020-05-21 /pmc/articles/PMC7290899/ /pubmed/32455814 http://dx.doi.org/10.3390/cells9051284 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Aprile, Marianna
Cataldi, Simona
Perfetto, Caterina
Ambrosio, Maria Rosaria
Italiani, Paola
Tatè, Rosarita
Blüher, Matthias
Ciccodicola, Alfredo
Costa, Valerio
In Vitro-Generated Hypertrophic-Like Adipocytes Displaying PPARG Isoforms Unbalance Recapitulate Adipocyte Dysfunctions In Vivo
title In Vitro-Generated Hypertrophic-Like Adipocytes Displaying PPARG Isoforms Unbalance Recapitulate Adipocyte Dysfunctions In Vivo
title_full In Vitro-Generated Hypertrophic-Like Adipocytes Displaying PPARG Isoforms Unbalance Recapitulate Adipocyte Dysfunctions In Vivo
title_fullStr In Vitro-Generated Hypertrophic-Like Adipocytes Displaying PPARG Isoforms Unbalance Recapitulate Adipocyte Dysfunctions In Vivo
title_full_unstemmed In Vitro-Generated Hypertrophic-Like Adipocytes Displaying PPARG Isoforms Unbalance Recapitulate Adipocyte Dysfunctions In Vivo
title_short In Vitro-Generated Hypertrophic-Like Adipocytes Displaying PPARG Isoforms Unbalance Recapitulate Adipocyte Dysfunctions In Vivo
title_sort in vitro-generated hypertrophic-like adipocytes displaying pparg isoforms unbalance recapitulate adipocyte dysfunctions in vivo
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7290899/
https://www.ncbi.nlm.nih.gov/pubmed/32455814
http://dx.doi.org/10.3390/cells9051284
work_keys_str_mv AT aprilemarianna invitrogeneratedhypertrophiclikeadipocytesdisplayingppargisoformsunbalancerecapitulateadipocytedysfunctionsinvivo
AT cataldisimona invitrogeneratedhypertrophiclikeadipocytesdisplayingppargisoformsunbalancerecapitulateadipocytedysfunctionsinvivo
AT perfettocaterina invitrogeneratedhypertrophiclikeadipocytesdisplayingppargisoformsunbalancerecapitulateadipocytedysfunctionsinvivo
AT ambrosiomariarosaria invitrogeneratedhypertrophiclikeadipocytesdisplayingppargisoformsunbalancerecapitulateadipocytedysfunctionsinvivo
AT italianipaola invitrogeneratedhypertrophiclikeadipocytesdisplayingppargisoformsunbalancerecapitulateadipocytedysfunctionsinvivo
AT taterosarita invitrogeneratedhypertrophiclikeadipocytesdisplayingppargisoformsunbalancerecapitulateadipocytedysfunctionsinvivo
AT bluhermatthias invitrogeneratedhypertrophiclikeadipocytesdisplayingppargisoformsunbalancerecapitulateadipocytedysfunctionsinvivo
AT ciccodicolaalfredo invitrogeneratedhypertrophiclikeadipocytesdisplayingppargisoformsunbalancerecapitulateadipocytedysfunctionsinvivo
AT costavalerio invitrogeneratedhypertrophiclikeadipocytesdisplayingppargisoformsunbalancerecapitulateadipocytedysfunctionsinvivo