Human ADMC-Derived Adipocyte Thermogenic Capacity Is Regulated by IL-4 Receptor

Type two innate immune system is anti-inflammatory and may play an important role as the means whereby “browning” is induced in subcutaneous adipocytes. It was shown that IL-4 may influence the fate of adipose cell precursors by promoting differentiation towards more thermogenic adipocytes in mice....

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Main Authors: Fernando Lizcano, Diana Vargas, Ángela Gómez, Astrid Torrado
Format: Article
Language:English
Published: Hindawi Limited 2017-01-01
Series:Stem Cells International
Online Access:http://dx.doi.org/10.1155/2017/2767916
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spelling doaj-44eb6aac4a6c412594f0a66c83d148682020-11-24T22:25:51ZengHindawi LimitedStem Cells International1687-966X1687-96782017-01-01201710.1155/2017/27679162767916Human ADMC-Derived Adipocyte Thermogenic Capacity Is Regulated by IL-4 ReceptorFernando Lizcano0Diana Vargas1Ángela Gómez2Astrid Torrado3Center of Biomedical Investigation from University of La Sabana (CIBUS), Chía, Cundinamarca, ColombiaCenter of Biomedical Investigation from University of La Sabana (CIBUS), Chía, Cundinamarca, ColombiaCenter of Biomedical Investigation from University of La Sabana (CIBUS), Chía, Cundinamarca, ColombiaCenter of Biomedical Investigation from University of La Sabana (CIBUS), Chía, Cundinamarca, ColombiaType two innate immune system is anti-inflammatory and may play an important role as the means whereby “browning” is induced in subcutaneous adipocytes. It was shown that IL-4 may influence the fate of adipose cell precursors by promoting differentiation towards more thermogenic adipocytes in mice. Here, we investigated the influence of IL-4 and IL-4 receptor, a type two immune cytokine pathway, on the metabolic activity and thermogenic potential of human adipocytes differentiated from adipose-derived mesenchymal stem cells (ADMSCs) obtained from subcutaneous samples of healthy women undergoing abdominoplasty. Western blot analysis, qPCR, and biochemical analyses were performed 10 days after ADMSC differentiation into mature adipocytes was induced. IL-4 receptor was expressed in both precursor and differentiated adipocytes, and IL-4 treatment increased phosphorylation Y641 of signal transducer and activator of transcription 6 (STAT6) in both cell types. IL-4 treatment also increased expression of thermogenic proteins PGC-1α, UCP-1, and CITED1. In addition, IL-4 increased the secretion of adiponectin, leptin, and FGF21 and promoted lipolysis in differentiated adipocytes. In conclusion, IL-4 may directly modulate differentiation of human adipocytes towards a beige phenotype acting through IL-4 receptors on both adipose precursors and differentiated human adipocytes, metabolic effect that must be considered in some antiallergic drugs.http://dx.doi.org/10.1155/2017/2767916
collection DOAJ
language English
format Article
sources DOAJ
author Fernando Lizcano
Diana Vargas
Ángela Gómez
Astrid Torrado
spellingShingle Fernando Lizcano
Diana Vargas
Ángela Gómez
Astrid Torrado
Human ADMC-Derived Adipocyte Thermogenic Capacity Is Regulated by IL-4 Receptor
Stem Cells International
author_facet Fernando Lizcano
Diana Vargas
Ángela Gómez
Astrid Torrado
author_sort Fernando Lizcano
title Human ADMC-Derived Adipocyte Thermogenic Capacity Is Regulated by IL-4 Receptor
title_short Human ADMC-Derived Adipocyte Thermogenic Capacity Is Regulated by IL-4 Receptor
title_full Human ADMC-Derived Adipocyte Thermogenic Capacity Is Regulated by IL-4 Receptor
title_fullStr Human ADMC-Derived Adipocyte Thermogenic Capacity Is Regulated by IL-4 Receptor
title_full_unstemmed Human ADMC-Derived Adipocyte Thermogenic Capacity Is Regulated by IL-4 Receptor
title_sort human admc-derived adipocyte thermogenic capacity is regulated by il-4 receptor
publisher Hindawi Limited
series Stem Cells International
issn 1687-966X
1687-9678
publishDate 2017-01-01
description Type two innate immune system is anti-inflammatory and may play an important role as the means whereby “browning” is induced in subcutaneous adipocytes. It was shown that IL-4 may influence the fate of adipose cell precursors by promoting differentiation towards more thermogenic adipocytes in mice. Here, we investigated the influence of IL-4 and IL-4 receptor, a type two immune cytokine pathway, on the metabolic activity and thermogenic potential of human adipocytes differentiated from adipose-derived mesenchymal stem cells (ADMSCs) obtained from subcutaneous samples of healthy women undergoing abdominoplasty. Western blot analysis, qPCR, and biochemical analyses were performed 10 days after ADMSC differentiation into mature adipocytes was induced. IL-4 receptor was expressed in both precursor and differentiated adipocytes, and IL-4 treatment increased phosphorylation Y641 of signal transducer and activator of transcription 6 (STAT6) in both cell types. IL-4 treatment also increased expression of thermogenic proteins PGC-1α, UCP-1, and CITED1. In addition, IL-4 increased the secretion of adiponectin, leptin, and FGF21 and promoted lipolysis in differentiated adipocytes. In conclusion, IL-4 may directly modulate differentiation of human adipocytes towards a beige phenotype acting through IL-4 receptors on both adipose precursors and differentiated human adipocytes, metabolic effect that must be considered in some antiallergic drugs.
url http://dx.doi.org/10.1155/2017/2767916
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AT astridtorrado humanadmcderivedadipocytethermogeniccapacityisregulatedbyil4receptor
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