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A Distinct Cytokine Profile and Stromal Vascular Fraction Metabolic Status without Significant Changes in the Lipid Composition Characterizes Lipedema

Lipedema is an adipose tissue disorder characterized by the disproportionate increase of subcutaneous fat tissue in the lower and/or upper extremities. The underlying pathomechanism remains unclear and no molecular biomarkers to distinguish the disease exist, leading to a large number of undiagnosed...

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Autores principales: Wolf, Stefan, Deuel, Jeremy W., Hollmén, Maija, Felmerer, Gunther, Kim, Bong-Sung, Vasella, Mauro, Grünherz, Lisanne, Giovanoli, Pietro, Lindenblatt, Nicole, Gousopoulos, Epameinondas
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8036495/
https://www.ncbi.nlm.nih.gov/pubmed/33805070
http://dx.doi.org/10.3390/ijms22073313
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author Wolf, Stefan
Deuel, Jeremy W.
Hollmén, Maija
Felmerer, Gunther
Kim, Bong-Sung
Vasella, Mauro
Grünherz, Lisanne
Giovanoli, Pietro
Lindenblatt, Nicole
Gousopoulos, Epameinondas
author_facet Wolf, Stefan
Deuel, Jeremy W.
Hollmén, Maija
Felmerer, Gunther
Kim, Bong-Sung
Vasella, Mauro
Grünherz, Lisanne
Giovanoli, Pietro
Lindenblatt, Nicole
Gousopoulos, Epameinondas
author_sort Wolf, Stefan
collection PubMed
description Lipedema is an adipose tissue disorder characterized by the disproportionate increase of subcutaneous fat tissue in the lower and/or upper extremities. The underlying pathomechanism remains unclear and no molecular biomarkers to distinguish the disease exist, leading to a large number of undiagnosed and misdiagnosed patients. To unravel the distinct molecular characteristic of lipedema we performed lipidomic analysis of the adipose tissue and serum of lipedema versus anatomically- and body mass index (BMI)-matched control patients. Both tissue groups showed no significant changes regarding lipid composition. As hyperplastic adipose tissue represents low-grade inflammation, the potential systemic effects on circulating cytokines were evaluated in lipedema and control patients using the Multiplex immunoassay system. Interestingly, increased systemic levels of interleukin 11 (p = 0.03), interleukin 28A (p = 0.04) and interleukin 29 (p = 0.04) were observed. As cytokines can influence metabolic activity, the metabolic phenotype of the stromal vascular fraction was examined, revealing significantly increased mitochondrial respiration in lipedema. In conclusion, despite sharing a comparable lipid profile with healthy adipose tissue, lipedema is characterized by a distinct systemic cytokine profile and metabolic activity of the stromal vascular fraction.
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spelling pubmed-80364952021-04-12 A Distinct Cytokine Profile and Stromal Vascular Fraction Metabolic Status without Significant Changes in the Lipid Composition Characterizes Lipedema Wolf, Stefan Deuel, Jeremy W. Hollmén, Maija Felmerer, Gunther Kim, Bong-Sung Vasella, Mauro Grünherz, Lisanne Giovanoli, Pietro Lindenblatt, Nicole Gousopoulos, Epameinondas Int J Mol Sci Article Lipedema is an adipose tissue disorder characterized by the disproportionate increase of subcutaneous fat tissue in the lower and/or upper extremities. The underlying pathomechanism remains unclear and no molecular biomarkers to distinguish the disease exist, leading to a large number of undiagnosed and misdiagnosed patients. To unravel the distinct molecular characteristic of lipedema we performed lipidomic analysis of the adipose tissue and serum of lipedema versus anatomically- and body mass index (BMI)-matched control patients. Both tissue groups showed no significant changes regarding lipid composition. As hyperplastic adipose tissue represents low-grade inflammation, the potential systemic effects on circulating cytokines were evaluated in lipedema and control patients using the Multiplex immunoassay system. Interestingly, increased systemic levels of interleukin 11 (p = 0.03), interleukin 28A (p = 0.04) and interleukin 29 (p = 0.04) were observed. As cytokines can influence metabolic activity, the metabolic phenotype of the stromal vascular fraction was examined, revealing significantly increased mitochondrial respiration in lipedema. In conclusion, despite sharing a comparable lipid profile with healthy adipose tissue, lipedema is characterized by a distinct systemic cytokine profile and metabolic activity of the stromal vascular fraction. MDPI 2021-03-24 /pmc/articles/PMC8036495/ /pubmed/33805070 http://dx.doi.org/10.3390/ijms22073313 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/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/ (https://creativecommons.org/licenses/by/4.0/) ).
spellingShingle Article
Wolf, Stefan
Deuel, Jeremy W.
Hollmén, Maija
Felmerer, Gunther
Kim, Bong-Sung
Vasella, Mauro
Grünherz, Lisanne
Giovanoli, Pietro
Lindenblatt, Nicole
Gousopoulos, Epameinondas
A Distinct Cytokine Profile and Stromal Vascular Fraction Metabolic Status without Significant Changes in the Lipid Composition Characterizes Lipedema
title A Distinct Cytokine Profile and Stromal Vascular Fraction Metabolic Status without Significant Changes in the Lipid Composition Characterizes Lipedema
title_full A Distinct Cytokine Profile and Stromal Vascular Fraction Metabolic Status without Significant Changes in the Lipid Composition Characterizes Lipedema
title_fullStr A Distinct Cytokine Profile and Stromal Vascular Fraction Metabolic Status without Significant Changes in the Lipid Composition Characterizes Lipedema
title_full_unstemmed A Distinct Cytokine Profile and Stromal Vascular Fraction Metabolic Status without Significant Changes in the Lipid Composition Characterizes Lipedema
title_short A Distinct Cytokine Profile and Stromal Vascular Fraction Metabolic Status without Significant Changes in the Lipid Composition Characterizes Lipedema
title_sort distinct cytokine profile and stromal vascular fraction metabolic status without significant changes in the lipid composition characterizes lipedema
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8036495/
https://www.ncbi.nlm.nih.gov/pubmed/33805070
http://dx.doi.org/10.3390/ijms22073313
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