Chronic intermittent hypoxia triggers cardiac fibrosis: Role of epididymal white adipose tissue senescent remodeling?

Author:

Naushad Suzain1,Gaucher Jonathan2,Mezdari Zaineb1,Détrait Maximin2,Belaidi Elise2,Zhang Yanyan1,Vial Guillaume2,Bouyon Sophie2,Czibik Gabor1,Pini Maria1,Aldekwer Sahar2,Liang Hao1,Pelloux Véronique34,Aron‐Wisnewsky Judith34,Tamisier Renaud2,Pépin Jean‐Louis2,Derumeaux Geneviève15,Sawaki Daigo1,Arnaud Claire2ORCID

Affiliation:

1. Université Paris Est Créteil, INSERM U955 Créteil France

2. Université Grenoble Alpes, INSERM U1300, CHU Grenoble Alpes, HP2 Grenoble France

3. Nutrition and Obesities, Systemic Approaches, NutriOmics, Laboratory Sorbonne University Paris France

4. Nutrition Department CRNH Ile de France, AP‐HP, Pitie‐Salpêtrière Hospital Paris France

5. Department of Physiology AP‐HP, Henri Mondor Hospital, FHU‐SENEC Créteil France

Abstract

AbstractAimObstructive sleep apnea (OSA) is a growing health problem affecting nearly 1 billion people worldwide. The landmark feature of OSA is chronic intermittent hypoxia (CIH), accounting for multiple organ damage, including heart disease. CIH profoundly alters both visceral white adipose tissue (WAT) and heart structure and function, but little is known regarding inter‐organ interaction in the context of CIH. We recently showed that visceral WAT senescence drives myocardial alterations in aged mice without CIH. Here, we aimed at investigating whether CIH induces a premature visceral WAT senescent phenotype, triggering subsequent cardiac remodeling.MethodsIn a first experiment, 10‐week‐old C57bl6J male mice (n = 10/group) were exposed to 14 days of CIH (8 h daily, 5%–21% cyclic inspired oxygen fraction, 60 s per cycle). In a second series, mice were submitted to either epididymal WAT surgical lipectomy or sham surgery before CIH exposure. Finally, we used p53 deficient mice or Wild‐type (WT) littermates, also exposed to the same CIH protocol. Epididymal WAT was assessed for fibrosis, DNA damages, oxidative stress, markers of senescence (p16, p21, and p53), and inflammation by RT‐qPCR and histology, and myocardium was assessed for fibrosis and cardiomyocyte hypertrophy.ResultsCIH‐induced epididymal WAT remodeling characterized by increased fibrosis, oxidative stress, DNA damage response, inflammation, and increased expression of senescent markers. CIH‐induced epididymal WAT remodeling was associated with subtle and early myocardial interstitial fibrosis. Both epididymal WAT surgical lipectomy and p53 deletion prevented CIH‐induced myocardial fibrosis.ConclusionShort‐term exposure to CIH induces epididymal WAT senescent remodeling and cardiac interstitial fibrosis, the latter being prevented by lipectomy. This finding strongly suggests visceral WAT senescence as a new target to mitigate OSA‐related cardiac disorders.

Funder

Fondation Université Grenoble Alpes

Fondation pour la Recherche Médicale

Agence Nationale de la Recherche

Publisher

Wiley

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