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MR (Mineralocorticoid Receptor) Induces Adipose Tissue Senescence and Mitochondrial Dysfunction Leading to Vascular
Clara Lefranc1, Malou Friederich-Persson2, Laura Braud3
1From the Department of Physiology, INSERM UMRS 1138 Team 1, Centre de Recherche des Cordeliers, Sorbonne University, Paris, France (C.L., R.P.-R., N.B., F.J., A.N.D.C.).
Abstract:
Adipose tissue (AT) senescence and mitochondrial dysfunction are associated with obesity. Studies in obese patients and animals demonstrate that the MR (mineralocorticoid receptor) contributes to obesity-associated cardiovascular complications through its specific role in AT. However, underlying mechanisms remain unclear. This study aims to elucidate whether MR regulates mitochondrial function in obesity, resulting in AT premature aging and vascular dysfunction. Obese (db/db) and lean (db/+) mice were treated with an MR antagonist or a specific mitochondria-targeted antioxidant. Mitochondrial and vascular functions were determined by respirometry and myography, respectively. Molecular mechanisms were probed by Western immunoblotting and real-time polymerase chain reaction in visceral AT and arteries and focused on senescence markers and redox-sensitive pathways. db/db mice displayed AT senescence with activation of the p53-p21 pathway and decreased SIRT (sirtuin) levels, as well as mitochondrial dysfunction. Furthermore, the beneficial anticontractile effects of perivascular AT were lost in db/db via ROCK (Rho kinase) activation. MR blockade prevented these effects. Thus, MR activation in obesity induces mitochondrial dysfunction and AT senescence and dysfunction, which consequently increases vascular contractility. In conclusion, our study identifies novel mechanistic insights involving MR, adipose mitochondria, and vascular function that may be of importance to develop new therapeutic strategies to limit obesity-associated cardiovascular complications.
Insights
Mineralocorticoid receptor (MR) activation in obesity drives adipose tissue aging and mitochondrial dysfunction. This leads to vascular problems, but MR blockade may offer therapeutic benefits for cardiovascular complications.
Area of Science:
- Endocrinology
- Metabolic Syndrome
- Vascular Biology
Background:
- Adipose tissue senescence and mitochondrial dysfunction are linked to obesity and cardiovascular issues.
- The mineralocorticoid receptor (MR) plays a role in obesity-associated cardiovascular complications, but its mechanisms in adipose tissue are unclear.
Purpose of the Study:
- To investigate if MR regulates mitochondrial function in obesity, leading to premature adipose tissue aging and vascular dysfunction.
Main Methods:
- Utilized obese (db/db) and lean (db/+) mice, treated with an MR antagonist or mitochondria-targeted antioxidant.
- Assessed mitochondrial function via respirometry and vascular function using myography.
- Examined molecular mechanisms in visceral adipose tissue and arteries, focusing on senescence markers and redox pathways.
Main Results:
- Obese mice showed adipose tissue senescence, p53-p21 pathway activation, decreased sirtuin levels, and mitochondrial dysfunction.
- Beneficial anticontractile effects of perivascular adipose tissue were lost in obese mice due to Rho kinase activation.
- MR blockade reversed these detrimental effects.
Conclusions:
- MR activation in obesity induces mitochondrial dysfunction and adipose tissue senescence, increasing vascular contractility.
- This study reveals novel mechanisms involving MR, adipose mitochondria, and vascular function for potential therapeutic strategies against obesity-related cardiovascular issues.
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