Eplerenone improves kidney function and cardiac performance in obese male mice

Ayman K Banah1,2, Bingxue Qi1,3, Ryan Koh1

  • 1Division of Diabetes, Endocrinology, and Reproductive Biology, School of Medicine, University of Dundee, Dundee, Scotland, UK.

Abstract

Insights

Eplerenone treatment improved cardiac and kidney function in obese mice by reducing fat mass and ameliorating cardiorenal dysfunction. This study reveals a novel link between mineralocorticoid receptor and the hyaluronan-CD44/RHAMM pathway.

Area of Science:

  • Cardiovascular Medicine
  • Nephrology
  • Metabolic Disorders

Background:

  • Obesity-associated cardiorenal dysfunction is linked to Renin-Angiotensin-Aldosterone System (RAAS) activation.
  • The precise molecular mechanisms and clinical utility of RAAS antagonism in obesity-related cardiometabolic complications require further elucidation.

Purpose of the Study:

  • To investigate the effects of eplerenone, a selective mineralocorticoid receptor antagonist, on cardiac and renal function in obesity.
  • To explore the underlying molecular mechanisms of eplerenone's action in the context of obesity.

Main Methods:

  • Male C57BL/6 mice were fed a high-fat diet (HFD) for 12 weeks.
  • Mice received either vehicle or eplerenone treatment for 30 days while on HFD.
  • Cardiac function was assessed using pressure-volume (PV) loop analyses, and renal function was evaluated via morphology and serum creatinine.

Main Results:

  • HFD induced cardiac and renal dysfunction, characterized by elevated blood pressure, glomerular hypertrophy, and tubular injury.
  • Eplerenone treatment led to weight loss (primarily fat mass) and significantly improved cardiac performance and renal function.
  • Molecular analysis revealed eplerenone modulated the hyaluronan-CD44/RHAMM pathway, TGF-β, IL-6, and Akt/JNK signaling in the heart and kidney.

Conclusions:

  • Eplerenone effectively improved kidney function and cardiac performance in obese male mice.
  • A novel association between mineralocorticoid receptor activity and the hyaluronan-CD44/RHAMM pathway was identified.

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