Chronic β3‐AR stimulation activates distinct thermogenic mechanisms in brown and white adipose tissue and improves systemic metabolism in aged mice

Author:

Natarajan Duraipandy123,Plakkot Bhuvana4,Tiwari Kritika3,Ekambaram Shoba3,Wang Weidong5,Rudolph Michael6,Mohammad Mahmoud A.7,Chacko Shaji K.7,Subramanian Madhan4,Tarantini Stefano1238,Yabluchanskiy Andriy1239,Ungvari Zoltan1278ORCID,Csiszar Anna1238,Balasubramanian Priya1236ORCID

Affiliation:

1. Vascular Cognitive Impairment, Neurodegeneration, and Healthy Brain Aging Program, Department of Neurosurgery University of Oklahoma Health Sciences Center Oklahoma City Oklahoma USA

2. Oklahoma Center for Geroscience and Healthy Brain Aging University of Oklahoma Health Sciences Center Oklahoma City Oklahoma USA

3. The Peggy and Charles Stephenson Cancer Center University of Oklahoma Health Sciences Center Oklahoma City Oklahoma USA

4. Department of Physiological Sciences, College of Veterinary Medicine Oklahoma State University Stillwater Oklahoma USA

5. Department of Medicine University of Oklahoma Health Sciences Center Oklahoma City Oklahoma USA

6. Department of Biochemistry and Physiology and Harold Hamm Diabetes Center University of Oklahoma Health Sciences Center Oklahoma City Oklahoma USA

7. USDA/ARS Children's Nutrition Research Center Baylor College of Medicine Houston Texas USA

8. International Training Program in Geroscience, Doctoral School of Basic and Translational Medicine/Department of Public Health Semmelweis University Budapest Hungary

9. Department of Health Promotion Sciences, College of Public Health University of Oklahoma Health Sciences Center Oklahoma City Oklahoma USA

Abstract

AbstractAdipose thermogenesis has been actively investigated as a therapeutic target for improving metabolic dysfunction in obesity. However, its applicability to middle‐aged and older populations, which bear the highest obesity prevalence in the United States (approximately 40%), remains uncertain due to age‐related decline in thermogenic responses. In this study, we investigated the effects of chronic thermogenic stimulation using the β3‐adrenergic (AR) agonist CL316,243 (CL) on systemic metabolism and adipose function in aged (18‐month‐old) C57BL/6JN mice. Sustained β3‐AR treatment resulted in reduced fat mass, increased energy expenditure, increased fatty acid oxidation and mitochondrial activity in adipose depots, improved glucose homeostasis, and a favorable adipokine profile. At the cellular level, CL treatment increased uncoupling protein 1 (UCP1)‐dependent thermogenesis in brown adipose tissue (BAT). However, in white adipose tissue (WAT) depots, CL treatment increased glycerol and lipid de novo lipogenesis (DNL) and turnover suggesting the activation of the futile substrate cycle of lipolysis and reesterification in a UCP1‐independent manner. Increased lipid turnover was also associated with the simultaneous upregulation of proteins involved in glycerol metabolism, fatty acid oxidation, and reesterification in WAT. Further, a dose‐dependent impact of CL treatment on inflammation was observed, particularly in subcutaneous WAT, suggesting a potential mismatch between fatty acid supply and oxidation. These findings indicate that chronic β3‐AR stimulation activates distinct cellular mechanisms that increase energy expenditure in BAT and WAT to improve systemic metabolism in aged mice. Considering that people lose BAT with aging, activation of futile lipid cycling in WAT presents a novel strategy for improving age‐related metabolic dysfunction.

Funder

American Heart Association

Center for Scientific Review

Presbyterian Health Foundation

Publisher

Wiley

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