Age‐associated adipose tissue inflammation promotes monocyte chemotaxis and enhances atherosclerosis

Author:

Song Jianrui1ORCID,Farris Diana1,Ariza Paola1,Moorjani Smriti1ORCID,Varghese Mita2ORCID,Blin Muriel1,Chen Judy13,Tyrrell Daniel1ORCID,Zhang Min4,Singer Kanakadurga23,Salmon Morgan5,Goldstein Daniel R.136ORCID

Affiliation:

1. Department of Internal Medicine, Division of Cardiovascular Medicine University of Michigan Ann Arbor Michigan USA

2. Department of Pediatrics, Division of Endocrinology University of Michigan Ann Arbor Michigan USA

3. Graduate Program in Immunology University of Michigan Ann Arbor Michigan USA

4. Department of Biostatistics University of Michigan Ann Arbor Michigan USA

5. Department of Cardiac Surgery University of Michigan Ann Arbor Michigan USA

6. Department of Microbiology and Immunology University of Michigan Ann Arbor Michigan USA

Abstract

AbstractAlthough aging enhances atherosclerosis, we do not know if this occurs via alterations in circulating immune cells, lipid metabolism, vasculature, or adipose tissue. Here, we examined whether aging exerts a direct pro‐atherogenic effect on adipose tissue in mice. After demonstrating that aging augmented the inflammatory profile of visceral but not subcutaneous adipose tissue, we transplanted visceral fat from young or aged mice onto the right carotid artery of Ldlr−/− recipients. Aged fat transplants not only increased atherosclerotic plaque size with increased macrophage numbers in the adjacent carotid artery, but also in distal vascular territories, indicating that aging of the adipose tissue enhances atherosclerosis via secreted factors. By depleting macrophages from the visceral fat, we identified that adipose tissue macrophages are major contributors of the secreted factors. To identify these inflammatory factors, we found that aged fat transplants secreted increased levels of the inflammatory mediators TNFα, CXCL2, and CCL2, which synergized to promote monocyte chemotaxis. Importantly, the combined blockade of these inflammatory mediators impeded the ability of aged fat transplants to enhance atherosclerosis. In conclusion, our study reveals that aging enhances atherosclerosis via increased inflammation of visceral fat. Our study suggests that future therapies targeting the visceral fat may reduce atherosclerosis disease burden in the expanding older population.

Funder

American Heart Association

National Institute on Aging

National Institutes of Health

Publisher

Wiley

Subject

Cell Biology,Aging

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