Adiponectin primes human monocytes into alternative anti-inflammatory M2 macrophages

Author:

Lovren Fina12,Pan Yi1,Quan Adrian12,Szmitko Paul E.23,Singh Krishna K.12,Shukla Praphulla C.12,Gupta Milan14567,Chan Lawrence8,Al-Omran Mohammed910,Teoh Hwee1247,Verma Subodh1411710

Affiliation:

1. Division of 1Cardiac Surgery,

2. Translational Traineeship Program in Atherosclerosis,

3. Departments of 4Medicine and

4. Cardiometabolic Risk Initiative, Keenan Research Centre in the Li Ka Shing Knowledge Institute of St. Michael's Hospital, Toronto, Ontario;

5. Division of Cardiology, William Osler Health Centre, Brampton, Ontario;

6. Department of Medicine, McMaster University, Hamilton, Ontario;

7. Canadian Cardiovascular Research Network, Brampton, Ontario, Canada;

8. Departments of Molecular and Cellular Biology and Medicine, Baylor College of Medicine, Houston, Texas;

9. Division of Vascular Surgery, College of Medicine and King Khalid University Hospital,

10. King Saud University-Li Ka Shing Collaborative Research Program, King Saud University, Riyadh, Kingdom of Saudi Arabia

11. Surgery, University of Toronto, Toronto, Ontario;

Abstract

Altered macrophage kinetics is a pivotal mechanism of visceral obesity-induced inflammation and cardiometabolic risk. Because monocytes can differentiate into either proatherogenic M1 macrophages or anti-inflammatory M2 macrophages, approaches that limit M1 while promoting M2 differentiation represent a unique therapeutic strategy. We hypothesized that adiponectin may prime human monocytes toward the M2 phenotype. Adiponectin promoted the alternative activation of human monocytes into anti-inflammatory M2 macrophages as opposed to the classically activated M1 phenotype. Adiponectin-treated cells displayed increased M2 markers, including the mannose receptor (MR) and alternative macrophage activation-associated CC chemokine-1. Incubation of M1 macrophages with adiponectin-treated M2-derived culture supernatant resulted in a pronounced inhibition of tumor necrosis factor-α and monocyte chemotactic protein-1 secretion. Activation of human monocytes into M2 macrophages by adiponectin was mediated, in addition to AMP-activated protein kinase and peroxisome proliferator-activated receptor (PPAR)-γ, via PPAR-α. Furthermore, macrophages isolated from adiponectin knockout mice demonstrated diminished levels of M2 markers such as MR, which were restored with adiponectin treatment. We report a novel immunoregulatory mechanism through which adiponectin primes human monocyte differentiation into anti-inflammatory M2 macrophages. Conditions associated with low adiponectin levels, such as visceral obesity and insulin resistance, may promote atherosclerosis, in part through aberrant macrophage kinetics.

Publisher

American Physiological Society

Subject

Physiology (medical),Cardiology and Cardiovascular Medicine,Physiology

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