Administration of an LXR agonist promotes atherosclerotic lesion remodelling in murine inflammatory arthritis

Author:

Dragoljevic Dragana1,Lee Man Kit Sam1,Pernes Gerard1,Morgan Pooranee K1,Louis Cynthia23ORCID,Shihata Waled1,Huynh Kevin1,Kochetkova Arina A1,Bell Patrick W1,Mellett Natalie A1,Meikle Peter J1,Lancaster Graeme I14,Kraakman Michael J1,Nagareddy Prabhakara R5ORCID,Hanaoka Beatriz Y5,Wicks Ian P23,Murphy Andrew J1

Affiliation:

1. Division of Immunometabolism Baker Heart and Diabetes Institute Melbourne VIC Australia

2. Inflammation Division Walter and Eliza Hall Institute of Medical Research Parkville VIC Australia

3. Rheumatology Unit Royal Melbourne Hospital Melbourne VIC Australia

4. Department of Immunology Monash University Melbourne VIC Australia

5. Department of Surgery Ohio State University Wexner Medical Center Columbus OH USA

Abstract

AbstractObjectivesThe leading cause of mortality in patients with rheumatoid arthritis is atherosclerotic cardiovascular disease (CVD). We have shown that murine arthritis impairs atherosclerotic lesion regression, because of cellular cholesterol efflux defects in haematopoietic stem and progenitor cells (HSPCs), causing monocytosis and impaired atherosclerotic regression. Therefore, we hypothesised that improving cholesterol efflux using a Liver X Receptor (LXR) agonist would improve cholesterol efflux and improve atherosclerotic lesion regression in arthritis.MethodsLdlr−/− mice were fed a western‐type diet for 14 weeks to initiate atherogenesis, then switched to a chow diet to induce lesion regression and divided into three groups; (1) control, (2) K/BxN serum transfer inflammatory arthritis (K/BxN) or (3) K/BxN arthritis and LXR agonist T0901317 daily for 2 weeks.ResultsLXR activation during murine inflammatory arthritis completely restored atherosclerotic lesion regression in arthritic mice, evidenced by reduced lesion size, macrophage abundance and lipid content. Mechanistically, serum from arthritic mice promoted foam cell formation, demonstrated by increased cellular lipid accumulation in macrophages and paralleled by a reduction in mRNA of the cholesterol efflux transporters Abca1, Abcg1 and Apoe. T0901317 reduced lipid loading and increased Abca1 and Abcg1 expression in macrophages exposed to arthritic serum and increased ABCA1 levels in atherosclerotic lesions of arthritic mice. Moreover, arthritic clinical score was also attenuated with T0901317.ConclusionTaken together, we show that the LXR agonist T0901317 rescues impaired atherosclerotic lesion regression in murine arthritis because of enhanced cholesterol efflux transporter expression and reduced foam cell development in atherosclerotic lesions.

Funder

CSL Behring

Foundation for the National Institutes of Health

National Health and Medical Research Council

Publisher

Wiley

Subject

General Nursing,Immunology,Immunology and Allergy

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