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Published on: February 20, 2019
The rationale for comparative studies of accelerated atherosclerosis in rheumatic diseases
Armen Yuri Gasparyan1, Antonios Stavropoulos-Kalinoglou, Dimitri P Mikhailidis
1Department of Rheumatology, Clinical Research Unit, Russells Hall Hospital, Dudley Group of Hospitals NHS Foundation Trust, Dudley DY1 2HQ, West Midlands, UK.
Insights
Inflammation drives atherosclerosis in rheumatic diseases like SLE and RA, leading to premature cardiovascular events. Further research is needed to confirm atherogenesis in FMF and understand MI causes in BD.
Area of Science:
- Rheumatology
- Cardiovascular Medicine
- Immunology
Background:
- Atherosclerosis pathogenesis is linked to inflammation, with C-reactive protein (CRP) assays aiding risk assessment for cardiovascular disease (CVD).
- Rheumatic diseases offer unique in vivo models to study inflammatory mechanisms in atherogenesis and treatment impacts.
- Comparative studies of atherogenesis in diverse inflammatory rheumatic diseases are crucial.
Purpose of the Study:
- To review factors implicated in atherogenesis in systemic lupus erythematosus (SLE), rheumatoid arthritis (RA), familial Mediterranean fever (FMF), and Behçet's disease (BD).
- To discuss the role of inflammation and specific risk factors in enhanced atherosclerosis within these rheumatic conditions.
- To explore potential therapeutic strategies for cardiovascular risk reduction in rheumatic disease patients.
Main Methods:
- Review of existing literature on atherogenesis in SLE, RA, FMF, and BD.
- Discussion of implicated risk factors including antiphospholipid antibodies and CRP.
- Consideration of non-invasive techniques for risk assessment and targeted therapy.
Main Results:
- Enhanced atherosclerosis contributes to premature cardiovascular events in SLE and RA.
- Preliminary data suggest enhanced atherogenesis in FMF, potentially linked to inadequate colchicine therapy.
- Coronary vasculitis and aneurysms, not atherosclerosis, are primary causes of myocardial infarction (MI) in BD.
Conclusions:
- Inflammation significantly impacts atherogenesis in rheumatic diseases, increasing CVD risk.
- Antiphospholipid antibodies and CRP are key factors in SLE and RA-associated atherogenesis.
- Further prospective studies are needed to evaluate non-invasive techniques and cardioprotective therapies in rheumatic disease patients.
Abstract:
The inflammatory pathogenesis of atherosclerosis is now well-established, owing to in vitro and in vivo studies and the application of high sensitivity assays for C-reactive protein (CRP) in the general population and specific groups at risk for cardiovascular disease (CVD). In view of the complexity of inflammation-induced atherosclerosis, the rationale for comparative studies of atherogenesis in rheumatic diseases with diverse inflammatory pathogenesis seems obvious; they are human in vivo models to study inflammatory mechanisms involved in atherosclerosis and the impact of treatment. Factors implicated in atherogenesis in systemic lupus erythematosus (SLE), rheumatoid arthritis (RA), familial Mediterranean fever (FMF) and Behçet's disease (BD) are discussed in this review. Evidence suggests that enhanced atherosclerosis causes premature cardiovascular events in the autoimmune disease, SLE, and the "high-grade" inflammatory rheumatic disease, RA. Preliminary data suggest that enhanced atherogenesis may accompany FMF in the absence of sufficient suppression of inflammation by colchicine. In the setting of BD, the role of atherosclerosis in the premature manifestation of coronary pathology has not been confirmed; coronary vasculitis and aneurysms appear to constitute the basis of myocardial infarction (MI) in BD. A variety of established and novel risk factors are believed to influence enhanced atherogenesis in rheumatic diseases. Antiphospholipid antibodies are thought to be intimately involved in atherogenesis in SLE and to a lesser extend in RA. CRP may play a more universal role in all rheumatic diseases. The application of high resolution ultrasound of peripheral arteries and other non-invasive techniques may allow targeted use of statins, ACE inhibitors, antiplatelet agents and other cardioprotective drugs in patients with rheumatic diseases, but this needs to be evaluated specifically in prospective studies.
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