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High-sensitivity C-reactive protein and atherosclerotic disease: from improved risk prediction to risk-guided therapy
1Department of Internal Medicine II - Cardiology, University of Ulm Medical Center, Albert Einstein-Allee 23, D-89081 Ulm, Germany.
Insights
Inflammation plays a key role in atherosclerosis. Targeting interleukin-1β with canakinumab offers a novel strategy to prevent cardiovascular events in high-risk patients.
Area of Science:
- Cardiovascular Medicine
- Immunology
- Inflammation Research
Background:
- Inflammation is implicated in atherosclerosis initiation and progression.
- Biomarkers of inflammation correlate with adverse cardiovascular outcomes.
- The precise role of inflammation as a driver versus a consequence is unclear.
Purpose of the Study:
- To evaluate the role of inflammation in atherosclerosis.
- To explore novel anti-inflammatory therapies beyond statins.
- To test the efficacy of targeting interleukin-1β for cardiovascular event prevention.
Main Methods:
- Review of experimental and clinical evidence on inflammation in atherosclerosis.
- Analysis of C-reactive protein (CRP) as a biomarker.
- Discussion of canakinumab, an interleukin-1β inhibitor, as a potential therapeutic agent.
Main Results:
- High-sensitivity C-reactive protein (hs-CRP) is a promising biomarker for risk stratification and guiding statin therapy.
- Statin therapy, while beneficial, is not a targeted anti-inflammatory treatment.
- Interleukin-1β inhibition represents a direct approach to test the inflammation hypothesis.
Conclusions:
- Targeting inflammation, specifically interleukin-1β, may offer a novel strategy for preventing recurrent cardiovascular events.
- Canakinumab shows promise as a proof-of-concept therapy for high-risk atherosclerotic patients.
- Further research is needed to establish cytokine-based therapies for atherosclerotic disease.
Abstract:
There is compelling experimental and clinical evidence suggesting a crucial role for inflammation in the initiation and also the progression of atherosclerosis. Numerous biomarkers involved at various levels of the inflammation cascade have been shown to be associated with adverse cardiovascular outcomes. Yet, to date, it is not clear whether inflammation simply accompanies the atherosclerotic process or represents a major driver. Among all blood biomarkers, C-reactive protein (CRP), the classical acute phase reactant that can be measured with high-sensitivity (hs) assays seems to be the most promising candidate. It has already found its way into the guidelines in primary prevention. Hs-CRP can also be used to identify a high-risk group for recurrent events in patients with manifest atherosclerosis. Several post hoc analyses of large-scale randomized clinical trials testing various statins have indicated that, besides low density lipoprotein (LDL) cholesterol, hs-CRP levels might also further aid in tailoring statin treatment. The large JUPITER trial has prospectively confirmed these findings in primary prevention in patients with elevated hs-CRP but normal LDL cholesterol levels. Still, statin therapy is not a specific anti-inflammatory regime acting on the inflammation cascade. Thus, to directly test the inflammation hypothesis, a novel, more proximally located cytokine-based approach is needed. Canakinumab, a fully human monoclonal antibody against interleukin-1β, might represent a promising compound in this regard and provide a proof of concept. If successful, this may become a novel strategy to treat high-risk patients with stable atherosclerotic disease to prevent recurrent events on top of standard medical care.
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