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Screening Assays to Characterize Novel Endothelial Regulators Involved in the Inflammatory Response
Published on: September 15, 2017
Therapies targeting innate immunity for fighting inflammation in atherosclerosis
Itzhak Mendel, Niva Yacov, Dror Harats
1Head of Immunology, VBL Therapeutics, 6 Jonathan Netanyahu St, Or Yehuda 60376, Israel. Itzhak@vblrx.com.
Insights
Atherosclerosis involves more than high cholesterol; macrophages drive plaque development. Targeting innate immunity, particularly monocytes, offers new therapeutic strategies for cardiovascular disease.
Area of Science:
- Cardiovascular Research
- Immunology
- Vascular Biology
Background:
- Atherosclerosis, a leading cause of death, was long attributed solely to high cholesterol (cholesterol hypothesis).
- Statins, developed based on this hypothesis, effectively lower LDL cholesterol but haven't eliminated cardiovascular disease mortality.
- Recent findings highlight leukocytes, especially monocytes/macrophages, as key players in atherosclerotic plaque development and vulnerability.
Purpose of the Study:
- To review pre-clinical and clinical studies on targeting innate immunity in atherosclerosis.
- To identify therapeutic targets predominantly expressed in monocytes for treating atherosclerosis and related conditions.
Main Methods:
- Review of pre-clinical studies investigating atherosclerosis pathogenesis.
- Analysis of clinical trials involving antagonists and agonists targeting inflammatory pathways.
- Focus on therapeutic strategies aimed at monocyte-specific targets.
Main Results:
- Monocytes/macrophages are central to atherosclerotic plaque formation, influencing its size, composition, and stability.
- Pro-inflammatory mechanisms mediated by macrophages (e.g., cytokine production) are implicated in atherogenesis.
- Existing treatments do not fully address the inflammatory aspects driven by innate immunity.
Conclusions:
- Atherosclerosis pathogenesis involves complex inflammatory processes beyond lipid metabolism.
- Targeting monocyte-specific inflammatory pathways presents a promising therapeutic avenue.
- Development of drugs targeting innate immunity is crucial for advancing atherosclerosis treatment.
Abstract:
Atherosclerosis is a smoldering disease of the vasculature that can lead to the occlusion of the arteries, resulting in ischemia of the heart and brain. For many years, the asserted underlying mechanism of atherosclerosis, supported by its epidemiology, was based on the "cholesterol hypothesis" that people with high blood cholesterol are at higher risk of developing cardiovascular disease. This hypothesis instigated a vigorous search for treatment that yielded the generation of statins, which specifically reduce LDL cholesterol. Since then, statins have revolutionized the way people are treated for the prevention of atherosclerosis. Nonetheless, despite this potent class of drugs, cardiovascular disease continues to be the leading cause of death in many parts of the world, suggesting that additional mechanisms are involved in disease pathogenesis. Intensive research has revealed that the atherosclerotic plaque is enriched with leukocytes, and that macrophages constitute the majority of immune cells in the lesion. Monocytes/macrophages are now recognized as the prime immune cells involved in the development of atherosclerosis and are implicated to affect the size, composition and vulnerability of the atherosclerotic plaque. While many of the macrophage-derived pro-inflammatory mechanisms associated with atherogenesis have been characterized, such as cell adhesion, cytokine production and protease secretion, there is a dearth of drugs that specifically target innate immunity for treating patients with atherosclerosis. This review presents pre-clinical studies, and in most cases following clinical trials with antagonists and agonists that have been designed to counteract inflammation in atherosclerosis and associated diseases, highlighting targets expressed predominantly in monocytes.
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