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Role of Chemerin in Cardiovascular Diseases
Mirjana T Macvanin1, Manfredi Rizzo2, Jelena Radovanovic1
1Department of Radiobiology and Molecular Genetics, VINČA Institute of Nuclear Sciences-National Institute of the Republic of Serbia, University of Belgrade, 11000 Belgrade, Serbia.
Insights
Chemerin, a protein linked to obesity, plays a key role in cardiovascular diseases (CVDs) by promoting inflammation and affecting blood pressure. Targeting chemerin offers new therapeutic strategies for CVD treatment.
Area of Science:
- Biochemistry
- Immunology
- Cardiovascular Medicine
Background:
- Obesity is a significant risk factor for cardiovascular diseases (CVDs).
- Excess fat accumulation disrupts cardiovascular homeostasis through inflammation and reduced nitric oxide.
- Adipose tissue-derived adipokines, like chemerin, influence immune responses and vascular health.
Purpose of the Study:
- To review the current understanding of chemerin's role in the pathophysiology of CVDs.
- To summarize recent findings on chemerin's mechanisms and involvement in CVD development.
- To explore novel therapeutic strategies targeting chemerin for CVD treatment.
Main Methods:
- Comprehensive literature search of PubMed and MEDLINE databases.
- Inclusion of English abstracts published between 1997 and 2022.
- Focus on recent peer-reviewed articles, particularly those from the last five years.
Main Results:
- Chemerin influences vascular inflammation, immune cell recruitment, and endothelial cell function.
- Chemerin is implicated in altered lipid metabolism, vascular homeostasis, and angiogenesis.
- Evidence highlights chemerin's contribution to increased blood pressure and endothelial dysfunction.
Conclusions:
- Chemerin is a critical mediator in obesity-associated cardiovascular pathology.
- The protein's involvement in vascular inflammation and blood pressure modulation is well-established.
- Targeting chemerin presents promising avenues for novel CVD therapeutic interventions.
Abstract:
(1) Background: Obesity is closely connected to the pathophysiology of cardiovascular diseases (CVDs). Excess fat accumulation is associated with metabolic malfunctions that disrupt cardiovascular homeostasis by activating inflammatory processes that recruit immune cells to the site of injury and reduce nitric oxide levels, resulting in increased blood pressure, endothelial cell migration, proliferation, and apoptosis. Adipose tissue produces adipokines, such as chemerin, that may alter immune responses, lipid metabolism, vascular homeostasis, and angiogenesis. (2) Methods: We performed PubMed and MEDLINE searches for articles with English abstracts published between 1997 (when the first report on chemerin identification was published) and 2022. The search retrieved original peer-reviewed articles analyzed in the context of the role of chemerin in CVDs, explicitly focusing on the most recent findings published in the past five years. (3) Results: This review summarizes up-to-date findings related to mechanisms of chemerin action, its role in the development and progression of CVDs, and novel strategies for developing chemerin-targeting therapeutic agents for treating CVDs. (4) Conclusions: Extensive evidence points to chemerin's role in vascular inflammation, angiogenesis, and blood pressure modulation, which opens up exciting perspectives for developing chemerin-targeting therapeutic agents for the treatment of CVDs.
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