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.

Biomedicines
|November 26, 2022
PubMed

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.

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