Efferocytosis in atherosclerotic lesions: Malfunctioning regulatory pathways and control mechanisms

Amir Tajbakhsh1, Mehdi Rezaee2, Petri T Kovanen3

  • 1Department of Modern Sciences & Technologies, Faculty of Medicine, Mashhad University of Medical Sciences, Mashhad, Iran.

Pharmacology & Therapeutics
|February 15, 2018
PubMed

Insights

Defective efferocytosis, the process of clearing dead cells in arteries, contributes to atherosclerosis and atherosclerotic cardiovascular disease (ACVD). Understanding efferocytosis signals may lead to new ACVD treatments.

Area of Science:

  • Cardiovascular Biology
  • Immunology
  • Cellular Biology

Background:

  • Atherosclerosis is a leading cause of global mortality, driven by arterial inflammation.
  • Efferocytosis, the clearance of apoptotic cells within atherosclerotic plaques, is crucial for disease regulation.
  • Defective efferocytosis is a key factor in atherosclerosis development and progression to atherosclerotic cardiovascular disease (ACVD).

Purpose of the Study:

  • To review the critical factors and pathways governing efferocytosis in atherosclerosis.
  • To identify efferocytosis as a potential therapeutic target for ACVD.

Main Methods:

  • This review synthesizes current research on efferocytosis mechanisms in atherosclerosis.
  • Analysis of signaling molecules (e.g., "Find-Me", "Eat-Me", "Don't Eat-Me" signals) and cellular players involved in efferocytosis.
  • Examination of the interplay between efferocytosis, macrophage polarization (M1/M2), and inflammation.

Main Results:

  • Efferocytosis involves specialized and non-specialized phagocytes and intricate signaling pathways.
  • Dysfunctional efferocytosis contributes to plaque instability and atherothrombotic complications.
  • Macrophage polarization significantly influences the inflammatory balance within atherosclerotic lesions.

Conclusions:

  • Efferocytosis plays a pivotal role in regulating atherosclerotic plaque progression and stability.
  • Targeting efferocytosis pathways offers a promising strategy for developing personalized ACVD treatments.

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