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Quantification of Monocyte Chemotactic Activity In Vivo and Characterization of Blood Monocyte Derived Macrophages
Published on: August 12, 2019
Role of macrophage scavenger receptors in atherosclerosis
Julia Kzhyshkowska1, Claudine Neyen, Siamon Gordon
1Department of Dermatology, Medical Faculty Mannheim, Ruprecht-Karls University of Heidelberg, Germany. julia.kzhyshkowska@umm.de
Insights
Scavenger receptors (SR) are key in atherosclerosis, mediating macrophage foam cell formation and inflammation. Their complex roles in plaque progression remain debated, influencing immune responses and plaque stability.
Area of Science:
- Immunology
- Cardiovascular Biology
- Cell Biology
Background:
- Atherosclerosis is a chronic inflammatory disease driven by monocytes and macrophages.
- Macrophage dysfunction in processing modified lipoproteins leads to foam cell formation, a hallmark of atherosclerotic plaques.
Purpose of the Study:
- To review the complex roles of scavenger receptors (SR) in atherosclerosis.
- To elucidate how SRs influence macrophage responses, inflammation, and plaque stability.
Main Methods:
- Review of current literature on scavenger receptor function in atherosclerosis.
- Analysis of molecular mechanisms linking SRs to immune and metabolic processes in macrophages.
Main Results:
- Scavenger receptors (SR) internalize modified lipoproteins, leading to foam cell formation.
- SR activity can promote inflammation and macrophage accumulation, or tolerogenic and fibrotic reactions.
- The precise role of SRs in atherosclerosis progression remains controversial.
Conclusions:
- Scavenger receptors play multifaceted roles in atherosclerosis, influencing plaque development and stability.
- Understanding SRs' dual functions is critical for developing targeted therapies.
- Further research is needed to clarify SR contributions to atherogenesis and plaque outcomes.
Abstract:
Accumulating evidence indicates that atherosclerosis is a chronic inflammatory disease. The key innate immune cells that are involved in the pathogenesis of atherosclerosis are circulating monocytes and plaque macrophages. Complex interplay between immune and metabolic processes results in pathological activity of these cells. The best understood pathological process mediated by macrophages is their inability to process modified lipoproteins properly resulting in the formation of foamy cells, which are a dangerous component of atherosclerotic plaques. Key molecules involved in the recognition and processing of modified lipoproteins are scavenger receptors (SR). This is a large family of surface expressed structurally heterogeneous receptors with a broad spectrum of endogenous and exogenous ligands. The common functional feature of SR is internalisation of extracellular components and targeting them for lysosomal degradation. However, these relatively simple functions can have complex consequences, since they are linked to diverse specific signalling pathways and to other membrane transport pathways. Moreover, scavenger receptors can co-operate with other types of receptors increasing the variability of the macrophage response to multiple extracellular ligands. At least some SRs respond to modified lipoproteins by amplification of inflammation and accumulation of macrophages in the plaque, while some SRs may support tolerogenic reactions. Outcome of different SR activities will be the decision of monocytes and macrophage to guard homeostatic balance, support atherosclerosis progression and plaque instability by inflammatory reactions, or support rapid fibrotic processes in the plaque that stabilise it. Despite the accumulating knowledge about the molecular mechanisms of scavenger receptor action, their role in the progression of atherosclerosis remains controversial. The activities of scavenger receptors that can contribute to each of these processes are a subject of current review.
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