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Isolation, Characterization, and Purification of Macrophages from Tissues Affected by Obesity-related Inflammation
Published on: April 3, 2017
Defective macrophage efferocytosis in advanced atherosclerotic plaque and mitochondrial therapy
Wanling Li1, Yaqing Huang1, Jun Liu2
1School of Pharmacy and Bioengineering, Chongqing University of Technology, Chongqing 400054, China; The General Hospital of Western Theater Command, Chengdu 610083, China.
Abstract:
Atherosclerosis (AS) is a chronic inflammatory disease primarily affecting large and medium-sized arterial vessels, characterized by lipoprotein disorders, intimal thickening, smooth muscle cell proliferation, and the formation of vulnerable plaques. Macrophages (MΦs) play a vital role in the inflammatory response throughout all stages of atherosclerotic development and are considered significant therapeutic targets. In early lesions, macrophage efferocytosis rapidly eliminates harmful cells. However, impaired efferocytosis in advanced plaques perpetuates the inflammatory microenvironment of AS. Defective efferocytosis has emerged as a key factor in atherosclerotic pathogenesis and the progression to severe cardiovascular disease. Herein, this review probes into investigate the potential mechanisms at the cellular, molecular, and organelle levels underlying defective macrophage efferocytosis in advanced lesion plaques. In the inflammatory microenvironments of AS with interactions among diverse inflammatory immune cells, impaired macrophage efferocytosis is strongly linked to multiple factors, such as a lower absolute number of phagocytes, the aberrant expression of crucial molecules, and impaired mitochondrial energy provision in phagocytes. Thus, focusing on molecular targets to enhance macrophage efferocytosis or targeting mitochondrial therapy to restore macrophage metabolism homeostasis has emerged as a potential strategy to mitigate the progression of advanced atherosclerotic plaque, providing various treatment options.
Insights
Defective efferocytosis by macrophages (MΦs) drives atherosclerosis progression. Restoring MΦ efferocytosis via molecular targets or mitochondrial therapy offers new treatment strategies for advanced plaques.
Area of Science:
- Cardiovascular Biology
- Immunology
- Pathology
Background:
- Atherosclerosis (AS) is a chronic inflammatory disease characterized by plaque formation.
- Macrophages (MΦs) are key immune cells in AS, crucial for clearing cellular debris via efferocytosis.
- Impaired efferocytosis in advanced AS plaques exacerbates inflammation and disease progression.
Purpose of the Study:
- To investigate mechanisms of defective macrophage efferocytosis in advanced atherosclerotic plaques.
- To identify cellular, molecular, and organelle factors contributing to impaired efferocytosis.
- To explore therapeutic strategies targeting macrophage efferocytosis.
Main Methods:
- Review of current literature on macrophage efferocytosis in atherosclerosis.
- Analysis of cellular and molecular mechanisms underlying efferocytosis defects.
- Examination of organelle dysfunction, particularly mitochondria, in macrophages.
Main Results:
- Defective efferocytosis in advanced AS is linked to reduced phagocyte numbers and aberrant molecule expression.
- Impaired mitochondrial energy metabolism in macrophages contributes to efferocytosis failure.
- The inflammatory microenvironment of AS negatively impacts macrophage efferocytic capacity.
Conclusions:
- Targeting molecular pathways to enhance macrophage efferocytosis is a promising therapeutic avenue.
- Mitochondrial-targeted therapies may restore macrophage metabolic homeostasis and improve efferocytosis.
- Strategies to improve efferocytosis could mitigate the progression of advanced atherosclerotic plaques.
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