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Monocytes and Macrophages as Protagonists in Vascular Complications of Diabetes
Jenny E Kanter1, Cheng-Chieh Hsu1, Karin E Bornfeldt1,2
1Department of Medicine, University of Washington Medicine Diabetes Institute, University of Washington School of Medicine, Seattle, WA, United States.
Insights
Diabetes accelerates atherosclerosis by altering monocytes and macrophages. These immune cells show increased recruitment, inflammation, and lipid accumulation, contributing to cardiovascular disease (CVD) risk.
Area of Science:
- Cardiovascular Science
- Immunology
- Metabolic Disease Research
Background:
- Diabetes mellitus is a global health crisis, increasing vascular complications and atherosclerotic cardiovascular disease (CVD) risk.
- Monocytes and macrophages are central to atherosclerosis, with their function significantly altered in the diabetic milieu.
- The precise mechanisms linking diabetes to accelerated atherosclerosis remain incompletely understood.
Purpose of the Study:
- To elucidate the pro-atherogenic roles of monocytes and macrophages in diabetes.
- To identify key alterations in monocyte and macrophage phenotypes and functions driven by the diabetic environment.
- To explore the contribution of these cellular changes to diabetes-accelerated atherosclerosis and CVD.
Main Methods:
- Review of existing literature on monocyte and macrophage roles in diabetes-associated atherosclerosis.
- Analysis of findings from animal models and human studies investigating diabetic effects on immune cells.
- Examination of proposed mechanisms including cellular recruitment, activation, lipid metabolism, death, and efferocytosis.
Main Results:
- Diabetes promotes atherosclerosis via five key monocyte/macrophage alterations: increased recruitment, inflammation, lipid accumulation, cell death, and reduced efferocytosis.
- Diabetic conditions impair macrophage lipid processing, particularly the clearance of triglyceride-rich lipoproteins and remnants.
- While crucial players, monocytes and macrophages are likely responders to, rather than initiators of, diabetes-driven CVD risk.
Conclusions:
- Monocyte and macrophage dysregulation is a significant contributor to diabetes-accelerated atherosclerosis.
- Impaired lipid handling by macrophages in diabetes is a critical mechanism promoting CVD.
- Further research is needed to fully understand the human-specific roles of these cells in diabetes-associated vascular complications.
Abstract:
With the increasing prevalence of diabetes worldwide, vascular complications of diabetes are also on the rise. Diabetes results in an increased risk of macrovascular complications, with atherosclerotic cardiovascular disease (CVD) being the leading cause of death in adults with diabetes. The exact mechanisms for how diabetes promotes CVD risk are still unclear, although it is evident that monocytes and macrophages are key players in all stages of atherosclerosis both in the absence and presence of diabetes, and that phenotypes of these cells are altered by the diabetic environment. Evidence suggests that at least five pro-atherogenic mechanisms involving monocytes and macrophages contribute to the accelerated atherosclerotic lesion progression and hampered lesion regression associated with diabetes. These changes include (1) increased monocyte recruitment to lesions; (2) increased inflammatory activation; (3) altered macrophage lipid accumulation and metabolism; (4) increased macrophage cell death; and (5) reduced efferocytosis. Monocyte and macrophage phenotypes and mechanisms have been revealed mostly by different animal models of diabetes. The roles of specific changes in monocytes and macrophages in humans with diabetes remain largely unknown. There is an ongoing debate on whether the changes in monocytes and macrophages are caused by altered glucose levels, insulin deficiency or insulin resistance, lipid abnormalities, or combinations of these factors. Current research in humans and mouse models suggests that reduced clearance of triglyceride-rich lipoproteins and their remnants is one important mechanism whereby diabetes adversely affects macrophages and promotes atherosclerosis and CVD risk. Although monocytes and macrophages readily respond to the diabetic environment and can be seen as protagonists in diabetes-accelerated atherosclerosis, they are likely not instigators of the increased CVD risk.
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