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Published on: February 15, 2022
The vascular smooth muscle cell: a therapeutic target in Type 2 diabetes?
Karen E Porter1, Kirsten Riches
1Division of Cardiovascular & Diabetes Research, Leeds Institute of Genetics, Health and Therapeutics (LIGHT), University of Leeds, Leeds LS2 9JT, UK. k.e.porter@leeds.ac.uk
Abstract:
The rising epidemic of T2DM (Type 2 diabetes mellitus) worldwide is of significant concern. The inherently silent nature of the disease in its early stages precludes early detection; hence cardiovascular disease is often established by the time diabetes is diagnosed. This increased cardiovascular risk leads to significant morbidity and mortality in these individuals. Progressive development of complications as a result of previous exposure to metabolic disturbances appears to leave a long-lasting impression on cells of the vasculature that is not easily reversed and is termed 'metabolic memory'. SMCs (smooth muscle cells) of blood vessel walls, through their inherent ability to switch between a contractile quiescent phenotype and an active secretory state, maintain vascular homoeostasis in health and development. This plasticity also confers SMCs with the essential capacity to adapt and remodel in pathological states. Emerging clinical and experimental studies propose that SMCs in diabetes may be functionally impaired and thus contribute to the increased incidence of macrovascular complications. Although this idea has general support, the underlying molecular mechanisms are currently unknown and hence are the subject of intense research. The aim of the present review is to explore and evaluate the current literature relating to the problem of vascular disease in T2DM and to discuss the critical role of SMCs in vascular remodelling. Possibilities for therapeutic strategies specifically at the level of T2DM SMCs, including recent novel advances in the areas of microRNAs and epigenetics, will be evaluated. Since restoring glucose control in diabetic patients has limited effect in ameliorating their cardiovascular risk, discovering alternative strategies that restrict or reverse disease progression is vital. Current research in this area will be discussed.
Insights
Type 2 diabetes mellitus (T2DM) significantly increases cardiovascular risk due to early, silent progression. Smooth muscle cells (SMCs) in blood vessels may be impaired in T2DM, contributing to vascular disease and requiring novel therapeutic strategies.
Area of Science:
- Cardiovascular Research
- Endocrinology
- Cell Biology
Background:
- Type 2 diabetes mellitus (T2DM) is a growing global epidemic associated with significant cardiovascular morbidity and mortality.
- Early T2DM is often asymptomatic, leading to diagnosed cardiovascular disease at the time of diabetes detection.
- Metabolic memory, a lasting cellular impression from metabolic disturbances, contributes to progressive vascular complications.
Purpose of the Study:
- To review current literature on vascular disease in T2DM.
- To discuss the role of vascular smooth muscle cells (SMCs) in T2DM-related vascular remodeling.
- To evaluate potential therapeutic strategies targeting T2DM SMCs.
Main Methods:
- Literature review and synthesis of existing clinical and experimental studies.
- Exploration of molecular mechanisms underlying SMC dysfunction in T2DM.
- Evaluation of novel therapeutic approaches including microRNAs and epigenetics.
Main Results:
- Emerging evidence suggests functional impairment of SMCs in T2DM contributes to macrovascular complications.
- The precise molecular mechanisms of SMC dysfunction in T2DM remain under investigation.
- Current glucose-lowering strategies have limited impact on ameliorating cardiovascular risk in T2DM patients.
Conclusions:
- SMCs play a critical role in vascular remodeling in T2DM.
- Targeting T2DM SMCs offers a promising avenue for novel therapeutic strategies.
- Developing alternative strategies to restrict or reverse T2DM vascular disease progression is vital.
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