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

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.

Related Concept Videos

Type II Diabetes II: Pathophysiology01:24

Type II Diabetes II: Pathophysiology

PathophysiologyType 2 diabetes mellitus (T2DM ) is a chronic metabolic disorder characterized by insulin resistance and progressive pancreatic β-cell dysfunction, leading to impaired glucose homeostasis. It results from interactions among genetic predisposition, environmental factors, and metabolic stressors, such as overnutrition and a sedentary lifestyle.Insulin Resistance and Glucose DysregulationEarly T2DM involves insulin resistance in skeletal muscle, adipose tissue, and the liver.
Type I Diabetes II: Pathophysiology01:26

Type I Diabetes II: Pathophysiology

Type 1 diabetes mellitus arises from an immune-mediated destruction of pancreatic β-cells, resulting in an absolute deficiency of insulin. This process develops in genetically susceptible individuals when autoimmunity, environmental exposures, and immunologic dysregulation converge to trigger a targeted attack on the insulin-producing cells of the pancreas. The β-cells are located within the islets of Langerhans and are essential for regulating blood glucose by facilitating cellular uptake of...
Type II Diabetes I: Introduction01:26

Type II Diabetes I: Introduction

Type 2 diabetes mellitus (T2DM) is a chronic metabolic disorder characterized by insulin resistance, in which target tissues such as the liver, muscle, and adipose tissue respond poorly to insulin. It is also associated with inadequate compensatory insulin secretion, where pancreatic β-cells fail to produce sufficient insulin. Together, these abnormalities lead to persistent hyperglycemia.EtiologyT2DM develops through a complex interaction of genetic predisposition and environmental or...
Diabetes Mellitus: Type 2 and Gestational01:22

Diabetes Mellitus: Type 2 and Gestational

Type 2 diabetes, characterized by insulin resistance, arises when the insulin receptors on cells lose responsiveness to insulin, diminishing the cell's capacity to take up glucose, resulting in elevated blood glucose levels. To receive a diagnosis of Type 2 diabetes, a series of blood glucose tests are necessary to assess whether the blood glucose falls within normal parameters. If the result is out of the normal range, a patient may be diagnosed as prediabetic or diabetic, depending on the...
Diabetes Mellitus: Overview and Type I Subtype01:22

Diabetes Mellitus: Overview and Type I Subtype

Diabetes mellitus is a chronic metabolic disorder characterized by high blood glucose levels due to inadequate insulin production, insulin resistance, or both. The condition affects millions worldwide and can significantly impact their health and quality of life.
Type 1 diabetes is an autoimmune disease in which the immune system mistakenly attacks and destroys the insulin-producing beta cells in the pancreas. As a result, the body is unable to produce sufficient insulin, and individuals with...
Carbohydrate Metabolism01:36

Carbohydrate Metabolism

Carbohydrates are polymers composed of molecules containing atoms of carbon, hydrogen and oxygen. One gram of carbohydrate can provide four kilo-calories of energy, which makes it the most efficient instant energy source.
Starch accounts for approximately 60% of the carbohydrates consumed by humans. Since amylase enzymes cannot function in the stomach's acidic environment, starch can only be digested in the mouth and small intestine. Simple sugars are found naturally in milk and fruits in the...