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Thrombosis and Vascular Inflammation in Diabetes: Mechanisms and Potential Therapeutic Targets
Nikoletta Pechlivani1, Ramzi A Ajjan1
1School of Medicine, Leeds Institute for Cardiovascular and Metabolic Medicine, University of Leeds, Leeds, United Kingdom.
Insights
Diabetes significantly increases cardiovascular disease risk due to accelerated atherosclerosis and a hypercoagulable state. Tailored, stage-specific therapies are crucial for managing this high-risk population.
Area of Science:
- Cardiovascular Medicine
- Endocrinology
- Hematology
Background:
- Diabetes mellitus is a primary driver of cardiovascular morbidity and mortality.
- Diabetic patients exhibit increased vascular ischemia risk and poorer outcomes compared to non-diabetics.
- The adverse vascular profile stems from advanced atherosclerosis and a pro-thrombotic state.
Purpose of the Study:
- To review pathophysiological mechanisms of atherosclerosis in diabetes.
- To examine the enhanced thrombotic environment in diabetic patients.
- To explore novel therapeutic targets for atherothrombosis in diabetes.
Main Methods:
- Literature review focusing on diabetes-related atherothrombosis pathways.
- Analysis of mechanisms including platelet activation, procoagulant proteins, and fibrinolysis.
- Exploration of existing and novel therapeutic strategies.
Main Results:
- Diabetes accelerates atherosclerosis and promotes a pro-thrombotic state via specific pathways.
- Current antithrombotic strategies are often not diabetes-specific.
- New therapeutic targets are needed, focusing on diabetes-specific mechanisms.
Conclusions:
- A stratified, stage-specific approach to vascular risk management is essential for diabetes.
- Individualized care strategies are vital for improving vascular outcomes in high-risk diabetic populations.
- Future therapies should target diabetes-specific pathways for better efficacy and safety.
Abstract:
Cardiovascular disease remains the main cause of morbidity and mortality in patients with diabetes. The risk of vascular ischemia is increased in this population and outcome following an event is inferior compared to individuals with normal glucose metabolism. The reasons for the adverse vascular profile in diabetes are related to a combination of more extensive atherosclerotic disease coupled with an enhanced thrombotic environment. Long-term measures to halt the accelerated atherosclerotic process in diabetes have only partially addressed vascular pathology, while long-term antithrombotic management remains largely similar to individuals without diabetes. We address in this review the pathophysiological mechanisms responsible for atherosclerosis with special emphasis on diabetes-related pathways. We also cover the enhanced thrombotic milieu, characterized by increased platelet activation, raised activity of procoagulant proteins together with compromised function of the fibrinolytic system. Potential new therapeutic targets to reduce the risk of atherothrombosis in diabetes are explored, including alternative use of existing therapies. Special emphasis is placed on diabetes-specific therapeutic targets that have the potential to reduce vascular risk while keeping an acceptable clinical side effect profile. It is now generally acknowledged that diabetes is not a single clinical entity but a continuum of various stages of the condition with each having a different vascular risk. Therefore, we propose that future therapies aiming to reduce vascular risk in diabetes require a stratified approach with each group having a "stage-specific" vascular management strategy. This "individualized care" in diabetes may prove to be essential to improve vascular outcome in this high risk population.
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