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Published on: April 1, 2015
[Procoagulant membranous microparticles and atherothrombotic complications in diabetics]
1Fédération de cardiologie des hôpitaux universitaires de Strasbourg, Hôpital de Hautepierre. Olivier.Morel@chru-strasbourg.fr
Abstract:
Endothelial apoptosis and platelet activation play a key role in atherothrombotic event. These two mechanisms resulting membrane thickening leading to procoagulant microparticle (MP) liberation into the blood stream. In the vascular compartment, MP contribute to increased thrombin formation, to platelet activation, and prolong inflammation of the arterial wall by inducing the synthesis of cytokines and adhesion of glycoproteins by the endothelial cells. In diabetic patients, increased endothelial apoptosis associated with intense platelet and monocytic activation could contribute to accelerated atherothrombosis. Endothelial, platelet and monocytic derived MP, found in high concentrations in these patients, induce a prothrombotic, proadhesive and proinflammatory tendency in the vascular comportment which could directly impact on the vascular prognosis. In diabetes, increased platelet or monocytic MP is a marker for microvascular disease. Likewise, in acute coronary syndromes of diabetic patients, high concentrations of procoagulant MP could be associated with a poor cardiovascular prognosis. In these diabetic patients, many treatments (antioxidant, antiplatelet, lipid lowering, antihypertensive) significantly reduce the levels of MP and parameters associated with inflammation. MP are one of the key factors linking inflammation, oxidative stress, apoptosis and thrombosis in accelerated atherothrombotic disease of the diabetic. In future, the measurement of MP should help evaluate the efficacy of antioxidant and antiplatelet therapy, especially in diabetic patients.
Insights
Microparticles (MPs) released from activated cells contribute to atherothrombosis, especially in diabetes. Measuring MPs may help assess anti-inflammatory and anti-platelet therapies in diabetic patients.
Area of Science:
- Vascular Biology
- Cellular Biology
- Biochemistry
Context:
- Endothelial apoptosis and platelet activation are key in atherothrombosis.
- These processes release procoagulant microparticles (MPs) into circulation.
- MPs promote thrombin formation, platelet activation, and arterial inflammation.
Purpose:
- To investigate the role of MPs in accelerated atherothrombosis in diabetic patients.
- To explore the association between MP levels and microvascular disease and cardiovascular prognosis.
- To evaluate the impact of various treatments on MP levels and inflammation.
Summary:
- Diabetic patients exhibit increased endothelial apoptosis and platelet/monocytic activation, leading to higher MP concentrations.
- These MPs create a prothrombotic, proadhesive, and proinflammatory state, worsening vascular prognosis.
- Elevated platelet or monocytic MPs indicate microvascular disease; high procoagulant MPs correlate with poor cardiovascular outcomes in diabetic acute coronary syndromes.
Impact:
- MPs link inflammation, oxidative stress, apoptosis, and thrombosis in diabetic atherothrombosis.
- MP measurement could guide the efficacy assessment of antioxidant and antiplatelet therapies.
- Understanding MP roles offers therapeutic targets for managing diabetic vascular complications.
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