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Published on: July 29, 2012
Enhanced platelet adherence and aggregation in Chagas' disease: a potential pathogenic mechanism for cardiomyopathy
H B Tanowitz1, E R Burns, A K Sinha
1Albert Einstein College of Medicine, Bronx, New York.
Insights
Trypanosoma cruzi infection increases platelet aggregation and endothelial cell dysfunction, contributing to coronary microvascular issues in Chagas' disease. This heightened platelet reactivity may cause spasm and occlusion in small heart vessels.
Area of Science:
- Cardiovascular Research
- Infectious Diseases
- Hematology
Background:
- Chagas' disease cardiomyopathy is linked to coronary microcirculation issues.
- Platelet activation and endothelial dysfunction are potential contributors.
Purpose of the Study:
- To investigate the role of platelet adherence and aggregation in Trypanosoma cruzi infection.
- To assess endothelial cell prostacyclin production and platelet reactivity in infected models.
Main Methods:
- Scanning electron microscopy and radiolabeled platelet studies on infected endothelial cells.
- In vitro assessment of prostacyclin (6-keto-prostaglandin F1 alpha) production.
- Ex vivo platelet aggregation assays and plasma thromboxane B2 measurements in infected mice.
Main Results:
- Increased platelet adherence to T. cruzi-infected endothelial cells (P = 0.024).
- Elevated basal prostacyclin production by infected endothelial cells (P < 0.05).
- Enhanced platelet sensitivity to aggregation and increased plasma thromboxane B2 in infected mice.
Conclusions:
- Heightened platelet reactivity and endothelial cell dysfunction are associated with acute Chagas' disease.
- These factors may lead to coronary microvascular spasm and occlusion.
- Platelet activation is a key mechanism in the pathogenesis of Chagas' disease cardiomyopathy.
Abstract:
Spasm and thrombosis of the coronary microcirculation has been implicated in the pathogenesis of the cardiomyopathy of Chagas' disease. We demonstrate that increases in platelet adherence and aggregation accompany Trypanosoma cruzi infection and may contribute to the observed microvascular pathology. Scanning electron microscopy and radiolabeled platelets studies revealed that platelet adherence to T. cruzi-infected human endothelial cells was significantly increased when compared to controls (P = 0.024). In in vitro experiments, we determined the influence of infection on prostacyclin production, a marker of endothelial cell perturbation. The basal levels of 6-keto-prostaglandin F1 alpha was significantly greater in the supernatant of infected endothelial cells than in those of uninfected endothelial cells (P less than 0.05). The influence of infection was assessed on platelet aggregation at days 5 and 12 post-infection in A/J mice. Platelets from T. cruzi-infected mice were 2-6-fold more sensitive to aggregation induced by adenosine diphosphate and sodium arachidonate than controls. Thromboxane B2 levels in the plasma of infected mice were greater than controls. These data support the hypothesis that heightened platelet reactivity and endothelial cell dysfunction are associated with acute Chagas' disease and may cause coronary microvascular spasm and/or occlusion.
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