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The aim of the study is to learn more about the pathophysiology of acute coronary syndrome (ACS) and to evaluate the mechanisms responsible of the action and benefits of ticagrelor.
Ticagrelor is an oral and reversible inhibitor of P2Y12 receptor. Few information is available about the action of ticagrelor on the molecules involved in thrombogenesis and platelets activation in ACS.
The aim of this study is to evaluate the mechanisms of ticagrelor action in vivo.
It was observed that patients with myocardial infarction have higher blood levels of microparticles than patients with unstable angina or stable angina.
The investigators assumed that ticagrelor benefits are represented by a reduction of microparticle levels, a marker of endothelial dysfunction in patients with cardiovascular disease, and by a modification in microRNAs pattern, fragments of mRNA that have a regulatory action in various cellular processes (such as proliferation, differentiation, growth and cellular death) and represent new biomarkers in ACS.
Full description
Ticagrelor is an oral, reversibly binding P2Y12 receptor inhibitor that yields, in a dose-dependent fashion, greater and more consistent inhibition of platelet aggregation than standard regimens of clopidogrel in patients with stable atherosclerotic disease and ACS. However, little information is available regarding its complex effect on thrombogenesis and platelet activation in acute coronary syndromes setting. It has been widely demonstrated the potential role of MP in several biologic processes known to take part to pathophysiology of coronary syndromes, such as inflammation, coagulation and apoptosis. Recent studies focused on miRNAs' regulatory activity of several cellular processes, such as proliferation, differentiation, development, and cell death, and on their role as biomarkers in ACS. The investigators suppose that the observed major efficacy of ticagrelor is related to its actions on MP and microRNAs. Considering the major clinical effectiveness shown by ticagrelor in comparison with clopidogrel, the investigators hypothesize a more pronounced MP levels reduction as a possible mechanism for ticagrelor clinical benefits. Moreover, on the basis of the last evidences of microRNA involvement in the ACS pathophysiology, the investigators aim to assess the effect of ticagrelor on microRNA expression, in order to provide evidences for pleiotropic actions of this drug, which could partially explain its major efficacy in reduction of cardiovascular events in ACS patients.
In summary, principal hypothesis of the study are:
Aims of the study are:
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55 participants in 2 patient groups
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Data sourced from clinicaltrials.gov
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