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Published on: February 28, 2012
Recent advances in anticoagulant therapy for acute coronary syndromes
1Department of Cardiology, the Cleveland Clinic, Cleveland, OH 44195, USA. topole@ccf.org
Insights
New anticoagulants like synthetic pentasaccharide show promise for acute coronary syndromes (ACS) treatment, potentially replacing unfractionated heparin (UFH) due to fewer side effects like platelet activation.
Area of Science:
- Cardiovascular Medicine
- Pharmacology
Background:
- Ischemic heart disease remains a leading cause of death globally, despite advances in acute coronary syndrome (ACS) treatment.
- Unfractionated heparin (UFH) is a standard anticoagulant for ACS but has limitations, including rebound thrombin generation and platelet activation.
- Newer anticoagulants demonstrate comparable or superior efficacy to UFH in clinical trials.
Purpose of the Study:
- To review novel molecular strategies for enhancing clinical outcomes in patients with ACS.
- To evaluate the potential of new antithrombotic agents as alternatives to UFH.
Main Methods:
- Review of current literature on antithrombotic agents in ACS treatment.
- Investigation of molecular mechanisms of novel anticoagulants, including synthetic pentasaccharides.
Main Results:
- Synthetic pentasaccharide Org31540/SR90107A selectively inhibits Factor Xa, offering potent antithrombotic activity.
- Unlike UFH, the pentasaccharide does not induce platelet activation and avoids rebound thrombin generation.
- Inhibition of the extrinsic coagulation pathway presents a new therapeutic approach for coronary thrombosis.
Conclusions:
- Emerging anticoagulants, such as the pentasaccharide, show potential to overcome UFH's limitations in ACS.
- Further large-scale clinical trials are necessary to confirm the efficacy and safety of these new agents.
Background:
Despite major advances in the treatment of acute coronary syndromes (ACS), ischemic heart disease is still the leading cause of death in the industrialized world. Although unfractionated heparin (UFH) has been the anticoagulant of choice in ACS treatments, both low-molecular-weight heparins and direct thrombin inhibitors are at least as effective as UFH in comparative clinical trials. UFH has been linked to a discontinuation rebound in thrombin generation, which is associated with greater ischemic end points than those with the direct thrombin inhibitor hirudin. Furthermore, UFH can increase platelet activation in ACS.
Methods:
This review summarizes the investigation of new molecular approaches to further improve clinical outcomes in ACS.
Results:
The more recently developed synthetic pentasaccharide Org31540/SR90107A provides potent antithrombotic activity through selective inhibition of Factor Xa by high-affinity binding to antithrombin III. Unlike UFH, the pentasaccharide does not bind platelet factor 4 and is not associated with platelet activation. New approaches to coronary thrombosis prevention/treatment that involve inhibition higher up the extrinsic coagulation pathway have been suggested. In view of its undesirable features, UFH may become obsolete with the advent of newer antithrombotic agents.
Conclusions:
Applications for the pentasaccharide and other new anticoagulants await results from definitive, large-scale trials.
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