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Advances in Inhibitors of FXa
1Department of Medicinal Chemistry, School of Pharmaceutical Sciences, Shandong University, 44 West Culture Road, Jinan 250012, P. R. China. mashutao@sdu.edu.cn.
Insights
Thromboembolic diseases cause significant mortality. This study reviews advances in factor Xa (fXa) inhibitors, highlighting their biological activity and structure-activity relationships for improved antithrombotic therapies.
Area of Science:
- Pharmacology
- Biochemistry
- Medicinal Chemistry
Background:
- Thromboembolic diseases like DVT, PE, MI, and ischemic strokes are leading causes of global morbidity and mortality.
- Traditional anticoagulants (e.g., VKAs, UFH, LMWHs) have limitations including slow onset, dose adjustments, and interactions.
- Coagulation factor Xa (fXa) is a pivotal target in the blood coagulation cascade for antithrombotic therapy.
Purpose of the Study:
- To review recent advances in factor Xa (fXa) inhibitors.
- To focus on the biological activity and structure-activity relationship (SAR) of fXa inhibitors.
- To highlight structural inspirations and future directions for fXa inhibitor development.
Main Methods:
- Literature review of recent scientific publications on fXa inhibitors.
- Analysis of biological activity data for various fXa inhibitors.
- Examination of structure-activity relationship (SAR) studies for fXa inhibitors.
Main Results:
- Selective inhibition of fXa offers a promising therapeutic strategy by reducing thrombin generation with less impact on primary hemostasis.
- Recent research has yielded significant insights into the molecular mechanisms and structural features of effective fXa inhibitors.
- SAR studies provide crucial information for optimizing the efficacy and safety profiles of fXa inhibitors.
Conclusions:
- Factor Xa inhibitors represent a significant advancement in the treatment and prevention of thromboembolic disorders.
- Understanding the SAR of fXa inhibitors is key to designing next-generation antithrombotic agents.
- Future research should focus on further optimizing fXa inhibitors for enhanced clinical outcomes and reduced side effects.
Abstract:
Thromboembolic diseases such as deep vein thrombosis (DVT), pulmonary embolism (PE), myocardial infarction (MI) and ischemic strokes are mainly responsible for people's morbidity and mortality and have severely affected the people's quality of life all over the world. According to WHO statistics, an average of 17 million people are killed by the thromboembolic diseases each year globally. Therefore, the prevention and treatment of thromboembolic diseases have received widespread attention in recent years. Based on thrombotic mechanism, anti-thrombotic drugs are mainly divided into anticoagulants, antiplatelet agents and direct thrombolytic drugs. In particular, anticoagulants such as vitamin K antagonists (VKAs), unfractionated heparin (UFH), and low-molecular-weight heparins (LMWHs) have become the main therapies for pre-treatment of thromboembolic disorders. However, the limitations of traditional anticoagulants such as slow onset of action, dose-adjusted requirement, drug-drug and drug-food interactions have restricted their improvement in the clinical treatment. The mechanism of the thromboembolic disorders has indicated that coagulation factor Xa (fXa) plays a pivotal role in the blood coagulation cascade. Thus, selective inhibition of fXa by diminishing the amplified generation of thrombin without affecting the pre-existing thrombin levels can provide better antithrombotic effect, thereby causing less impairment of primary hemostasis. In this paper, we mainly introduce the recent advances of fXa inhibitors, with focus on their biological activity and structure-activity relationship (SAR) information. In particular, the inspirations from the structures of the fXa inhibitors and their future direction are highlighted.
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