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Updated: May 7, 2026

Ferric Chloride-induced Murine Thrombosis Models
Published on: September 5, 2016
An update on recent patents on thrombin inhibitors (2010 - 2013)
Akul Y Mehta1, Yingzi Jin, Umesh R Desai
1Virginia Commonwealth University, Institute for Structural Biology and Drug Discovery, Department of Medicinal Chemistry , 800 East Leigh Street, Suite 212, PO Box 980133, Richmond, VA 23219 , USA +1 804 828 7328 ; +1 804 827 3664 ; urdesai@vcu.edu.
Insights
Rising thromboembolic events necessitate novel anticoagulants. Research focuses on advanced direct thrombin inhibitors (DTIs) and formulation strategies to overcome limitations of current therapies.
Area of Science:
- Biochemistry
- Pharmacology
- Medicinal Chemistry
Background:
- Thromboembolic disorders show a significant increase, impacting public health.
- Existing anticoagulants like heparin and warfarin have limitations, driving the need for safer alternatives.
Purpose of the Study:
- To review recent advancements in direct thrombin inhibitors (DTIs) and related technologies.
- To identify trends in the development of novel antithrombotic agents.
Main Methods:
- Comprehensive literature and patent search across major scientific databases.
- Analysis of >35 patents detailing new chemical entities and DTI technologies.
Main Results:
- Significant emphasis on developing complex molecules, including peptide-based inhibitors, prodrugs, and allosteric inhibitors.
- Progress in formulation technologies for enhanced delivery and efficacy of DTIs.
Conclusions:
- Thrombin's complex roles necessitate sophisticated anticoagulants, moving towards 'modulators' rather than simple 'inhibitors'.
- Newer DTIs aim to precisely target thrombin's functions.
- Formulation advancements seek to improve cost-effectiveness and clinical utility.
Introduction:
Thromboembolic incidences have increased nearly 33% in the past decade and directly affect nearly 0.5% of the population. Heparin, warfarin and current direct thrombin inhibitors (DTIs), the primary anticoagulants of choice, suffer from several drawbacks. Thus, the search for an antithrombotic devoid of adverse effect continues in earnest.
Areas Covered:
Literature search covering PubMed, SciFinder(™) Scholar, Web of Knowledge, Espacenet, PatentScope and Google Patent Search was used to uncover > 35 patents describing new chemical entities and advances in DTI technologies. Our search uncovered considerable emphasis on the development of larger more complex molecules such as peptide-based inhibitors, prodrug derivatives, bivalent tryptophan zippers, triple action inhibitors and allosteric inhibitors. Advances in formulation technologies for clinically relevant DTIs have also been made.
Expert Opinion:
Thrombin is a multifaceted, dynamic enzyme with both coagulant and anticoagulant functions. Newer DTIs are attempting to fine tune thrombin's activity by targeting allosteric sites or by site-specific targeting of clotting. The complexity of thrombin's functions is driving the design of complex anticoagulants. Advancements in formulations and production processes have attempted to make traditional DTIs more cost effective to produce. The literature reveals a trend to develop a thrombin 'modulator' rather than an 'inhibitor.'
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