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Catheter Ablation in Combination With Left Atrial Appendage Closure for Atrial Fibrillation
Published on: February 26, 2013
Novel and experimental anticoagulant strategies beyond current direct oral anticoagulants
Holly C Dobbing1, Katherine L Webb1, Robert A S Ariëns1
1Leeds Thrombosis Network, Discovery and Translational Science Department, Leeds Institute of Cardiovascular and Metabolic Medicine, School of Medicine, University of Leeds, Leeds, United Kingdom.
Insights
Novel anticoagulation and thrombolytic therapies beyond direct oral anticoagulants (DOACs) are emerging to address bleeding risks. Research explores contact pathway inhibition, common pathway targets, fibrin/fibrinogen, FXIII, and natural anticoagulant/fibrinolytic mechanisms for safer thrombosis treatment.
Area of Science:
- Cardiovascular Sciences
- Hematology
- Pharmacology
Background:
- Thrombosis is the leading global cause of death, encompassing myocardial infarction, stroke, and venous thromboembolism.
- Direct oral anticoagulants (DOACs) have advanced treatment but carry significant bleeding risks.
- There is a critical need for safer and more effective antithrombotic therapies.
Purpose of the Study:
- To review the current state-of-the-art in novel and experimental anticoagulation and fibrino/thrombolytic therapies beyond DOACs.
- To evaluate the preclinical and clinical progress of various antithrombotic targets.
- To identify promising future developments in thrombosis treatment.
Main Methods:
- Comprehensive review of in-vitro, in-vivo, and clinical trial studies on emerging antithrombotic strategies.
- Analysis of contact pathway inhibition (FXIIa, FXIa).
- Investigation of common pathway targets (FV, FVIII, FIX), fibrin/fibrinogen, FXIII, and natural anticoagulant/fibrinolytic pathways.
Main Results:
- Summarized research on contact pathway inhibition, common pathway targets, fibrin/fibrinogen, FXIII, and natural anticoagulant/fibrinolytic mechanisms.
- Assessed the progression of studies from in-vitro to in-vivo and clinical trials.
- Highlighted novel areas and evaluated relative progress of selected targets.
Conclusions:
- Emerging anticoagulation and thrombolytic therapies beyond DOACs show promise for improved safety and efficacy.
- Further research and clinical trials are essential to translate these novel mechanisms into clinical practice.
- Understanding thrombosis mechanisms offers potential for developing safer antithrombotic agents.
Abstract:
Thrombosis, when considering all its manifestations including myocardial infarction, stroke, and venous thromboembolism, constitutes the leading cause of death world-wide. Treatment of thrombotic diseases has been revolutionized by direct oral anticoagulants (DOACs) targeting thrombin and factor (F)Xa. However, the therapeutic or prophylactic use of DOACs is not without limitations, including persistent and significant bleeding risks. In this review, we summarize and discuss current state-of-the-art of novel and experimental anticoagulation and fibrinolytic/thrombolytic therapies beyond DOACs. In particular, we review studies investigating contact pathway inhibition, including in vitro and in vivo studies of FXIIa and FXIa inhibition, and clinical trials of contact pathway inhibition. We review in vitro and in vivo studies investigating inhibition of common pathway coagulation targets, including FV, FVIII, and FIX. This is followed by analysis of options for the therapeutic targeting of fibrin or fibrinogen and FXIII. Next, we explore opportunities for the therapeutic harnessing of naturally occurring anticoagulant pathways as well as fibrinolytic mechanisms. The current state-of-the-art research for each of these mechanisms is summarized, including whether studies have progressed from in vitro to in vivo experimentation and whether clinical trials have been performed. We highlight particularly novel areas of interest and include evaluation of the relative preclinical and clinical trial progress for the selected targets. The increased understanding of mechanisms driving thrombosis holds promise for future developments in novel anticoagulants that may contribute to reducing the impact and burden of thrombotic diseases while improving safety of current therapeutic options.
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