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Novel inhibitor ZED3197 as potential drug candidate in anticoagulation targeting coagulation FXIIIa (F13a)
Ralf Pasternack1, Christian Büchold1, Robert Jähnig1
1Zedira GmbH, Darmstadt, Germany.
Background:
Factor XIII (FXIII) is the final enzyme of the coagulation cascade. While the other enzymatic coagulation factors are proteases, FXIII belongs to the transglutaminase family. FXIIIa covalently crosslinks the fibrin clot and represents a promising target for drug development to facilitate fibrinolysis. However, no FXIII-inhibiting compound has entered clinical trials. Here, we introduce the features of a peptidomimetic inhibitor of FXIIIa (ZED3197) as a potential drug candidate.
Methods:
The potency of ZED3197 against FXIIIa and the selectivity against other human transglutaminases were characterized using transamidation and isopeptidase assays. The inhibition of fibrin crosslinking was evaluated by biochemical methods and thromboelastometry. Further, the pharmacology of the compound was explored in a rabbit model of venous stasis and reperfusion.
Results:
ZED3197 proved to be a potent and selective inhibitor of human FXIIIa. Further, the compound showed broad inhibitory activity against cellular FXIIIA from various animal species. Rotational thromboelastometry in whole human blood indicated that the inhibitor, in a dose-dependent manner, prolonged clot formation, reduced clot firmness, and facilitated clot lysis without affecting the clotting time, indicating minimal impact on hemostasis. In vivo, the novel FXIIIa inhibitor effectively decreased the weight of clots and facilitated flow restoration without prolongation of the bleeding time.
Conclusions:
ZED3197 is the first drug-like potent compound targeting FXIIIa, a yet untapped target in anticoagulation. Due to the function of FXIII downstream of thrombin the approach provides minimal impact on hemostasis. In vivo data imply that the inhibitor dissociates an antithrombotic effect from increased bleeding tendency.
Insights
A novel drug candidate, ZED3197, potently inhibits Factor XIIIa (FXIIIa), an enzyme crucial for blood clot stabilization. This FXIIIa inhibitor shows antithrombotic effects with minimal impact on hemostasis and bleeding risk.
Area of Science:
- Biochemistry
- Pharmacology
- Hematology
Background:
- Factor XIII (FXIII) is a transglutaminase, distinct from other coagulation proteases.
- FXIIIa stabilizes fibrin clots through covalent crosslinking.
- FXIIIa is a potential drug target for modulating fibrinolysis and anticoagulation.
Purpose of the Study:
- To characterize ZED3197, a peptidomimetic inhibitor of FXIIIa.
- To evaluate ZED3197's potential as a drug candidate for anticoagulation.
Main Methods:
- Assessed ZED3197 potency and selectivity against FXIIIa and other transglutaminases.
- Evaluated fibrin crosslinking inhibition using biochemical assays and thromboelastometry.
- Explored ZED3197 pharmacology in a rabbit model of venous stasis and reperfusion.
Main Results:
- ZED3197 demonstrated potent and selective inhibition of human FXIIIa with cross-species activity.
- In vitro, ZED3197 dose-dependently facilitated clot lysis and reduced firmness with minimal impact on clotting time.
- In vivo, ZED3197 reduced clot weight and improved blood flow without increasing bleeding time.
Conclusions:
- ZED3197 is the first potent, drug-like FXIIIa inhibitor targeting a novel anticoagulation pathway.
- Its mechanism, downstream of thrombin, minimizes impact on hemostasis.
- In vivo data suggest ZED3197 offers antithrombotic benefits without a heightened bleeding risk.
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