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Dual inhibition of factor XIIa and factor XIa as a therapeutic approach for safe thromboprotection
Stéphanie Demoulin1, Edmond Godfroid1, Cédric Hermans2
1Bioxodes S.A., Marche-en-Famenne, Belgium.
Abstract:
Clinical practice shows that a critical unmet need in the field of medical device-associated thrombosis prevention is the availability of an anticoagulant therapy without hemorrhagic risk. In the quest for new drugs that are at least as effective as those currently available, while avoiding bleeding complications, molecules that target nearly every step of the coagulation pathway have been developed. Among these molecules, inhibitors of factor XII (FXII) or factor XI (FXI) are promising alternatives as deficiencies in these factors protect against thrombosis without causing spontaneous hemorrhage, as revealed by epidemiological and preclinical data. Ixodes ricinus-contact phase inhibitor (Ir-CPI), a new anticoagulant candidate with an innovative mechanism of action could be this ideal anticoagulant agent for safe prevention from clotting on medical devices. This protein, which selectively binds to FXIIa, FXIa, and plasma kallikrein and inhibits the reciprocal activation of FXII, prekallikrein, and FXI in human plasma, was shown to prevent thrombosis in an ovine cardiopulmonary bypass system associated with cardiac surgeries. Furthermore, as opposed to unfractionated heparin, Ir-CPI appears to be devoid of bleeding risk. This review outlines the rationale for targeting upstream coagulation factors in order to prevent medical device-associated thrombosis; examines the novel approaches under development; and focuses on Ir-CPI, which shows promising properties in the field of thrombosis prevention.
Insights
A novel anticoagulant, Ixodes ricinus-contact phase inhibitor (Ir-CPI), shows promise for preventing medical device-associated thrombosis. This therapy targets upstream coagulation factors, offering effective clotting prevention without increasing bleeding risk.
Area of Science:
- Biochemistry
- Hematology
- Pharmacology
Background:
- Medical device-associated thrombosis is a significant clinical challenge.
- Current anticoagulants carry a risk of bleeding complications.
- Targeting upstream coagulation factors like FXII and FXI offers a potential solution for safer thrombosis prevention.
Purpose of the Study:
- To review the rationale for targeting upstream coagulation factors in thrombosis prevention.
- To examine novel anticoagulant approaches.
- To focus on Ir-CPI as a potential anticoagulant for medical devices.
Main Methods:
- Review of existing literature on coagulation factors and thrombosis.
- Analysis of preclinical data on Ir-CPI.
- Evaluation of Ir-CPI's mechanism of action and efficacy in an ovine cardiopulmonary bypass model.
Main Results:
- Deficiencies in Factor XII (FXII) and Factor XI (FXI) are associated with reduced thrombosis risk without spontaneous hemorrhage.
- Ir-CPI selectively inhibits FXIIa, FXIa, and plasma kallikrein, disrupting coagulation cascade activation.
- Ir-CPI demonstrated thrombosis prevention in an ovine cardiopulmonary bypass model and appeared to lack the bleeding risk of unfractionated heparin.
Conclusions:
- Targeting upstream coagulation factors is a promising strategy for medical device-associated thrombosis prevention.
- Ir-CPI exhibits a novel mechanism of action with potential for safe and effective anticoagulation.
- Ir-CPI represents a promising candidate for preventing thrombosis associated with medical devices without an increased risk of bleeding.
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