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.

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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