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March 13, 2006The Journal of Experimental Medicine452 citationsOpen Access

Targeting coagulation factor XII provides protection from pathological thrombosis in cerebral ischemia without interfering with hemostasis

CKChristoph KleinschnitzGSGuido StollMBMartin Bendszus

Key Points

  • This study aims to investigate the role of coagulation factor XII in pathological thrombosis during cerebral ischemia.
  • Utilized a mouse model of transient middle cerebral artery occlusion to assess brain injury.
  • Compared brain infarction volumes between FXII-deficient mice, FXII inhibitor-treated mice, and wild-type controls.
  • Analyzed fibrin formation and reconstitution experiments with human FXII in deficient mice.
  • FXII-deficient and FXII inhibitor-treated mice showed significantly less brain infarction volume compared to wild-type controls.
  • No increase in hemorrhage was observed despite reduced fibrin formation in ischemic vessels.
  • Factor XI deficiency also conferred protection against pathological clotting, highlighting FXII's role in thrombus formation.

Abstract

Formation of fibrin is critical for limiting blood loss at a site of blood vessel injury (hemostasis), but may also contribute to vascular thrombosis. Hereditary deficiency of factor XII (FXII), the protease that triggers the intrinsic pathway of coagulation in vitro, is not associated with spontaneous or excessive injury-related bleeding, indicating FXII is not required for hemostasis. We demonstrate that deficiency or inhibition of FXII protects mice from ischemic brain injury. After transient middle cerebral artery occlusion, the volume of infarcted brain in FXII-deficient and FXII inhibitor-treated mice was substantially less than in wild-type controls, without an increase in infarct-associated hemorrhage. Targeting FXII reduced fibrin formation in ischemic vessels, and reconstitution of FXII-deficient mice with human FXII restored fibrin deposition. Mice deficient in the FXII substrate factor XI were similarly protected from vessel-occluding fibrin formation, suggesting that FXII contributes to pathologic clotting through the intrinsic pathway. These data demonstrate that some processes involved in pathologic thrombus formation are distinct from those required for normal hemostasis. As FXII appears to be instrumental in pathologic fibrin formation but dispensable for hemostasis, FXII inhibition may offer a selective and safe strategy for preventing stroke and other thromboembolic diseases.

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Cite This Study

Kleinschnitz et al. (2006) studied this question.

synapsesocial.com/papers/69d8a4c1945c639271bed8d3https://doi.org/10.1084/jem.20052458
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