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November 9, 2021Journal of Thrombosis and Haemostasis65 citationsOpen Access

Milvexian, an orally bioavailable, small‐molecule, reversible, direct inhibitor of factor XIa: In vitro studies and in vivo evaluation in experimental thrombosis in rabbits

PWPancras C. WongECEarl J. CrainJBJeffrey M. Bozarth

Key Result

In a rabbit model of experimental thrombosis, milvexian dose-dependently preserved carotid blood flow up to 76% and reduced thrombus weight by up to 70% without increasing bleeding time.

Structured PICO

P
Population
Preclinical study evaluating the in vitro properties and in vivo antithrombotic efficacy of milvexian in male New Zealand white rabbits with experimental thrombosis.
I
Intervention
Milvexian (0.063 + 0.04, 0.25 + 0.17, and 1 + 0.67 mg/kg+mg/kg/h) alone or combined with aspirin 4 mg/kg/h IV.
C
Comparator
Vehicle (for treatment model) or aspirin monotherapy (for bleeding time model).
O
Outcome
Carotid blood flow (CBF) preservation, thrombus weight reduction, and cuticle bleeding time.surrogate

In rabbit models, the factor XIa inhibitor milvexian effectively prevented and treated arterial thrombosis without increasing bleeding time, even when combined with aspirin.

Main Result

Absolute Event Rate: 76% vs 11%

p-value: p=<0.05

Limitations

  • Preclinical animal model results may not fully translate to human clinical outcomes.
  • Further clinical studies are needed to explore the therapeutic index of milvexian when combined with aspirin in humans.

Abstract

BACKGROUND: Milvexian (BMS-986177/JNJ-70033093) is an orally bioavailable factor XIa (FXIa) inhibitor currently in phase 2 clinical trials. OBJECTIVES: To evaluate in vitro properties and in vivo characteristics of milvexian. METHODS: In vitro properties of milvexian were evaluated with coagulation and enzyme assays, and in vivo profiles were characterized with rabbit models of electrolytic-induced carotid arterial thrombosis and cuticle bleeding time (BT). RESULTS: 0.11 and 0.38 nM, respectively). Milvexian increased activated partial thromboplastin time (APTT) without changing prothrombin time and potently prolonged plasma APTT in humans and rabbits. Milvexian did not alter platelet aggregation to ADP, arachidonic acid, or collagen. Milvexian was evaluated for in vivo prevention and treatment of thrombosis. For prevention, milvexian 0.063 + 0.04, 0.25 + 0.17, and 1 + 0.67 mg/kg+mg/kg/h preserved 32 ± 6*, 54 ± 10*, and 76 ± 5%* of carotid blood flow (CBF) and reduced thrombus weight by 15 ± 10*, 45 ± 2*, and 70 ± 4%*, respectively (*p < .05; n = 6/dose). For treatment, thrombosis was initiated for 15 min and CBF decreased to 40% of control. Seventy-five minutes after milvexian administration, CBF averaged 1 ± 0.3, 39 ± 10, and 66 ± 2%* in groups treated with vehicle and milvexian 0.25 + 0.17 and 1 + 0.67 mg/kg+mg/kg/h, respectively (*p < .05 vs. vehicle; n = 6/group). The combination of milvexian 1 + 0.67 mg/kg+mg/kg/h and aspirin 4 mg/kg/h intravenous did not increase BT versus aspirin monotherapy. CONCLUSIONS: Milvexian is an effective antithrombotic agent with limited impact on hemostasis, even when combined with aspirin in rabbits. This study supports inhibition of FXIa with milvexian as a promising antithrombotic therapy with a wide therapeutic window.

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Cite This Study

Wong et al. (2021) studied Experimental thrombosis. Milvexian vs. Vehicle was evaluated on Preservation of carotid blood flow (highest dose) (p=<0.05). In a rabbit model of experimental thrombosis, milvexian dose-dependently preserved carotid blood flow up to 76% and reduced thrombus weight by up to 70% without increasing bleeding time.

synapsesocial.com/papers/6a338d56564550b2400e7548https://doi.org/10.1111/jth.15588
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