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Updated: Aug 12, 2025

Ferric Chloride-induced Murine Thrombosis Models
Published on: September 5, 2016
Platelet tissue factor pathway inhibitor-α dampens cardiac thrombosis and associated fibrosis in mice
Susan A Maroney1, Amy E Siebert1, Nicholas D Martinez1
1Thrombosis and Hemostasis Program, Versiti Blood Research Institute, Milwaukee, WI, USA.
Background:
Tissue factor pathway inhibitor (TFPI) is the primary inhibitor of events initiating the blood coagulation pathway. Tfpi-/- mice die during embryonic development. The absence of protease-activated receptor (PAR) 4, the major thrombin receptor on mouse platelets, rescues Tfpi-/-mice to adulthood. Among the 3 TFPI isoforms in mice, TFPIα is the only isoform within platelets (pltTFPIα) and the only isoform that inhibits prothrombinase, the enzymatic complex that converts prothrombin to thrombin.
Objectives:
To determine biological functions of pltTFPIα.
Methods:
Tfpi-/-/Par4-/- mice were irradiated and transplanted with bone marrow from mice lacking or containing pltTFPIα. Thus, PAR4 expression was restored in the recipient mice, which differed selectively by the presence or absence of pltTFPIα and lacked other forms of TFPI.
Results:
Recipient mice lacking pltTFPIα had reduced survival over the 200-day posttransplant period. Necropsy revealed radiation injury associated with large intraventricular platelet-rich thrombi, whereas other organs were not affected. Thrombi were associated with fibrotic presentations, including increased collagen deposition, periostin-positive activated fibroblasts, myofibroblasts, and macrophage infiltrates. Recipient mice containing pltTFPIα showed evidence of radiation injury but lacked heart pathology.
Conclusions:
Tfpi-/-/Par4-/- mice develop severe cardiac fibrosis following irradiation and transplantation with bone marrow lacking pltTFPIα. This pathology is markedly reduced when the mice are transplanted with bone marrow containing pltTFPIα. Thus, in this model system pltTFPIα has an important physiological role in dampening pathological responses mediated by activated platelets within the heart tissue.
Insights
Platelet tissue factor pathway inhibitor alpha (pltTFPIα) protects against cardiac fibrosis and thrombi formation. Its absence in mice leads to severe heart pathology after radiation and transplantation, highlighting its crucial role in platelet-mediated responses.
Area of Science:
- Hematology
- Cardiovascular Biology
- Coagulation Cascade
Background:
- Tissue factor pathway inhibitor (TFPI) is key in regulating blood coagulation.
- TFPI deficiency is embryonic lethal, but absence of protease-activated receptor 4 (PAR4) rescues these mice.
- Platelet-specific TFPIα (pltTFPIα) is the sole TFPI isoform in platelets and inhibits prothrombinase.
Purpose of the Study:
- To elucidate the specific biological functions of pltTFPIα.
- To investigate the role of pltTFPIα in platelet-mediated responses within the heart.
Main Methods:
- Irradiation and bone marrow transplantation in Tfpi-/-/Par4-/- mice.
- Selective reconstitution of PAR4 expression with or without pltTFPIα.
- Assessment of survival, cardiac pathology, and fibrotic markers post-transplant.
Main Results:
- Mice lacking pltTFPIα exhibited reduced survival and developed significant intraventricular platelet-rich thrombi and cardiac fibrosis.
- Fibrotic changes included increased collagen, activated fibroblasts, myofibroblasts, and macrophages.
- Mice with pltTFPIα showed radiation injury but lacked cardiac pathology.
Conclusions:
- Platelet TFPIα plays a critical role in mitigating cardiac fibrosis and thrombus formation.
- pltTFPIα dampens pathological platelet activation within heart tissue.
- This study establishes a physiological role for pltTFPIα in preventing radiation-induced cardiac injury.
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