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Published on: September 9, 2012
The thrombotic paradox in congenital fibrinogen deficiencies: from pathophysiology to practice
Samin Mohsenian1, Alessandro Casini2, Flora Peyvandi1,3
1Department of Pathophysiology and Transplantation, Università degli Studi di Milano, Milan, Italy.
Insights
Congenital fibrinogen deficiencies (CFDs) paradoxically increase thrombosis risk due to fibrinogen abnormalities. Managing this requires balancing bleeding and clotting risks, with limited evidence guiding treatment.
Area of Science:
- Hematology
- Genetics
- Thrombosis Research
Background:
- Congenital fibrinogen deficiencies (CFDs) are rare inherited disorders affecting fibrinogen quantity or quality.
- While typically linked to bleeding, CFDs are increasingly associated with arterial and venous thrombosis.
- The mechanisms involve impaired thrombin clearance, abnormal clot structure, and reduced fibrinolysis.
Purpose of the Study:
- To review the epidemiology, mechanisms, and clinical management of thrombosis in CFDs.
- To highlight knowledge gaps and the need for further research.
Main Methods:
- Literature review of existing evidence on thrombosis in congenital fibrinogen deficiencies.
- Analysis of proposed pathogenetic mechanisms, including intrinsic fibrinogen variants and extrinsic factors.
- Discussion of current challenges and approaches to managing thrombosis in affected patients.
Main Results:
- CFDs can lead to thrombosis through mechanisms like increased free thrombin or impaired fibrinolysis.
- Both intrinsic factors (e.g., specific fibrinogen variants) and extrinsic factors (e.g., surgery, immobilization) contribute to thrombotic risk.
- Management is complex, requiring a balance between anticoagulation and potential risks of fibrinogen replacement therapy.
Conclusions:
- The pathogenesis of thrombosis in CFDs is multifactorial and not fully understood.
- Clinical management of thrombosis in CFDs is challenging and requires individualized treatment strategies.
- Further research is crucial to improve understanding and patient outcomes.
Abstract:
Congenital fibrinogen deficiencies (CFDs) comprise rare inherited disorders characterized by quantitative (afibrinogenemia, hypofibrinogenemia) or qualitative (dysfibrinogenemia, hypodysfibrinogenemia) abnormalities of fibrinogen. While CFDs are typically associated with bleeding, a paradoxical risk of both arterial and venous thrombosis is being increasingly recognized. Proposed mechanisms include impaired thrombin clearance due to a lack of fibrin formation and structurally abnormal fibrin clots that promote thrombin release into the circulation or hinder fibrinolysis. In afibrinogenemia, the absence of fibrinogen leads to increased circulating free thrombin, while in dysfibrinogenemia, structurally abnormal fibrinogen enhances thrombotic risk. Intrinsic factors such as specific fibrinogen variants (eg, Dusart, Bordeaux) alter the fibrin structure and impair thrombin or plasmin interactions, thus promoting abnormal clot formation and reduced fibrinolysis. Coinherited prothrombotic mutations may further increase thrombotic risk. Moreover, acquired factors, including fibrinogen replacement therapy, surgery, trauma, pregnancy, and immobilization, are recognized extrinsic risk factors. The pathogenesis of thrombosis in CFDs is multifactorial and not fully elucidated. Managing thrombosis in CFDs is a clinical challenge, requiring careful balance between the risk of bleeding and thrombosis. Anticoagulation alongside fibrinogen replacement may be necessary, but must be individualized. Although fibrinogen replacement primarily carries prothrombotic potential, some studies suggest it may improve thrombin regulation in afibrinogenemia. Notably, current evidence is limited and mostly derived from case reports. This review provides an overview of the existing evidence on the epidemiology, underlying mechanisms, and clinical management of thrombosis in CFDs, highlighting knowledge gaps and the need for additional research to inform clinicians and improve patient outcomes.
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