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Thrombophilia as a multigenic disease
B Zöller1, P García de Frutos, A Hillarp
1Department of Clinical Chemistry, University Hospital, Malmö, Lund University, Sweden.
Insights
Inherited thrombophilia, particularly activated protein C resistance (APC resistance), significantly elevates venous thrombosis risk. Genetic defects in the protein C system and prothrombin gene are key factors in hypercoagulable states.
Area of Science:
- Hematology
- Genetics
- Thrombosis Research
Background:
- Venous thrombosis affects 1 in 1000 individuals annually.
- The disease is multifactorial, with genetic and environmental risk factors.
- Genetic defects often impact natural anticoagulant pathways, especially the protein C system.
Purpose of the Study:
- To highlight the significance of genetic factors in inherited thrombophilia.
- To emphasize defects within the protein C system contributing to thrombosis.
- To review the role of inherited hypercoagulable states in venous thrombosis pathogenesis.
Main Methods:
- Integration of published Medline database results.
- Inclusion of original research studies on thrombophilia.
- Review of genetic factors influencing hemostatic balance.
Main Results:
- Activated protein C (APC) resistance, caused by a factor V (FV) gene mutation (FV:Q506), is the most common inherited thrombophilia.
- The FV:Q506 mutation increases thrombosis risk 5-10 fold and is found in 20-60% of Caucasian thrombosis patients.
- A prothrombin gene mutation (G20210A) is the second most common risk factor, present in 6-7% of thrombosis patients.
- Deficiencies in antithrombin, protein C, or protein S are less common but significant genetic risk factors.
Conclusions:
- An imbalanced hemostatic system favoring coagulation increases venous thrombosis risk.
- Inherited defects lead to lifelong hypercoagulable states and increased thrombosis risk.
- Combinations of genetic defects are common and significantly elevate thrombosis risk.
Background And Objective:
Venous thrombosis is a common disease annually affecting 1 in 1000 individuals. The multifactorial nature of the disease is illustrated by the frequent identification of one or more predisposing genetic and/or environmental risk factors in thrombosis patients. Most of the genetic defects known today affect the function of the natural anticoagulant pathways and in particular the protein C system. This presentation focuses on the importance of the genetic factors in the pathogenesis of inherited thrombophilia with particular emphasis on those defects which affect the protein C system.
Information Sources:
Published results in articles covered by the Medline database have been integrated with our original studies in the field of thrombophilia.
State Of The Art And Perspectives:
The risk of venous thrombosis is increased when the hemostatic balance between pro- and anti-coagulant forces is shifted in favor of coagulation. When this is caused by an inherited defect, the resulting hypercoagulable state is a lifelong risk factor for thrombosis. Resistance to activated protein C (APC resistance) is the most common inherited hypercoagulable state found to be associated with venous thrombosis. It is caused by a single point mutation in the factor V (FV) gene, which predicts the substitution of Arg506 with a Gln. Arg506 is one of three APC-cleavage sites and the mutation results in the loss of this APC-cleavage site. The mutation is only found in Caucasians but the prevalence of the mutant FV allele (FV:Q506) varies between countries. It is found to be highly prevalent (up to 15%) in Scandinavian populations, in areas with high incidence of thrombosis. FV:Q506 is associated with a 5-10-fold increased risk of thrombosis and is found in 20-60% of Caucasian patients with thrombosis. The second most common inherited risk factor for thrombosis is a point mutation (G20210A) in the 3' untranslated region of the prothrombin gene. This mutation is present in approximately 2% of healthy individuals and in 6-7% of thrombosis patients, suggesting it to be a mild risk factor of thrombosis. Other less common genetic risk factors for thrombosis are the deficiencies of natural anticoagulant proteins such as antithrombin, protein C or protein S. Such defects are present in less than 1% of healthy individuals and together they account for 5-10% of genetic defects found in patients with venous thrombosis. Owing to the high prevalence of inherited APC resistance (FV:Q506) and of the G20210A mutation in the prothrombin gene, combinations of genetic defects are relatively common in the general population. As each genetic defect is an independent risk factor for thrombosis, individuals with multiple defects have a highly increased risk of thrombosis. As a consequence, multiple defects are often found in patients with thrombosis.