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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.

Haematologica
|March 26, 1999
PubMed

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.
Abstract

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