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Diagnosis and Treatment of Von Willebrand Disease and Rare Bleeding Disorders

Overview
Journal J Clin Med
Specialty General Medicine
Date 2017 Apr 11
PMID 28394285
Citations 27
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Abstract

Along with haemophilia A and B, von Willebrand disease (VWD) and rare bleeding disorders (RBDs) cover all inherited bleeding disorders of coagulation. Bleeding tendency, which can range from extremely severe to mild, is the common symptom. VWD, due to a deficiency and/or abnormality of von Willebrand factor (VWF), represents the most frequent bleeding disorder, mostly inherited as an autosomal dominant trait. The diagnosis may be difficult, based on a bleeding history and different diagnostic assays, which evaluate the pleiotropic functions of VWF. Different treatment options are available for optimal management of bleeding and their prevention, and long-term outcomes are generally good. RBDs are autosomal recessive disorders caused by a deficiency of any other clotting factor, apart from factor XII, and cover roughly 5% of all bleeding disorders. The prevalence of the severe forms can range from 1 case in 500,000 up to 1 in 2-3 million, according to the defect. Diagnosis is based on bleeding history, coagulation screening tests and specific factor assays. A crucial problem in RBDs diagnosis is represented by the non-linear relationship between clinical bleeding severity and residual clotting levels; genetic diagnosis may help in understanding the phenotype. Replacement therapies are differently available for patients with RBDs, allowing the successful treatment of the vast majority of bleeding symptoms.

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References
1.
Menegatti M, Peyvandi F . Factor X deficiency. Semin Thromb Hemost. 2009; 35(4):407-15. DOI: 10.1055/s-0029-1225763. View

2.
Ruggeri Z . Structure of von Willebrand factor and its function in platelet adhesion and thrombus formation. Best Pract Res Clin Haematol. 2001; 14(2):257-79. DOI: 10.1053/beha.2001.0133. View

3.
Castaman G, Federici A, Rodeghiero F, Mannucci P . Von Willebrand's disease in the year 2003: towards the complete identification of gene defects for correct diagnosis and treatment. Haematologica. 2003; 88(1):94-108. View

4.
Mariani G, Herrmann F, Dolce A, Batorova A, Etro D, Peyvandi F . Clinical phenotypes and factor VII genotype in congenital factor VII deficiency. Thromb Haemost. 2005; 93(3):481-7. DOI: 10.1160/TH04-10-0650. View

5.
Werner E, Broxson E, TUCKER E, Giroux D, Shults J, Abshire T . Prevalence of von Willebrand disease in children: a multiethnic study. J Pediatr. 1993; 123(6):893-8. DOI: 10.1016/s0022-3476(05)80384-1. View