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Prophylactic Treatment of Children with Hemophilia in Sweden
1Department of Clinical Sciences Lund - Pediatrics, Lund University, Lund, Sweden.
Insights
Hemophilia A and B treatment has evolved from early factor replacement to advanced therapies like extended half-life products and potential gene therapy, improving bleed protection and patient outcomes.
Area of Science:
- Hematology
- Medical Treatment
- Genetics
Background:
- Hemophilia A and B result from deficiencies in coagulation factors VIII (FVIII) or IX (FIX), respectively.
- Early and untreated hemophilia leads to joint and muscle bleeding, progressing to arthropathy.
- Historical treatments faced challenges including viral contamination from blood products.
Purpose of the Study:
- To review the historical development and advancements in hemophilia prophylaxis.
- To highlight key milestones in treatment strategies for hemophilia A and B.
- To discuss current and future therapeutic approaches, including gene therapy.
Main Methods:
- Review of historical data on hemophilia treatment protocols.
- Analysis of the introduction and impact of recombinant factor concentrates.
- Examination of advancements in inhibitor management and delivery systems.
Main Results:
- Prophylactic factor replacement, initially with FVIII and later FIX, significantly reduced bleeding episodes.
- Recombinant factor concentrates mitigated risks associated with blood-derived products.
- Innovations like immune tolerance induction, central venous lines, and extended half-life products have improved management and bleed protection.
Conclusions:
- Hemophilia prophylaxis has advanced significantly, improving quality of life for patients.
- Ongoing research into extended half-life products and gene therapy promises even better future treatments.
- Standardized assessment tools for joint health have aided global dissemination of best practices.
Abstract:
Hemophilia A/B are caused by deficiency or lack of coagulation factors VIII (FVIII) or factor IX (FIX), respectively, in plasma. A person with hemophilia develops bleeding in the joints and muscles at an early age, which, if left untreated, leads to early arthropathy. Preventive treatment can be achieved by regular (prophylactic) administration of FVIII/FIX. In 1958, this was implemented on a small scale in Sweden with FVIII in patients with severe hemophilia A, and in those with hemophilia B in 1972 when FIX became available. However, there were problems with human immunodeficiency virus and hepatitis infection from contaminated blood products. In the 1990s, recombinant FVIII and FIX concentrates were introduced. The major remaining problems then were the development of inhibitors, and the need for a venous route for the injections in very young children. High-titer inhibitors were treated by immune tolerance induction according to a modified model of the original Bonn high-dose protocol. A central venous line, i.e., Port-A-Cath, has enabled early prophylaxis in many children with poor venous access and has enabled the early start of home treatment with adequate injection frequency. Scoring systems for X-rays, magnetic resonance imaging, and function of joints were developed early in Sweden and have been widely disseminated worldwide, partly with modifications. Extended half-life products with half-life increased three to five times have been developed, which can provide superior bleed protection when dosed once-weekly and can maintain therapeutic trough levels when administered less frequently. The ultimate prophylaxis therapy in the future may be gene therapy.
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