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Advances in care of children with hemophilia
Marilyn J Manco-Johnson1, Brenda Riske, Carol K Kasper
1Mountain States Regional Hemophilia and Thrombosis Center, University of Colorado Health Sciences Center and The Children's Hospital, Denver, Colorado, USA. marilyn.manco-johnson@uchsc.edu
Insights
Advances in hemophilia care have shifted treatment to the home and community, improving quality of life. Future research aims for a cure through gene therapy, offering hope for normal life expectancy.
Area of Science:
- Hematology
- Genetics
- Pediatric Care
Background:
- Hemophilia care has transitioned from hospitals to home and community settings.
- Specialized treatment centers have driven comprehensive care, focusing on prevention and education.
- Advances in coagulation led to the identification and genetic understanding of clotting factors VIII and IX.
Purpose of the Study:
- To review the advancements in hemophilia care, treatment, and future prospects.
- To highlight the impact of scientific discoveries and treatment strategies on patient outcomes.
- To discuss the evolution of hemophilia management towards normalization of life expectancy.
Main Methods:
- Review of scientific literature and clinical advancements in hemophilia treatment.
- Analysis of the impact of recombinant technology and gene therapy.
- Examination of pharmacokinetics, pharmacoeconomics, and prophylactic regimens.
Main Results:
- Development of specialized hemophilia treatment centers improved comprehensive care.
- Recombinant technology and viral inactivation enhanced safety and availability of clotting factors.
- Prophylactic regimens enable children to lead normal lives with regular home infusions.
Conclusions:
- Children with hemophilia now have a normal life expectancy and improved quality of life.
- Gene therapy represents a promising future cure for hemophilia.
- Collaborative efforts in research and advocacy accelerate clinical advancements globally.
Abstract:
Care for children with severe hemophilia has moved from pediatric hospital wards and rehabilitation services to the home, school, and community. Advances in hemophilia are due largely to the development of specialized hemophilia treatment centers, which created a system of comprehensive care and focused healthcare efforts on prevention and education. Parallel advances in coagulation resulted in identification of clotting factors VIII and IX, elucidation of the protein molecular and biochemical structures and functions, sequencing of their respective genes and transfer of the human genes for production of proteins by recombinant technology, and development of gene therapy. The tragedy of the human immunodeficiency virus and hepatitis C raised awareness in patients as well as healthcare providers of the vulnerability of blood products to viral contamination and spurred progress in science leading to viral inactivation of purified proteins. Concomitantly, physicians treating bleeding episodes in the clinic investigated pharmacokinetics and pharmacoeconomics of various strategies of clotting factor replacement. The observation that trough factor levels as low as 1 to 2% were adequate to prevent most bleeding episodes led to current prophylactic regimens that allow boys to participate fully in school and community activities while factor concentrate is infused at home on a regular schedule. Currently, children with hemophilia look forward to a normal life expectancy and excellent health-related quality of life. Physician and community partnerships through research and advocacy societies have accelerated clinical advancements as well as extension of treatment to developing countries. The future of hemophilia promises a cure with gene therapy. Given the past accomplishments in hemophilia, a long-term solution to replacement of the genetically deficient protein lies on the horizon.
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