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In Vitro Enzyme Measurement to Test Pharmacological Chaperone Responsiveness in Fabry and Pompe Disease
Published on: December 20, 2017
Fabry disease: recent advances in pathology, diagnosis, treatment and monitoring
1Department for General Pediatrics, University Children's Hospital, Heinrich-Heine-University Düsseldorf, Germany. hoffmann@med.uni-duesseldorf.de
Background:
In Fabry disease (alpha-galactosidase A deficiency) accumulation of Globotriaosylceramide (Gb3) leads to progressive organ failure and premature death. The introduction of enzyme replacement therapy (ERT) was the beginning of a new era in this disorder, and has prompted a broad range of research activities. This review aims to summarize recent developments and progress with high impact for Fabry disease.
Methods:
A Pubmed analysis was performed using the search terms "Fabry disease", "Anderson-Fabry disease", "alpha-galactosidase A" and "Gb3". Of the given publications by 31st January 2009 only original articles recently published in peer reviewed journals were included for this review. Case reports were included only when they comprised a new aspect. In addition we included relevant conference abstracts when the results had not already been published as original articles.
Results:
Apart from Gb3-accumulation cellular and organ specific damages may be related also to inflammatory and immunological consequences. It will be interesting whether this may lead to new therapeutic strategies in the treatment of Fabry disease. Since newborn screening is still difficult in Fabry disease, detection of patients in populations at risk is of great importance. Undiagnosed patients with Fabry disease may still be found in cohorts of subjects with renal diseases, cardiomyopathy and TIA or stroke. Efforts should be undertaken to identify these individuals and initialise ERT in order to hault disease progression. It has also been demonstrated that Gb3-accumulation leads to pre-clinical damages and it is believed that early treatment may be the only possibility so far to prevent irreversible organ damage.
Insights
Enzyme replacement therapy (ERT) offers new hope for Fabry disease patients. Early detection and treatment are crucial to halt disease progression and prevent irreversible organ damage caused by Globotriaosylceramide (Gb3) accumulation.
Area of Science:
- Biochemistry
- Genetics
- Rare Diseases
Background:
- Fabry disease, a genetic disorder caused by alpha-galactosidase A deficiency, leads to Globotriaosylceramide (Gb3) accumulation.
- This accumulation results in progressive organ failure and premature death.
- Enzyme replacement therapy (ERT) has revolutionized Fabry disease management.
Purpose of the Study:
- To review recent advancements and high-impact developments in Fabry disease research.
- To highlight progress in understanding disease mechanisms and therapeutic strategies.
Main Methods:
- A comprehensive literature search was conducted on PubMed using key terms related to Fabry disease and alpha-galactosidase A.
- Included were original articles published in peer-reviewed journals up to January 31, 2009.
- Relevant conference abstracts with unpublished results were also incorporated.
Main Results:
- Beyond Gb3 accumulation, inflammatory and immunological factors contribute to cellular and organ damage in Fabry disease.
- Newborn screening for Fabry disease remains challenging, emphasizing the importance of identifying patients in at-risk populations (e.g., those with renal disease, cardiomyopathy, TIA/stroke).
- Early ERT initiation is vital to halt disease progression and prevent irreversible organ damage, as Gb3 accumulation causes pre-clinical damage.
Conclusions:
- Early detection and timely ERT are critical for managing Fabry disease and improving patient outcomes.
- Further research into inflammatory and immunological pathways may reveal novel therapeutic targets.
- Identifying undiagnosed individuals with Fabry disease is essential for effective intervention.
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