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Published on: July 14, 2023
New and Emerging Drug and Gene Therapies for Friedreich Ataxia
Varlli Scott1,2, Martin B Delatycki1,2,3, Geneieve Tai1
1Bruce Lefroy Centre for Genetic Health Research, Murdoch Children's Research Institute, Parkville, VIC, 3052, Australia.
Abstract:
The life shortening nature of Friedreich Ataxia (FRDA) demands the search for therapies that can delay, stop or reverse its relentless trajectory. This review provides a contemporary position of drug and gene therapies for FRDA currently in phase 1 clinical trials and beyond. Despite significant scientific advances in the specificity of both compounds and targets developed and investigated, challenges remain for the advancement of treatments in a limited recruitment population. Currently therapies focus on reducing oxidative stress and improving mitochondrial function, modulating frataxin controlled metabolic pathways and gene replacement and editing. Approval of omaveloxolone, the first treatment for individuals with FRDA aged 16 years and over, has created much excitement for both those living with FRDA and those that care for them. The process of approval of omaveloxolone by the US Food and Drug Administration highlighted the importance of sensitive outcome measures and the significant role of data from natural history studies.
Insights
Friedreich Ataxia (FRDA) therapies are advancing with new drug and gene treatments in clinical trials. Omaveloxolone
Area of Science:
- Neuroscience
- Genetics
- Pharmacology
Background:
- Friedreich Ataxia (FRDA) is a life-shortening neurodegenerative disease.
- Current treatments aim to slow disease progression.
Purpose of the Study:
- To review current drug and gene therapies for FRDA in clinical trials.
- To discuss challenges and advancements in FRDA treatment development.
Main Methods:
- Review of ongoing Phase 1 clinical trials and beyond.
- Analysis of therapeutic strategies including oxidative stress reduction, mitochondrial function improvement, metabolic pathway modulation, and gene therapy.
Main Results:
- Omaveloxolone is the first approved treatment for FRDA (ages 16+).
- Significant scientific progress in targeted therapies and gene editing techniques.
- Challenges persist due to small patient populations.
Conclusions:
- Advancements in drug and gene therapies offer new hope for FRDA patients.
- Sensitive outcome measures and natural history data are crucial for treatment approval.
- Omaveloxolone approval marks a significant milestone in FRDA therapeutics.
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