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Published on: October 10, 2025
Current options in the treatment of mitochondrial diseases
Mauro Scarpelli1, Maria Sofia Cotelli, Michelangelo Mancuso
1Department of Neurological Sciences and Vision, University of Verona, Verona, Italy.
Abstract:
Mitochondrial diseases (MD) are disorders caused by an impairment of the mitochondrial respiratory chain function. They are usually progressive, isolated or multi-system diseases and have variable times of onset. Because mitochondria have their own DNA (mtDNA), MD can be caused by mutations in both mtDNA and nuclear DNA (nDNA). The complexity of genetic control of mitochondrial function is in part responsible for the intra- and inter-familiar clinical heterogeneity of this class of diseases. Despite the remarkable progress in understanding of the molecular bases of these disorders, therapy of MD is quite inadequate. Present options of treatment mainly include physical, pharmacological and gene therapy approaches. Aerobic exercise and physical therapy is useful to prevent or correct deconditioning and may improve exercise tolerance. Pharmacological approach is based on removing noxious metabolites, using reactive oxygen species scavengers and administrating vitamins and cofactors which is especially important in case of primary deficiencies of specific compounds such as Coenzyme Q10. Gene therapy is fascinating but it is difficult to apply because of polyplasmy and heteroplasmy. Experimental methods include gene shifting, allotopic expression, mitochondrial transfection or correcting mtDNA mutations with specific restriction endonucleases. Here, we discussed some recent patents. Progresses in each of these fields may open interesting perspectives for the future.
Insights
Mitochondrial diseases (MD) stem from impaired mitochondrial respiratory chain function due to DNA mutations. Current therapies are inadequate, but research into physical, pharmacological, and gene therapy offers future hope.
Area of Science:
- Genetics
- Molecular Biology
- Biochemistry
Background:
- Mitochondrial diseases (MD) result from impaired mitochondrial respiratory chain function.
- These disorders can be caused by mutations in mitochondrial DNA (mtDNA) or nuclear DNA (nDNA).
- Clinical presentation exhibits significant intra- and inter-familiar heterogeneity.
Purpose of the Study:
- To review current therapeutic strategies for mitochondrial diseases.
- To discuss recent advancements and patented approaches in MD treatment.
- To explore future perspectives in managing mitochondrial disorders.
Main Methods:
- Review of physical therapy, pharmacological interventions, and gene therapy for MD.
- Discussion of experimental gene therapy techniques like gene shifting and allotopic expression.
- Analysis of recent patents related to mitochondrial disease treatments.
Main Results:
- Physical therapy can improve exercise tolerance and correct deconditioning.
- Pharmacological treatments focus on metabolite removal, antioxidant use, and cofactor supplementation (e.g., Coenzyme Q10).
- Gene therapy presents challenges due to heteroplasmy and polyplasmy but offers innovative approaches.
Conclusions:
- Therapeutic options for mitochondrial diseases remain limited despite progress in understanding their molecular basis.
- Emerging gene therapy techniques and patented innovations hold promise for future treatment development.
- A multi-faceted approach combining existing therapies with novel strategies is crucial for advancing MD care.
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