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Mitochondrial targeted antioxidants as potential therapy for huntington's disease
Shubham Upadhayay1, Puneet Kumar2
1Department of Pharmacology, Central University of Punjab, Ghudda, Bathinda, Punjab, 151401, India.
Insights
Mitochondria-targeted antioxidants (MTAXs) show promise for Huntington's disease (HD) by improving mitochondrial function and antioxidant activity. These compounds offer a novel therapeutic strategy for neuroprotection in HD patients.
Area of Science:
- Neuroscience
- Genetics
- Pharmacology
Background:
- Huntington's disease (HD) is an inherited neurodegenerative disorder.
- HD involves CAG repeat expansion in the huntingtin (Htt) gene, leading to striatal neuron degeneration and oxidative stress.
- Impaired mitochondrial function and reduced antioxidant activity contribute to HD pathogenesis.
Purpose of the Study:
- To review clinical and preclinical studies on mitochondria-targeted antioxidants (MTAXs) for Huntington's disease.
- To evaluate the neuroprotective effects of MTAXs in HD models.
- To highlight the potential of MTAXs in future HD drug discovery.
Main Methods:
- Literature review of clinical and preclinical studies.
- Analysis of MTAXs' impact on mitochondrial function and signaling pathways.
- Examination of MTAXs' efficacy in Huntington's disease models.
Main Results:
- Mitochondria-targeted antioxidants (MTAXs) improve mitochondrial function and antioxidant capacity in HD.
- MTAXs modulate key signaling pathways like PGC-1α, Drp1, Fis1, and SIRT-1.
- Several MTAXs (e.g., SS31, MitoQ, bezafibrate) demonstrate neuroprotective effects in HD.
Conclusions:
- MTAXs represent a promising therapeutic approach for Huntington's disease.
- Targeting mitochondria offers a more effective strategy than general antioxidants for HD.
- MTAXs hold significant potential for future drug development in neurodegenerative disorders.
Abstract:
Huntington's disease (HD) is an inherited neurodegenerative disorder caused by an expansion in CAG repeat on huntington (Htt) gene, leading to a degeneration of GABAergic medium spiny neurons (MSNs) in the striatum, resulting in the generation of reactive oxygen species, and decrease antioxidant activity. These pathophysiological alterations impair mitochondrial functions, leading to an increase in involuntary hyperkinetic movement. However, researchers investigated the neuroprotective effect of antioxidants using various animal models. Still, their impact is strictly limited to curtailing oxidative stress and increasing the antioxidant enzyme in the brain, which is less effective in HD. Meanwhile, researchers discovered Mitochondria-targeted antioxidants (MTAXs) that can improve mitochondrial functions and antioxidant activity through the modulation of mitochondrial signaling pathways, including peroxisome proliferator-activated receptor (PPAR)-coactivator 1 (PGC-1α), dynamin-related protein 1 (Drp1), mitochondrial fission protein 1 (Fis1), and Silent mating type information regulation 2 homolog 1 (SIRT-1), showing neuroprotective effects in HD. The present review discusses the clinical and preclinical studies that investigate the neuroprotective effect of MTAXs (SS31, XJB-5-131, MitoQ, bezafibrate, rosiglitazone, meldonium, coenzyme Q10, etc.) in HD. This brief literature review will help to understand the relevance of MTAXs in HD and enlighten the importance of MTAXs in future drug discovery and development.
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