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Updated: May 15, 2025

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Published on: February 27, 2018
Oxidative Stress in Huntington's Disease
Félix Javier Jiménez-Jiménez1, Hortensia Alonso-Navarro1, Elena García-Martín2
1Section of Neurology, Hospital Universitario del Sureste, Arganda del Rey, 28500 Madrid, Spain.
Insights
Oxidative stress may play a role in Huntington's disease (HD) pathogenesis. While animal models show increased oxidative stress, human studies are inconclusive, though a meta-analysis suggests altered blood markers in HD patients.
Area of Science:
- Neuroscience
- Biochemistry
- Genetics
Background:
- Huntington's disease (HD) pathogenesis remains unclear.
- Growing evidence suggests a potential role for oxidative stress in HD.
- Research spans experimental models and human patient samples.
Purpose of the Study:
- To review studies measuring oxidative stress in HD experimental models and patients.
- To examine gene variants related to oxidative stress in HD.
- To synthesize current understanding of oxidative stress in Huntington's disease.
Main Methods:
- Narrative review of published literature.
- Analysis of studies on neurotoxic models, transgenic animals, and cell cultures.
- Examination of data from human patient tissues, plasma, serum, and blood cells.
Main Results:
- Experimental HD models consistently show increased oxidative stress markers and/or decreased antioxidant substances.
- Studies in human HD patients yield inconclusive results due to limited data.
- A meta-analysis of blood studies indicates elevated lipid peroxidation, OH8dG, and GPx activity, with decreased GSH in HD patients.
Conclusions:
- Oxidative stress is implicated in HD, particularly evident in experimental models.
- Human studies require more robust, large-scale, multicenter investigations with long-term follow-up.
- Further research is crucial to definitively establish the role of oxidative stress in Huntington's disease progression.
Abstract:
Although the pathogenesis of the neurodegenerative phenomena of Huntington's disease (HD) is not well known, in the last 30 years, numerous data have been published that suggest a possible role of oxidative stress. The majority of studies regarding this issue were performed in different experimental models of this disease (neurotoxic models such as intraperitoneal injection of 3-nitropropionic acid or intrastriatal injection of quinolinic acid, transgenic animal models for HD, and cell cultures) and, less frequently, in samples of brain tissue, plasma/serum, blood cells, and other tissues from patients with a genetic-molecular diagnosis of presymptomatic and symptomatic HD compared to healthy controls. In this narrative review, we have summarized the data from the main studies in which oxidative stress parameters have been measured both in patients with HD and in experimental models of the same disease, as well as the few studies on gene variants involved in oxidative stress in patients with HD. Most studies addressing this issue in experimental models of HD have shown an increase in markers or oxidative stress, a decrease in antioxidant substances, or both. However, the results of studies on patients with HD have not been conclusive as few studies have been published on the matter. However, a meta-analysis of blood studies on HD patients (including a pool of serum and blood cell studies) has shown an increase in lipid peroxidation markers, OH8dG concentrations, and GPx activity and a decrease in GSH levels. Future prospective and multicenter studies with a long-term follow-up period involving a large number of HD patients and healthy controls are needed to address this topic.
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