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A Simple Composite Phenotype Scoring System for Evaluating Mouse Models of Cerebellar Ataxia
Published on: May 21, 2010
IGF-1 as a Potential Therapy for Spinocerebellar Ataxia Type 3
Yong-Shiou Lin1, Wen-Ling Cheng1, Jui-Chih Chang2,3
1Vascular and Genomic Center, Institute of ATP, Changhua Christian Hospital, Changhua 50091, Taiwan.
Abstract:
Although the effects of growth hormone (GH) therapy on spinocerebellar ataxia type 3 (SCA3) have been examined in transgenic SCA3 mice, it still poses a nonnegligible risk of cancer when used for a long term. This study investigated the efficacy of IGF-1, a downstream mediator of GH, in vivo for SCA3 treatment. IGF-1 (50 mg/kg) or saline, once a week, was intraperitoneally injected to SCA3 84Q transgenic mice harboring a human ATXN3 gene with a pathogenic expanded 84 cytosine-adenine-guanine (CAG) repeat motif at 9 months of age. Compared with the control mice harboring a 15 CAG repeat motif, the SCA3 84Q mice treated with IGF-1 for 9 months exhibited the improvement only in locomotor function and minimized degeneration of the cerebellar cortex as indicated by the survival of more Purkinje cells with a more favorable mitochondrial function along with a decrease in oxidative stress caused by DNA damage. These findings could be attributable to the inhibition of mitochondrial fission, resulting in mitochondrial fusion, and decreased immunofluorescence staining in aggresome formation and ataxin-3 mutant protein levels, possibly through the enhancement of autophagy. The findings of this study show the therapeutic potential effect of IGF-1 injection for SCA3 to prevent the exacerbation of disease progress.
Insights
Insulin-like growth factor 1 (IGF-1) shows therapeutic potential for spinocerebellar ataxia type 3 (SCA3). IGF-1 treatment improved motor function and reduced cerebellar degeneration in SCA3 mice, offering a safer alternative to growth hormone therapy.
Area of Science:
- Neuroscience
- Genetics
- Molecular Biology
Background:
- Spinocerebellar ataxia type 3 (SCA3) is a neurodegenerative disorder.
- Growth hormone (GH) therapy poses cancer risks for long-term SCA3 treatment.
- Insulin-like growth factor 1 (IGF-1) is a downstream mediator of GH.
Purpose of the Study:
- To investigate the efficacy of IGF-1 in vivo for SCA3 treatment.
- To evaluate IGF-1 as a potentially safer alternative to GH therapy for SCA3.
Main Methods:
- SCA3 84Q transgenic mice were injected with IGF-1 (50 mg/kg) or saline weekly.
- Mice were treated for 9 months starting at 9 months of age.
- Comparisons were made with control mice (15 CAG repeat motif).
Main Results:
- IGF-1 treatment improved locomotor function in SCA3 mice.
- Cerebellar degeneration was minimized, with increased Purkinje cell survival.
- Favorable mitochondrial function, decreased oxidative stress, and reduced aggresome formation were observed.
Conclusions:
- IGF-1 injection demonstrates therapeutic potential for SCA3.
- IGF-1 may prevent disease progression by inhibiting mitochondrial fission and enhancing autophagy.
- IGF-1 represents a promising alternative to GH therapy for SCA3.

