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An exploratory metabolomic comparison of participants with fast or absent functional progression from 2CARE, a
Andrew McGarry1, Krystal Hunter2, John Gaughan3
1Department of Neurology, Cooper University Hospital and Cooper Medical School at Rowan University, Camden, NJ, USA. McGarry-Andrew@CooperHealth.edu.
Insights
Metabolite differences in Huntington's disease (HD) plasma predict faster clinical progression. Changes suggest increased oxidative stress and inflammation, potentially guiding interventions to slow disease decline.
Area of Science:
- Neuroscience
- Metabolomics
- Biochemistry
Background:
- Huntington's disease (HD) exhibits pathology beyond the central nervous system.
- Previous studies analyzed plasma and cerebrospinal fluid (CSF) metabolomes in relation to functional impairment.
Purpose of the Study:
- To explore plasma metabolite differences in individuals with HD over three years.
- To identify metabolic signatures associated with fast versus absent clinical progression.
Main Methods:
- Exploratory analysis of plasma samples from individuals with HD over a 3-year period.
- Comparison of metabolite levels between fast and absent clinical progressors.
Main Results:
- Significant differences in circulating metabolite levels were observed between fast and absent progressors (111 vs 20, p < 0.05).
- Fast progressors showed decreased levels of metabolites linked to oxidative stress, inflammation, nitric oxide/urea metabolism, and polyamines.
- Absent progressors exhibited some increased metabolite concentrations.
- Metabolite changes in fast progressors indicate elevated glucose and deficient AMPK signaling.
Conclusions:
- Metabolomic profiles can potentially predict functional decline in Huntington's disease.
- Interventions targeting arginine, polyamines, and glucose regulation may help delay HD progression.
Abstract:
Huntington's disease (HD) is increasingly recognized for diverse pathology outside of the nervous system. To describe the biology of HD in relation to functional progression, we previously analyzed the plasma and CSF metabolome in a cross-sectional study of participants who had various degrees of functional impairment. Here, we carried out an exploratory study in plasma from HD individuals over a 3-year time frame to assess whether differences exist between those with fast or absent clinical progression. There were more differences in circulating metabolite levels for fast progressors compared to absent progressors (111 vs 20, nominal p < 0.05). All metabolite changes in faster progressors were decreases, whereas some metabolite concentrations increased in absent progressors. Many of the metabolite levels that decreased in the fast progressors were higher at Screening compared to absent progressors but ended up lower by Year 3. Changes in faster progression suggest greater oxidative stress and inflammation (kynurenine, diacylglycerides, cysteine), disturbances in nitric oxide and urea metabolism (arginine, citrulline, ornithine, GABR), lower polyamines (putrescine and spermine), elevated glucose, and deficient AMPK signaling. Metabolomic differences between fast and absent progressors suggest the possibility of predicting functional decline in HD, and possibly delaying it with interventions to augment arginine, polyamines, and glucose regulation.
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