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Published on: January 22, 2017
Increased thirst and drinking in Huntington's disease and the R6/2 mouse
Nigel I Wood1, Anna O G Goodman, Jorien M M van der Burg
1Department of Pharmacology, University of Cambridge, Tennis Court Road, Cambridge CB2 1PD, United Kingdom.
Insights
Huntington's disease (HD) patients and R6/2 mice exhibit increased thirst and abnormal drinking behaviors. This suggests hypothalamic dysfunction and increased serum vasopressin, potentially indicating thirst as a clinical biomarker for HD progression.
Area of Science:
- Neuroscience
- Endocrinology
- Genetics
Background:
- Huntington's disease (HD) primarily affects the basal ganglia, but hypothalamic involvement is suggested.
- The hypothalamus regulates thirst via osmoreceptors, making it a potential site for HD-related dysfunction.
Purpose of the Study:
- To investigate altered thirst and drinking behavior as part of the Huntington's disease phenotype.
- To explore the relationship between hypothalamic vasopressin neuron changes and thirst abnormalities in HD.
Main Methods:
- Utilized the LABORAS behavioral monitoring system to track water consumption in R6/2 mice and wild-type (WT) littermates.
- Assessed xerostomia (dry mouth) via questionnaire in HD patients and controls, alongside urine osmolality and serum vasopressin measurements.
Main Results:
- R6/2 mice showed significantly increased drinking time and volume compared to WT mice by 10 weeks.
- HD patients reported higher xerostomia scores, indicating increased thirst.
- Serum vasopressin was elevated in HD patients, suggesting dysregulated hypothalamic vasopressin release.
Conclusions:
- Altered drinking behavior and increased thirst are present in both R6/2 mice and HD patients.
- Hypothalamic dysfunction, specifically decreased vasopressin neurons and dysregulated vasopressin release, likely contributes to these thirst abnormalities.
- Increased thirst may serve as a clinically relevant biomarker for Huntington's disease progression and associated weight loss.
Abstract:
While Huntington's disease (HD) is a condition that primarily involves the basal ganglia, there is evidence to suggest that the hypothalamus is also affected. Because the osmoreceptors regulating thirst are situated in the circumventricular region of the hypothalamus, we were interested in whether altered thirst is a part of the HD phenotype. We used the LABORAS behavioural monitoring system and water consumption to show that drinking behaviour was abnormal in R6/2 mice. By 10 weeks of age, R6/2 mice spent significantly more time drinking and drank a greater volume than their wild-type (WT) littermates. The numbers of immunoreactive vasopressin neurons in the paraventricular nucleus (PVN) of the hypothalamus in R6/2 mice were significantly decreased from 8 weeks of age, suggesting that the change in drinking behaviour may be the result of hypothalamic dysfunction. We gave a xerostomia (dry mouth) questionnaire to HD patients and control subjects, and also measured their urine osmolality and serum vasopressin. The mean total xerostomia score was significantly higher in HD patients than in controls, indicating greater thirst in HD patients. Urine osmolality was unaffected in HD patients up to clinical stage III, and none of the patients had diabetes. However, serum vasopressin was increased, suggesting a dysregulation in the control of hypothalamic vasopressin release. A dry mouth can affect taste, mastication and swallowing, all of which may contribute to the significant weight loss seen in both HD patients and R6/2 mice, as can dehydration. We suggest that increased thirst may be an important and clinically relevant biomarker for the study of disease progression in HD.
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