Cerebellar degeneration correlates with motor symptoms in Huntington disease
Autor: | Tvesa Sehji, Lynette J. Tippett, Mike Dragunow, Richard L.M. Faull, Nasim F. Mehrabi, Henry J. Waldvogel, Adelie Y. S. Tan, Micah D. R. Austria, Malvindar K. Singh-Bains |
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Rok vydání: | 2019 |
Předmět: |
Adult
Male 0301 basic medicine Cerebellum Purkinje cell Cell Count Autopsy Neuropathology Purkinje Cells 03 medical and health sciences 0302 clinical medicine Basal ganglia medicine Cerebellar Degeneration Humans Research Articles Aged business.industry Brain Neurodegenerative Diseases Human brain Middle Aged Corpus Striatum Huntington Disease Phenotype 030104 developmental biology medicine.anatomical_structure Neurology Cerebral cortex Case-Control Studies Female Neurology (clinical) business Neuroscience 030217 neurology & neurosurgery Research Article |
Zdroj: | Annals of Neurology |
ISSN: | 1531-8249 0364-5134 |
DOI: | 10.1002/ana.25413 |
Popis: | Objective Huntington disease (HD) is an autosomal dominant neurodegenerative disorder characterized by variable motor and behavioral symptoms attributed to major neuropathology of mainly the basal ganglia and cerebral cortex. The role of the cerebellum, a brain region involved in the coordination of movements, in HD neuropathology has been controversial. This study utilizes postmortem human brain tissue to investigate whether Purkinje cell degeneration in the neocerebellum is present in HD, and how this relates to disease symptom profiles. Methods Unbiased stereological counting methods were used to quantify the total number of Purkinje cells in 15 HD cases and 8 neurologically normal control cases. Based on their predominant symptoms, the HD cases were categorized into 2 groups: "motor" or "mood." Results The results demonstrated a significant 43% loss of Purkinje cells in HD cases with predominantly motor symptoms, and no cell loss in cases showing a major mood phenotype. There was no significant correlation between Purkinje cell loss and striatal neuropathological grade, postmortem delay, CAG repeat in the IT15 gene, or age at death. Interpretation This study shows a compelling relationship between Purkinje cell loss in the HD neocerebellum and the HD motor symptom phenotype, which, together with our previous human brain studies on the same HD cases, provides novel perspectives interrelating and correlating the variable cerebellar, basal ganglia, and neocortical neuropathology with the variability of motor/mood symptom profiles in the human HD brain. ANN NEUROL 2019;85:396-405. |
Databáze: | OpenAIRE |
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