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The Neuropathology of Huntington´s disease: classical findings, recent developments and correlation to functional
Udo Rüb1, Jean Paul V Vonsattel2, Helmut Heinsen3
1Dr. Senckenbergisches Chronomedizinisches Institut, Goethe University Frankfurt, Frankfurt, Germany.
Insights
Huntington's disease (HD) is a genetic neurological disorder caused by CAG-repeat expansions. This review details over a century of neuropathological research, highlighting key brain changes and their clinical relevance.
Area of Science:
- Neuroscience
- Genetics
- Neuropathology
Background:
- Huntington's disease (HD) is an autosomal dominant neurodegenerative disorder.
- It is caused by CAG-repeat expansions in the huntingtin (HTT) gene on chromosome 4p16.3.
- The condition was first described in the 19th century.
Observation:
- The neostriatum (caudate nucleus and putamen) shows progressive degeneration, with the Vonsattel grading system used to classify severity.
- Neuronal loss occurs in specific areas and layers of the cerebral cortex (neocortex and allocortex).
- Other affected brain regions include select thalamic nuclei, cerebellar cortex and deep nuclei, and distinct brainstem nuclei.
Findings:
- Neuropathological hallmarks of HD involve widespread neurodegeneration across multiple brain regions.
- These pathologies correlate with the clinical phenotype of Huntington's disease.
- Axonal transport deficits are being investigated for their pathophysiological role.
Implications:
- Understanding these neuropathological changes is crucial for diagnosing and managing HD.
- This comprehensive review provides insights into the progression and mechanisms of HD.
- Further research into axonal transport may reveal new therapeutic targets for Huntington's disease.
Abstract:
Huntington’s disease (HD) is a severe, autosomal dominantly inherited, gradually worsening neurological disorder, the clinical features of which were first described in 1863 by Irving W. Lyon and with additional details, in 1872, by George Huntington. Progress in molecular biological research has shown that HD is caused by meiotically unstable CAG-repeats in the mutated HD gene (the so-called IT 15 gene) on chromosome 4p16.3, which encodes the mutated protein huntingtin (Htt). This monograph provides a survey of the stepwise progress in neuropathological HD research made during a time period of more than hundred years, the currently known neuropathological hallmarks of HD, as well as their pathogenic and clinical relevance. Starting with the initial descriptions of the progressive degeneration of the neostriatum (i.e., caudate nucleus and putamen) as one of the key events in HD, the worldwide practiced Vonsattel HD grading system of striatal neurodegeneration will be outlined. Correlating qualitative and quantitative neuropathological data with characteristics pertaining to the functional neuroanatomy of the human brain, subsequent chapters will highlight the latest neuropathological HD findings: the area- and layer-specifi c neuronal loss in the cerebral neo- and allocortex, the neurodegeneration of select thalamic nuclei, the affection of the cerebellar cortex and the deep cerebellar nuclei, the involvement of distinct brainstem nuclei, and the pathophysiological relevance of these pathologies for the clinical phenotype of HD. Finally, the potential pathophysiological role of axonal transport deficit
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