Decreased dopamine transporters in caudate and anterior putamen of Perry syndrome: A case report
- Journal
- Parkinsonism & related disorders(2026 Jul)
- Authors
- 3名
- Type
- Letter
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BACKGROUND: Despite established clinical diagnostic criteria for Parkinson's disease and the neurodegeneration-related atypical parkinsonian syndromes (progressive supranuclear palsy/PSP, corticobasal degeneration syndrome/CBD, multiple system atrophy with parkinsonian or cerebellar predominance/MSA-P/C, and dementia with Lewy bodies/DLB), the differential diagnosis from rare hereditary and acquired disorders presenting with parkinsonism can be challenging. METHODS: Based on a PubMed search, relevant original studies and review articles were analyzed to identify rare hereditary and acquired disorders associated with parkinsonism. Secondary parkinsonian syndromes resulting from medication or toxin exposure were excluded but are summarized in an overview. RESULTS: Without claiming completeness, the major hereditary and acquired disorders associated with parkinsonism were summarized in tabular form. Selected entities were described in more detail in short profiles focusing on those with therapeutic modifiability, characteristic pattern-like constellations of findings, or notable pathophysiological mechanisms. Paradigmatic cerebral MRI patterns are illustrated. CONCLUSIONS: A broad spectrum of rare acquired and genetic entities can manifest with clinically relevant parkinsonian syndromes. Frequently, parkinsonism occurs in combination with other neurological features of variable severity, including extrapyramidal-hyperkinetic symptoms (dystonia/chorea), cerebellar signs (ataxia), pontomesencephalic involvement (oculomotor disturbances, bulbar dysarthria/dysphagia), motor neuron signs (spasticity and/or amyotrophic paresis), cognitive or neuropsychiatric symptoms, and epilepsy.For several disease groups - such as neurodegeneration with brain iron accumulation (NBIA), Wilson's disease, and primary familial brain calcification (PFBC) - distinctive MRI patterns are diagnostically informative.A relevant subset of disorders exhibits at least a partial and sometimes transient presynaptic dopaminergic deficit responsive to dopaminergic medication (e.g., certain NBIA forms, spinocerebellar ataxias/SCA, cerebrotendinous xanthomatosis/CTX).Neuropathologically, some of these disorders are associated with secondary synucleinopathies (e.g., MPAN), tauopathies (e.g., IgLON5 syndrome) or TDP-43 (e.g., Perry syndrome/DCTN1).
The extreme morphology and polarised architecture of neurons require the highly sophisticated microtubule transport system for both construction and lifelong survival. Genomic evidence from an expanding landscape of human mutations supports the essential role of the microtubule transport machinery. During neurodevelopment, mutations disrupt the proliferation and migration of neuronal precursors, as well as the initial establishment of polarity. In the mature nervous system, the reliance on microtubule transport shifts to the long-term maintenance of axon integrity and synaptic proteostasis. Across the motor proteins responsible for long distance transport in neurons, mutations highlight a specific vulnerability of long axons to transport failure in Hereditary Spastic Paraplegia (HSP), Charcot Marie Tooth disease Type 2 (CMT2), Spinal Muscular Atrophy (SMA), Perry Syndrome, and Amyotrophic Lateral Sclerosis (ALS) amongst others. Due to the role of microtubule motors in development and maintenance, there is frequently a phenotypic spectrum within a single gene of the microtubule transport system. For example, mutations in dynein motors are linked both to malformations of cortical development and specific motor neuron loss in SMA-LED (Spinal Muscular Atrophy with Lower Extremity Predominance). By synthesising genetic evidence, this review illustrates how specific molecular failures, ranging from motor-domain kinetics to cargo binding, can inform our understanding of neuronal homeostasis. Ultimately, we argue that microtubule transport is not merely a cellular utility, but a key determinant of neuronal longevity.
Transcranial sonography is one of the methods of examination used in atypical parkinsonian syndromes. The assessment is not indicated in the diagnostic criteria of entities in this group e.g., Progressive Supranuclear Palsy, Corticobasal Degeneration, Multiple System Atrophy and Dementia with Lewy Bodies. Atypical parkinsonisms are a group of diseases affected by diverse pathologies including alpha-synuclein or tau among others. Recently broader attention was brought to less common atypical parkinsonisms as Perry syndrome. Atypical parkinsonisms are related to poor response to levodopa treatment, rapid deterioration and unfavorable prognosis. Additionally, the entities often overlap in terms of clinical manifestation, especially in the early stages. Though atypical parkinsonisms are affected by the lack of possibility of obtaining definite in vivo diagnosis, growing interest is associated to supplementary evaluations including neuroimaging. Among these methods could be mentioned magnetic resonance imaging, positron emission tomography, single photon emission computed tomography and transcranial sonography. Transcranial sonography is associated with high accessibility and low cost. The goal of this paper is to highlight the strengths and weaknesses of transcranial sonography in the examination of atypical parkinsonisms.
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