Authors
Adelie Y S Tan, Nakhon S S S Thai, Christine J Arasaratnam, Seung A Han, Ellen B Penney, Geraldine Acuña-Sunshine, Cid Czarina E Diesta, Mark C Ang, Edwin Muñoz, Cara Fernandez-Cerado, Victor Cleofas, G Paul Legarda, Salvie Velasco, Michelle A Sy, Clinton P Turner, Mike Dragunow, Maurice A Curtis, Ann M Graybiel, Richard L M Faull, Malvindar K Singh-Bains
Published in
Annals of neurology. Jul 26, 2026. Epub Jul 26, 2026.
Abstract
Initially described in 1976, X-linked dystonia parkinsonism (XDP) is a neurodegenerative disease that can be characterized by the presentation of dystonia and parkinsonism symptoms. Although this disease bears some resemblance to other neurodegenerative diseases in terms of symptomatology, the pathological signature of XDP is still unclear, in part because of the limited research that has been conducted. This study aims to delineate in detail the neurochemical changes occurring in the post mortem human XDP striatum and to explore their relevance to clinical symptomatology.
The profiles of immunohistochemical expression of multiple spiny projection neurons and projection fiber markers was assessed in the post mortem tissue from the basal ganglia of 18 XDP and 10 neurologically normal cases.
We present evidence that degeneration of the XDP striatum follows a dorsoventral gradient, with greater vulnerability in the matrix compartment of the striatum. Considering the available clinical data of the cases investigated, we propose that this pattern of neurodegeneration is more closely associated with the duration of the disease than SINE-VNTR-Alu repeat length; however, repeat length is inversely correlated with XDP symptom onset and, therefore, influences the clinical timeline.
Our findings provide a novel perspective on the pattern and degree of degeneration of the XDP striatum. We propose that the matrix compartment is more vulnerable to disease impact relative to striosomes than initially thought, and the pattern of striatal degeneration may be indicative of the breakdown of a wider cortico-basal ganglia neural circuit over the duration of the disease. ANN NEUROL 2026.
PMID:
42503240
Bibliographic data and abstract were imported from PubMed on 27 Jul 2026.
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