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September 10, 2025Nature Communications31 citationsOpen Access

The spatial landscape of glial pathology and T cell response in Parkinson’s disease substantia nigra

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MMMaxwell MaFPFahad ParyaniKJKelly Jakubiak

Key Points

  • Parkinson's disease is characterized by increased CD8+ T cells in the substantia nigra, indicating adaptive immune involvement.
  • T cell receptor sequences showed clonal expansion and homology to α-synuclein, suggesting a targeted immune response.
  • Single-nucleus RNAseq and spatial transcriptomics methods were utilized to analyze post-mortem PD brain tissue.
  • A better understanding of T cell-mediated neuroinflammation in PD may open avenues for developing therapeutic strategies.

Abstract

Parkinson's Disease (PD) is an incurable neurodegenerative disease that causes movement disorders. Neurons in PD aggregate α-synuclein and are depleted from the substantia nigra (SN), which is a movement control hub. The presence of α-synuclein-reactive T cells in PD patient blood suggests a role for adaptive immunity in the pathogenesis of PD. However, the characteristics of this response within the brain are not well understood. Here, we employed single-nucleus RNAseq, spatial transcriptomics, and T cell receptor (TCR) sequencing to analyze T cell and glial cell states in post-mortem PD brain tissue. CD8 + T cells were enriched in the PD SN and characterized by clonal expansion and TCR sequences with homology to those reactive to α-synuclein. Furthermore, PD T cells were spatially correlated with CD44+ astrocytes, which increased in the PD SN. Silencing CD44 in cultured astrocytes attenuated neuroinflammatory signatures, suggesting a potential therapeutic target. These findings provide insight into the neurodegenerative niche underlying T cell-mediated neuroinflammation in PD.

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Cite This Study

Ma et al. (2025) studied this question.

synapsesocial.com/papers/68c1b19354b1d3bfb60e8ae8https://doi.org/10.1038/s41467-025-62478-3
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