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October 19, 2025Brain14 citations

Distinct cutaneous α-synuclein signatures in body-first and brain-first Parkinson’s disease subtypes

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MLMinglei LiuTWTingting WenHLHaiyang Luo

Key Points

  • Body-first Parkinson's disease patients show distinct cutaneous alpha-synuclein patterns and increased non-motor symptoms.
  • Approximately 92.4% of body-first patients exhibit phosphorylated alpha-synuclein positivity compared to 61.9% in brain-first patients.
  • Skin biopsies reveal significant differences in alpha-synuclein seeding activity and distal-to-proximal gradient in body-first patients.
  • Findings support the SOC model, highlighting skin biopsy as an effective biomarker for Parkinson's disease subtyping.

Abstract

Abstract Parkinson’s disease (PD) is characterized by pathological α-synuclein (α-syn) aggregation, yet the origin of α-syn pathology (central or peripheral) remains debated. The synuclein origin and connectome (SOC) model proposes two subtypes, including brain-first (pathology initiating in brain structures) and body-first (originating in peripheral autonomic nerves) subtypes. This study aimed to delineate cutaneous α-syn signatures between these subtypes to validate the SOC model. In this cross-sectional study, 126 brain-first PD patients, 79 body-first PD patients, and 60 healthy controls were enrolled. Subtype classification was based on the presence of REM sleep behavior disorder preceding motor symptoms. All participants underwent skin biopsies at two anatomical sites: the distal leg (DL) and the posterior cervical region (C7). Intraepidermal, sudomotor, and pilomotor nerve fiber densities were quantified. Phosphorylated α-syn (p-α-syn) deposition was assessed by immunostaining, and α-syn seeding activity was evaluated using real-time quaking-induced conversion (RT-QuIC). Clinical correlations and diagnostic performance were systematically analyzed. Body-first PD patients exhibited more prominent non-motor symptoms (e.g., REM sleep behavior disorder, autonomic dysfunction) and severe autonomic denervation (reduced sweat gland and pilomotor nerve densities; P 0.01). Immunostaining revealed significantly higher p-α-syn positivity (92.4% vs. 61.9%) and a greater p-α-syn diffusion coefficient (0.2 vs. 0.0) in body-first versus brain-first PD patients. Body-first PD patients displayed a distal-to-proximal α-syn gradient (DL:86.1% vs. C7:55.7%), contrasting the proximal-dominant pattern in brain-first PD patients (DL:40.5% vs. C7:50.8%). Body-first PD patients also demonstrated accelerated α-syn seeding activity (higher maximum fluorescence intensity, shorter time to reach threshold; P 0.001). Cutaneous α-syn parameters strongly correlated with non-motor symptom severity in body-first PD patients (P 0.05). Receiver operating characteristic analysis showed that DL α-syn signatures have discriminative power for subtype differentiation (AUC = 0.774). Our findings provide direct pathological evidence for the body-first versus brain-first PD framework and highlight the value of skin biopsy as a minimally invasive biomarker for PD subtyping. This study contributes to precision medicine approaches targeting α-syn pathology-specific propagation pathways in PD.

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Cite This Study

Liu et al. (2025) studied this question.

synapsesocial.com/papers/68f4b10d3d9d770bbc69700chttps://doi.org/10.1093/brain/awaf395
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Dermal Alpha‐Synuclein Aggregation in Seed Amplification Assays for Parkinson's Disease Subtype Differentiation2025
  2. 2Brain-first versus body-first Parkinson’s disease: Differential findings on pupillary, brainstem and vagus sonography2026
  3. 3Brain-first vs. body-first Parkinson's disease: An update on recent evidence2024 · 160 citations
  4. 4Characterizing Cutaneous α‐Synuclein Deposition and Seeding Activity in Parkinson's Disease Subtypes2026
  5. 5“Brain-First” vs. “Body-First” PD: Definitions and Implications in Everyday Clinical Practice: A Systematic Review2026