Phosphorylated α-Synuclein Deposits in Cutaneous Nerves of Early Parkinsonism

Author:

Nolano Maria12,Caporaso Giuseppe1,Manganelli Fiore2,Stancanelli Annamaria1,Borreca Ilaria1,Mozzillo Stefania1,Tozza Stefano2,Dubbioso Raffaele2,Iodice Rosa2,Vitale Floriana2,Koay Shiwen34,Vichayanrat Ekawat4,da Silva Fernanda Valerio4,Santoro Lucio2,Iodice Valeria34,Provitera Vincenzo1

Affiliation:

1. Neurology Department, Skin Biopsy Laboratory, Istituti Clinici Scientifici Maugeri IRCCS, Telese Terme, Italy

2. Department of Neurosciences, Reproductive Sciences and Odontostomatology, University Federico II of Naples, Naples, Italy

3. Department of Brain, Repair and Rehabilitation, University College London Queen Square Institute of Neurology, London, UK

4. Autonomic Unit, The National Hospital for Neurology and Neurosurgery, London, UK

Abstract

Background: The role of peripheral phosphorylated-α-Synuclein (p-α-syn) deposition on nerve degeneration in synucleinopathies is still unknown. Objective: To assess the cutaneous neural distribution of p-α-Syn deposits and its correlation with clinical data and with morphology and function of cutaneous sensory and autonomic nerves in early Parkinson’s disease (PD) and multiple system atrophy-parkinson type (MSA-p). Methods: We recruited 57 PD (F/M = 21/36; age 63.5±9.4 years) and 43 MSA-p (F/M = 16/27; age 62.3±9.0 years) patients within 2 years from motor symptoms. We applied questionnaires and clinical scales, sensory thresholds, and sudomotor testing to assess severity of motor and non-motor involvement and sensory and autonomic dysfunction. We quantified, in skin biopsy from thigh, leg, and fingertip, epidermal, pilomotor, and sudomotor nerve fibers, Meissner corpuscles and intrapapillary myelinated endings and the neural distribution of p-α-syn deposits. Results: Compared to controls, we found a cutaneous denervation paralleling functional and clinical impairment. Sensory and autonomic denervation was more severe in MSA-p than in PD. Deposits of p-α-syn were found in the majority of patients, with no significant differences among sites in both groups. Higher occurrence of p-α-syn deposits in autonomic nerves differentiated (p < 0.01) PD from MSA-p. p-α-syn deposits correlated positively with sudomotor function, epidermal, pilomotor and sudomotor nerve densities, and inversely with non-motor symptoms and disease progression. Conclusion: Our work demonstrated an early peripheral sensory and autonomic involvement in synucleinopathies, more severe in MSA-p than in PD. Higher p-α-syn deposits in autonomic nerves differentiated PD from MSA-p. p-α-syn deposits were associated with preserved innervation and slower disease progression.

Publisher

IOS Press

Subject

Cellular and Molecular Neuroscience,Neurology (clinical)

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