Background: The Movement Disorder Society (MDS) research criteria for possible prodromal multiple system atrophy (PP-MSA) have not been prospectively validated. Objective: To evaluate the diagnostic performance of the PP-MSA criteria in a longitudinal cohort of patients with pure autonomic failure (PAF) and to assess whether additional clinical features improve their predictive value. Methods: Seventy-six patients with PAF enrolled across eight centers in the Natural History Study of the Synucleinopathies were followed for ≥6 years or until phenoconversion. Participants were classified according to MDS PP-MSA criteria and followed for development of MSA, Parkinson’s disease, or dementia with Lewy bodies. Diagnostic performance was assessed longitudinally. Analyses were repeated using a stricter olfactory threshold (University of Pennsylvania Smell Identification Test [UPSIT]≤28) as an exclusion criterion. Results: Thirty-eight participants met PP-MSA criteria, of whom 12 phenoconverted to MSA within 6 years. Sensitivity was 100% at year 1 and 92% at year 6, whereas specificity ranged from 56% to 67%. Positive predictive value (PPV) ranged from 21% to 34%. Applying a stricter olfactory threshold improved specificity (90%–97%) and PPV (53%–83%), with a modest reduction in sensitivity (to 83%). Participants who phenoconverted to MSA were younger, had more severe urinary dysfunction, and greater orthostatic heart rate responses. Conclusions: The PP-MSA criteria demonstrate high sensitivity but limited specificity in patients with PAF. A stricter olfactory threshold improves diagnostic performance and may enhance cohort enrichment for clinical trials.
Patricio Millar Vernetti, J. Palma, I. Biaggioni et al.· Movement Disorders· 1 citation
Multiple system atrophy (MSA) is a rare and rapidly progressive neurodegenerative disorder characterized by a variable combination of autonomic failure, parkinsonism, and cerebellar ataxia, with a median survival of 8-10 years from symptom onset. Its aetiology remains poorly understood, as most cases are sporadic and environmental contributors remain unclear. Neuropathologically, MSA is defined by the accumulation of α-synuclein within oligodendroglial cells, forming glial cytoplasmic inclusions that drive widespread neurodegeneration in striatonigral and olivopontocerebellar systems. Recent advances in diagnostic criteria and biomarker development have improved disease recognition; however, early diagnosis remains challenging, particularly during the prodromal phase, when clinical features overlap with other α-synucleinopathies. Advances in fluid biomarkers and multimodal imaging are expected to facilitate earlier detection, improve diagnostic accuracy, and provide more robust tools for monitoring disease progression. Therapeutic development has largely focused on targeting α-synuclein pathology, but these approaches have not yet demonstrated consistent clinical benefit, highlighting the biological complexity of MSA. In the absence of curative treatments, management remains largely supportive, aimed at symptom control, particularly addressing autonomic dysfunction and motor impairment. Emerging care models, including telemedicine and multidisciplinary management, are reshaping clinical practice and may improve access to specialized care. Bridging advances in pathophysiology with patient-centred care will be essential for improving outcomes in MSA.
J. Buonocore, Bianca Calió, Fabian Leys et al.· Journal of neural transmissi...· 0 citations
We use cookies to run the site and, with your consent, for analytics and to show ads.
See our Cookie Policy.