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Clinical Trials/NCT04536857
NCT04536857WithdrawnNot Applicable

Detection of A-synuclein Aggregate As Biomarker in Diagnosing Parkinson's Disease At Early Stage by Using Protein Misfolding Cyclic Amplification (PMCA)

Huashan Hospital1 site in 1 country302 target enrollmentStarted: October 1, 2024Last updated:
Conditions

Trial Snapshot

Phase
Not Applicable
Status
Withdrawn
Enrollment
302
Locations
1
Primary Endpoint
The area under curve of the PMCA for the early diagnosis of PD

Study Overview

Brief Summary

The study will investigate the biomarker of a-synuclein aggregate in CSF detected by protein misfolding cyclic amplification (PMCA) and its sensitivity and specificity in diagnosing Parkinson's disease at H-Y stage I and disease duration less than 1 year, compared with that from age-matched controls without neurodegeneration, those with Multiple System Atrophy (MSA) as a disease control with a-synucleinopathy, and those with Progressive Supranuclear Palsy (PSP) as a control with non-a-synucleinopathy neurodegeneration.

Detailed Description

This will be an observational study aiming to develop the protein misfolding cyclic amplification (PMCA) technology that detects minute amounts of αSyn aggregates circulating in cerebrospinal fluid (CSF) as a novel assay with high sensitivity and specificity for the early diagnosis of PD. To achieve this goal, we will apply the PMCA to detect the αSyn aggregates in the CSF samples acquired from a discovery cohort that consist of well-characterized early PD patients (disease duration ≤1 year and Hoehn and Yahr Stage I, and DAT-PET and FDG-PET meet the imaging features of PD, n=75) and gender, age-matched healthy controls (n=38). Furthermore, we will confirm the findings in a separate confirmatory cohort with well-characterized early PD patients (disease duration ≤1 year and Hoehn and Yahr Stage I, and DAT-PET and FDG-PET meet the imaging features of PD, n=75), early multiple system atrophy (MSA) patients (disease duration ≤1 year, n=38), early progressive supranuclear palsy (PSP) patients (disease duration ≤1 year, n=38) and age-matched healthy controls (n=38). The sensitivity, specificity, positive predictive value, negative predictive value, and area under curve of the PMCA for the early diagnosis of PD will be calculated in the discovery cohort and be confirmed in the confirmatory cohort, respectively. In addition, the clinical characteristics, including motor and nonmotor symptoms of early PD, MSA and PSP patients in the two cohort will be comprehensively assessed at baseline and during followed-up. To assess the value of the PMCA technology in the evaluation of the disease severity and progress, we will perform the partial correlation analysis between clinical features of early PD patients and the PMCA T50 defined as the time needed to reach 50% of the maximum aggregation.

Misfolded αSyn aggregates have the potential to serve as a biomarker for early PD. The PMCA technology could detect small quantities of misfolded αSyn aggregates by taking advantage of their ability to nucleate further aggregation, enabling a very high amplification of the signal. This study examines the effectiveness of using the PMCA as a novel technique for discriminating early PD from gender, age-matched healthy controls and other early parkinsonian disorders (MSA, PSP) by detecting small misfolded αSyn aggregates in CSF.

Study Design

Study Type
Observational
Observational Model
Case Control
Time Perspective
Prospective

Eligibility Criteria

Ages
50 Years to 75 Years (Adult, Older Adult)
Sex
All
Accepts Healthy Volunteers
Yes

Inclusion Criteria

  • Not provided

Exclusion Criteria

  • Not provided

Outcomes

Primary Outcomes

The area under curve of the PMCA for the early diagnosis of PD

Time Frame: two years

The area under curve is used to show the ability of the a-syn-PMCA to diagnose early PD. The value of area under curve is higher, then the ability of the a-syn-PMCA to diagnose early PD is stronger.

Secondary Outcomes

  • The correlation between PMCA T50 and the change of MDS-UPDRS III score between the baseline and the follow-up(two years)
  • The negative predictive value(two years)
  • The specificity(two years)
  • The correlation between PMCA T50 and subregional DAT in striatum in PD patients(two years)
  • The correlation between the PMCA T50 and MDS-UPDRS III score at baseline in PD patients(two years)
  • The correlation between PMCA T50 and PDRP expression value in PD patients(two years)
  • The sensitivity(two years)
  • The positive predictive value(two years)

Investigators

Sponsor Class
Other
Responsible Party
Principal Investigator
Principal Investigator

Jian Wang

Professor & Deputy Director, Department of Neurology

Huashan Hospital

Study Sites (1)

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