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NCT Number: NCT07474779

Understanding Alpha-Synuclein Spread in Parkinson's Disease Through Blood Biomarkers and Neuroimaging

The project aims to investigate how abnormal accumulation of alpha synuclein and its interaction with tau influence brain function across the Parkinson's disease (PD) spectrum, with particular focus on individuals carrying GBA1 mutations. This interventional, monocentric, cross sectional study includes patients with PD, individuals with idiopathic REM sleep behavior disorder, and participants without PD.

All enrolled subjects will undergo clinical and neuropsychological assessments, blood based biomarker analyses related to neurodegeneration, synaptic and mitochondrial function, and multimodal brain MRI to evaluate brain structure, white matter integrity, and functional connectivity.

The study aims to:

* characterize the relationship between alpha synuclein/tau pathology and synaptic mitochondrial dysfunction; * identify biomarker and connectivity signatures across disease stages and genetic backgrounds; * integrate preclinical, clinical, biological, and imaging data to support the development of mechanistic models of alpha synuclein propagation.

In parallel, preclinical studies in GBA PD mouse models and wild type mice will be used to investigate how changes in PD-related pathology (alpha-synuclein and tau) relates to behavior, brain imaging alterations and mitochondrial, axonal and synaptic damage. Animal model will also aid the validation of a new PET tracer that targets alpha synuclein (i.e., [¹⁸F]Syntacasyn).

Together, human and preclinical studies are designed to provide a translational framework integrating molecular changes with brain network alterations and clinical heterogeneity in PD.

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Key information

About this study

Parkinson's disease (PD) is characterized by pathological aggregation and propagation of alpha synuclein, leading to synaptic and mitochondrial dysfunction. Heterozygous mutations in the GBA1 gene represent the strongest genetic risk factor for PD and are associated with earlier onset, faster progression, and increased burden of misfolded alpha synuclein. Experimental evidence suggests that alpha synuclein toxicity may be amplified by its interaction with tau, promoting synergistic neurodegenerative mechanisms; however, in vivo human data on these processes remain limited.

This study aims to define, through a personalized and multimodal approach, how alpha synuclein accumulation and its interaction with tau influence synaptic and mitochondrial dysfunction and brain connectivity across the PD spectrum, from periclinal stages to established disease, with particular focus on the impact of GBA1 mutations. The study includes patients with PD, individuals with idiopathic REM sleep behavior disorder (iRBD), and subjects without PD, both carriers and non carriers of GBA1 mutations.

All participants will undergo comprehensive clinical and neuropsychological assessments to characterize motor, non motor, and cognitive manifestations across disease stages. Blood samples will be collected to define a fluid biomarker profile, including alpha synuclein, tau, markers of synaptic integrity, mitochondrial function, and neurodegeneration. In addition, all participants will undergo multimodal brain MRI, including structural, diffusion weighted, and resting state functional sequences, to evaluate brain structure, white matter integrity, and functional connectivity.

In a subset of participants, a skin biopsy will be performed to generate patient specific induced pluripotent stem cell (hiPSC) derived dopaminergic neurons. These cellular models will be used to investigate neuronal and synaptic function in relation to individual biomarker profiles and genetic background. In parallel, preclinical studies will be conducted in GBA-PD mouse models and wild type mice injected with saline, alpha synuclein or combined alpha synuclein/tau fibrils. Mice will undergo behavioral, in vivo MRI and PET imaging and post mortem assessment of synaptic, axonal and mitochondrial pathology. In addition, a novel alpha synuclein PET tracer, [¹⁸F]Syntacasyn, will undergo preclinical validation.

Multimodal human and animal data will be integrated using advanced statistical and computational approaches to identify vulnerable network hubs and generate subject specific "virtual brain" models of alpha synuclein pathology propagation.

The study is designed to provide a translational framework linking molecular pathology, brain network dysfunction and clinical heterogeneity in PD, supporting biomarker development and precision medicine strategies across the prodromal and clinical spectrum, with particular focus on genetically defined populations such as GBA1 mutation carriers.

Who can participate

Healthy volunteers accepted: Yes

Only the study team can determine whether someone qualifies for participation.

Inclusion criteria

for Parkinson's disease cohorts (GBA-PD and nonGBA-PD):

  • Diagnosis of PD according to MDS-PD criteria and, for the GBA-PD group, presence of heterozygous GBA mutations (with a balanced distribution of severe, risk, mild, and complex variants);
  • Disease duration between 3 and 7 years;
  • Disease stage according to Hoehn & Yahr ≤ 3;
  • Absence of mutations in other known genes associated with PD susceptibility;
  • Age > 18 Years;
  • Ability to understand and voluntarily sign informed consent and to comply with study procedures.

Exclusion criteria

for Parkinson's disease cohorts:

  • Diagnosis of atypical and/or secondary parkinsonism;
  • Diagnosis of dementia according to DSM-5 criteria;
  • Presence of other neurological disorders and/or essential tremor;
  • Presence of systemic inflammatory or infectious diseases, autoimmune diseases, or malignant tumors at the time of enrollment.

Inclusion criteria

for unaffected subjects (GBA-nonPD and nonGBA-nonPD):

  • Age > 18 Years;
  • Ability to understand and voluntarily sign informed consent and to comply with study procedures;
  • No diagnosis of PD or other neurological disorders;
  • Presence of a heterozygous GBA mutation for the GBA-nonPD group and absence of such mutation for control subjects (nonGBA-nonPD);
  • Absence of mutations in other known genes associated with PD susceptibility.

Exclusion criteria

for unaffected subjects (GBA-nonPD and nonGBA-nonPD):

  • Presence of systemic inflammatory or infectious diseases, autoimmune diseases, or malignant tumors at the time of enrollment;
  • Diagnosis of atypical and/or secondary parkinsonism;
  • Diagnosis of dementia according to DSM-5 criteria.

Inclusion criteria

for subjects with idiopathic REM Sleep Behavior Disorder (GBA-iRBD and nonGBA-iRBD):

  • Diagnosis of idiopathic REM Sleep Behavior Disorder according to ICSD-3;
  • Age > 18 Years;
  • Ability to understand and voluntarily sign informed consent and to comply with study procedures;
  • No diagnosis of PD or other neurological disorders;
  • Presence of a heterozygous GBA mutation for the GBA-iRBD group and absence of such mutation for the nonGBA-iRBD group;
  • Absence of mutations in other known genes associated with PD susceptibility.

Exclusion criteria

for subjects with idiopathic REM Sleep Behavior Disorder (GBA-iRBD and nonGBA-iRBD):

  • Presence of systemic inflammatory or infectious diseases, autoimmune diseases, or malignant tumors at the time of enrollment;
  • Diagnosis of atypical and/or secondary parkinsonism;
  • Diagnosis of dementia according to DSM-5 criteria.

Treatment and study plan

brain imaging

Diagnostic Test

Participants will undergo a single brain MRI acquisition, including structural, diffusion-weighted, and resting-state functional MRI.

Blood draw

Procedure

Collection of a venous blood sample for biochemical analyses

skin biopsy

Procedure

A small punch skin biopsy (about 3-4 mm) will be performed under local anesthesia on a small sample of enrolled participants (n=10)

Primary outcomes

  1. Concentration of alpha-synuclein levels in plasma

    Time frame: Baseline visit

    Quantification of levels of Total alpha-synuclein and 129P-alpha-synuclein (pg/ml) in neuronal-derived extracellular vesicles using ultrasensitive immunoassays (NULISA).

  2. Concentration of tau levels in plasma

    Time frame: Baseline visit

    Quantification of total-tau and p-tau18 (pg/ml) in neuronal-derived extracellular vesicles using ultrasensitive immunoassays (NULISA).

  3. Investigation of glucocerebrosidase activity in Peripheral Blood Mononuclear Cells

    Time frame: Baseline visit

    Glucocereborsidase activity will be estimated in Peripheral Blood Mononuclear Cells usign a flourimetry assay

Secondary outcomes

  1. Assessment of mitochondrial damage in plasma

    Time frame: Baseline visit

    Quantification of circulating cell-free mitochondrial DNA (cf-mtDNA) in plasma, including total concentration and deletion fraction.

  2. Plasma synaptic protein concentration

    Time frame: Baseline visit

    Quantification of SNAP25, STX1A, and VAMP2 in neuronal-derived extracellular vesiclesusing ultrasensitive immunoassay (NULISA)

  3. Brain network connectivity in Parkinson's disease

    Time frame: Baseline visit

    We will exctract structural and functional connectivity information form MRI, resting-state functional MRI and diffusion weighted MRI. Connectivity metrics will include global and nodal efficiency, participation coefficient and indexes of withe matter tract integrity.

  4. In vitro neuronal responses in hiPSC-derived dopaminergic neurons

    Time frame: Baseline visit

    In vitro neuronal responses will be assessed in dopaminergic neurons derived from human induced pluripotent stem cells (hiPSC), following exposure to alpha-synuclein and alpha-synuclein+tau.

  5. Estimation of synaptic damage in Neuronal extracellular vesicle

    Time frame: Baseline visit

    Neurogranin concentration (pg/ml) will be quantified in neuronal-derived extracellular vesicles

  6. Concentration of neurofilament light chain

    Time frame: Baseline visit

    Neurofilament light chain concentration (pg/ml) will be quantified in plasma using Ella™.

Other outcomes

  1. Comprehensive clinical and neuropsychological assessement

    Time frame: Baseline visit

Study contacts

Contact information is provided by the study sponsor or research team.

Silvia P Caminiti, PhD

CONTACT

[email protected]

0382380390 ext. 39

Sponsors and collaborators

Lead sponsor

University of Pavia

Other

Collaborators

  • Pavia IRCCS Mondino di Pavia

Registry information

Official study title

From Genes to Virtual Brain: Defining the Pathogenic Mechanisms Promoting Alfa-synuclein Seeding and Spreading in Parkinson's Disease.

Acronym: SYNchronPD

Important dates

Study start
2026
Primary completion
2028
Study completion
2029
First posted
Mar 16, 2026
Registry last updated
May 1, 2026

OpenTrials presents study information sourced from ClinicalTrials.gov. The official registry record should be consulted for the latest information.

View the official ClinicalTrials.gov record (opens in a new tab)

This listing is for discovery and informational purposes only. It is not medical advice, does not guarantee that a study is recruiting, and does not determine eligibility. Contact the study team and a qualified healthcare professional when considering participation.

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