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In-depth Analysis of Cholesterol Metabolism and Related Biomarkers in the Pathogenesis and Progression of the Disease in Neurodegenerative Dementias

In-depth Analysis of Cholesterol Metabolism and Related Biomarkers in the Pathogenesis and Progression of the Disease in Neurodegenerative Dementias

Status
Recruiting
Phases
Unknown
Study type
Observational
Source
ClinicalTrials.gov
Registry ID
NCT07207486
Acronym
RF-2021-123742
Enrollment
80
Registered
2025-10-06
Start date
2023-06-05
Completion date
2027-04-29
Last updated
2026-02-11

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Dementias, Neurodegenerative Dementia

Keywords

Cholesterol metabolism, Neurodegenerative dementias

Brief summary

The aim of the study is to evaluate the role of cholesterol in the pathogenesis of neurodegenerative dementias. Hypercholesterolemia is a known risk factor for Alzheimer disease (AD), and oxysterols, the principal cholesterol metabolites, are involved in neuroinflammation, amyloid aggregation, and tau accumulation. Oxysterols will be measured in different biological samples (post-mortem brain tissue, CSF, and plasma) from patients with different neurodegenerative dementias, including AD, frontotemporal dementia (FTD), and primary tauopathies. This approach will allow determination of whether their modifications correlate primarily with Aß deposition, tauopathy, or neuronal loss, with the goal of identifying correlations with disease severity and progression. Since preliminary results suggest that the levels of most oxysterols in the brain significantly increase in parallel with the levels of the enzyme PCSK9, the investigators will explore the role of cholesterol metabolism and PCSK9 in AD and other dementias to evaluate whether cholesterol dysregulation represents a common alteration across these neurodegenerative disorders or is specific to AD

Detailed description

The project is a monocentric retrospective and prospective low-intervention clinical study. All samples collected will be sent for analysis to the Laboratory of General Pathology and Pathophysiology, Department of Clinical and Biological Sciences, University of Turin, San Luigi Gonzaga Hospital, Orbassano (TO), Italy. 1. Selection and characterization of post-mortem brains Twenty brains from patients with AD (ranging from Braak stage II to VI of neurofibrillary pathology severity), ten brains from patients with FTD/tauopathies, and six brains from FTD/TDP43 patients will be included in the study. These samples are already available for the project and have been neuropathologically characterized by Neurology 5 - Neuropathology Unit. 2. Recruitment and follow-up of patients with neurodegenerative dementias Retrospective study Samples (CSF and plasma) previously collected from patients at Neurology 5 - Neuropathology Unit over the years will be used. The study will include 40 AD patients, 40 FTD patients, and 20 age-matched non-demented controls. Clinical and MRI data will be retrospectively collected, as well as levels of markers of neurodegeneration (tau, Abeta42, and phospho-tau) in CSF. Longitudinal study During the first 18 months of the project, 30 AD patients, 20 FTD patients, and 10 patients with primary tauopathies (PSP/CBD) will be recruited. A group of 20 age-matched healthy subjects will serve as controls. All patients and controls will undergo a comprehensive neurologic assessment, a neuropsychological evaluation, and a brain MRI with a standard protocol at baseline (T0) and after 1 year (T1). CSF collection will be performed at baseline in patients. DNA and plasma will be collected from controls and patients at baseline and follow-up. Measurements of BMI, total cholesterol, LDL and HDL cholesterol, and triglycerides will be performed at baseline and follow-up in all subjects. ApoE genotype will be analyzed for all subjects to determine E2, E3, and E4 polymorphisms. MRI will be performed on a 3T scanner, including volumetric T1, FLAIR, T2, DWI, and DTI sequences at baseline and follow-up. 3. Study of the role of the enzyme PCSK9 in the brain (performed by University of Turin) SK-N-BE cells and mouse-derived primary cortical neurons and astrocytes will be treated with PCSK9 or with an oxysterol mixture obtained from brain dosages.

Interventions

None listed

Sponsors

Fondazione I.R.C.C.S. Istituto Neurologico Carlo Besta
Lead SponsorOTHER
Università di Torino, Torino
CollaboratorUNKNOWN
Ospedale San Luigi Gonzaga, Orbassano
CollaboratorUNKNOWN

Study design

Observational model
COHORT
Time perspective
PROSPECTIVE

Eligibility

Sex/Gender
ALL
Age
40 Years to 85 Years
Healthy volunteers
Yes

Inclusion criteria

* Age 40-85 * Diagnosis based on the current diagnostic criteria for AD (McKhann et al., 2011), FTD (Gorno-Tempini et al., 2011; Rascovsky et al., 2011), PSP and CBD (Amstrong et al., 2013; Höglinger et al., 2017) * Mini Mental State Examination MMSE \> 10.

Exclusion criteria

* Other neurological or psychiatric disorders Severe chronic metabolic diseases

Design outcomes

Primary

MeasureTime frameDescription
Characterize differences in cholesterol precursors12 monthsTo identify and characterize differences in cholesterol precursors and metabolites between patients with neurodegenerative dementias vs controls and between patients with different types of neurodegenerative dementia.

Secondary

MeasureTime frameDescription
different brain areas12 monthsTo identify and characterize different levels of cholesterol precursors and metabolites as well as lipidomics and metabolomics changes in different brain areas of the same patients categorized as involved or spared by the different types of pathological changes.
cerebral oxysterol changes in AD12 monthsTo find out whether cerebral oxysterol changes in AD (see preliminary results) involve globally the brain suggesting a general derangement of cerebral cholesterol metabolism or selectively brain areas involved by specific primary (Abeta deposition, tauopathy) or secondary (astrogliosis, microglial activation, neuroinflammation) alterations
different cholesterol precursors in neurodegenerative diseases examined in CSF and plasma12 monthsTo identify different levels of cholesterol precursors and metabolites as well as lipidomics and metabolomics changes at different stages of the different neurodegenerative diseases examined in CSF and plasma.
cortical atrophy12 monthsTo ascertain whether correlations exist between cholesterol precursors and metabolites abnormalities, severity of the disease, cortical atrophy, glial and microglial reactive changes and neuroinflammation in neurodegenerative dementias.
PCSK912 monthsTo verify whether changes in the levels of PCSK9 and other cholesterol metabolism-related proteins are present in patients with the neurodegenerative dementias (brain tissue, CSF, and plasma).
PCSK9 in neurons12 monthsLevels of inflammatory markers and neurodegeneration-related proteins in neurons and astrocytes after treatment with PCSK9 in vitro.
potential neurotoxic action of PCSK912 monthsEfficacy of the new nanoparticle (NPs) formulation carrying anti-PCSK9 antibody in reducing PCSK9-induced neurotoxicity in neuronal and astrocyte cultures in vitro.

Countries

Italy

Contacts

CONTACTPaola Caroppo, MD
paola.caroppo@istituto-besta.it02.2394.2260
CONTACTAurora Romeo, SC
aurora.romeo@istituto-besta.it02.2394.2260

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Feb 12, 2026