At a glance
- What the study gets you
- Health checks and monitoring — no treatment given
- Type of study
- Observational (no treatment given)
- Time in hospital
- In-person visits at study sites — visit count not specified by the sponsor
- Drug or intervention
- Magnetic Resonance Imaging (MRI) (other), Blood Glucose Assessment (other), Positron Emission Tomography (PET) (other), Cognitive Assessment (other)
- How long the study runs
- Study runs about 37 months (dates as stated)
- About the drug or intervention
- Magnetic Resonance Imaging (MRI) — other: Participants will be asked to lie in the MRI scanner while we collect 3D T1- and T2-weighted images and a 3D FLAIR image to exclude pathology (e.g. · Blood Glucose Assessment — other: A blood testing meter will be used to measure the blood sugar levels before and after the scans. · Positron Emission Tomography (PET) — other: Participants will be administered a radioactive glucose analogue, 2-deoxy-2-(18F) fluoro-D-glucose (18FDG) through a canula inserted into a vein in the arm or hand and asked to sit quietly for 1 h. · Cognitive Assessment — other: Participants will be asked to undertake two cognitive tests (the Alzheimer's Disease Assessment Scale ADAS-cog test and the Mini Mental State Examination test - MMSE).
- Patient visit burden
- Not specified by the sponsor
- Type of study
- Observing health over time
- Ages
- 18 Years and over
- Who
- All
- Number of participants
- 60
- Started
- 2022-11-15
- Last checked
- 2025-03
Plain English Summary
What is this study?
- • Testing a new treatment for alzheimer disease
- • Clinical study - 60 participants
- • Alzheimer's disease (AD) is the most common cause of dementia, affecting approximately 10% of individuals aged ≥ 65
Who can take part?
- • Ages 18 Years and over
- • Diagnosed with alzheimer disease
Where?
- • Aberdeen - University of Aberdeen
This is a simplified summary. Always discuss with your doctor before making any decisions.
About This Trial
Alzheimer's disease (AD) is the most common cause of dementia, affecting approximately 10% of individuals aged ≥ 65. Most available treatments aim at controlling symptoms at an early stage rather than providing a cure. Therefore, an accurate and early diagnosis of AD with appropriate management will slow the progression of the condition. Reduced cerebral glucose levels have been observed in patients with early AD. Glucose hypometabolism can be assessed by administering a radioactive glucose analogue, 2-deoxy-2-(18F) fluoro-D-glucose (18FDG), and imaging with PET (positron emission tomography). The high cost and limited availability of PET-CT (PET - computed tomography) still hamper its general clinical application. Moreover, the use of radioactive tracers in combination with the additional ionizing radiation of CT is not suitable for repeated measurements. Therefore, currently, the provisional diagnosis of AD is still based on the combination of clinical history, neurological examination, cognitive testing over a period of time, and structural neuroimaging. This has major time and resource implications. A radically different and highly innovative means for imaging glucose with magnetic resonance imaging (MRI) has now been established, exploiting the interaction between hydroxyl protons in glucose and the protons in water; the method is termed glucose Chemical Exchange Saturation Transfer (glucoCEST). GlucoCEST MRI is a method that has no reliance on radiolabelled glucose analogues and could become widely implemented in clinic practice. We therefore aim to investigate the potential of glucoCEST MRI in Alzheimer's disease.
More detail
Alzheimer's disease (AD) is the most common cause of dementia, affecting approximately 10% of individuals aged ≥ 65. Most available treatments aim at controlling symptoms at an early stage rather than providing a cure. Therefore, an accurate and early diagnosis of AD with appropriate management will slow the progression of the condition. Reduced cerebral glucose levels have been observed in patients with early AD. Glucose hypometabolism can be assessed by administering a radioactive glucose analogue, 2-deoxy-2-(18F) fluoro-D-glucose (18FDG), and imaging with PET (positron emission tomography). The high cost and limited availability of PET-CT (PET - computed tomography) still hamper its general clinical application. Moreover, the use of radioactive tracers in combination with the additional ionizing radiation of CT is not suitable for repeated measurements. Therefore, currently, the provisional diagnosis of AD is still based on the combination of clinical history, neurological examination, cognitive testing over a period of time, and structural neuroimaging. This has major time and resource implications. A radically different and highly innovative means for imaging glucose with magnetic resonance imaging (MRI) has now been established, exploiting the interaction between hydroxyl protons in glucose and the protons in water; the method is termed glucose Chemical Exchange Saturation Transfer (glucoCEST). GlucoCEST MRI is a method that has no reliance on radiolabelled glucose analogues and could become widely implemented in clinic practice. We believe that glucoCEST MRI has the potential to replace FDG-PET and improve patient healthcare as part of a routine clinical pathway in very early detection of AD. The study will include 20 healthy volunteers for developing glucoCEST in the clinical 3T MRI scanner (development phase) and 20 volunteers without AD and 20 patients with clinically diagnosed AD (clinical phase). All participants will have a 3T brain MRI scan after they receive oral glucose. The participants in the clinical phase will have a 3T brain MRI scan, a brain PET scan and they will also undertake two cognitive tests. The glucose uptake and clearance rate in the brain will be measured from PET and MRI scans and compared between groups and imaging modalities. Sensitivity and specificity of glucoCEST to detect AD will be also calculated. Primary Objective: To estimate the sensitivity of glucose uptake as measured by glucoCEST MRI in patients with AD compared with age and sex matched controls. Secondary objective: To investigate if the glucose uptake as measured by glucoCEST MRI is related to the glucose uptake as measured in FDG-PET. The main aims of the study are: 1. To determine normal uptake and clearance rates of glucose in the brain as measured by dynamic glucoCEST MRI at 3T 2. To compare glucose uptake as measured by glucoCEST MRI and FDG-PET. 3. To compare glucose uptake as measured by glucoCEST MRI in patients with AD and age and sex matched controls.
How this trial compares with your answers
Answer 2 more questions to improve match
What we know so far
Still need:
- • Tell us your age for better matching
- • Tell us your sex for better matching
Preliminary match based on your answers. Full eligibility requires on-site assessment including medical history, physical exam, and lab tests. This does not guarantee enrolment.
Eligibility at a Glance
Key info
- Age: 18 Years and over
- Who can join: All genders
What the study is looking for
- ✓Development phase:
- ✓Controls (development group) must:
- ✓be \> 18 years
- ✓consent to the study
- ✓not report problems with memory.
Who cannot take part
- ✗Subjects will not be considered if they:
- ✗have a history of diabetes,
- ✗have history of a major stroke (mini-stroke/Transient Ischaemic Attacks or lacunar stroke are acceptable),
- ✗have contra-indications to MRI scanning such as implantable heart devices
- ✗have family history in AD, to exclude possible gene mutations associated with AD
See the full criteria
Where Is This Study? (1 UK site)
University of Aberdeen
Aberdeen AB24 3FX, United Kingdom
How to Get in Touch
Gordon Waiter, PhD
Sponsor contactCONTACT
Nicholas Senn de Vries, PhD
Sponsor contactCONTACT
