Background: Cerebrospinal fluid (CSF) is the liquid that fills the space around the brain and spinal cord. Researchers do not fully understand how CSF flows and drains around the brain. They want to test a tracer (gadobutrol)-a special dye injected into the CSF-to find out if it is safe to use and can help them get clearer pictures of the CSF during magnetic resonance imaging (MRI) scans of the brain. Objective: To test gadobutrol in the CSF during MRI scans of healthy people. Eligibility: Healthy volunteers aged 18 years and older. They must be screened under NIH protocol 89N0045. Design: Participants will check into the clinic for a 3-day stay. They will have a lumbar puncture: An area on their lower back will be numbed. A thin needle will be inserted into the space around the spinal cord. A sample of CSF will be taken for research. Then a low dose of gadobutrol will be injected into the CSF. Participants will have 4 or 5 MRI scans of the brain-30 minutes, 4 hours, 8 hours (this one is optional), 24 hours, and 48 hours after receiving the gadobutrol. For the scan, they will lie on a table that slides into a cylinder. Special padding will be used to hold their head still. The MRI uses magnetic fields to create images of the inside of the body. Blood and urine samples will also be collected at each scan. Participants will return for an additional MRI 1 week after they leave the clinic. They will have 2 follow-up phone calls 4 and 12 weeks after the start of the study.
Study Description: In this study, we will gather safety data on and establish the technical feasibility of bypassing the blood-brain-barrier (BBB) with intrathecal (IT) gadolinium-based contrast agent (GBCA) tracer injection (0.25 ml gadobutrol at a concentration of 1.0 mmol/ml) to dynamically image the subarachnoid space (SAS) in human healthy volunteers. We will also obtain preliminary data on whether this approach will enable us to reliably visualize physiological meningeal lymphatic drainage pathways within the parasagittal dura (PSD) and connections to cerebrospinal fluid (CSF) compartments using serial contrast-enhanced magnetic resonance imaging (CE-MRI) with minimal confounding signal from tracer blood egress. In exploratory analysis, we will quantify temporal clearance kinetics and investigate distribution patterns of GBCA enhancement in the PSD, CSF spaces, and brain parenchyma in up to 12 healthy volunteers using repeated in vivo CE-MRI over 10 days. Safety/tolerability of the IT GBCA administration will be assessed descriptively over the entire 12-week study period. Objectives: Primary objective: To track safety/tolerability of IT GBCA administration in healthy human volunteers. Secondary objective: To establish technical feasibility of dynamic subarachnoid-space imaging using IT GBCA administration in healthy human volunteers. Exploratory objectives: To explore patterns of dynamic meningeal lymphatic clearance pathway interconnections in vivo under physiological conditions in human healthy volunteers, and to obtain preliminary data regarding the effect of aging on CSF dynamics and CSF-to-blood tracer clearance. Endpoints: Primary endpoint: Occurrence of intervention-emergent adverse events at the participant level assessed descriptively over the 12-week study period. Secondary outcome measure: MRI detection status (yes/no) of contrast in the cerebral SAS at 24 hours. Exploratory outcome measures: Changes in contrast-to-noise ratio (CNR) and clearance kinetics of SAS to brain parenchyma over 48h.
Study Type
INTERVENTIONAL
Allocation
NON_RANDOMIZED
Purpose
OTHER
Masking
NONE
Enrollment
15
contrast agent
National Institutes of Health Clinical Center
Bethesda, Maryland, United States
Occurrence of intervention-emergent adverse events at the participant level assessed descriptively
Systematic recording of adverse events is essential to determine the safety of IT gadobutrol, especially given its off-label use in healthy volunteers. With the limited sample size of this Phase 1 study, safety assessment is appropriately based on a descriptive evaluation rather than formal hypothesis testing. Monitoring known procedure- and contrast-related risks (e.g., post-lumbar puncture headache, nausea, dizziness) as well as any unexpected adverse events over the study and follow-up period provides the critical foundation for ethical justification and regulatory decision-making and is a prerequisite for future feasibility and efficacy-driven studies.
Time frame: 12-week study period.
Participant-level MRI detection status (yes/no) of contrast in the cerebral SAS
Technical feasibility is assessed by determining whether IT administered GBCA can be visually detected in the cerebral SAS at 24 hours under exploratory Phase 1 conditions. As this is a pilot safety study with limited prior human data, feasibility is not used as a stopping criterion. Instead, MRI visibility of contrast will inform adaptive dose escalation. If no or insufficient contrast enhancement is observed in 3 to 5 participants at the initial dose level (0.25 ml), the dose may be escalated to 0.5 ml to improve detectability. This predefined adaptation is intended to support appropriate dose selection for subsequent studies while maintaining the focus on safety.
Time frame: 24 hours
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