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Background:
- Contrast agents help things show up better on magnetic resonance imaging (MRI) scans. Researchers want to see if the drug ferumoxytol is a good contrast agent. They want to determine that it does not cause prolonged MRI changes in the brain and to see if it helps identify inflammation in multiple sclerosis
Objective:
- To learn how ferumoxytol can be used to image inflammation in multiple sclerosis (MS).
Eligibility:
Design:
<TAB>- Participants will then have a 7 tesla MRI scan of the brain..
Full description
Objective
The goals of this pilot study are to (1) demonstrate the safety of ferumoxytol, a United States Food and Drug Administration (FDA) approved drug used in the treatment of iron deficiency anemia, as a contrast agent for brain magnetic resonance imaging (MRI), as determined by a lack of long-term signal change in healthy volunteers (HV) and people with multiple sclerosis (MS); (2) determine if ferumoxytol enhancement can be detected in MS lesions on 7-tesla (T) MRI; and (3) examine the spatial and temporal enhancement patterns of ferumoxytol compared to patterns seen with gradient-echo imaging and gadolinium contrast in MS lesions.
Study population
Up to 10 HVs and up to 10 participants with MS will be recruited for this study.
Design
Participants will undergo a series of brain MRIs on a 7 T scanner. MRI will be before (baseline) and 0-8 hours, 24-96 hours, 1 month, and 6 months following ferumoxytol administration.
Outcome measures
The primary outcome measure is change in gradient-echo T2-weighted signal (derived from an MR sequence sensitive to paramagnetic agents such as iron) in the globus pallidus, a known brain iron reservoir, 6 months following ferumoxytol administration. Thus, we will determine if ferumoxytol induces long-lasting brain signal intensity changes in HV and MS. Secondary outcome measures are: (1) the number, location, and qualitative morphology of ferumoxytol, gradient-echo phase, and gadolinium-enhanced MS lesions and how these lesions change over time; and (2) quantitative estimates of change in iron concentration by determining R2 (= 1/T2) relaxation rate within MS lesions, normal appearing white matter, normal appearing gray matter, and other iron-rich regions within the brain before and after ferumoxytol injection.
Enrollment
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Inclusion and exclusion criteria
HEALTHY VOLUNTEER INCLUSION CRITERIA
PATIENT INCLUSION CRITERIA
EXCLUSION CRITERIA:
GENERAL EXCLUSION CRITERIA:
ADDITIONAL PATIENT EXCLUSION CRITERION:
-4 or more gadolinium-enhancing lesions on the screening scan
Primary purpose
Allocation
Interventional model
Masking
14 participants in 1 patient group
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Data sourced from clinicaltrials.gov
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