Study Results
The study team has not published outcome measurements, participant flow, or safety data for this trial yet. Check back later for updates.
Basic Information
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COMPLETED
115 participants
OBSERVATIONAL
2015-11-30
2016-10-31
Brief Summary
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Detailed Description
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Dimethyl fumarate (Biogen Idec, Inc, Cambridge, MA, USA) is an FDA approved oral treatment for relapsing MS. One phase II and 2 phase III randomized, placebo-controlled and double-blinded clinical trials established that dimethyl fumarate significantly reduces relapse rates and improves disability along with neuroradiologic outcomes relative to placebo.
There is growing evidence to suggest that oxidative stress has a significant role in the pathogenesis of MS. Therapies that reduce oxidative stress, as well as inflammation, are of increasing interest. Fumaric acid esters are known to activate anti-oxidative pathways, as well as modulate the inflammatory cascade. Several in vivo studies have shown that nuclear factor E2-related factor 2 (Nrf2) has a role in attenuating proinflammatory stimuli through the modulation of cytokine signaling and through its involvement in glutathione homeostasis. For example, in one animal study, Nrf2-deficient mice were found to have increased expression of proinflammatory mediators, including cyclooxygenase-2, interleukin (IL)-1b, IL-6 and tumour necrosis factor-a, compared with wild-type mice. Nrf2 is also established as the guardian of redox homeostasis and has been shown to be critical for attenuating oxidative stress. Under oxidative conditions, Nrf2 enters into and accumulates within the nucleus of cells and activates the expression of a battery of cytoprotective and detoxification genes. A number of in vitro and in vivo studies have consistently demonstrated the key role of the Nrf2 signaling pathway in protecting the CNS from oxidative stress-related damage. Currently, oral dimethyl fumarate is the only agent that appears to directly target Nrf2, which it does by inducing the cleavage of kelch-like erythroid cell-derived protein with "cap'n'collar" homology-associated protein 1 (Keap1) from Nrf2 in the cell cytoplasm. By cleaving this Keap1-Nrf2 complex, Nrf2 is free to cross the nuclear membrane and interact with other nuclear transcription factors to upregulate the antioxidant response element. Via this mechanism, dimethyl fumarate appears to have a distinct dual mechanism of action in attenuating oxidative stress as well as in reducing inflammatory response.
Dimethyl fumarate showed robust effect in suppressing the appearance of new CE, T2 hyperintense and T1 hypointense lesions along with their volumes. In a recent study, dimethyl fumarate also exerted potential for cytoprotection and remyelination, as evidenced by changes in magnetization transfer ratio. However, the dimethyl fumarate effect on non-conventional MRI metrics, such as diffusion-tensor imaging (DTI) has not been explored.
Conditions
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Study Design
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CASE_CONTROL
Study Groups
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Dimethyl Fumarate
MS patients who started treatment with dimethyl fumarate
Dimethyl fumarate
Healthy Control
No interventions assigned to this group
Interventions
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Dimethyl fumarate
Eligibility Criteria
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Inclusion Criteria
* MS patients having a relapsing disease course
* Starting treatment with dimethyl fumarate therapy for at least one month
* Having standard of care 1.5T or 3T MRI scan obtained at baseline (time of start of dimethyl fumarate) and at the 12 and 24 months after starting dimethyl fumarate. In case of healthy controls, having 2 MRI scans with a minimum of 24 months apart
* Have DTI sequence at all timepoints
* At least 18 years of age
Exclusion Criteria
* Patients who received steroid treatment within 30 days prior to the MRI scan date
* Women who were pregnant during the time of the retrospective study or are pregnant/lactating at the time of the prospective arm
All healthy controls will be part of the retrospective arm.
18 Years
ALL
Yes
Sponsors
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University at Buffalo
OTHER
Responsible Party
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Robert Zivadinov, MD, PhD
Principal Investigator
Principal Investigators
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Robert Zivadinov, MD, PhD
Role: PRINCIPAL_INVESTIGATOR
BNAC
Other Identifiers
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T-DTI
Identifier Type: -
Identifier Source: org_study_id