[{"data":1,"prerenderedAt":-1},["ShallowReactive",2],{"trial:NCT05359653":3,"trial-entities:NCT05359653":300,"trial-summary:NCT05359653":304},{"id":4,"nct_id":4,"org_study_id":5,"brief_title":6,"official_title":7,"overall_status":8,"completion_date":9,"status_verified_date":10,"last_update_date":11,"start_date":12,"sponsor_name":13,"lead_sponsor_class":14,"has_dmc":15,"brief_summary":16,"detailed_description":17,"conditions":18,"keywords":26,"study_type":31,"primary_purpose":32,"phases":33,"enrollment_info":36,"interventions":39,"primary_outcomes":57,"secondary_outcomes":88,"sex":215,"minimum_age":216,"maximum_age":217,"healthy_volunteers":15,"eligibility_criteria":218,"std_ages":251,"locations":253,"central_contacts":275,"overall_officials":279,"references":282,"see_also_links":299},"NCT05359653","22-36052","Assessing Changes in Multi-parametric MRI in MS Patients Taking Clemastine Fumarate as a Myelin Repair Therapy","A Randomized, Double-Blind, Delayed Treatment, Placebo-Controlled Trial to Assess the Changes in Multi-parametric MRI in MS Patients Taking Clemastine Fumarate as a Myelin Repair Therapy","RECRUITING","2027-06-01","2026-06","2026-07-02","2023-08-01","University of California, San Francisco","OTHER",false,"The clinical trial is intended to assess for clinical evidence of Clemastine Fumarate as a myelin repair therapy in patients with chronic inflammatory injury-causing demyelination as measured by multi-parametric MRI assessments.\n\nNo reparative therapies exist for the treatment of multiple sclerosis. Clemastine fumarate was identified along with a series of other antimuscarinic medications as a potential remyelinating agent using the micropillar screen (BIMA) developed at the University of California, San Francisco (UCSF). Following in vivo validation, an FDA IND exemption was granted to investigate clemastine for the treatment of multiple sclerosis in the context of chronic optic neuropathy. That pilot study was recently completed and is the first randomized control trial documenting efficacy for a putative remyelinating agent for the treatment of MS. The preselected primary efficacy endpoint (visual evoked potential) was met and a strong trend to benefit was seen for the principal secondary endpoint assessing function (low contrast visual acuity). That trial number was 13-11577.\n\nThis study seeks to follow up on that study and examine clemastine fumarate's protective and reparative effects in the context of chronic demyelinating brain lesions as imaged by multi-parametric MRI assessments. The investigators will be assessing the effects of clemastine fumarate as a remyelinating therapy and assessing its effect on MRI metrics of chronic lesions found in patients with a confirmed diagnosis of relapsing-remitting multiple sclerosis.\n\nIn addition to using conventional multi-parametric MRI assessments, this study will also evaluate a new MRI technique called Ultrashort Echo Time (UTE) MRI to assess the effects of clemastine fumarate as a remyelinating therapy of chronic lesions found in patients with a confirmed diagnosis of relapsing-remitting multiple sclerosis and compare it to the other assessments.","Treatments capable of remyelination are a major unmet need for multiple sclerosis and other diseases that involve myelin damage, loss, or dysfunction in the central nervous system (CNS). Chronic demyelination of axons is believed to be injurious to neurons and serves as a major contributor to irreversible cell loss that underlies permanent disability. Available MS treatments are primarily immunosuppressing, without directly addressing or fully preventing axonal degeneration and disability. Clemastine fumarate was identified along with a series of other antimuscarinic medications as a potential remyelinating agent using the micropillar screen (BIMA) developed at UCSF. The screen demonstrated that clemastine promoted the differentiation of the endogenous oligodendrocyte precursor cells (OPCs) into mature myelinating oligodendrocytes. Following in vivo validation, an FDA investigational new drug (IND) exemption was granted to investigate clemastine for the treatment of multiple sclerosis in the context of chronic optic neuropathy. That pilot study was recently completed and is the first randomized control trial documenting efficacy for a putative remyelinating agent for the treatment of MS. The preselected primary efficacy endpoint (visual evoked potential) was met and a strong trend to benefit was seen for the principal secondary endpoint assessing function (low contrast visual acuity). That trial number was 13-11577.\n\nThis clinical trial is intended to assess magnetic resonance imaging evidence of remyelination using Clemastine Fumarate in patients with chronic demyelinated lesions. Specifically speaking, the primary objective will assess various multi-parametric MRI sequences on the corpus callosum region, a region that animal models studies identified as a promising candidate for assessing remyelination. The aim was to help define the potential for MRI in measuring remyelination in MS, determine the optimal sequences and location for measuring myelin recovery, and help guide trial design for future remyelinating trials. Finally, the study is designed to assess tolerability and clinical efficacy of Clemastine using outcomes intended to assess for (a) adverse events and (b) recovery of myelin.",[19,20,21,22,23,24,25],"Multiple Sclerosis (MS)","Multiple Sclerosis, Relapsing-Remitting","Multiple Sclerosis, Primary Progressive","Multiple Sclerosis, Chronic Progressive","Multiple Sclerosis Relapse","Multiple Sclerosis Brain Lesion","Multiple Sclerosis Benign",[27,28,29,30],"multiple sclerosis","mri","brain","spinal cord","INTERVENTIONAL","TREATMENT",[34,35],"PHASE1","PHASE2",{"count":37,"type":38},74,"ESTIMATED",[40,51],{"type":41,"name":42,"description":43,"armGroupLabels":44,"otherNames":47},"DRUG","Clemastine Fumarate","8 mg Clemastine tablet. Clemastine fumarate was approved by the Food and Drug Administration (FDA) for the treatment of allergic rhinitis (seasonal allergies) in 1977 and was approved for over-the-counter marketing in 1992. Clemastine is not FDA approved as a remyelinating therapy",[45,46],"Clemastine 8 mg, then Placebo","Placebo, then Clemastine 8 mg",[48,49,50],"Clemastine","Dayhist","Dayhist Allergy",{"type":41,"name":52,"description":53,"armGroupLabels":54,"otherNames":55},"Placebo","Matched sugar tablet",[45,46],[56],"Sugar pill",[58,62,66,70,73,76,79,82,85],{"measure":59,"description":60,"timeFrame":61},"Corpus Callosum Myelin Water Fraction","The efficacy of clemastine relative to placebo at increasing the myelin water fraction (MWF) (measured in %) from magnetic resonance imaging of the corpus callosum.","This will be assessed at the baseline visit.",{"measure":63,"description":64,"timeFrame":65},"Change from Baseline in Corpus Callosum Myelin Water Fraction at 3 Months","The efficacy of clemastine relative to placebo at increasing the myelin water fraction (MWF) (measured in %) from magnetic resonance imaging of the corpus callosum. Change = (3-month % - Baseline %)","This will be assessed at the baseline and 3-month visits.",{"measure":67,"description":68,"timeFrame":69},"Change from Baseline in Corpus Callosum Myelin Water Fraction at 6 Months","The efficacy of clemastine relative to placebo at increasing the myelin water fraction (MWF) (measured in %) from magnetic resonance imaging of the corpus callosum. Change = (6-month % - Baseline %)","This will be assessed at the baseline and 6-month visits.",{"measure":71,"description":72,"timeFrame":61},"Corpus Callosum T1 Relaxation Time","The efficacy of clemastine relative to placebo at shortening the T1 relaxation time (measured in seconds) within the corpus callosum using T1 mapping protocols in an MRI.",{"measure":74,"description":75,"timeFrame":65},"Change from Baseline in Corpus Callosum T1 Relaxation Time at 3 Months","The efficacy of clemastine relative to placebo at shortening the T1 relaxation time (measured in seconds) within the corpus callosum using T1 mapping protocols in an MRI. Change = (3-month time - Baseline time)",{"measure":77,"description":78,"timeFrame":69},"Change from Baseline in Corpus Callosum T1 Relaxation Time at 6 Months","The efficacy of clemastine relative to placebo at shortening the T1 relaxation time (measured in seconds) within the corpus callosum using T1 mapping protocols in an MRI. Change = (6-month time - Baseline time)",{"measure":80,"description":81,"timeFrame":61},"Corpus Callosum UTE Fraction","The efficacy of clemastine relative to placebo at increasing the ultrashort echo time (UTE) fraction (measured in %) derived from magnetic resonance imaging of the corpus callosum.",{"measure":83,"description":84,"timeFrame":65},"Change from Baseline in Corpus Callosum UTE Fraction at 3 Months","The efficacy of clemastine relative to placebo at increasing the ultrashort echo time (UTE) fraction (measured in %) derived from magnetic resonance imaging of the corpus callosum. Change = (3-month % - Baseline %)",{"measure":86,"description":87,"timeFrame":69},"Change from Baseline in Corpus Callosum UTE Fraction at 6 Months","The efficacy of clemastine relative to placebo at increasing the ultrashort echo time (UTE) fraction (measured in %) derived from magnetic resonance imaging of the corpus callosum. Change = (6-month % - Baseline %)",[89,92,95,98,101,104,107,110,113,116,119,122,125,128,131,134,137,140,143,146,149,152,155,158,161,164,167,170,173,176,179,182,185,188,191,194,197,200,203,206,209,212],{"measure":90,"description":91,"timeFrame":61},"Optic Radiation Myelin Water Fraction","The efficacy of Clemastine relative to placebo at increasing the MWF (measured in %) of the optic radiation.",{"measure":93,"description":94,"timeFrame":65},"Change from Baseline in Optic Radiation Myelin Water Fraction at 3 Months","The efficacy of clemastine relative to placebo at increasing the MWF (measured in %) of the optic radiation. Change = (3-month % - Baseline %)",{"measure":96,"description":97,"timeFrame":69},"Change from Baseline in Optic Radiation Myelin Water Fraction at 6 Months","The efficacy of clemastine relative to placebo at increasing the MWF (measured in %) of the optic radiation. Change = (6-month % - Baseline %)",{"measure":99,"description":100,"timeFrame":61},"Corticospinal Tract Myelin Water Fraction","The efficacy of clemastine relative to placebo at increasing the MWF (measured in %) of the corticospinal tract.",{"measure":102,"description":103,"timeFrame":65},"Change from Baseline in Corticospinal Tract Myelin Water Fraction at 3 Months","The efficacy of clemastine relative to placebo at increasing the MWF (measured in %) of the corticospinal tract. Change = (3-month % - Baseline %)",{"measure":105,"description":106,"timeFrame":69},"Change from Baseline in Corticospinal Tract Myelin Water Fraction at 6 Months","The efficacy of clemastine relative to placebo at increasing the MWF (measured in %) of the corticospinal tract. Change = (6-month % - Baseline %)",{"measure":108,"description":109,"timeFrame":61},"Optic Radiation T1 Relaxation time","To evaluate the efficacy of Clemastine relative to placebo at increasing the T1 relaxation time (measured in seconds) of the optic radiation.",{"measure":111,"description":112,"timeFrame":65},"Change from Baseline in Optic Radiation T1 Relaxation Time at 3 Months","To evaluate the efficacy of Clemastine relative to placebo at increasing the T1 relaxation time (measured in seconds) of the optic radiation. Change = (3-month time - Baseline time)",{"measure":114,"description":115,"timeFrame":69},"Change from Baseline in Optic Radiation T1 Relaxation Time at 6 Months","To evaluate the efficacy of Clemastine relative to placebo at increasing the T1 relaxation time (measured in seconds) of the optic radiation. Change = (6-month % - Baseline %)",{"measure":117,"description":118,"timeFrame":61},"Corticospinal Tract T1 Relaxation Time","To evaluate the efficacy of Clemastine relative to placebo at increasing the T1 relaxation time (measured in seconds) of the corticospinal tract.",{"measure":120,"description":121,"timeFrame":65},"Change from Baseline in Corticospinal T1 Relaxation Time at 3 Months","To evaluate the efficacy of Clemastine relative to placebo at increasing the T1 relaxation time (measured in seconds) of the corticospinal tract. Change = (3-month time - Baseline time)",{"measure":123,"description":124,"timeFrame":69},"Change from Baseline in Corticospinal Tract T1 Relaxation Time at 6 Months","To evaluate the efficacy of Clemastine relative to placebo at increasing the T1 relaxation time (measured in seconds) of the corticospinal tract. Change = (6-month % - Baseline %)",{"measure":126,"description":127,"timeFrame":61},"Optic radiation UTE Fraction","The efficacy of clemastine relative to placebo at increasing the UTE fraction (measured in %) of the optic radiation.",{"measure":129,"description":130,"timeFrame":65},"Change from Baseline in Optic radiation UTE Fraction at 3 Months","The efficacy of clemastine relative to placebo at increasing the UTE fraction (measured in %) of the optic radiation. Change = (3-month % - Baseline %)",{"measure":132,"description":133,"timeFrame":69},"Change from Baseline in Optic radiation UTE Fraction at 6 Months","The efficacy of clemastine relative to placebo at increasing the UTE fraction (measured in %) of the optic radiation. Change = (6-month % - Baseline %)",{"measure":135,"description":136,"timeFrame":61},"Corticospinal Tract UTE Fraction","The efficacy of clemastine relative to placebo at increasing the UTE fraction (measured in %) of the corticospinal tract.",{"measure":138,"description":139,"timeFrame":65},"Change from Baseline in Corticospinal Tract UTE Fraction at 3 Months","The efficacy of clemastine relative to placebo at increasing the UTE fraction (measured in %) of the corticospinal tract. Change = (3-month % - Baseline %)",{"measure":141,"description":142,"timeFrame":69},"Change from Baseline in Corticospinal Tract UTE Fraction at 6 Months","The efficacy of clemastine relative to placebo at increasing the UTE fraction (measured in %) of the corticospinal tract. Change = (6-month % - Baseline %)",{"measure":144,"description":145,"timeFrame":61},"Lesion of interest (LOI) MWF","The efficacy of clemastine relative to placebo at increasing MWF (measured in %) of the lesion(s) of interest, stratified based on enhancement status on prior MRIs.",{"measure":147,"description":148,"timeFrame":65},"Change from Baseline in LOI MWF at 3 Months","The efficacy of clemastine relative to placebo at increasing MWF (measured in %) of the lesion(s) of interest, stratified based on enhancement status on prior MRIs. Change = (3-month % - Baseline %)",{"measure":150,"description":151,"timeFrame":69},"Change from Baseline in LOI MWF at 6 Months","The efficacy of clemastine relative to placebo at increasing MWF (measured in %) of the lesion(s) of interest, stratified based on enhancement status on prior MRIs. Change = (6-month % - Baseline %)",{"measure":153,"description":154,"timeFrame":61},"LOI T1 Relaxation Time","The efficacy of clemastine relative to placebo at increasing T1 relaxation time (measured in seconds) of the lesion(s) of interest, stratified based on enhancement status on prior MRIs.",{"measure":156,"description":157,"timeFrame":65},"Change from Baseline in LOI T1 Relaxation Time at 3 Months","The efficacy of clemastine relative to placebo at increasing T1 relaxation time (measured in seconds) of the lesion(s) of interest, stratified based on enhancement status on prior MRIs. Change = (3-month time - Baseline time)",{"measure":159,"description":160,"timeFrame":69},"Change from Baseline in LOI T1 Relaxation Time at 6 Months","The efficacy of clemastine relative to placebo at increasing T1 relaxation time (measured in seconds) of the lesion(s) of interest, stratified based on enhancement status on prior MRIs. Change = (6-month time - Baseline time)",{"measure":162,"description":163,"timeFrame":61},"LOI UTE Fraction","The efficacy of clemastine relative to placebo at increasing UTE fraction (measured in %) of the lesion(s) of interest, stratified based on enhancement status on prior MRIs.",{"measure":165,"description":166,"timeFrame":65},"Change from Baseline in LOI UTE Fraction at 3 Months","The efficacy of clemastine relative to placebo at increasing UTE fraction (measured in %) of the lesion(s) of interest, stratified based on enhancement status on prior MRIs. Change = (3-month % - Baseline %)",{"measure":168,"description":169,"timeFrame":69},"Change from Baseline in LOI UTE Fraction at 6 Months","The efficacy of clemastine relative to placebo at increasing UTE fraction (measured in %) of the lesion(s) of interest, stratified based on enhancement status on prior MRIs. Change = (6-month % - Baseline %)",{"measure":171,"description":172,"timeFrame":61},"Whole Brain MWF","The efficacy of clemastine relative to placebo at increasing MWF (measured in %) across the whole-brain divided into regions of normal-appearing white matter (NAWM), cortical gray matter, and deep gray matter.",{"measure":174,"description":175,"timeFrame":65},"Change from Baseline in Whole Brain MWF at 3 Months","The efficacy of clemastine relative to placebo at increasing MWF (measured in %) across the whole-brain divided into regions of normal-appearing white matter (NAWM), cortical gray matter, and deep gray matter. Change = (3-month % - Baseline %)",{"measure":177,"description":178,"timeFrame":69},"Change from Baseline in Whole Brain MWF at 6 Months","The efficacy of clemastine relative to placebo at increasing MWF (measured in %) values across the whole-brain divided into regions of normal-appearing white matter (NAWM), cortical gray matter, and deep gray matter. Change = (6-month % - Baseline %)",{"measure":180,"description":181,"timeFrame":61},"Whole Brain T1 Relaxation Time","The efficacy of clemastine relative to placebo at increasing T1 relaxation time (measured in seconds) across the whole-brain divided into regions of normal-appearing white matter (NAWM), cortical gray matter, and deep gray matter.",{"measure":183,"description":184,"timeFrame":65},"Change from Baseline in Whole Brain T1 Relaxation Time at 3 Months","The efficacy of clemastine relative to placebo at increasing T1 relaxation time (measured in seconds) across the whole-brain divided into regions of normal-appearing white matter (NAWM), cortical gray matter, and deep gray matter. Change = (3-month time - Baseline time)",{"measure":186,"description":187,"timeFrame":69},"Change from Baseline in Whole Brain T1 Relaxation Time at 6 Months","The efficacy of clemastine relative to placebo at increasing T1 relaxation time (measured in seconds) across the whole-brain divided into regions of normal-appearing white matter (NAWM), cortical gray matter, and deep gray matter. Change = (6-month time - Baseline time)",{"measure":189,"description":190,"timeFrame":61},"Whole Brain UTE Fraction","The efficacy of clemastine relative to placebo at increasing the UTE fraction (measured in %) across the whole-brain divided into regions of normal-appearing white matter (NAWM), cortical gray matter, and deep gray matter.",{"measure":192,"description":193,"timeFrame":65},"Change from Baseline in Whole Brain UTE Values at 3 Months","The efficacy of clemastine relative to placebo at increasing the UTE fraction (measured in %) across the whole-brain divided into regions of normal-appearing white matter (NAWM), cortical gray matter, and deep gray matter. Change = (3-month % - Baseline %)",{"measure":195,"description":196,"timeFrame":69},"Change from Baseline in Whole Brain UTE Values at 6 Months","The efficacy of clemastine relative to placebo at increasing the UTE fraction (measured in %) across the whole-brain divided into regions of normal-appearing white matter (NAWM), cortical gray matter, and deep gray matter. Change = (6-month % - Baseline %)",{"measure":198,"description":199,"timeFrame":61},"Clemastine Tolerability","The tolerability of Clemastine in this population. This will include a special focus with regards to fatigue as this is a major symptom for patients suffering from multiple sclerosis.",{"measure":201,"description":202,"timeFrame":65},"Change from Baseline in Clemastine Tolerability at 3 Months","The tolerability of Clemastine in this population. This will include a special focus with regards to fatigue as this is a major symptom for patients suffering from multiple sclerosis. Change = (3-month tolerability - Baseline tolerability)",{"measure":204,"description":205,"timeFrame":69},"Change from Baseline in Clemastine Tolerability at 6 Months","The tolerability of Clemastine in this population. This will include a special focus with regards to fatigue as this is a major symptom for patients suffering from multiple sclerosis. Change = (6-month tolerability - Baseline tolerability)",{"measure":207,"description":208,"timeFrame":61},"Informative Outcomes","Which secondary or tertiary outcomes are likely to be informative for future remyelinating trials in optic neuritis (and other related indications).",{"measure":210,"description":208,"timeFrame":211},"Informative Outcomes at 3 Months","This will be assessed at the 3-month visit.",{"measure":213,"description":208,"timeFrame":214},"Informative Outcomes at 6 Months","This will be assessed at the 6-month visit.","ALL","18 Years","55 Years",{"inclusion":219,"exclusion":229,"raw_text":250},[220,221,222,223,224,225,226,227,228],"Written informed consent must be obtained prior to any assessment being performed.","Patients diagnosed with relapsing remitting multiple sclerosis and a disease duration of \\\u003C 15 years","Male or female patients aged 18-55 years (inclusive)","Use of appropriate contraception during period of trial (women). Before entry women must be:","Post-menopausal for at least 1 year OR","Surgically sterile (have had a hysterectomy or bilateral oophorectomy, tubal ligation, male partner vasectomy or otherwise incapable of pregnancy) OR","Practicing a highly effective method of birth control if sexually active, including hormonal prescription oral contraceptives, contraceptive injections, contraceptive patch, intrauterine device, double barrier method (e.g., condoms, diaphragm or cervical cap with spermicidal foam, cream or gel), or male partner sterilization consistent with local regulations regarding use of birth control methods for patients participating in clinical trials, for the duration of their participation in the study OR","Not heterosexually active (patients who are not heterosexually active at screening must agree to utilize a highly effective method of birth control if they become heterosexually active during their participation in the study) OR","Practicing true abstinence (when this is in line with the preferred and usual lifestyle of the subject) Period abstinence (e.g., calendar, ovulation, symptothermal, post ovulation methods) is not an acceptable method.",[230,231,232,233,234,235,236,237,238,239,240,241,242,243,244,245,246,247,248,249],"Radiologic identification of marked brain atrophy relative to patients age based on recent MRI and interpretation of expert neuroradiologist or PI","New lesion in most recent MRI (within 3 months)","Hypersensitivity to clemastine or other arylalkylamine antihistamines, or any of the excipients.","Treatment with corticosteroids within 30 days prior to screening.","Expanded Disability Status Scale (EDSS) ≥ 4.5","History of significant cardiac conduction block.","History of cancer.","Suicidal ideation or behavior in 6 months prior to baseline.","Pregnancy, breastfeeding or planning to become pregnant.","Involved with other study protocols simultaneously without prior approval.","Concomitant use of any other putative remyelinating therapy as determined by the investigator.","Prior treatment with total lymphoid irradiation, T cell or T cell receptor vaccination.","Prior treatment with alemtuzumab, mitoxantrone, or cyclophosphamide.","Serum creatinine \\> 1.5 mg\u002FdL; aspartate transaminase (AST), alanine transaminase (ALT), or alkaline phosphatase \\> 2 times the upper limit of normal. (Reported within 72 hours)","History of drug or alcohol abuse within the past year.","Untreated B12 deficiency (as determined by B12 serological assessments and metabolites including methylmalonic acid \\[MMA\\] and homocysteine) or untreated hypothyroidism.","Clinically significant cardiac, metabolic, hematologic, hepatic, immunologic, urologic, endocrinologic, neurologic, pulmonary, psychiatric, dermatologic, allergic, renal, or other major diseases that in the PI's judgment may affect the interpretation of study results or patient safety.","History of or presence of clinically significant medical illness or laboratory abnormality that, in the opinion of the investigator would preclude participation in the study","Inability to participate in MRI, including extreme claustrophobia.","Any dental braces or permanent or undetachable metals in the jaw or face.","Inclusion Criteria:\n\n* Written informed consent must be obtained prior to any assessment being performed.\n* Patients diagnosed with relapsing remitting multiple sclerosis and a disease duration of \\\u003C 15 years\n* Male or female patients aged 18-55 years (inclusive)\n* Use of appropriate contraception during period of trial (women). Before entry women must be:\n\n  * Post-menopausal for at least 1 year OR\n  * Surgically sterile (have had a hysterectomy or bilateral oophorectomy, tubal ligation, male partner vasectomy or otherwise incapable of pregnancy) OR\n  * Practicing a highly effective method of birth control if sexually active, including hormonal prescription oral contraceptives, contraceptive injections, contraceptive patch, intrauterine device, double barrier method (e.g., condoms, diaphragm or cervical cap with spermicidal foam, cream or gel), or male partner sterilization consistent with local regulations regarding use of birth control methods for patients participating in clinical trials, for the duration of their participation in the study OR\n  * Not heterosexually active (patients who are not heterosexually active at screening must agree to utilize a highly effective method of birth control if they become heterosexually active during their participation in the study) OR\n  * Practicing true abstinence (when this is in line with the preferred and usual lifestyle of the subject) Period abstinence (e.g., calendar, ovulation, symptothermal, post ovulation methods) is not an acceptable method.\n\nExclusion Criteria:\n\n* Radiologic identification of marked brain atrophy relative to patients age based on recent MRI and interpretation of expert neuroradiologist or PI\n* New lesion in most recent MRI (within 3 months)\n* Hypersensitivity to clemastine or other arylalkylamine antihistamines, or any of the excipients.\n* Treatment with corticosteroids within 30 days prior to screening.\n* Expanded Disability Status Scale (EDSS) ≥ 4.5\n* History of significant cardiac conduction block.\n* History of cancer.\n* Suicidal ideation or behavior in 6 months prior to baseline.\n* Pregnancy, breastfeeding or planning to become pregnant.\n* Involved with other study protocols simultaneously without prior approval.\n* Concomitant use of any other putative remyelinating therapy as determined by the investigator.\n* Prior treatment with total lymphoid irradiation, T cell or T cell receptor vaccination.\n* Prior treatment with alemtuzumab, mitoxantrone, or cyclophosphamide.\n* Serum creatinine \\> 1.5 mg\u002FdL; aspartate transaminase (AST), alanine transaminase (ALT), or alkaline phosphatase \\> 2 times the upper limit of normal. (Reported within 72 hours)\n* History of drug or alcohol abuse within the past year.\n* Untreated B12 deficiency (as determined by B12 serological assessments and metabolites including methylmalonic acid \\[MMA\\] and homocysteine) or untreated hypothyroidism.\n* Clinically significant cardiac, metabolic, hematologic, hepatic, immunologic, urologic, endocrinologic, neurologic, pulmonary, psychiatric, dermatologic, allergic, renal, or other major diseases that in the PI's judgment may affect the interpretation of study results or patient safety.\n* History of or presence of clinically significant medical illness or laboratory abnormality that, in the opinion of the investigator would preclude participation in the study\n* Inability to participate in MRI, including extreme claustrophobia.\n* Any dental braces or permanent or undetachable metals in the jaw or face.",[252],"ADULT",[254],{"facility":255,"status":8,"city":256,"state":257,"zip":258,"country":259,"contacts":260,"geoPoint":272},"Sandler Neurosciences Building, Neurological Clinical Research Unit","San Francisco","California","94107","United States",[261,266,269],{"name":262,"role":263,"phone":264,"email":265},"Harkeerat Halait, BS","CONTACT","415-745-1304","Harkeerat.Halait@ucsf.edu",{"name":267,"role":263,"phone":264,"email":268},"Angelica Montevirgen, BS","Angelica.Montevirgen@ucsf.edu",{"name":270,"role":271},"Ari J Green, MD","PRINCIPAL_INVESTIGATOR",{"lat":273,"lon":274},37.77493,-122.41942,[276,277],{"name":262,"role":263,"phone":264,"email":265},{"name":278,"role":263,"phone":264,"email":268},"Angelica Montevirgen",[280],{"name":281,"affiliation":13,"role":271},"Ari J Green, MD, MCR",[283,287,290,293,296],{"pmid":284,"type":285,"citation":286},"24997607","BACKGROUND","Mei F, Fancy SPJ, Shen YA, Niu J, Zhao C, Presley B, Miao E, Lee S, Mayoral SR, Redmond SA, Etxeberria A, Xiao L, Franklin RJM, Green A, Hauser SL, Chan JR. Micropillar arrays as a high-throughput screening platform for therapeutics in multiple sclerosis. Nat Med. 2014 Aug;20(8):954-960. doi: 10.1038\u002Fnm.3618. Epub 2014 Jul 6.",{"pmid":288,"type":285,"citation":289},"19819338","Marques JP, Kober T, Krueger G, van der Zwaag W, Van de Moortele PF, Gruetter R. MP2RAGE, a self bias-field corrected sequence for improved segmentation and T1-mapping at high field. Neuroimage. 2010 Jan 15;49(2):1271-81. doi: 10.1016\u002Fj.neuroimage.2009.10.002. Epub 2009 Oct 9.",{"pmid":291,"type":285,"citation":292},"27155128","Sheth V, Shao H, Chen J, Vandenberg S, Corey-Bloom J, Bydder GM, Du J. Magnetic resonance imaging of myelin using ultrashort Echo time (UTE) pulse sequences: Phantom, specimen, volunteer and multiple sclerosis patient studies. Neuroimage. 2016 Aug 1;136:37-44. doi: 10.1016\u002Fj.neuroimage.2016.05.012. Epub 2016 May 5.",{"pmid":294,"type":285,"citation":295},"29029896","Green AJ, Gelfand JM, Cree BA, Bevan C, Boscardin WJ, Mei F, Inman J, Arnow S, Devereux M, Abounasr A, Nobuta H, Zhu A, Friessen M, Gerona R, von Budingen HC, Henry RG, Hauser SL, Chan JR. Clemastine fumarate as a remyelinating therapy for multiple sclerosis (ReBUILD): a randomised, controlled, double-blind, crossover trial. Lancet. 2017 Dec 2;390(10111):2481-2489. doi: 10.1016\u002FS0140-6736(17)32346-2. Epub 2017 Oct 10.",{"pmid":297,"type":285,"citation":298},"17308868","Gagliardo A, Galli F, Grippo A, Amantini A, Martinelli C, Amato MP, Borsini W. Motor evoked potentials in multiple sclerosis patients without walking limitation: amplitude vs. conduction time abnormalities. J Neurol. 2007 Feb;254(2):220-7. doi: 10.1007\u002Fs00415-006-0334-5. Epub 2007 Feb 17.",[],{"nct_id":4,"conditions":301,"biomarkers":303},[302],"Relapsing-Remitting Multiple Sclerosis",[],{"nct_id":4,"found":305,"summary":306,"prompt_version":316},true,{"design":307,"status":308,"heading":309,"summary":310,"follow_up":311,"word_count":312,"commitments":313,"compensation":314,"drugs_mentioned":315},"This is an interventional study comparing Clemastine Fumarate to a placebo. It plans to enroll 74 participants.","completed","Clemastine Fumarate for Myelin Repair in MS","This study is testing if Clemastine Fumarate, a drug approved for allergies, can help repair myelin in people with Multiple Sclerosis (MS). Researchers want to see if this drug can help rebuild the protective coating around nerve fibers (myelin) that is damaged in MS. You might be able to join if you are 18-55 years old, have relapsing-remitting MS for less than 15 years, and meet other health requirements. The study will compare Clemastine Fumarate to a placebo (a sugar pill with no active drug). Success will be measured by changes in myelin levels in the brain using special MRI scans at 3 and 6 months. The current status of this study is unclear, but it plans to enroll 74 participants.","Myelin levels will be assessed at 3 and 6 months after starting the study.",121,"You will have assessments at baseline, 3 months, and 6 months. These will include multi-parametric MRI scans.","Not stated in the trial record.",[42,52],"v2"]