Ferric derisomaltose
DrugRefer to arm/group descriptions
NCT Number: NCT05929729
This is a trial with an observational and an interventional arm, in patients with moderate to severe anemia and control subjects. The main purposes of this study is to phenotype the scope of neurocognitive deficits from iron deficiency anemia (IDA) in adult women, determine derangements in cerebral perfusion, vascular reactivity, functional connectivity, and blood brain barrier permeability in adult-onset IDA and relate them to neurocognitive deficits, as well as determine the reversibility and durability of both the physiologic and neurocognitive derangements by iron replacement therapy. All eligible subjects will be asked to provide informed consent before participating in the study.
Interested in participating?
Request Info16 year–60 year
Female
Interventional
Phase 4
City of Hope Blood Donor Center, Duarte, California, United States
This is a trial with an observational and an interventional arm, in patients with moderate to severe anemia and control subjects. The main purposes of this study is to phenotype the scope of neurocognitive deficits from iron deficiency anemia (IDA) in adult women, determine derangements in cerebral perfusion, vascular reactivity, functional connectivity, and blood brain barrier permeability in adult-onset IDA and relate them to neurocognitive deficits, as well as determine the reversibility and durability of both the physiologic and neurocognitive derangements by iron replacement therapy. All eligible subjects will be asked to provide informed consent before participating in the study.
Comprehensive cerebrovascular magnetic resonance imaging (MRI), bloodwork, patient reported outcomes, and neurocognitive testing will be collected from all subjects in the observational arm. 136 subjects total will be enrolled, 40 controls and 96 anemic subjects. The 96 eligible anemic subjects will then be invited to enroll in the interventional arm of the study. Anticipating a drop-out rate of 20%, 40 will be randomized into intravenous iron therapy, and 40 will be randomized into standard of care (oral iron via primary care). Repeated tests will be done at different timepoints to assess the effects and durability of iron therapy.
Healthy volunteers accepted: Yes
Only the study team can determine whether someone qualifies for participation.
Inclusion criteria
Exclusion criteria
Refer to arm/group descriptions
Refer to arm/group descriptions
Time frame: Day 0 (observation arm)
Baseline impact of iron deficiency anemia on cerebrovascular oxygen delivery will be assessed by measuring cerebral blood flow and oxygen content through MRI (time-encoded arterial spin labelling) and peripheral blood sample
Time frame: Day 90 post-iron-therapy
Impact of iron therapy on cerebrovascular oxygen delivery will be assessed at day 90 by measuring cerebral blood flow and oxygen content through MRI (time-encoded arterial spin labelling) and peripheral blood sample in people with iron deficiency anemia.
Time frame: Day 365 post iron therapy
Impact of iron therapy on cerebrovascular oxygen delivery will be assessed at day 365 by measuring cerebral blood flow and oxygen content through MRI (time-encoded arterial spin labelling) and peripheral blood sample in people with iron deficiency anemia
Time frame: Day 0 (observation arm)
baseline MRI with blood oxygenation level dependent (BOLD) acquisition will be assessed in response to carbon dioxide exposure to determine whether iron deficiency anemia affects cerebrovascular reserve
Time frame: Day 90 post iron therapy
Impact of iron therapy on cardiovascular reserve in iron deficiency anemia will be assessed using MRI with blood oxygenation level dependent (BOLD) acquisition at 90 days post iron therapy.
Time frame: Day 365 post iron therapy
Impact of iron therapy on cardiovascular reserve in iron deficiency anemia will be assessed using MRI with blood oxygenation level dependent (BOLD) acquisition at day 365 post iron therapy.
Time frame: Day 0 (observation arm)
baseline PSA product using water-extraction-with phase- contrast-arterial-spin-tagging (WEPCAST) MRI will be assessed to determine whether iron deficiency anemia affects blood brain barrier permeability to water
Time frame: Day 90 post iron therapy
PSA product using water-extraction-with phase- contrast-arterial-spin-tagging (WEPCAST) MRI will be assessed at 90 days post iron therapy to determine the impact of iron therapy on blood brain barrier permeability to water in patients with iron deficiency anemia.
Time frame: Day 365 post iron therapy
PSA product using water-extraction-with phase- contrast-arterial-spin-tagging (WEPCAST) MRI will be assessed at 365 days post iron therapy to determine the impact of iron therapy on blood brain barrier permeability to water in patients with iron deficiency anemia.
Time frame: Day 0 (observation arm)
Baseline T2 relaxation under spin tagging (TRUST) acquisition via MRI will be used to assess any impact of iron deficiency anemia on cerebral metabolic rate of oxygen
Time frame: Day 90 post iron therapy
T2 relaxation under spin tagging (TRUST) acquisition via MRI will be used to assess any impact of iron therapy on cerebral metabolic rate of oxygen in anemic subjects at day 90.
Time frame: Day 365 post iron therapy
T2 relaxation under spin tagging (TRUST) acquisition via MRI will be used to assess any impact of iron therapy on cerebral metabolic rate of oxygen in anemic subjects at day 365.
Time frame: Day 0 (observation arm)
Phase contrast MRI will be assessed to determine whether iron deficiency anemia affects total brain blood flow at baseline
Time frame: Day 90 post iron therapy
Phase contrast MRI will be assessed at day 90 post iron therapy to determine whether iron therapy affects total brain blood flow in subjects with iron deficiency anemia
Time frame: Day 365 post iron therapy
Phase contrast MRI will be assessed at day 365 post iron therapy to determine whether iron therapy affects total brain blood flow in subjects with iron deficiency anemia
Time frame: Day 0 (observation arm)
Visual-motor integration at baseline (day 0) will be assessed using Beery Buktenica Developmental Test of Visual-Motor Integration (6th Edition). Standardized scores with a mean of 100 and a standard deviation of 15 are used. Higher scores mean better performance.
Time frame: Day 365 post iron therapy
Visual-motor integration will be assessed using Beery Buktenica Developmental Test of Visual-Motor Integration (6th Edition) at day 365 post iron-therapy. Standardized scores with a mean of 100 and a standard deviation of 15 are used. Higher scores mean better performance.
Time frame: Day 0 (observation arm)
Sustained attention at baseline (day 0) will be assessed using Conners' Continuous Performance Test (3rd Edition) at day 90 post iron-therapy. T-scores with a mean of 50 and a standard deviation of 10 are used. Higher scores mean worse performance.
Time frame: Day 365 post iron therapy
Sustained attention will be assessed using Conners' Continuous Performance Test (3rd Edition) at day 365 post iron-therapy. T-scores with a mean of 50 and a standard deviation of 10 are used. Higher scores mean worse performance.
Time frame: Day 0 (observation arm)
Working memory function at baseline (day 0) will be assessed using Digit Span, Coding, and Symbol Search Subtests from Wechsler Adult Intelligence Scale-Fourth Edition (WAIS-IV). Scaled scores with a mean of 10 and a standard deviation of 3 are used. Higher scores mean better performance.
Time frame: Day 365 post iron therapy
Working memory function will be assessed at day 365 post iron therapy using Digit Span, Coding, and Symbol Search Subtests from Wechsler Adult Intelligence Scale-Fourth Edition (WAIS-IV). Scaled scores with a mean of 10 and a standard deviation of 3 are used. Higher scores mean better performance.
Time frame: Day 0 (observation arm)
The ability to inhibit cognitive interference at baseline (day 0) will be assessed using Color-Word Interference Subtest from the Delis-Kaplan Executive Function System (D-KEFS). Scaled scores with a mean of 10 and a standard deviation of 3 are used. Higher scores mean better performance.
Time frame: Day 365 post iron therapy
The ability to inhibit cognitive interference at day 365 post iron therapy will be assessed using Color-Word Interference Subtest from the Delis-Kaplan Executive Function System (D-KEFS). Scaled scores with a mean of 10 and a standard deviation of 3 are used. Higher scores mean better performance.
Time frame: Day 0 (observation arm)
Fine motor control will be assessed at baseline (day 0) using Reitan Finger Tapping. Z scores with a mean of zero and a standard deviation of one are used. Higher scores mean better performance.
Time frame: Day 365 post iron therapy
Fine motor control will be assessed at day 365 post iron therapy using Reitan Finger Tapping. Z scores with a mean of zero and a standard deviation of one are used. Higher scores mean better performance.
Time frame: Day 365 post iron therapy
List learning and recall task will be assessed at day 365 post iron therapy using California Verbal Learning Test-Third Edition (CVLT-3). Z scores with a mean of zero and a standard deviation of 1 are used. Higher scores mean better performance.
Time frame: Day 0 (observation arm)
Visuospatial memory will be assessed at baseline (day 0) using Brief Visuospatial Memory Test-Revised (BVMT-R). T-scores with a mean of 50 and a standard deviation of 10 are used. Higher scores mean better performance.
Time frame: Day 365 post iron therapy
Visuospatial memory will be assessed at day 365 post iron therapy using Brief Visuospatial Memory Test-Revised (BVMT-R). T-scores with a mean of 50 and a standard deviation of 10 are used. Higher scores mean better performance.
Time frame: Day 0 (observation arm)
General intellectual functioning, verbal and nonverbal abilities will be assessed at baseline (day 0) using Wechsler Abbreviated Scale of Intelligence-Second Edition (WASI-2). T scores with a mean of 50 and a standard deviation of 10 are used for the subtests, with standard scores (mean of 100 and standard deviation of 15) used for composite scores. Higher scores mean better performance.
Time frame: Day 365 post iron therapy
General intellectual functioning, verbal and nonverbal abilities will be assessed at day 365 post iron therapy using Wechsler Abbreviated Scale of Intelligence-Second Edition (WASI-2). T scores with a mean of 50 and a standard deviation of 10 are used for the subtests, with standard scores (mean of 100 and standard deviation of 15) used for composite scores. Higher scores mean better performance.
Time frame: Day 0 (observation arm)
Cognitive flexibility and processing speed will be assessed at baseline (day 0) using NIH Toolbox: Dimensional Change Card Sort and Pattern Comparison Processing Speed. Standard scores with a mean of 100 and a standard deviation of 15 are used. Higher scores mean better performance.
Time frame: Day 365 post iron therapy
Cognitive flexibility and processing speed will be assessed at day 365 post iron therapy using NIH Toolbox: Dimensional Change Card Sort and Pattern Comparison Processing Speed. Standard scores with a mean of 100 and a standard deviation of 15 are used. Higher scores mean better performance.
Time frame: Day 0 (observation arm)
List learning and recall task will be assessed at baseline (day 0) using California Verbal Learning Test-Third Edition (CVLT-3). Z scores with a mean of zero and a standard deviation of 1 are used. Higher scores mean better performance.
Time frame: Day 0 (observation arm)
Emotional health will be assessed by using NIH toolbox emotion battery at baseline. T-scores with a mean of 50 and a standard deviation of 10 are used. Higher scores mean higher number/frequency of symptoms.
Time frame: Day 365 post iron therapy
Emotional health will be assessed at day 365 post iron therapy by using NIH toolbox emotion battery. T-scores with a mean of 50 and a standard deviation of 10 are used. Higher scores mean higher number/frequency of symptoms.
Time frame: Day 0 (observation arm)
Executive functions in day-to-day life will be assessed at baseline using the Behavior Rating Inventory of Executive Function 2 (BRIEF-2). T-scores with a mean of 50 and a standard deviation of 10 are used. Scores above T=65 may indicated problems.
Time frame: Day 365 post iron therapy
Executive functions in day-to-day life will be assessed at day 365 using the Behavior Rating Inventory of Executive Function 2 (BRIEF-2). T-scores with a mean of 50 and a standard deviation of 10 are used. Scores above T=65 may indicated problems.
Time frame: Day 0 (observation arm)
Rand Short Form Health Survey will be obtained at baseline. Score range is 0-100. Higher score means better quality of life.
Time frame: Day 14 (for IV iron group only), Day 90, Day 180, Day 365
Any effects and the changes in the effects of iron therapy will be assessed by obtaining the Rand Short Form Health Survey again post therapy at day 14 (for intravenous (IV) iron group only), day 90, day 180 and day 365 post iron therapy. Score range is 0-100. Higher score means better quality of life.
Time frame: Day 0 (observation arm)
Functional Assessment of Chronic Illness Therapy will be obtained at baseline. Score range is 0-52. Higher score means less fatigue.
Time frame: Day 14 (for IV iron group only), Day 90, Day 180, Day 365
Any effects and the changes in the effects of iron therapy will be assessed by obtaining the Functional Assessment of Chronic Illness Therapy again post therapy at day 14 (for intravenous (IV) iron group only), day 90, day 180 and day 365 post iron therapy. Score range is 0-52. Higher score means less fatigue.
Time frame: Day 0 (observation arm)
Quantitative susceptibility mapping will be assessed at baseline.
Time frame: Day 14 (for IV iron group only), Day 90, Day 365
Quantitative susceptibility mapping will be assessed at day 14 (for intravenous (IV) iron group only), day 90 and day 365 post iron therapy.
Time frame: Day 0 (observation arm), Day 14 (for IV iron treated), Day 90, Day 180, Day 365
Determine effect sizes of the durability of iron replacement over a period of one year following treatment with oral or intravenous iron.
Time frame: Day 0 (observation arm)
RLS will be assessed at baseline using the Henning Telephone Diagnostic Interview will be done at baseline. Scores are as follows: 0 = no symptoms; 1 = bedtime symptoms after or within an hour of going to bed; 2 = evening and bedtime symptoms starting at or after 6:00 pm; and 3 = day and night symptoms starting before 6:00 pm. Higher score indicates more severe RLS.
Time frame: Day 14 (for intravenous iron group only), Day, 90, Day 180, Day 365
Changes in RLS will be assessed by using John Hopkins Telephone Diagnostic Interview at time points over one year post iron therapy. Scores are as follows: 0 = no symptoms; 1 = bedtime symptoms after or within an hour of going to bed; 2 = evening and bedtime symptoms starting at or after 6:00 pm; and 3 = day and night symptoms starting before 6:00 pm. Higher score indicates more severe RLS.
Time frame: Day 14 post IV iron therapy
Visuospatial memory will be assessed at day 14 post IV iron using Brief Visuospatial Memory Test-Revised (BVMT-R). T-scores with a mean of 50 and a standard deviation of 10 are used. Higher scores mean better performance.
Time frame: Day 14 post IV iron therapy
List learning and recall task will be assessed at day 14 post IV iron using California Verbal Learning Test-Third Edition (CVLT-3) alternate form. Z scores with a mean of zero and a standard deviation of 1 are used. Higher scores mean better performance.
Contact information is provided by the study sponsor or research team.
Children's Hospital Los Angeles
Other
Neurovascular and Neurocognitive Consequences of Iron Deficiency Anemia
Acronym: IDA
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