Nintedanib
DrugCapsule
Other names: Ofev®
NCT Number: NCT04093024
The main objective of the study is to evaluate dose-exposure and safety of nintedanib in children and adolescents with fibrosing Interstitial Lung Disease (ILD).
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Notify Me6 year–17 year
All sexes
Interventional
Phase 3
Hospital de Niños Dr. Ricardo Gutierrez, CABA, Argentina
Healthy volunteers accepted: No
Only the study team can determine whether someone qualifies for participation.
Inclusion criteria
Exclusion criteria
Capsule
Other names: Ofev®
Capsule
Time frame: At Week 2 and at Week 26: at 5 minutes before and at 0, 1, 2, 3, 4, 6, and 8 hours post administration of the morning dose
Area under the plasma concentration-time curve at steady state (AUCt,ss) based on sampling at steady state (at Week 2 and Week 26) after multiple oral administration of Nintedanib by age group over all treatments.
Values of samples taken at Week 2 (for randomised Nintedanib participants) and at Week 26 (for randomised placebo participants) were used. Missing values at Week 2 of randomised Nintedanib participants were replaced with values taken at Week 26.
Time frame: From first drug administration until the earlier of (i) first intake of open-label nintedanib (exclusive) and (ii) last drug intake, up to 28 weeks
Treatment-emergent was defined as: Adverse events with onset or worsening on or after date of treatment start until end of double-blind period (defined as the day before first intake of open-label nintedanib or last double-blind drug intake + residual effect period, whichever is earlier) were considered as treatment-emergent and were included in the analysis. Adverse events were counted under the treatment as randomized for the double-blind period.
Time frame: Up to Week 24 (included values at Week 12 and Week 24); Up to Week 52 (included values at Week 12, 24, 36 and 52)
Number of participants with at least one treatment-emergent pathological finding of the epiphyseal growth plate imaging (Magnetic Resonance Imaging (MRI)s/x-rays) were analyzed cumulatively and based on central review.
Time frame: Dental examination: at Week 12 and Week 24; Dental imaging: at Week 24
Number of participants with treatment-emergent pathological findings on dental examination (clinical examination) based on dentist assessment or imaging (panoramic x-ray) based on central review were analyzed. Number of participants with treatment-emergent pathological findings on dental imaging were analyzed cumulatively.
Time frame: Dental examination: at Week 12, 24, 34, and Week 52; Dental imaging: at Week 24 and at Week 52.
Number of participants with treatment-emergent pathological findings on dental examination (clinical examination) based on dentist assessment or imaging (panoramic x-ray) based on central review were analyzed. Number of participants with treatment-emergent pathological findings on dental imaging were analyzed cumulatively.
Time frame: From first drug administration until the last drug intake, up to 92 weeks
Treatment-emergent was defined as: Adverse events with onset or worsening on or after date of treatment start until last drug intake + residual effect period was considered as treatment-emergent and was included in the analysis. Adverse events were counted under the treatment as randomized for the double-blind period.
Time frame: MMRM included measurements pre-administration at -4 weeks and at 0, 12, 24, 36, 52, 64, 76, and 88 weeks after first drug administration. MMRM values at Week 24 are reported in the table below
Absolute change from baseline in height at Week 24 was measured with a stadiometer 3 times at each time point. The average of these 3 measurements was taken per time point.
Absolute change from baseline in height at Week 24 in the treated set (TS) was based on a Mixed Model Repeated Measures (MMRM), with fixed categorical effects of (randomised) treatment at each visit, age-group and the fixed continuous effects of baseline at each visit, and random effect for participant. Visit was treated as the repeated measure with an unstructured covariance structure used to model the within-participant measurements.
Time frame: MMRM included measurements pre-administration at -4 weeks and at 0, 12, 24, 36, 52, 64, 76, and 88 weeks after first drug administration. MMRM values at Week 52 are reported in the table below
Absolute change from baseline in height at Week 52 was measured with a stadiometer 3 times at each time point. The average of these 3 measurements was taken per time point.
Absolute change from baseline in height at Week 52 in the treated set (TS) was based on a Mixed Model Repeated Measures (MMRM), with fixed categorical effects of (randomised) treatment at each visit, age-group and the fixed continuous effects of baseline at each visit, and random effect for participant. Visit was treated as the repeated measure with an unstructured covariance structure used to model the within-participant measurements.
Time frame: Measurements were assessed at Week 0 and at Week 76
Absolute change from baseline in height at Week 76 was measured with a stadiometer 3 times at each time point. The average of these 3 measurements was taken per time point.
MMRM has been calculated but did not provide estimates for this time point due to low sample size. Thus, change in height from baseline to Week 76 was analyzed descriptively only.
Time frame: MMRM included measurements pre-administration at -4 weeks and at 0, 12, 24, 36, 52, 64, 76, and 88 weeks after first drug administration. MMRM values at Week 24 are reported in the table below.
Absolute change from baseline in sitting height at Week 24 was measured with a stadiometer 3 times at each time point. The average of these 3 measurements was taken per time point.
Absolute change from baseline in sitting height at Week 24 in the treated set (TS) was based on a Mixed Model Repeated Measures (MMRM), with fixed categorical effects of (randomised) treatment at each visit, age-group and the fixed continuous effects of baseline at each visit, and random effect for participant. Visit was treated as the repeated measure with an unstructured covariance structure used to model the within-participant measurements.
Time frame: Measurements were assessed at Week 0 and at Week 52
Absolute change from baseline in sitting height at Week 52 was measured with a stadiometer 3 times at each time point. The average of these 3 measurements was taken per time point.
MMRM has been calculated but did not provide estimates for this time point due to low sample size. Thus, change in sitting height from baseline to Week 52 was analyzed descriptively only.
Time frame: Measurements were assessed at Week 0 and at Week 76
Absolute change from baseline in sitting height at Week 76 was measured with a stadiometer 3 times at each time point. The average of these 3 measurements was take per time point.
MMRM has been calculated but did not provide estimates for this time point due to low sample size. Thus, change in sitting height from baseline to Week 76 was analyzed descriptively only.
Time frame: MMRM included measurements at 0, 12, 24, 36, 52, 64, and 76 weeks after first drug administration. MMRM values at Week 24 are reported in the table below
Absolute change from baseline in left leg length at Week 24 was assessed by measuring the distance between the anterior iliac spine and the medial malleolus 3 times at each leg and each time point. The average of these 3 measurements was taken per time point.
Absolute change from baseline in left leg length at Week 24 in the treated set (TS) was based on a Mixed Model Repeated Measures (MMRM), with fixed categorical effects of (randomised) treatment at each visit, age-group and the fixed continuous effects of baseline at each visit, and random effect for participant. Visit was treated as the repeated measure with an unstructured covariance structure used to model the within-participant measurements.
Time frame: MMRM included measurements at 0, 12, 24, 36, 52, 64, and 76 weeks after first drug administration. MMRM values at Week 52 are reported in the table below
Absolute change from baseline in left leg length at Week 52 was assessed by measuring the distance between the anterior iliac spine and the medial malleolus 3 times at each leg and each time point. The average of these 3 measurements was taken per time point.
Absolute change from baseline in left leg length at Week 52 in the treated set (TS) was based on a Mixed Model Repeated Measures (MMRM), with fixed categorical effects of (randomised) treatment at each visit, age-group and the fixed continuous effects of baseline at each visit, and random effect for participant. Visit was treated as the repeated measure with an unstructured covariance structure used to model the within-participant measurements.
Time frame: MMRM included measurements at 0, 12, 24, 36, 52, 64, and 76 weeks after first drug administration. MMRM values at Week 76 are reported in the table below
Absolute change from baseline in left leg length at Week 76 was assessed by measuring the distance between the anterior iliac spine and the medial malleolus 3 times at each leg and each time point. The average of these 3 measurements was taken per time point.
Absolute change from baseline in left leg length at Week 76 in the treated set (TS) was based on a Mixed Model Repeated Measures (MMRM), with fixed categorical effects of (randomised) treatment at each visit, age-group and the fixed continuous effects of baseline at each visit, and random effect for participant. Visit was treated as the repeated measure with an unstructured covariance structure used to model the within-participant measurements.
Time frame: MMRM included measurements at 0, 12, 24, 36, 52, 64, and 76 weeks after first drug administration. MMRM values at Week 24 are reported in the table below
Absolute change from baseline in right leg length at Week 24 was assessed by measuring the distance between the anterior iliac spine and the medial malleolus 3 times at each leg and each time point. The average of these 3 measurements was taken per time point.
Absolute change from baseline in right leg length at Week 24 in the treated set (TS) was based on a Mixed Model Repeated Measures (MMRM), with fixed categorical effects of (randomised) treatment at each visit, age-group and the fixed continuous effects of baseline at each visit, and random effect for participant. Visit was treated as the repeated measure with an unstructured covariance structure used to model the within-participant measurements.
Time frame: MMRM included measurements at 0, 12, 24, 36, 52, 64, and 76 weeks after first drug administration. MMRM values at Week 52 are reported in the table below
Absolute change from baseline in right leg length at Week 52 was assessed by measuring the distance between the anterior iliac spine and the medial malleolus 3 times at each leg and each time point. The average of these 3 measurements was taken per time point.
Absolute change from baseline in right leg length at Week 52 in the treated set (TS) was based on a Mixed Model Repeated Measures (MMRM), with fixed categorical effects of (randomised) treatment at each visit, age-group and the fixed continuous effects of baseline at each visit, and random effect for participant. Visit was treated as the repeated measure with an unstructured covariance structure used to model the within-participant measurements.
Time frame: MMRM included measurements at 0, 12, 24, 36, 52, 64, and 76 weeks after first drug administration. MMRM values at Week 76 are reported in the table below
Absolute change from baseline in right leg length at Week 76 was assessed by measuring the distance between the anterior iliac spine and the medial malleolus 3 times at each leg and each time point. The average of these 3 measurements was taken per time point.
Absolute change from baseline in right leg length at Week 76 in the treated set (TS) was based on a Mixed Model Repeated Measures (MMRM), with fixed categorical effects of (randomised) treatment at each visit, age-group and the fixed continuous effects of baseline at each visit, and random effect for participant. Visit was treated as the repeated measure with an unstructured covariance structure used to model the within-participant measurements.
Time frame: MMRM included measurements pre-administration at -4 weeks and at 0, 2, 6, 12, 24, 26, 36, and 52 weeks after first drug administration. MMRM values at Week 24 are reported in the table below
Forced Vital Capacity (FVC) is the volume of air (measured in milliliter) which can be forcibly exhaled from the lungs after taking the deepest breath possible. The predicted values were calculated according to the Global Lungs Initiative (GLI) 2012 equations.
Absolute change from baseline in Forced Vital Capacity (FVC) % predicted at Week 24 in the treated set(TS) was based on a Mixed Model Repeated Measures (MMRM), with fixed categorical effects of (randomised) treatment at each visit, age-group and the fixed continuous effects of baseline at each visit, and random effect for participant. Visit was treated as the repeated measure with an unstructured covariance structure used to model the within-participant measurements.
Time frame: MMRM included measurements pre-administration at -4 weeks and at 0, 2, 6, 12, 24, 26, 36, and 52 weeks after first drug administration. MMRM values at Week 52 are reported in the table below
Forced Vital Capacity (FVC) is the volume of air (measured in milliliter) which can be forcibly exhaled from the lungs after taking the deepest breath possible. The predicted values were calculated according to the Global Lungs Initiative (GLI) 2012 equations.
Absolute change from baseline in Forced Vital Capacity (FVC) % predicted at Week 52 in the treated set(TS) was based on a Mixed Model Repeated Measures (MMRM), with fixed categorical effects of (randomised) treatment at each visit, age-group and the fixed continuous effects of baseline at each visit, and random effect for participant. Visit was treated as the repeated measure with an unstructured covariance structure used to model the within-participant measurements.
Time frame: MMRM included measurements at 0, 24, and 52 weeks after first drug administration. MMRM values at Week 24 are reported in the table below
The PedsQL™ questionnaires consists of 23 items (i) and 4 dimensions: physical (8i), emotional (5i), social (5i) and school (5i) functioning. A 5-point Likert response scale (0 = never (worst outcome) to 4=almost always (best outcome)) was used except for the Young Child Report, where a 3-point scale (0=not at all (worst outcome) to 4=a lot (best outcome)) was used. Items were reverse-scored and linearly transformed to a 0-100 scale (0 = 100 to 4 = 0). Higher scores indicated better health-related quality of life. To create total scores, the mean was computed.
Absolute change from baseline in PedsQL™ reported by parents was based on a Mixed Model Repeated Measures (MMRM), with fixed categorical effects of (randomised) treatment at each visit, age-group and the fixed continuous effects of baseline at each visit, and random effect for participant. Visit was treated as the repeated measure with an unstructured covariance structure used to model the within-participant measurements.
Time frame: MMRM included measurements at 0, 24, and 52 weeks after first drug administration. MMRM values at Week 52 are reported in the table below
The PedsQL™ questionnaires consists of 23 items (i) and 4 dimensions: physical (8i), emotional (5i), social (5i) and school (5i) functioning. A 5-point Likert response scale (0 = never (worst outcome) to 4=almost always (best outcome)) was used except for the Young Child Report, where a 3-point scale (0=not at all (worst outcome) to 4=a lot (best outcome)) was used. Items were reverse-scored and linearly transformed to a 0-100 scale (0 = 100 to 4 = 0). Higher scores indicated better health-related quality of life. To create total scores, the mean was computed.
Absolute change from baseline in PedsQL™ reported by parents was based on a Mixed Model Repeated Measures (MMRM), with fixed categorical effects of (randomised) treatment at each visit, age-group and the fixed continuous effects of baseline at each visit, and random effect for participant. Visit was treated as the repeated measure with an unstructured covariance structure used to model the within-participant measurements.
Time frame: MMRM included measurements at 0, 24, and 52 weeks after first drug administration. MMRM values at Week 24 are reported in the table below
The PedsQL™ questionnaires consists of 23 items (i) and 4 dimensions: physical (8i), emotional (5i), social (5i) and school (5i) functioning. A 5-point Likert response scale (0 = never (worst outcome) to 4=almost always (best outcome)) was used except for the Young Child Report, where a 3-point scale (0=not at all (worst outcome) to 4=a lot (best outcome)) was used. Items were reverse-scored and linearly transformed to a 0-100 scale (0 = 100 to 4 = 0). Higher scores indicated better health-related quality of life. To create total scores, the mean was computed.
Absolute change from baseline in PedsQL™ was based on a Mixed Model Repeated Measures (MMRM), with fixed categorical effects of (randomised) treatment at each visit, age-group and the fixed continuous effects of baseline at each visit, and random effect for participant. Visit was treated as the repeated measure with an unstructured covariance structure used to model the within-participant measurements.
Time frame: MMRM included measurements at 0, 24, and 52 weeks after first drug administration. MMRM values at Week 52 are reported in the table below
The PedsQL™ questionnaires consists of 23 items (i) and 4 dimensions: physical (8i), emotional (5i), social (5i) and school (5i) functioning. A 5-point Likert response scale (0 = never (worst outcome) to 4=almost always (best outcome)) was used except for the Young Child Report, where a 3-point scale (0=not at all (worst outcome) to 4=a lot (best outcome)) was used. Items were reverse-scored and linearly transformed to a 0-100 scale (0 = 100 to 4 = 0). Higher scores indicated better health-related quality of life. To create total scores, the mean was computed.
Absolute change from baseline in PedsQL™ was based on a Mixed Model Repeated Measures (MMRM), with fixed categorical effects of (randomised) treatment at each visit, age-group and the fixed continuous effects of baseline at each visit, and random effect for participant. Visit was treated as the repeated measure with an unstructured covariance structure used to model the within-participant measurements.
Time frame: MMRM included measurements pre-administration at -4 weeks and at 0, 2, 6, 12, 24, 26, 36, and 52 weeks after first drug administration. MMRM values at Week 24 are reported in the table below
Oxygen saturation (SpO₂) was measured after minimum 5 minutes on room air by standard pulse oximetry at rest.
Absolute change from baseline in SpO₂ at Week 24 in the treated set(TS) was based on a Mixed Model Repeated Measures (MMRM), with fixed categorical effects of (randomised) treatment at each visit, age-group and the fixed continuous effects of baseline at each visit, and random effect for participant. Visit was treated as the repeated measure with an unstructured covariance structure used to model the within-participant measurements.
Time frame: MMRM included measurements pre-administration at -4 weeks and at 0, 2, 6, 12, 24, 26, 36, and 52 weeks after first drug administration. MMRM values at Week 52 are reported in the table below
Oxygen saturation (SpO₂) was measured after minimum 5 minutes on room air by standard pulse oximetry at rest.
Absolute change from baseline in SpO₂ at Week 52 in the treated set(TS) was based on a Mixed Model Repeated Measures (MMRM), with fixed categorical effects of (randomised) treatment at each visit, age-group and the fixed continuous effects of baseline at each visit, and random effect for participant. Visit was treated as the repeated measure with an unstructured covariance structure used to model the within-participant measurements.
Time frame: MMRM included measurements at 0, 24, and 52 weeks after first drug administration. MMRM values at Week 24 are reported in the table below
Absolute change from baseline in 6 minutes (min) walk distance at Week 24 in the treated set (TS) was based on a Mixed Model Repeated Measures (MMRM), with fixed categorical effects of (randomised) treatment at each visit, age-group and the fixed continuous effects of baseline at each visit, and random effect for participant. Visit was treated as the repeated measure with an unstructured covariance structure used to model the within-participant measurements.
Time frame: MMRM included measurements at 0, 24, and 52 weeks after first drug administration. MMRM values at Week 52 are reported in the table below
Absolute change from baseline in 6 minutes (min) walk distance at Week 52 in the treated set(TS) was based on a Mixed Model Repeated Measures (MMRM), with fixed categorical effects of (randomised) treatment at each visit, age-group and the fixed continuous effects of baseline at each visit, and random effect for participant. Visit was treated as the repeated measure with an unstructured covariance structure used to model the within-participant measurements.
Time frame: Acceptability was assessed at Week 24
Acceptability is defined as the overall ability and willingness of the participant to use the medicinal product as intended.
Acceptability based on the capsule size was assessed by a acceptability questionnaire (1 item with 3 categories as shown below) for participants. In case the participant was considered not old enough as per investigator judgment the caregiver could assist with the completion.
In addition to the commercially available 100 milligram (mg) soft capsules (oblong shape, 6 millimeter (mm) diameter and 16 mm length) and 150 mg soft capsules (oblong shape, 7 mm diameter and 18 mm length), 25 mg Nintedanib soft capsules of smaller size (oval shape, 5 mm diameter and 8 mm length) were provided in this trial for participants who were assigned to a dose smaller than 100 mg or were unable to swallow the larger 100 mg or 150 mg capsules.
Time frame: Acceptability was assessed at Week 24
Acceptability is defined as the overall ability and willingness of the participant to use the medicinal product as intended.
Acceptability based on the capsule size was assessed by a acceptability questionnaire (1 item with 3 categories as shown below) for investigators.
In addition to the commercially available 100 milligram (mg) soft capsules (oblong shape, 6 millimeter (mm) diameter and 16 mm length) and 150 mg soft capsules (oblong shape, 7 mm diameter and 18 mm length), 25 mg Nintedanib soft capsules of smaller size (oval shape, 5 mm diameter and 8 mm length) were provided in this trial for participants who were assigned to a dose smaller than 100 mg or were unable to swallow the larger 100 mg or 150 mg capsules.
Time frame: Acceptability was assessed at Week 24
Acceptability is defined as the overall ability and willingness of the participant to use the medicinal product as intended.
Acceptability based on the number of capsule was assessed by a acceptability questionnaire (1 item with 3 categories as shown below) for participants. In case the participant was considered not old enough as per investigator judgment the caregiver could assist with the completion.
In addition to the commercially available 100 milligram (mg) soft capsules (oblong shape, 6 millimeter (mm) diameter and 16 mm length) and 150 mg soft capsules (oblong shape, 7 mm diameter and 18 mm length), 25 mg Nintedanib soft capsules of smaller size (oval shape, 5 mm diameter and 8 mm length) were provided in this trial for participants who were assigned to a dose smaller than 100 mg or were unable to swallow the larger 100 mg or 150 mg capsules. Medication dosage was based on the participant's body weight and number of capsules per administration ranged from 2 to >6 capsules.
Time frame: From first drug administration until the last drug intake + 28 days residual effect period (REP), up to 92.6 weeks
Number of participants with occurrence of first respiratory-related hospitalization over the whole trial.
The number of participants with first respiratory-related hospitalization is reported instead of a metric summarizing the time-to-event data with unit of time, as the numbers resulting from the Kaplan-Meier-analysis were even below the first quartile.
Time frame: From first drug administration until the last drug intake + 28 days REP, up to 92.6 weeks
Number of participants with occurrence of first acute Interstitial Lung Disease (ILD) exacerbation or death over the whole trial. The number of participants with first acute ILD exacerbation is reported instead of a metric summarizing the time-to-event data with unit of time, as the numbers resulting from the Kaplan-Meier-analysis were even below the first quartile.
Time frame: From first drug administration until the last drug intake + 28 days REP, up to 92.6 weeks
Number of participants with occurrence of death over the whole trial over the whole trial was computed. The number of participants with occurrence of death is reported instead of a metric summarizing the time-to-event data with unit of time, as the numbers resulting from the Kaplan-Meier-analysis were even below the first quartile.
Boehringer Ingelheim
Industry
A Double Blind, Randomised, Placebo-controlled Trial to Evaluate the Dose-exposure and Safety of Nintedanib Per os on Top of Standard of Care for 24 Weeks, Followed by Open Label Treatment With Nintedanib of Variable Duration, in Children and Adolescents (6 to 17 Year-old) With Clinically Significant Fibrosing Interstitial Lung Disease
Acronym: InPedILD®
OpenTrials presents study information sourced from ClinicalTrials.gov. The official registry record should be consulted for the latest information.
View the official ClinicalTrials.gov record (opens in a new tab)This listing is for discovery and informational purposes only. It is not medical advice, does not guarantee that a study is recruiting, and does not determine eligibility. Contact the study team and a qualified healthcare professional when considering participation.
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