indacaterol and glycopyrronium (QVA149)
DrugCapsules for inhalation delivered via SDDPI.
NCT Number: NCT01202188
The purpose of this study is to provide pivotal efficacy and safety data for QVA149 in patients with moderate to severe COPD.
Looking for future studies?
Notify Me40 year and older
All sexes
Interventional
Phase 3
Novartis Investigative Site, Daw Park, Australia
Healthy volunteers accepted: No
Only the study team can determine whether someone qualifies for participation.
Inclusion criteria
Exclusion criteria
Capsules for inhalation delivered via SDDPI.
Capsules for inhalation delivered via SDDPI.
Capsules for inhalation delivered via SDDPI.
Capsules for inhalation delivered via HandiHaler® device.
Placebo to match capsules for inhalation delivered via SDDPI.
Time frame: 23 hours 15 minutes and 23 hour 45 minute post-dose Week 26
Spirometry was performed according to internationally accepted standards. Trough FEV1 was defined as the mean of the 23 hour 15 minute and 23 hour 45 minute post-dose values. A mixed model was used with treatment as a fixed effect with baseline FEV1 and FEV1 prior to inhalation and FEV1 60 minutes post inhalation of two short acting bronchodilators (components of reversibility at Day -14) as covariates. The model also included baseline smoking status (current/ex-smoker), baseline ICS use (Yes/No) and region as fixed effects with center nested within region as a random effect.
Time frame: Week 26
A trained assessor interviewed the patient and graded the degree of impairment due to dyspnea (difficulty breathing). TDI focal score is based on three domains: functional impairment, magnitude of task and magnitude of effort. Each domain is scored from -3 (major deterioration) to 3 (major improvement) to give an overall TDI focal score of -9 to 9. Higher numbers indicate a better score. A mixed model was used with treatment as a fixed effect with Baseline Dyspnea Index Score and FEV1 prior to inhalation and FEV1 60 minutes post inhalation of two short acting bronchodilators (components of reversibility at Day -14) as covariates. The model also included baseline smoking status (current/ex-smoker), baseline ICS use (Yes/No) and region as fixed effects with center nested within region as a random effect.
Time frame: 26 weeks
SGRQ is a health related quality of life questionnaire consisting of 51 items in three areas: symptoms (respiratory symptoms and severity), activity (activities that cause or are limited by breathlessness) and impacts (social functioning and psychological disturbances due to airway disease). The total score is 0 to 100 with a higher score indicating poorer health status. A mixed model was used with treatment as a fixed effect with Baseline SGRQ and FEV1 prior to inhalation and FEV1 60 minutes post inhalation of two short acting bronchodilators (components of reversibility at Day -14) as covariates. The model also included baseline smoking status (current/ex-smoker), baseline ICS use (Yes/No) and region as fixed effects with center nested within region as a random effect.
Time frame: Baseline, Week 26
The number of puffs of rescue medication taken in the previous 12 hours was record in patient diary in the morning and in the evening for 26 weeks. The total number of puffs per day was calculated and divided by the number of days with data to determine the mean daily number of puffs of rescue medication for each patient. Rescue medication data recorded during the 14 day run-in was used to calculate the baseline. A negative change from baseline indicates improvement. A mixed model was used with treatment as a fixed effect with baseline number of puffs and FEV1 prior to inhalation and FEV1 60 minutes post inhalation of two short acting bronchodilators (components of reversibility at Day -14) as covariates. The model also included baseline smoking status (current/ex-smoker), baseline ICS use (Yes/No) and region as fixed effects with center nested within region as a random effect.
Time frame: 23 hours 15 minutes and 23 hour 45 minute post-dose Week 26
Spirometry was performed according to internationally accepted standards. Trough FEV1 was defined as the mean of the 23 hour 15 minute and 23 hour 45 minute post-dose values. A mixed model was used with treatment as a fixed effect with baseline FEV1 and FEV1 prior to inhalation and FEV1 60 minutes post inhalation of two short acting bronchodilators (components of reversibility at Day -14) as covariates. The model also included baseline smoking status (current/ex-smoker), baseline ICS use (Yes/No) and region as fixed effects with center nested within region as a random effect.
Time frame: 23 hours 15 minutes and 23 hour 45 minute post-dose Week 26
Spirometry was performed according to internationally accepted standards. Trough FEV1 was defined as the mean of the 23 hour 15 minute and 23 hour 45 minute post-dose values. A mixed model was used with treatment as a fixed effect with baseline FEV1 and FEV1 prior to inhalation and FEV1 60 minutes post inhalation of two short acting bronchodilators (components of reversibility at Day -14) as covariates. The model also included baseline smoking status (current/ex-smoker), baseline ICS use (Yes/No) and region as fixed effects with center nested within region as a random effect.
Time frame: Baseline, Week 12, Week 26
A trained assessor interviewed the patient and graded the degree of impairment due to dyspnea (difficulty breathing). BDI/TDI focal score is based on three domains: functional impairment, magnitude of task and magnitude of effort and captures changes from baseline. BDI was measured at day 1 prior to the first dose with domain scores ranging from 0=very severe to 4=no impairment and a total score ranging from 0 to 12(best). TDI captures changes from baseline. Each domain is scored from -3=major deterioration to 3=major improvement to give an overall TDI focal score of -9 to 9. Higher numbers indicate a better score.
A mixed model was used with treatment as a fixed effect with Baseline Dyspnea Index Score and FEV1 prior to inhalation and FEV1 60 minutes post inhalation of two short acting bronchodilators as covariates and included baseline smoking status, baseline inhaled corticosteroids and region as fixed effects with center nested within region as a random effect.
Time frame: Baseline, Week 26
A trained assessor interviewed the patient and graded the degree of impairment due to dyspnea (difficulty breathing) at Week 12 and Week 26. TDI focal score is based on three domains: functional impairment, magnitude of task and magnitude of effort. The BDI (baseline) was measured at Day 1. The TDI captures changes from baseline. Each domain is scored from -3 (major deterioration) to 3 (major improvement) to give an overall TDI focal score of -9 to 9.
Time frame: Week 12, Week 26
SGRQ is a health related quality of life questionnaire consisting of 51 items in three areas: symptoms (respiratory symptoms and severity), activity (activities that cause or are limited by breathlessness) and impacts (social functioning and psychological disturbances due to airway disease). The total score is 0 to 100 with a higher score indicating poorer health status. A mixed model was used with treatment as a fixed effect with Baseline SGRQ and FEV1 prior to inhalation and FEV1 60 minutes post inhalation of two short acting bronchodilators (components of reversibility at Day -14) as covariates. The model also included baseline smoking status (current/ex-smoker), baseline ICS use (Yes/No) and region as fixed effects with center nested within region as a random effect.
Time frame: Baseline, Week 26
SGRQ is a health related quality of life questionnaire consisting of 51 items in three areas: symptoms (respiratory symptoms and severity), activity (activities that cause or are limited by breathlessness) and impacts (social functioning and psychological disturbances due to airway disease). The total score is 0 to 100 with a higher score indicating poorer health status.
Time frame: 26 Weeks
A day with no night time awakenings is defined from the diary data as any day where the patient did not wake up due to COPD symptoms. The percentage of nights is calculated by the number of days with no nighttime awakenings/total number of days with evaluable data X 100. A mixed model was used with treatment as a fixed effect with baseline Percent days and FEV1 prior to inhalation and FEV1 60 minutes post inhalation of two short acting bronchodilators (components of reversibility at Day -14) as covariates. The model also included baseline smoking status (current/ex-smoker), baseline ICS use (Yes/No) and region as fixed effects with center nested within region as a random effect.
Time frame: 26 Weeks
A day with no day time symptoms is defined from the diary data as any day where the patient recorded no coughing, no wheezing, no sputum production and no breathlessness during the previous 12 hours (approximately 8AM to 8PM). The percentage of days is calculated by the number of days with no daytime symptoms/total number of days with evaluable data X 100. A mixed model was used with treatment as a fixed effect with baseline Percent of days and FEV1 prior to inhalation and FEV1 60 minutes post inhalation of two short acting bronchodilators (components of reversibility at Day -14) as covariates. The model also included baseline smoking status (current/ex-smoker), baseline ICS use (Yes/No) and region as fixed effects with center nested within region as a random effect.
Time frame: 26 Weeks
Patients answered the question "Did your respiratory symptoms stop you performing your usual activities today?-Not at all in their daily diary. The percentage of days is calculated by the number of days patient is able to perform daily activities/total number of days with evaluable data X 100. A mixed model was used with treatment as a fixed effect with baseline Percent of Days and FEV1 prior to inhalation and FEV1 60 minutes post inhalation of two short acting bronchodilators (components of reversibility at Day -14) as covariates. The model also included baseline smoking status (current/ex-smoker), baseline ICS use (Yes/No) and region as fixed effects with center nested within region as a random effect.
Time frame: Baseline, Week 12, Week 26
The number of puffs of rescue medication taken in the previous 12 hours was record in patient diary in the morning and in the evening for 26 weeks. The total number of puffs per day was calculated and divided by the number of days with data to determine the mean daily number of puffs of rescue medication for each patient. Rescue medication data recorded during the 14 day run-in was used to calculate the baseline. A negative change from baseline indicates improvement. A mixed model was used with treatment as a fixed effect with baseline number of puffs and FEV1 prior to inhalation and FEV1 60 minutes post inhalation of two short acting bronchodilators (components of reversibility at Day -14) as covariates. The model also included baseline smoking status (current/ex-smoker), baseline ICS use (Yes/No) and region as fixed effects with center nested within region as a random effect.
Time frame: Baseline, Week 26
The number of puffs of rescue medication taken in the previous 12 hours was record in patient diary in the morning and in the evening for 26 weeks. The total number of puffs in the morning and evening were calculated and divided by the number of days with data to determine the mean daily number of daytime and nighttime puffs. A mixed model was used with treatment as a fixed effect with baseline number of puffs and FEV1 prior to inhalation and FEV1 60 minutes post inhalation of two short acting bronchodilators (components of reversibility at Day -14) as covariates. The model also included baseline smoking status (current/ex-smoker), baseline (BL) ICS use (Yes/No) and region as fixed effects with center nested within region as a random effect.
Time frame: 26 Weeks
A day with no rescue medication use is defined from the diary data as any day where the patient recorded no rescue medicine use during the previous 12 hours. The percentage of days is calculated by the number of days with no rescue medicine use/total number of days with evaluable data X 100. A mixed model was used with treatment as a fixed effect with baseline number of puffs and FEV1 prior to inhalation and FEV1 60 minutes post inhalation of two short acting bronchodilators (components of reversibility at Day -14) as covariates. The model also included baseline smoking status (current/ex-smoker), baseline ICS use (Yes/No) and region as fixed effects with center nested within region as a random effect.
Time frame: From 5 minutes to 4 hours post-dose Day 1 and Week 26
FEV1 was measured with spirometry conducted according to internationally accepted standards. Measurements were made at 5, 15, and 30 minutes; and 1, 2, and 4 hours post-dose. The standardized AUC FEV1 was calculated as the sum of trapezoids divided by the length of time. A mixed model was used with treatment as a fixed effect with baseline FEV1 and FEV1 prior to inhalation and FEV1 60 minutes post inhalation of two short acting bronchodilators (components of reversibility at Day -14) as covariates. The model also included baseline smoking status (current/ex-smoker), baseline ICS use (Yes/No) and region as fixed effects with center nested within region as a random effect.
Time frame: From 5 minutes to 12 hours post-dose Day 1 and Week 26
FEV1 was measured with spirometry conducted according to internationally accepted standards. Measurements were made at 5, 15, and 30 minutes; and 1, 2, 4, 8, 12 hours post-dose. The standardized AUC FEV1 was calculated as the sum of trapezoids divided by the length of time. A mixed model was used with treatment as a fixed effect with baseline FEV1 and FEV1 prior to inhalation and FEV1 60 minutes post inhalation of two short acting bronchodilators (components of reversibility at Day -14) as covariates. The model also included baseline smoking status (current/ex-smoker), baseline ICS use (Yes/No) and region as fixed effects with center nested within region as a random effect.
Time frame: From 5 minutes to 23 hours 45 minutes post-dose Week 26
FEV1 was measured with spirometry conducted according to internationally accepted standards. Measurements were made at 5, 15, and 30 minutes; and 1, 2, 4, 8, 12, 23 hours 15 minutes and 23 hours 45 minutes post-dose. The standardized AUC FEV1 was calculated as the sum of trapezoids divided by the length of time. A mixed model was used with treatment as a fixed effect with baseline FEV1 and FEV1 prior to inhalation and FEV1 60 minutes post inhalation of two short acting bronchodilators (components of reversibility at Day -14) as covariates. The model also included baseline smoking status (current/ex-smoker), baseline ICS use (Yes/No) and region as fixed effects with center nested within region as a random effect.
Time frame: Week 12, Week 26
24-hourly mean heart rate was performed using a Holter Monitor at Weeks 12 and 26 in a subgroup of patients. Mixed model: heart rate = treatment + baseline heart rate + baseline smoking status + baseline ICS use + region + center (region) + error. Center was included as a random effect nested within region.
The 24-hourly mean heart rate is the mean heart rate over the 24 hour period, derived using hourly mean heart rate beats per minute.
Time frame: 26 Weeks
Rate of moderate or severe exacerbations per year = total number of moderate or severe exacerbations / total number of treatment years
Time frame: 26 Weeks
Time frame: 26 Weeks
Novartis Pharmaceuticals
Industry
A 26-week Treatment Multi-center, Randomized, Double-blind, Parallel-group, Placebo and Active Controlled (Open Label) Study to Assess the Efficacy, Safety and Tolerability of QVA149 (110/50 μg q.d.) in Patients With Moderate to Severe Chronic Obstructive Pulmonary Disease (COPD)
Acronym: SHINE
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.
Published trials that share one or more normalized conditions with this study.
NCT06040086
Chronic Disease, Chronic Obstructive Pulmonary Disease (COPD)
Birmingham, Alabama, United States
View Trial DetailsNCT01917331
Chronic Disease, Chronic Obstructive Pulmonary Disease (COPD)
Szeged, Hungary
View Trial DetailsNCT06897748
Chronic Disease, Chronic Obstructive Pulmonary Disease (COPD)
Aramil, Russia
View Trial DetailsNCT04119934
Behavior, Chronic Disease
Toronto, Ontario, Canada
View Trial Details