GSK573719
Drug250 micrograms (μg) per blister, administered via dry powder inhaler, dose-ascending study doses began at 250 ug, then 500 ug, and 1000 μg
NCT Number: NCT00515502
GSK573719 is a high-affinity specific muscarinic receptor (mAChR) antagonist which is being developed for once daily treatment of chronic obstructive pulmonary disease (COPD). The long duration of action of GSK573719 when administered via inhalation in animal models supports the potential for use as a once-daily bronchodilator for COPD.
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Notify Me40 year–75 year
All sexes
Interventional
Phase 2
GSK Investigational Site, Hanover, Lower Saxony, Germany
A randomised, double blind, placebo-controlled, double dummy, 4-way cross-over, dose ascending study to assess the safety, tolerability, pharmacodynamics and pharmacokinetics of single inhaled doses of GSK573719 (3 escalating mcg doses will be used) and tiotropium bromide (18µg) via DPI in COPD patients
Healthy volunteers accepted: No
Only the study team can determine whether someone qualifies for participation.
Inclusion criteria
Exclusion criteria
Respiratory criteria
Cardiovascular criteria
Concurrent medication criteria
250 micrograms (μg) per blister, administered via dry powder inhaler, dose-ascending study doses began at 250 ug, then 500 ug, and 1000 μg
strips of five capsules, each containing 18 μg administered via dry powder inhaler
Time frame: From Day 1 of Treatment Period 1until Follow-up (up to 10 weeks)
An AE is defined as any untoward medical occurrence in a clinical investigation participant, temporally associated with the use of a medicinal product, whether or not considered related to the medicinal product. An AE can therefore be any unfavorable and unintended sign (including an abnormal laboratory finding), symptom, or disease (new or exacerbated) temporally associated with the use of a medicinal product. An SAE is defined as any untoward medical occurrence that, at any dose, results in death, is life threatening, requires hospitalization or prolongation of existing hospitalization, results in disability/incapacity, is a congenital anomaly/birth defect, may jeopardize the participant or may require medical or surgical intervention to prevent one of the other outcomes listed in this definition, or is an event of possible drug-induced liver injury. Refer to the general AE/SAE module for a list of AEs and SAEs.
Time frame: Day 1 of each treatment period (up to Study Day 46)
Resting heart rate was measured at pre-dose and 15 minutes (min), 45min, 1.5 hour (h) 4 h, 8 h, and 24 h post-dose of each treatment period and the maximum value for heart rate (0-4hours) was derived at rest. Baseline is the mean of the 3 pre-dose measurements for each period. Participant level Baseline is the mean of the Baselines for each participant and period level Baseline is the difference between the Baseline and the participant level Baseline in each treatment period for each participant. Analysis was performed using a mixed model with participant level Baseline, period level Baseline, period and treatment group were fitted as fixed effects and participant as a random effect.
Time frame: Day 1 of each treatment period (up to Study Day 46)
Resting heart rate was measured at pre-dose and 15 minutes (min), 45 min, 1.5 hours (h), 4 h, 8 h and 24 h post-dose of each treatment period and the weighted mean value for heart rate (0-4 hours) was derived. Baseline is the mean of the 3 pre-dose measurements for each period. Participant level Baseline is the mean of the Baselines for each participant and period level Baseline is the difference between the Baseline and the participant level Baseline in each treatment period for each participant. Analysis was performed using a mixed model with participant level Baseline, period level Baseline, period and treatment group were fitted as fixed effects and participant as a random effect.
Time frame: Day 1 of each treatment period (up to Study Day 46)
Resting systolic blood pressure was measured at pre-dose and 15 minutes (min), 45 min, 1.5 hours (h), 4 h, 8 h and 24 h post-dose of each treatment period and the maximum value for systolic blood pressure (0-4 hours) was derived. Baseline is the mean of the 3 pre-dose measurements for each period. Participant level Baseline is the mean of the Baselines for each participant and period level Baseline is the difference between the Baseline and the participant level Baseline in each treatment period for each participant. Analysis was performed using a mixed model with participant level Baseline, period level Baseline, period and treatment group were fitted as fixed effects and participant as a random effect.
Time frame: Day 1 of each treatment period (up to Study Day 46)
Resting systolic blood pressure was measured at pre-dose and 15 minutes (min), 45 min, 1.5 hours (h), 4 h, 8 h and 24 h post-dose of each treatment period and the weighted mean value for systolic blood pressure (0-4 hours) was derived. Baseline is the mean of the 3 pre-dose measurements for each period. Participant level Baseline is the mean of the Baselines for each participant and period level Baseline is the difference between the Baseline and the participant level Baseline in each treatment period for each participant. Analysis was performed using a mixed model with participant level Baseline, period level Baseline, period and treatment group were fitted as fixed effects and participant as a random effect.
Time frame: Day 1 of each treatment period (up to Study Day 46)
Resting diastolic blood pressure was measured at pre-dose and 15 minutes (min), 45 min, 1.5 hours (h), 4 h, 8 h and 24 h post-dose of each treatment period and the maximum value for diastolic blood pressure (0-4 hours) was derived. Baseline is the mean of the 3 pre-dose measurements for each period. Participant level Baseline is the mean of the Baselines for each participant and period level Baseline is the difference between the Baseline and the participant level Baseline in each treatment period for each participant. Analysis was performed using a mixed model with participant level Baseline, period level Baseline, period and treatment group were fitted as fixed effects and participant as a random effect.
Time frame: Day 1 of each treatment period (up to Study Day 46)
Resting diastolic blood pressure was measured at pre-dose and 15 minutes (min), 45 min, 1.5 hours (h), 4 h, 8 h and 24 h post-dose of each treatment period and the weighted mean value for diastolic blood pressure (0-4 hours) was derived. Baseline is the mean of the 3 pre-dose measurements for each period. Participant level Baseline is the mean of the Baselines for each participant and period level Baseline is the difference between the Baseline and the participant level Baseline in each treatment period for each participant. Analysis was performed using a mixed model with participant level Baseline, period level Baseline, period and treatment group were fitted as fixed effects and participant as a random effect.
Time frame: Day 1 of each treatment period (up to Study Day 46)
Twelve-lead ECGs (electrocardiograms) were performed to measure QT interval corrected according to Bazzet's formula (QTcB) at pre-dose and 15 minutes (min), 45 min, 1.5 hours (h), 4 h, 8 h and 24 h post-dose of each treatment period and the maximum value for QTcB (0-4 hours) was derived. Baseline is the mean of the 3 pre-dose measurements for each period. Participant level Baseline is the mean of the Baselines for each participant and period level Baseline is the difference between the Baseline and the participant level Baseline in each treatment period for each participant. Analysis was performed using a mixed model with participant level Baseline, period level Baseline, period and treatment group were fitted as fixed effects and participant as a random effect.
Time frame: Day 1 of each treatment period (up to Study Day 46)
Twelve-lead ECGs were performed to measure QTcB at pre-dose and 15 minutes (min), 45 min, 1.5 hours (h), 4 h, 8 h and 24 h post-dose of each treatment period and the weighted mean value for QTcB (0-4 hours) was derived. Baseline is the mean of the 3 pre-dose measurements for each period. Participant level Baseline is the mean of the Baselines for each participant and period level Baseline is the difference between the Baseline and the participant level Baseline in each treatment period for each participant. Analysis was performed using a mixed model with participant level Baseline, period level Baseline, period and treatment group were fitted as fixed effects and participant as a random effect.
Time frame: Day 1 of each treatment period (up to Study Day 46)
Twelve-lead ECGs were performed to measure QT interval corrected according to Fredericia's formula (QTcF) at pre-dose and 15 minutes (min), 45 min, 1.5 hours (h), 4 h, 8 h and 24 h post-dose of each treatment period and the maximum value for QTcF (0-4 hours) was derived. Baseline is the mean of the 3 pre-dose measurements for each period. Participant level Baseline is the mean of the Baselines for each participant and period level Baseline is the difference between the Baseline and the participant level Baseline in each treatment period for each participant. Analysis was performed using a mixed model with participant level Baseline, period level Baseline, period and treatment group were fitted as fixed effects and participant as a random effect.
Time frame: Day 1 of each treatment period (up to Study Day 46)
Twelve-lead ECGs were performed to measure QTcF at pre-dose and 15 minutes (min), 45 min, 1.5 hours (h), 4 h, 8 h and 24 h post-dose of each treatment period and the weighted mean value for QTcF (0-4 hours) was derived. Baseline is the mean of the 3 pre-dose measurements for each period. Participant level Baseline is the mean of the Baselines for each participant and period level Baseline is the difference between the Baseline and the participant level Baseline in each treatment period for each participant. Analysis was performed using a mixed model with participant level Baseline, period level Baseline, period and treatment group were fitted as fixed effects and participant as a random effect.
Time frame: Day 1 of each treatment period (up to Study Day 46)
Twenty-four hour Holter monitoring was conducted to measure heart rate for the 24-hour period following dosing at each treatment period and the maximum value for heart rate (0-24 hours) was derived. Analysis was performed using a mixed model of period and treatment group fitted as fixed effects and participant as a random effect.
Time frame: Day 1 of each treatment period (up to Study Day 46)
Twenty-four-hour Holter monitoring was conducted to measure heart rate for the 24-h period following dosing of each treatment period and the mean value for heart rate (0-24 hours) was derived. Analysis was performed using a mixed model of period and treatment group fitted as fixed effects and participant as a random effect.
Time frame: Day 1 of each treatment period (up to Study Day 46)
Blood samples were collected for the measurement of basophils, eosinophils, lymphocytes, monocytes, and total neutrophils at pre-dose and 24 hour (h) post-dose of each treatment period.
Time frame: Day 1 of each treatment period (up to Study Day 46)
Blood samples were collected for the measurement of hemoglobin, MCHC, albumin and total protein at pre-dose and 24 hour (h) post-dose of each treatment period.
Time frame: Day 1 of each treatment period (up to Study Day 46)
Blood samples were collected for the measurement of hematocrit at pre-dose and 24 hour (h) post-dose of each treatment period.
Time frame: Day 1 of each treatment period (up to Study Day 46)
Blood samples were collected for the measurement of the mean corpuscle hemoglobin at pre-dose and 24 hour (h) post-dose of each treatment period.
Time frame: Day 1 of each treatment period (up to Study Day 46)
Blood samples were collected for the measurement of the mean corpuscle volume at pre-dose and 24 hour (h) post-dose of each treatment period.
Time frame: Day 1 of each treatment period (up to Study Day 46)
Blood samples were collected for the measurement of the red blood cells count at pre-dose and 24 hour (h) post-dose of each treatment period.
Time frame: Day 1 of each treatment period (up to Study Day 46)
Blood samples were collected for the measurement of platelets count and WBC count at pre-dose and 24 hour (h) post-dose of each treatment period.
Time frame: Day 1 of each treatment period (up to Study Day 46)
Blood samples were collected for the measurement of ALP, ALT, AST, CPK, and GGT at pre-dose and 24 hour (h) post-dose of each treatment period.
Time frame: Day 1 of each treatment period (up to Study Day 46)
Blood samples were collected for the measurement of total bilirubin, creatinine, and uric acid at pre-dose and 24 hour (h) post-dose of each treatment period.
Time frame: Day 1 of each treatment period (up to Study Day 46)
Blood samples were collected for the measurement of the calcium, bicarbonate, chloride, glucose, IP, potassium, sodium, and urea at pre-dose and 24 hour (h) post-dose of each treatment period.
Time frame: Day 1 of each treatment period (up to Study Day 46)
FEV1 and FVC are measures of lung function. FEV1 is defined as the maximal amount of air that can be forcefully exhaled in one second. FVC is defined as the amount of air that can be forcibly exhaled from the lungs after taking the deepest breath possible. FEV1 and FVC measurements were taken at pre-dose and 1 hour (h), 2 h, 6 h, 9 h, 12 h and 24 h post-dose of each treatment period.
Time frame: Day 1 of each treatment period (up to Study Day 46)
Blood samples were collected to determine the plasma concentrations of UMEC from pre-dose up to 24 hour post-dose of each treatment period to derive the AUC(0-2) and AUC(0-t). Blood samples for PK analysis of UMEC were obtained on Day 1at pre-dose and 5 minutes (min), 15 min, 30 min, 1 hour (h), 2 h, 4 h, 6 h, 8 h, 12 h, 16 h, and 24 h post UMEC dose administration.
Time frame: Day 1 of each treatment period (up to Study Day 46)
Blood samples were collected to determine the plasma concentrations of UMEC from pre-dose up to 24 hour post-dose of each treatment period to derive the Cmax. Blood samples for PK analysis of UMEC were obtained on Day 1at pre-dose and 5 minutes (min), 15 min, 30 min, 1 hour (h), 2 h, 4 h, 6 h, 8 h, 12 h, 16 h, and 24 h post UMEC dose administration.
Time frame: Day 1 of each treatment period (up to Study Day 46)
Blood samples were collected to determine the plasma concentrations of UMEC from pre-dose up to 24 hour post-dose of each treatment period to derive tmax, tlast and t1/2. Blood samples for PK analysis of UMEC were obtained on Day 1at pre-dose and 5 minutes (min), 15 min, 30 min, 1 hour (h), 2 h, 4 h, 6 h, 8 h, 12 h, 16 h, and 24 h post UMEC dose administration.
Time frame: Day 1 of each treatment period (up to Study Day 46)
Urine samples were collected to determine the urine concentrations of UMEC from 0 min up to 48 hours post-dose of each treatment period to derive Ae(0-2), Ae(0-8), Ae(0-12), Ae(0-24), Ae(0-48), AUER(0-18) and AUER(0-36). Urine samples for PK analysis of UMEC were obtained on Day 1; a single sample was collected at each of the following timepoints: 0-2 h, 2-8 h, 8-12 h, 12-24 h and 24-48 h post UMEC dose administration.
Time frame: Day 1 of each treatment period (up to Study Day 46)
The CLr is defined as the apparent total clearance of the drug from plasma after oral administration. Blood samples for PK analysis of UMEC were obtained on Day 1at pre-dose and 5 minutes (min), 15 min, 30 min, 1 hour (h), 2 h, 4 h, 6 h, 8 h, 12 h, 16 h, and 24 h post UMEC dose administration.
Time frame: Day 1 of each treatment period (up to Study Day 46)
The terminal half-life (t1/2) of UMEC is defined as the time required for the urine concentration of UMEC to reach half of its original concentration. Urine samples for PK analysis of UMEC were obtained on Day 1; a single sample was collected at each of the following timepoints: 0-2 h, 2-8 h, 8-12 h, 12-24 h and 24-48 h post UMEC dose administration.
Time frame: Day 1 of each treatment period (up to Study Day 46)
Urine samples were collected to determine the urine concentrations of UMEC from 0 min up to 48 hours post-dose of each treatment period to derive Fe(0-24) and Fe(0-48). Urine samples for PK analysis of UMEC were obtained on Day 1; a single sample was collected at each of the following timepoints: 0-2 h, 2-8 h, 8-12 h, 12-24 h and 24-48 h post UMEC dose administration.
Time frame: Day 1 of each treatment period (up to Study Day 46)
Serial spirometry assessments were conducted on Day 1 of each treatment period over the course of 24 hours and were taken at 1 hour (h), 2 h, 6 h, 9 h, 12 h and 24 h post-dose. The maximum of the 3 FEV1 measurements for each participant, treatment period and timepoint were used in the calculation of the mean for each treatment group at each timepoint.
Time frame: Day 1 of each treatment period (up to Study Day 46)
sGaw is the specific airways resistance (mid) which was assessed by whole body plethysmography. Values used were the mean of the 3 readings recorded at each timepoint. sGaw measurements were taken at 2 hour (h), 6 h, 12 h and 24 h post-dose of each treatment period. 1/kPa.s=1(the inverses)/kPa (kilopascal).s (second)
GlaxoSmithKline
Industry
A Randomised, Double Blind, Placebo-controlled, Double Dummy, 4-way Cross-over, Dose Ascending Study to Assess the Safety, Tolerability, Pharmacodynamics and Pharmacokinetics of Single Inhaled Doses of GSK573719 (250, 500 and 1000 μg) and Tiotropium Bromide (18 μg) Via DPI in COPD Patients.
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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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