GSK Investigational Site
Fukuoka, 812-0025, Japan
NCT Number: NCT03555890
This study will be an open-label, randomized 2-way cross-over study to evaluate bioequivalence study between levocetirizine ODT and levocetirizine IRT in healthy Japanese male subjects. Approximately 48 subjects will participate in this study to receive a single dose treatments of levocetirizine ODT 5 milligram (mg) or levocetirizine IRT 5 mg. In Part 1, subjects will randomized in 1:1 ratio (12 in each Period) in Period 1 and 2 to receive single dose of levocetirizine ODT 5 mg with water or single dose levocetirizine IRT 5 mg with water in fasted state. In this part, comparison of bioavailability of levocetirizine ODT and levocetirizine IRT when taken with water in the fasted state will be assessed. In Part 2, subjects will be randomized in 1:1 ratio (12 in each Period) in Period 1 and 2 to receive single dose levocetirizine ODT 5 mg without water or single dose levocetirizine IRT 5 mg with water in fasted state. In this part, comparison of bioavailability of levocetirizine ODT without water and levocetirizine IRT with water in the fasted state will be assessed. There will be at least a 5-day wash out period between the intervention periods. The duration of each subject's participation in each part will be approximately 7 weeks from screening to follow-up.
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Notify Me20 year–55 year
Male
Interventional
Phase 1
Fukuoka, 812-0025, Japan
Healthy volunteers accepted: Yes
Only the study team can determine whether someone qualifies for participation.
Inclusion criteria
Exclusion criteria
Levocetirizine IRT will be available as film-coated tablets. Subjects will receive a single dose of 5 mg levocetirizine IRT. Subjects will receive levocetirizine IRT with 150 mL water in both Part (1 and 2).
Levocetirizine ODT will be available as oral disintegrating tablet. Subjects will receive a single dose of 5 mg levocetirizine ODT. In Part 1, subjects will receive levocetirizine ODT with 150 mL water and in Part 2 subjects will receive levocetirizine ODT without water.
Time frame: Pre-dose and at 0.25, 0.5, 1, 1.5, 2, 3, 4, 6, 9, 12, 16, 24, 36, 48 hours post-dose
Blood samples were collected to measure AUC(0-t) at indicated time-points. AUC(0-t) was calculated by the linear trapezoidal method (i.e., Linear Trapezoidal Linear Interpolation calculation method in Phoenix WinNonlin).
Time frame: Pre-dose and at 0.25, 0.5, 1, 1.5, 2, 3, 4, 6, 9, 12, 16, 24, 36, 48 hours post-dose
Blood samples were collected to measure AUC(0-t) at indicated time-points. AUC(0-t) was calculated by the linear trapezoidal method (i.e., Linear Trapezoidal Linear Interpolation calculation method in Phoenix WinNonlin).
Time frame: Pre-dose and at 0.25, 0.5, 1, 1.5, 2, 3, 4, 6, 9, 12, 16, 24, 36, 48 hours post-dose
Blood samples were collected at indicated time points for analysis of Cmax. The values for Cmax were obtained directly from the concentration-time data.
Time frame: Pre-dose and at 0.25, 0.5, 1, 1.5, 2, 3, 4, 6, 9, 12, 16, 24, 36, 48 hours post-dose
Blood samples were collected at indicated time points for analysis of Cmax. The values for Cmax were obtained directly from the concentration-time data.
Time frame: Pre-dose and at 0.25, 0.5, 1, 1.5, 2, 3, 4, 6, 9, 12, 16, 24, 36 and 48 hours post-dose
Blood samples were collected at indicated time points for analysis of AUC(0-inf). AUC(0-inf)) of levocetirizine was calculated by standard non-compartmental analysis using the currently supported version of WinNonlin (version 6.3 or higher).
Time frame: Pre-dose and at 0.25, 0.5, 1, 1.5, 2, 3, 4, 6, 9, 12, 16, 24, 36 and 48 hours post-dose
Blood samples were collected at indicated time points for analysis of AUC(0-inf). AUC(0-inf) of levocetirizine was calculated by standard non-compartmental analysis using the currently supported version of WinNonlin (version 6.3 or higher).
Time frame: Pre-dose and at 0.25, 0.5, 1, 1.5, 2, 3, 4, 6, 9, 12, 16, 24, 36 and 48 hours post-dose
Blood samples were collected at indicated time points for analysis of tmax. The tmax of levocetirizine was obtained directly from the concentration-time data. The tmax was analyzed with the non-parametric Wilcoxon Matched Pairs Method (Signed Rank Method) to compute point estimate and associated 90% confidence interval for the median difference.
Time frame: Pre-dose and at 0.25, 0.5, 1, 1.5, 2, 3, 4, 6, 9, 12, 16, 24, 36 and 48 hours post-dose
Blood samples were collected at indicated time points for analysis of tmax. The tmax of levocetirizine was obtained directly from the concentration-time data. The tmax was analyzed with the non-parametric Wilcoxon Matched Pairs Method (Signed Rank Method) to compute point estimate and associated 90% confidence interval for the median difference.
Time frame: Pre-dose and at 0.25, 0.5, 1, 1.5, 2, 3, 4, 6, 9, 12, 16, 24, 36 and 48 hours post-dose
Blood samples were collected at indicated time points for analysis of t1/2. The t1/2 of levocetirizine was calculated by standard non-compartmental analysis using the currently supported version of WinNonlin (version 6.3 or higher).
Time frame: Pre-dose and at 0.25, 0.5, 1, 1.5, 2, 3, 4, 6, 9, 12, 16, 24, 36 and 48 hours post-dose
Blood samples were collected at indicated time points for analysis of t1/2. The t1/2 of levocetirizine was calculated by standard non-compartmental analysis using the currently supported version of WinNonlin (version 6.3 or higher).
Time frame: Pre-dose and at 0.25, 0.5, 1, 1.5, 2, 3, 4, 6, 9, 12, 16, 24, 36 and 48 hours post-dose
Blood samples were collected at indicated time points for analysis of %AUCex. Percentage AUCex of levocetirizine was calculated by standard non-compartmental analysis using the currently supported version of WinNonlin (version 6.3 or higher).
Time frame: Pre-dose and at 0.25, 0.5, 1, 1.5, 2, 3, 4, 6, 9, 12, 16, 24, 36 and 48 hours post-dose
Blood samples were collected at indicated time points for analysis of %AUCex. Percentage AUCex of levocetirizine was calculated by standard non-compartmental analysis using the currently supported version of WinNonlin (version 6.3 or higher).
Time frame: Pre-dose and at 0.25, 0.5, 1, 1.5, 2, 3, 4, 6, 9, 12, 16, 24, 36 and 48 hours post-dose
Blood samples were collected at indicated time points for analysis of CL/F. CL/F of levocetirizine was calculated by standard non-compartmental analysis using the currently supported version of WinNonlin (version 6.3 or higher).
Time frame: Pre-dose and at 0.25, 0.5, 1, 1.5, 2, 3, 4, 6, 9, 12, 16, 24, 36 and 48 hours post-dose
Blood samples were collected at indicated time points for analysis of CL/F. CL/F of levocetirizine was calculated by standard non-compartmental analysis using the currently supported version of WinNonlin (version 6.3 or higher).
Time frame: Pre-dose and at 0.25, 0.5, 1, 1.5, 2, 3, 4, 6, 9, 12, 16, 24, 36 and 48 hours post-dose
Blood samples were collected at indicated time points for analysis of Vz/F. Vz/F of levocetirizine was calculated by standard non-compartmental analysis using the currently supported version of WinNonlin (version 6.3 or higher).
Time frame: Pre-dose and at 0.25, 0.5, 1, 1.5, 2, 3, 4, 6, 9, 12, 16, 24, 36 and 48 hours post-dose
Blood samples were collected at indicated time points for analysis of Vz/F. Vz/F of levocetirizine was calculated as by standard non-compartmental analysis using the currently supported version of WinNonlin (version 6.3 or higher).
Time frame: Pre-dose and at 0.25, 0.5, 1, 1.5, 2, 3, 4, 6, 9, 12, 16, 24, 36 and 48 hours post-dose
Blood samples were collected at indicated time points for analysis of kel. kel (lambda_z) is the first order rate constant associated with the terminal (log-linear) portion of the curve. kel of levocetirizine was calculated by standard non-compartmental analysis using the currently supported version of WinNonlin (version 6.3 or higher).
Time frame: Pre-dose and at 0.25, 0.5, 1, 1.5, 2, 3, 4, 6, 9, 12, 16, 24, 36 and 48 hours post-dose
Blood samples were collected at indicated time points for analysis of kel. kel (lambda_z) is the first order rate constant associated with the terminal (log-linear) portion of the curve. kel of levocetirizine was calculated by standard non-compartmental analysis using the currently supported version of WinNonlin (version 6.3 or higher).
Time frame: Pre-dose and at 0.25, 0.5, 1, 1.5, 2, 3, 4, 6, 9, 12, 16, 24, 36 and 48 hours post-dose
Blood samples were collected at indicated time points for analysis of MRT. MRT of levocetirizine was calculated by standard non-compartmental analysis using the currently supported version of WinNonlin (version 6.3 or higher).
Time frame: Pre-dose and at 0.25, 0.5, 1, 1.5, 2, 3, 4, 6, 9, 12, 16, 24, 36 and 48 hours post-dose
Blood samples were collected at indicated time points for analysis of MRT. MRT of levocetirizine was calculated by standard non-compartmental analysis using the currently supported version of WinNonlin (version 6.3 or higher).
Time frame: Up to 18 days
An AE is any untoward medical occurrence in a clinical study participant, temporally associated with the use of a study intervention, whether or not considered related to the study intervention. A SAE is defined as any untoward medical occurrence that, at any dose may results in death or is life-threatening or requires inpatient hospitalization or results in persistent disability/incapacity or is a congenital anomaly/birth defect or any other situation according to medical or scientific judgment.
Time frame: Up to 18 days
An AE is any untoward medical occurrence in a clinical study participant, temporally associated with the use of a study intervention, whether or not considered related to the study intervention. A SAE is defined as any untoward medical occurrence that, at any dose may results in death or is life-threatening or requires inpatient hospitalization or results in persistent disability/incapacity or is a congenital anomaly/birth defect or any other situation according to medical or scientific judgment.
Time frame: Baseline (Day 1, Pre-dose) and 48 hours post-dose
Blood samples were collected for the assessment of clinical chemistry parameters. Change from Baseline in albumin and total protein levels were evaluated. The Baseline value was the latest pre-dose assessment with a non-missing value, including those from unscheduled visits. Change from Baseline was calculated by subtracting Baseline value from the post-dose visit value.
Time frame: Baseline (Day 1, Pre-dose) and 48 hours post-dose
Blood samples were collected for the assessment of clinical chemistry parameters. Change from Baseline in albumin and total protein levels were evaluated. The Baseline value was the latest pre-dose assessment with a non-missing value, including those from unscheduled visits. Change from Baseline was calculated by subtracting Baseline value from the post-dose visit value.
Time frame: Baseline (Day 1, Pre-dose) and 48 hours post-dose
Blood samples were collected for the assessment of clinical chemistry parameters. Change from Baseline in alkaline phosphatase, alanine amino transferase, aspartate amino transferase, creatine kinase, gamma glutamyl transferase and lactate dehydrogenase levels were evaluated. The Baseline value was the latest pre-dose assessment with a non-missing value, including those from unscheduled visits. Change from Baseline was calculated by subtracting Baseline value from the post-dose visit value.
Time frame: Baseline (Day 1, Pre-dose) and 48 hours post-dose
Blood samples were collected for the assessment of clinical chemistry parameters. Change from Baseline in alkaline phosphatase, alanine amino transferase, aspartate amino transferase, creatine kinase, gamma glutamyl transferase and lactate dehydrogenase levels were evaluated. The Baseline value was the latest pre-dose assessment with a non-missing value, including those from unscheduled visits. Change from Baseline was calculated by subtracting Baseline value from the post-dose visit value.
Time frame: Baseline (Day 1, Pre-dose) and 48 hours post-dose
Blood samples were collected for the assessment of clinical chemistry parameters. The Baseline value was the latest pre-dose assessment with a non-missing value, including those from unscheduled visits. Change from Baseline was calculated by subtracting Baseline value from the post-dose visit value.
Time frame: Baseline (Day 1, Pre-dose) and 48 hours post-dose
Blood samples were collected for the assessment of clinical chemistry parameters. Change from Baseline in amylase levels were evaluated. The Baseline value was the latest pre-dose assessment with a non-missing value, including those from unscheduled visits. Change from Baseline was calculated by subtracting Baseline value from the post-dose visit value.
Time frame: Baseline (Day 1, Pre-dose) and 48 hours post-dose
Blood samples were collected for the assessment of clinical chemistry parameters. Change from Baseline in direct bilirubin, total bilirubin, creatinine and uric acid levels were evaluated. The Baseline value was the latest pre-dose assessment with a non-missing value, including those from unscheduled visits. Change from Baseline was calculated by subtracting Baseline value from the post-dose visit value.
Time frame: Baseline (Day 1, Pre-dose) and 48 hours post-dose
Blood samples were collected for the assessment of clinical chemistry parameters. Change from Baseline in direct bilirubin, total bilirubin, creatinine and uric acid levels were evaluated. The Baseline value was the latest pre-dose assessment with a non-missing value, including those from unscheduled visits. Change from Baseline was calculated by subtracting Baseline value from the post-dose visit value.
Time frame: Baseline (Day 1, Pre-dose) and 48 hours post-dose
Blood samples were collected for the assessment of clinical chemistry parameters. Change from Baseline in calcium, cholesterol, chloride, glucose, high density lipids cholesterol, potassium, low density lipids cholesterol, sodium, phosphorus inorganic, triglycerides and urea/blood urea nitrogen (BUN) levels were evaluated. The Baseline value was the latest pre-dose assessment with a non-missing value, including those from unscheduled visits. Change from Baseline was calculated by subtracting Baseline value from the post-dose visit value.
Time frame: Baseline (Day 1, Pre-dose) and 48 hours post-dose
Blood samples were collected for the assessment of clinical chemistry parameters. Change from Baseline in calcium, cholesterol, chloride, glucose, high density lipids cholesterol, potassium, low density lipids cholesterol, sodium, phosphorus inorganic, triglycerides and urea/BUN levels were evaluated. The Baseline value was the latest pre-dose assessment with a non-missing value, including those from unscheduled visits. Change from Baseline was calculated by subtracting Baseline value from the post-dose visit value.
Time frame: Baseline (Day 1, Pre-dose) and 48 hours post-dose
Blood samples were collected for the assessment of hematology parameters. Change from Baseline in basophils, eosinophils, lymphocytes, monocytes and total neutrophils levels were evaluated. The Baseline value was the latest pre-dose assessment with a non-missing value, including those from unscheduled visits. Change from Baseline was calculated by subtracting Baseline value from the post-dose visit value.
Time frame: Baseline (Day 1, Pre-dose) and 48 hours post-dose
Blood samples were collected for the assessment of hematology parameters. Change from Baseline in basophils, eosinophils, lymphocytes, monocytes and total neutrophils levels were evaluated. The Baseline value was the latest pre-dose assessment with a non-missing value, including those from unscheduled visits. Change from Baseline was calculated by subtracting Baseline value from the post-dose visit value.
Time frame: Baseline (Day 1, Pre-dose) and 48 hours post-dose
Blood samples were collected for the assessment of hematology parameters. Change from Baseline in platelet count and white blood cell count were evaluated. The Baseline value was the latest pre-dose assessment with a non-missing value, including those from unscheduled visits. Change from Baseline was calculated by subtracting Baseline value from the post-dose visit value.
Time frame: Baseline (Day 1, Pre-dose) and 48 hours post-dose
Blood samples were collected for the assessment of hematology parameters. Change from Baseline in platelet count and white blood cell count were evaluated. The Baseline value was the latest pre-dose assessment with a non-missing value, including those from unscheduled visits. Change from Baseline was calculated by subtracting Baseline value from the post-dose visit value.
Time frame: Baseline (Day 1, Pre-dose) and 48 hours post-dose
Blood samples were collected for the assessment of hematology parameters. Change from Baseline in hemoglobin and mean corpuscle hemoglobin concentration were evaluated. The Baseline value was the latest pre-dose assessment with a non-missing value, including those from unscheduled visits. Change from Baseline was calculated by subtracting Baseline value from the post-dose visit value.
Time frame: Baseline (Day 1, Pre-dose) and 48 hours post-dose
Blood samples were collected for the assessment of hematology parameters. Change from Baseline in hemoglobin and mean corpuscle hemoglobin concentration were evaluated. The Baseline value was the latest pre-dose assessment with a non-missing value, including those from unscheduled visits. Change from Baseline was calculated by subtracting Baseline value from the post-dose visit value.
Time frame: Baseline (Day 1, Pre-dose) and 48 hours post-dose
Blood samples were collected for the assessment of hematology parameters. Change from Baseline in hematocrit was evaluated. The Baseline value was the latest pre-dose assessment with a non-missing value, including those from unscheduled visits. Change from Baseline was calculated by subtracting Baseline value from the post-dose visit value.
Time frame: Baseline (Day 1, Pre-dose) and 48 hours post-dose
Blood samples were collected for the assessment of hematology parameters. Change from Baseline in hematocrit was evaluated. The Baseline value was the latest pre-dose assessment with a non-missing value, including those from unscheduled visits. Change from Baseline was calculated by subtracting Baseline value from the post-dose visit value.
Time frame: Baseline (Day 1, Pre-dose) and 48 hours post-dose
Blood samples were collected for the assessment of hematology parameters. Change from Baseline in mean corpuscle hemoglobin was evaluated. The Baseline value was the latest pre-dose assessment with a non-missing value, including those from unscheduled visits. Change from Baseline was calculated by subtracting Baseline value from the post-dose visit value.
Time frame: Baseline (Day 1, Pre-dose) and 48 hours post-dose
Blood samples were collected for the assessment of hematology parameters. Change from Baseline in mean corpuscle hemoglobin was evaluated. The Baseline value was the latest pre-dose assessment with a non-missing value, including those from unscheduled visits. Change from Baseline was calculated by subtracting Baseline value from the post-dose visit value.
Time frame: Baseline (Day 1, Pre-dose) and 48 hours post-dose
Blood samples were collected for the assessment of hematology parameters. Change from Baseline in mean corpuscle volume was evaluated. The Baseline value was the latest pre-dose assessment with a non-missing value, including those from unscheduled visits. Change from Baseline was calculated by subtracting Baseline value from the post-dose visit value.
Time frame: Baseline (Day 1, Pre-dose) and 48 hours post-dose
Blood samples were collected for the assessment of hematology parameters. Change from Baseline in mean corpuscle volume was evaluated. The Baseline value was the latest pre-dose assessment with a non-missing value, including those from unscheduled visits. Change from Baseline was calculated by subtracting Baseline value from the post-dose visit value.
Time frame: Baseline (Day 1, Pre-dose) and 48 hours post-dose
Blood samples were collected for the assessment of hematology parameters. Change from Baseline in red blood cell count was evaluated. The Baseline value was the latest pre-dose assessment with a non-missing value, including those from unscheduled visits. Change from Baseline was calculated by subtracting Baseline value from the post-dose visit value.
Time frame: Baseline (Day 1, Pre-dose) and 48 hours post-dose
Blood samples were collected for the assessment of hematology parameters. Change from Baseline in red blood cell count was evaluated. The Baseline value was the latest pre-dose assessment with a non-missing value, including those from unscheduled visits. Change from Baseline was calculated by subtracting Baseline value from the post-dose visit value.
Time frame: Baseline (Day 1, Pre-dose) and 48 hours post-dose
Blood samples were collected for the assessment of hematology parameters. Change from Baseline in reticulocytes was evaluated. The Baseline value was the latest pre-dose assessment with a non-missing value, including those from unscheduled visits. Change from Baseline was calculated by subtracting Baseline value from the post-dose visit value.
Time frame: Baseline (Day 1, Pre-dose) and 48 hours post-dose
Blood samples were collected for the assessment of hematology parameters. Change from Baseline in reticulocytes was evaluated. The Baseline value was the latest pre-dose assessment with a non-missing value, including those from unscheduled visits. Change from Baseline was calculated by subtracting Baseline value from the post-dose visit value.
Time frame: Pre-dose (Day 1) and 48 hours post-dose
Urine samples were collected to assess urine bilirubin, urine occult blood, urine glucose, urine ketones, urine protein and urine urobilinogen by dipstick test. The dipstick test gives results in a semi-quantitative manner, and results for urinalysis parameter of urine bilirubin, urine occult blood, urine glucose, urine ketones, urine protein and urine urobilinogen can be read as negative (-), trace and 1+ indicating proportional concentrations in the urine sample. Only categories with significant values have been presented.
Time frame: Pre-dose (Day 1) and 48 hours post-dose
Urine samples were collected to assess urine bilirubin, urine occult blood, urine glucose, urine ketones, urine protein and urine urobilinogen by dipstick test. The dipstick test gives results in a semi-quantitative manner, and results for urinalysis parameter of urine bilirubin, urine occult blood, urine glucose, urine ketones, urine protein and urine urobilinogen can be read as negative (-), trace and 1+ indicating proportional concentrations in the urine sample. Only categories with significant values have been presented.
Time frame: Pre-dose (Day 1) and 48 hours post-dose
Urine samples were collected for the measurement of urine pH. Urine pH is an acid-base measurement. pH is measured on a numeric scale ranging from 0 to 14; values on the scale refer to the degree of alkalinity or acidity. A pH of 7 is neutral. A pH less than 7 is acidic, and a pH greater than 7 is basic. Normal urine has a slightly acid pH (5.0 - 6.0).
Time frame: Pre-dose (Day 1) and 48 hours post-dose
Urine samples were collected for the measurement of urine pH. Urine pH is an acid-base measurement. pH is measured on a numeric scale ranging from 0 to 14; values on the scale refer to the degree of alkalinity or acidity. A pH of 7 is neutral. A pH less than 7 is acidic, and a pH greater than 7 is basic. Normal urine has a slightly acid pH (5.0 - 6.0).
Time frame: Pre-dose (Day 1) and 48 hours post-dose
Urine samples were collected for the measurement of specific gravity. Urine specific gravity is a measure of the concentration of solutes in the urine and provides information on the kidney's ability to concentrate urine. The concentration of the excreted molecules determines the urine's specific gravity. The urinary specific gravity measurement is a routine part of urinalysis. The reference range is 1.002-1.030.
Time frame: Pre-dose (Day 1) and 48 hours post-dose
Urine samples were collected for the measurement of specific gravity. Urine specific gravity is a measure of the concentration of solutes in the urine and provides information on the kidney's ability to concentrate urine. The concentration of the excreted molecules determines the urine's specific gravity. The urinary specific gravity measurement is a routine part of urinalysis. The reference range is 1.002-1.030.
Time frame: Baseline (Day 1, Pre-dose) and 1, 24, 48 hours post-dose
Blood pressure was measured in supine position after 5 minutes rest. Change from Baseline in SBP and DBP was evaluated. The Baseline value was the latest pre-dose assessment with a non-missing value, including those from unscheduled visits. Change from Baseline was calculated by subtracting Baseline value from the post-dose visit value.
Time frame: Baseline (Day 1, Pre-dose) and 1, 24, 48 hours post-dose
Blood pressure was measured in supine position after 5 minutes rest. Change from Baseline in SBP and DBP was evaluated. The Baseline value was the latest pre-dose assessment with a non-missing value, including those from unscheduled visits. Change from Baseline was calculated by subtracting Baseline value from the post-dose visit value.
Time frame: Baseline (Day 1, Pre-dose) and 1, 24, 48 hours post-dose
Heart rate was measured in supine position after 5 minutes rest. Change from Baseline in heart rate was evaluated. The Baseline value was the latest pre-dose assessment with a non-missing value, including those from unscheduled visits. Change from Baseline was calculated by subtracting Baseline value from the post-dose visit value.
Time frame: Baseline (Day 1, Pre-dose) and 1, 24, 48 hours post-dose
Heart rate was measured in supine position after 5 minutes rest. Change from Baseline in heart rate was evaluated. The Baseline value was the latest pre-dose assessment with a non-missing value, including those from unscheduled visits. Change from Baseline was calculated by subtracting Baseline value from the post-dose visit value.
Time frame: Baseline (Day 1, Pre-dose) and 1, 24, 48 hours post-dose
Body temperature was measured in supine position after 5 minutes rest. Change from Baseline in body temperature was evaluated. The Baseline value was the latest pre-dose assessment with a non-missing value, including those from unscheduled visits. Change from Baseline was calculated by subtracting Baseline value from the post-dose visit value.
Time frame: Baseline (Day 1, Pre-dose) and 1, 24, 48 hours post-dose
Body temperature was measured in supine position after 5 minutes rest. Change from Baseline in body temperature was evaluated. The Baseline value was the latest pre-dose assessment with a non-missing value, including those from unscheduled visits. Change from Baseline was calculated by subtracting Baseline value from the post-dose visit value.
Time frame: Baseline (Day 1, Pre-dose) and 1, 48 hours post-dose
Single 12-lead ECG was obtained using an ECG machine that automatically calculates the heart rate and measures PR, QRS, QT, and QT interval with Fridericia's correction (QTcF). Change from Baseline in heart rate (ECG) was evaluated. The Baseline value was the latest pre-dose assessment with a non-missing value, including those from unscheduled visits. Change from Baseline was calculated by subtracting Baseline value from the post-dose visit value.
Time frame: Baseline (Day 1, Pre-dose) and 1, 48 hours post-dose
Single 12-lead ECG was obtained using an ECG machine that automatically calculates the heart rate and measures PR, QRS, QT, and QTcF. Change from Baseline in heart rate (ECG) was evaluated. The Baseline value was the latest pre-dose assessment with a non-missing value, including those from unscheduled visits. Change from Baseline was calculated by subtracting Baseline value from the post-dose visit value.
Time frame: Baseline (Day 1, Pre-dose) and 1, 48 hours post-dose
Single 12-lead ECG was obtained using an ECG machine that automatically calculates the heart rate and measures PR, QRS, QT, and QTcF. Change from Baseline in PR interval, QRS interval, QT interval and QTcF interval was evaluated. The Baseline value was the latest pre-dose assessment with a non-missing value, including those from unscheduled visits. Change from Baseline was calculated by subtracting Baseline value from the post-dose visit value.
Time frame: Baseline (Day 1, Pre-dose) and 1, 48 hours post-dose
Single 12-lead ECG was obtained using an ECG machine that automatically calculates the heart rate and measures PR, QRS, QT, and QTcF. Change from Baseline in PR interval, QRS interval, QT interval and QTcF interval was evaluated. Change from Baseline was calculated by subtracting Baseline value from the post-dose visit value. The Baseline value was the latest pre-dose assessment with a non-missing value, including those from unscheduled visits.
GlaxoSmithKline
Industry
A Single Centre, Single Dose, Open-label, Randomized, 2-part, 2-way Crossover Study to Determine the Bioequivalence of Levocetirizine Oral Disintegrating Tablet Given With Water and Without Water Compared to Levocetirizine Immediate Release Tablet in Healthy Japanese Male Subjects
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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