Azilsartan
DrugAzilsartan tablets
Other names: TAK-536
NCT Number: NCT02451150
The purpose of this study is to evaluate the pharmacokinetics and safety of a single dose of TAK-536 (azilsartan) in pediatric patients aged 6 to less than 16 years with hypertension.
Looking for future studies?
Notify Me6 year–15 year
All sexes
Interventional
Phase 3
Fuchū, Japan
The drug being tested in this study is called azilsartan. Azilsartan was being tested to evaluate how it is processed by the body (pharmacokinetics). This study looked at lab results in pediatric participants who took azilsartan.
The study enrolled 6 patients. Participants were assigned to study medication dose by body weight as follows:
All participants took a single oral dose of azilsartan on Day 1 of the study.
This multi-center trial was conducted in Japan. The overall time to participate in this study was 17 days. Participants made multiple visits to the clinic, and were contacted by telephone on Day 6 and Day 15 after last dose of study drug for a follow-up assessment.
Healthy volunteers accepted: No
Only the study team can determine whether someone qualifies for participation.
Inclusion criteria
At least 6 months has elapsed from the transplant to the start of the observation period with stable graft function for more than 6 months (and estimated glomerular filtration rate [eGFR] ≥ 30 mL/min/1.73 m^2) and historical documentation (Doppler echo or computed tomography [CT], magnetic resonance imaging [MRI], etc.) which verify that arterial stenosis is not present in the transplanted kidney. For participants receiving immunosuppressive therapy, the dose should have been stable at least 30 days before study drug administration.
Exclusion criteria
Note: This does not apply to participants participating in observational studies without interventional or invasive therapy.
Azilsartan tablets
Other names: TAK-536
Time frame: Pre-dose and at multiple time points (up to 24 hours) post-dose
AUC(0-24) is a measure of total plasma exposure to the drug from time 0 to 24 hours post-dose, calculated using the linear trapezoidal rule.
Time frame: Pre-dose and at multiple time points (up to 24 hours) post-dose
Cmax is the maximum observed plasma concentration (actual measurement value) of a drug after administration, obtained directly from the plasma concentration-time curve.
Time frame: Pre-dose and at multiple time points (up to 24 hours) post-dose
AUC(0-inf) is a measure of total plasma exposure to the drug from time zero extrapolated to infinity, calculated as AUC(0-inf)=AUC(0-tlqc)+lqc/λz
Time frame: Pre-dose and at multiple time points (up to 24 hours) post-dose
Tmax is the time to reach Cmax (actual measurement value), equal to time (hours) to Cmax.
Time frame: Pre-dose and at multiple time points (up to 24 hours) post-dose
T1/2 is the terminal elimination half-life (time required for half of the drug to be eliminated from the plasma), calculated as T1/2=ln(2)/λz.
Time frame: Pre-dose and at multiple time points (up to 24 hours) post-dose
AUC(0-24) is a measure of total plasma exposure to the drug from time 0 to 24 hours post-dose, calculated using the linear trapezoidal rule.
Time frame: Pre-dose and at multiple time points (up to 24 hours) post-dose
Cmax is the maximum observed plasma concentration (actual measurement value) of a drug after administration, obtained directly from the plasma concentration-time curve.
Time frame: Pre-dose and at multiple time points (up to 24 hours) post-dose
AUC(0-inf) is a measure of total plasma exposure to the drug from time zero extrapolated to infinity, calculated as AUC(0-inf)=AUC(0-tlqc)+lqc/λz.
Time frame: Pre-dose and at multiple time points (up to 24 hours) post-dose
Tmax is the time to reach Cmax (actual measurement value), equal to time (hours) to Cmax.
Time frame: Pre-dose and at multiple time points (up to 24 hours) post-dose
T1/2 is the terminal elimination half-life (time required for half of the drug to be eliminated from the plasma), calculated as T1/2=ln(2)/λz.
Time frame: Pre-dose and at multiple time points (up to 24 hours) post-dose
AUC(0-24) is a measure of total plasma exposure to the drug from time 0 to 24 hours post-dose, calculated using the linear trapezoidal rule.
Time frame: Pre-dose and at multiple time points (up to 24 hours) post-dose
Cmax is the maximum observed plasma concentration (actual measurement value) of a drug after administration, obtained directly from the plasma concentration-time curve.
Time frame: Pre-dose and at multiple time points (up to 24 hours) post-dose
AUC(0-inf) is a measure of total plasma exposure to the drug from time zero extrapolated to infinity, calculated as AUC(0-inf)=AUC(0-tlqc)+lqc/λz.
Time frame: Pre-dose and at multiple time points (up to 24 hours) post-dose
Tmax is the time to reach Cmax (actual measurement value), equal to time (hours) to Cmax.
Time frame: Pre-dose and at multiple time points (up to 24 hours) post-dose
T1/2 is the terminal elimination half-life (time required for half of the drug to be eliminated from the plasma), calculated as T1/2=ln(2)/λz.
Time frame: Day 1 from 0 to 24 hours post-dose
The cumulative urinary excretion ratio (% of dose [TAK-536-equivalent]) of TAK-536 will be calculated from the urinary concentration and volume of each participant.
Time frame: Day 1 from 0 to 24 hours post-dose
The cumulative urinary excretion ratio (% of dose [TAK-536-equivalent]) of TAK-536 metabolite M-I will be calculated from the urinary concentration and volume of each participant.
Time frame: Day 1 from 0 to 24 hours post-dose
The cumulative urinary excretion ratio (% of dose [TAK-536-equivalent]) of TAK-536 metabolite M-II will be calculated from the urinary concentration and volume of each participant.
Time frame: Up to 15 Days
An Adverse Event (AE) is defined as any untoward medical occurrence in a clinical investigation participant administered a drug; it does not necessarily have to have a causal relationship with this treatment. An AE can therefore be any unfavorable and unintended sign (example, a clinically significant abnormal laboratory finding), symptom, or disease temporally associated with the use of a drug, whether or not it is considered related to the drug. Treatment emergent adverse event (TEAE) is defined as an adverse event with an onset that occurs after receiving study drug. A serious adverse event (SAE) is an AE resulting in any of the following outcomes or deemed significant for any other reason: death; initial or prolonged inpatient hospitalization; life-threatening experience (immediate risk of dying); persistent or significant disability/incapacity; or congenital anomaly; or a medically important event.
Time frame: Baseline and Day 2
Vital signs are defined as sitting blood pressure, sitting pulse rate and temperature.
Time frame: Baseline and Day 2
Time frame: Baseline and Day 2
A resting 12-lead ECG was recorded. The investigator or subinvestigator (or a qualified physician at the study site) interpreted the ECG results.
Time frame: Baseline and Day 2
Laboratory test results are defined as serum chemistry, hematology and urinalysis.
Takeda
Industry
An Open-label, Phase 3, Multicenter Study to Evaluate the Pharmacokinetics Following a Single Oral Dose of TAK-536 in Pediatric Patients 6 to Less Than 16 Years of Age With Hypertension
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.
NCT03461003
Pediatric Hypertension
Houston, Texas, United States
View Trial DetailsNCT02791438
Pediatric Hypertension
Nagakute, Aichi-ken, Japan
View Trial DetailsNCT00244634
Pediatric Hypertension
Beverly Hills, California, United States
View Trial DetailsNCT07728643
Cardiovascular Diseases, Endothelial Dysfunction
Osijek, Croatia
View Trial Details