Lixivaptan
DrugOral vasopressin V2 receptor antagonist
Other names: VPA-985
NCT Number: NCT03487913
This is a Phase 2, open-label, parallel-group, multiple dose study designed to evaluate the pharmacokinetics, pharmacodynamics, safety and tolerability of multiple doses of lixivaptan in Autosomal Dominant Polycystic Kidney Disease subjects with chronic kidney disease (CKD) in stages CKD1, CKD2 or CKD3.
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Notify Me18 year–65 year
All sexes
Interventional
Phase 2
Palladio Biosciences Clinical Site, Los Angeles, California, United States
Therapeutic interventions aimed at counterbalancing the effect of vasopressin and/or normalizing intracellular levels of cAMP may be effective in delaying disease progression in autosomal dominant polycystic kidney disease (ADPKD).
The primary objectives of this study in subjects with ADPKD are:
The secondary objectives of this study are:
Healthy volunteers accepted: No
Only the study team can determine whether someone qualifies for participation.
Inclusion criteria
Exclusion criteria
Oral vasopressin V2 receptor antagonist
Other names: VPA-985
Time frame: Day 1 (am and pm) and Day 7 (am and pm)
The pharmacokinetic parameter Cmax, the highest concentration of lixivaptan measured in plasma after multiple doses of drug, will be calculated from the observed concentration of lixivaptan and summarized by cohort.
Time frame: Day 1 (am and pm) and Day 7 (am and pm)
The pharmacokinetic parameter Cmax, the highest concentration of WAY-141624 measured in plasma after multiple doses of drug, will be calculated from the observed concentration of WAY-141624 and summarized by cohort.
Time frame: Day 1 (am and pm) and Day 7 (am and pm)
The pharmacokinetic parameter Cmax, the highest concentration of WAY-138451 measured in plasma after multiple doses of drug, will be calculated from the observed concentration of WAY-138451 and summarized by cohort.
Time frame: Day 1 (am and pm) and Day 7 (am and pm)
The pharmacokinetic parameter Cmax, the highest concentration of WAY-138758 measured in plasma after multiple doses of drug, will be calculated from the observed concentration of WAY-138758 and summarized by cohort.
Time frame: Day 1 (am and pm) and Day 7 (am and pm)
The pharmacokinetic parameter tmax, the time taken to reach the highest concentration of lixivaptan in plasma after multiple doses of drug, will be calculated from the observed concentration of lixivaptan and summarized by cohort.
Time frame: Day 1 (am and pm) and Day 7 (am and pm)
The pharmacokinetic parameter tmax, the time taken to reach the highest concentration of WAY-141624 in plasma after multiple doses of drug, will be calculated from the observed concentration of WAY-141624 and summarized by cohort.
Time frame: Day 1 (am and pm) and Day 7 (am and pm)
The pharmacokinetic parameter tmax, the time taken to reach the highest concentration of WAY-138451 in plasma after multiple doses of drug, will be calculated from the observed concentration of WAY-138451 and summarized by cohort.
Time frame: Day 1 (am and pm) and Day 7 (am and pm)
The pharmacokinetic parameter tmax, the time taken to reach the highest concentration of WAY-138758 in plasma after multiple doses of drug, will be calculated from the observed concentration of WAY-138758 and summarized by cohort.
Time frame: Day 1 (am and pm) and Day 7 (am and pm)
The pharmacokinetic parameter AUC(0-last) for lixivaptan will be calculated using the linear trapezoidal rule for increasing values and the log trapezoidal rule for decreasing values, summarized by cohort.
Time frame: Day 1 (am and pm) and Day 7 (am and pm)
The pharmacokinetic parameter AUC(0-last) for WAY-141624 will be calculated using the linear trapezoidal rule for increasing values and the log trapezoidal rule for decreasing values and summarized by cohort.
Time frame: Day 1 (am and pm) and Day 7 (am and pm)
The pharmacokinetic parameter AUC(0-last) for WAY-138451 will be calculated using the linear trapezoidal rule for increasing values and the log trapezoidal rule for decreasing values and summarized by cohort.
Time frame: Day 1 (am and pm) and Day 7 (am and pm)
The pharmacokinetic parameter AUC(0-last) for WAY-138758 will be calculated using the linear trapezoidal rule for increasing values and the log trapezoidal rule for decreasing values and summarized by cohort.
Time frame: Day 1 (am)
The pharmacokinetic parameter AUC(0-inf) for lixivaptan will be calculated using the linear trapezoidal rule for increasing values, the log trapezoidal rule for decreasing values, and extrapolated to infinity by addition of the last quantifiable observed concentration divided by the elimination rate constant and summarized by cohort.
Time frame: Day 1 (am)
The pharmacokinetic parameter AUC(0-inf) for WAY-141624 will be calculated using the linear trapezoidal rule for increasing values, the log trapezoidal rule for decreasing values, and extrapolated to infinity by addition of the last quantifiable observed concentration divided by the elimination rate constant and summarized by cohort.
Time frame: Day 1 (am)
The pharmacokinetic parameter AUC(0-inf) for WAY-138451 will be calculated using the linear trapezoidal rule for increasing values, the log trapezoidal rule for decreasing values, and extrapolated to infinity by addition of the last quantifiable observed concentration divided by the elimination rate constant and summarized by cohort.
Time frame: Day 1 (am)
The pharmacokinetic parameter AUC(0-inf) for WAY-138758 will be calculated using the linear trapezoidal rule for increasing values, the log trapezoidal rule for decreasing values, and extrapolated to infinity by addition of the last quantifiable observed concentration divided by the elimination rate constant and summarized by cohort.
Time frame: Day 1 (am) and Day 7 (pm)
The pharmacokinetic parameter t1/2 for lixivaptan, determined as ln2/apparent terminal elimination rate constant, will be calculated and summarized by cohort.
Time frame: Day 1 (am) and Day 7 (pm)
The pharmacokinetic parameter t1/2 for WAY-141624, determined as ln2/apparent terminal elimination rate constant, will be calculated and summarized by cohort.
Time frame: Day 1 (am) and Day 7 (pm)
The pharmacokinetic parameter t1/2 for WAY-138451, determined as ln2/apparent terminal elimination rate constant, will be calculated and summarized by cohort.
Time frame: Day 1 (am) and Day 7 (pm)
The pharmacokinetic parameter t1/2 for WAY-138758, determined as ln2/apparent terminal elimination rate constant, will be calculated and summarized by cohort.
Time frame: Day 1 (am) and Day 7 (pm)
The pharmacokinetic parameter λZ for lixivaptan will be determined by linear regression of the terminal points of the log-linear concentration-time curve. The Best Fit method utilized by WinNonlin will be used to identify the terminal linear phase of the concentration-time profile, with visual assessment and adjustment of the selected data points by the PK scientist if warranted. A minimum of 3 data points will be used for determination. Results will be summarized by cohort.
Time frame: Day 1 (am) and Day 7 (pm)
The pharmacokinetic parameter λZ for WAY-141624 will be determined by linear regression of the terminal points of the log-linear concentration-time curve. The Best Fit method utilized by WinNonlin will be used to identify the terminal linear phase of the concentration-time profile, with visual assessment and adjustment of the selected data points by the PK scientist if warranted. A minimum of 3 data points will be used for determination. Results will be summarized by cohort.
Time frame: Day 1 (am) and Day 7 (pm)
The pharmacokinetic parameter λZ for WAY-138451 will be determined by linear regression of the terminal points of the log-linear concentration-time curve. The Best Fit method utilized by WinNonlin will be used to identify the terminal linear phase of the concentration-time profile, with visual assessment and adjustment of the selected data points by the PK scientist if warranted. A minimum of 3 data points will be used for determination. Results will be summarized by cohort.
Time frame: Day 1 (am) and Day 7 (pm)
The pharmacokinetic parameter λZ for WAY-138758 will be determined by linear regression of the terminal points of the log-linear concentration-time curve. The Best Fit method utilized by WinNonlin will be used to identify the terminal linear phase of the concentration-time profile, with visual assessment and adjustment of the selected data points by the PK scientist if warranted. A minimum of 3 data points will be used for determination. Results will be summarized by cohort.
Time frame: Day 1 (am) and Day 7 (am)
The pharmacokinetic parameter CL/F for lixivaptan, calculated as: Day 1 AM: dose divided by AUC(0-inf), or Day 7 AM: dose divided by AUC(0-last), will be summarized by cohort.
Time frame: Day 1 (am) and Day 7 (am)
The pharmacokinetic parameter VZ/F for lixivaptan, calculated as CL/F divided by λZ, will be summarized by cohort.
Time frame: Day 7 (am)
The pharmacokinetic parameter RCmax for lixivaptan, calculated as [Cmax on Day 7]/[Cmax on Day 1], will be summarized by cohort.
Time frame: Day 7 (am)
The pharmacokinetic parameter RAUC(0-last) for lixivaptan, calculated as [AUC(0-last) on Day 7]/[AUC(0-last) on Day 1], will be summarized by cohort.
Time frame: Day 7 (pm)
The pharmacokinetic parameter AUC(0-14) for lixivaptan will be calculated using the linear trapezoidal rule for increasing values and the log trapezoidal rule for decreasing values. The actual elapsed time for the nominal 14-hour sample will be used for the calculation. Results will be summarized by cohort.
Time frame: Day 7 (pm)
The pharmacokinetic parameter AUC(0-14) for WAY-141624 will be calculated using the linear trapezoidal rule for increasing values and the log trapezoidal rule for decreasing values. The actual elapsed time for the nominal 14-hour sample will be used for the calculation. Results will be summarized by cohort.
Time frame: Day 7 (pm)
The pharmacokinetic parameter AUC(0-14) for WAY-138451 will be calculated using the linear trapezoidal rule for increasing values and the log trapezoidal rule for decreasing values. The actual elapsed time for the nominal 14-hour sample will be used for the calculation. Results will be summarized by cohort.
Time frame: Day 7 (pm)
The pharmacokinetic parameter AUC(0-14) for WAY-138758 will be calculated using the linear trapezoidal rule for increasing values and the log trapezoidal rule for decreasing values. The actual elapsed time for the nominal 14-hour sample will be used for the calculation. Results will be summarized by cohort.
Time frame: Day 7 (pm)
The pharmacokinetic parameter MRCmax for WAY-141624 will be calculated and corrected for molecular weight of WAY-141624 and parent lixivaptan as: (Cmax,m/Cmax,p)(MWp/MWm), where Cmax,m and MWm are Cmax and molecular weight of WAY-141624, respectively, and Cmax,p and MWp are Cmax and molecular weight of parent lixivaptan, respectively. The following molecular weights are to be used in all MRCmax calculations:
Results will be summarized by cohort.
Time frame: Day 7 (pm)
The pharmacokinetic parameter MRCmax for WAY-138451 will be calculated and corrected for molecular weight of WAY-138451 and parent lixivaptan as: (Cmax,m/Cmax,p)(MWp/MWm), where Cmax,m and MWm are Cmax and molecular weight of WAY-138451, respectively, and Cmax,p and MWp are Cmax and molecular weight of parent lixivaptan, respectively. The following molecular weights are to be used in all MRCmax calculations:
Results will be summarized by cohort.
Time frame: Day 7 (pm)
The pharmacokinetic parameter MRCmax for WAY-138758 will be calculated and corrected for molecular weight of WAY-138758 and parent lixivaptan as: (Cmax,m/Cmax,p)(MWp/MWm), where Cmax,m and MWm are Cmax and molecular weight of WAY-138758, respectively, and Cmax,p and MWp are Cmax and molecular weight of parent lixivaptan, respectively. The following molecular weights are to be used in all MRCmax calculations:
Results will be summarized by cohort.
Time frame: Day 7 (pm)
The pharmacokinetic parameter MRAUC(0-14) for WAY-141624 will be calculated and corrected for molecular weight of WAY-141624 and parent lixivaptan as: (AUC(0-14),m/AUC(0-14),p)(MWp/MWm), where AUC(0-14),m and MWm are AUC(0-14) and molecular weight of WAY-141624, respectively, and AUC(0-14),p and MWp are AUC(0-14) and molecular weight of parent lixivaptan, respectively. The following molecular weights are to be used in all MRAUC(0-14) calculations:
Results will be summarized by cohort.
Time frame: Day 7 (pm)
The pharmacokinetic parameter MRAUC(0-14) for WAY-138451 will be calculated and corrected for molecular weight of WAY-138451 and parent lixivaptan as: (AUC(0-14),m/AUC(0-14),p)(MWp/MWm), where AUC(0-14),m and MWm are AUC(0-14) and molecular weight of WAY-138451, respectively, and AUC(0-14),p and MWp are AUC(0-14) and molecular weight of parent lixivaptan, respectively. The following molecular weights are to be used in all MRAUC(0-14) calculations:
Results will be summarized by cohort.
Time frame: Day 7 (pm)
The pharmacokinetic parameter MRAUC(0-14) for WAY-138758 will be calculated and corrected for molecular weight of WAY-138758 and parent lixivaptan as: (AUC(0-14),m/AUC(0-14),p)(MWp/MWm), where AUC(0-14),m and MWm are AUC(0-14) and molecular weight of WAY-138758, respectively, and AUC(0-14),p and MWp are AUC(0-14) and molecular weight of parent lixivaptan, respectively. The following molecular weights are to be used in all MRAUC(0-14) calculations:
Results will be summarized by cohort.
Time frame: 35 days
The number of study participants who experience treatment-emergent adverse events during the study will be counted and summarized by dose level.
Time frame: 35 days
The number of study participants who experience clinically significant physical examination findings during the study will be counted and summarized by cohort.
Time frame: 35 days
The number of study participants who experience vital signs (systolic blood pressure, diastolic blood pressure, pulse rate, respiratory rate, and body temperature) meeting the predefined markedly abnormal criteria during the study will be counted and summarized by cohort.
Time frame: Baseline (Day 1) to Day 8 (8 days)
The number of study participants who experience 12-lead electrocardiograms meeting the predefined markedly abnormal criteria during the study will be counted and summarized by cohort.
Time frame: 35 days
The number of study participants who experience clinically meaningful laboratory findings, relating to clinical chemistry, hematology, and urinalysis, during the study will be counted and summarized by cohort.
Time frame: Day 7
The number of study participants who answered "yes" to the following questions at Day 7 will be counted and summarized by dose level:
Time frame: Day 7
The number of study participants who answered "not at all" and "slightly" to the following question at Day 7 will be measured:
Time frame: Day 7
The number of study participants who answered "not at all" and "slightly" to the following question at Day 7 will be measured:
Time frame: At time of dose, and at 1, 2, 4, 6, 9, 10, 11, 12, 14, and 24 hours after the Day 1 and Day 7 doses
Changes from baseline in spot urine measurements for samples taken at 0, 1, 2, 4, 6, 9, 10, 11, 12, 14, and 24 hours after the Day 1 and Day 7 doses will be summarized by cohort. The baseline value for each time point after first administration of study drug is the value observed at the corresponding time point on Day -1 (or Day 1 for the AM predose assessment only).
Time frame: Baseline (Day -1), Day 1, and Day 7
Changes from baseline in 24-hour urine output for samples taken on Day 1 and Day 7 will be summarized by cohort. The baseline value was the last value observed prior to first administration of study drug on Day -1.
Time frame: Baseline (Day 1) to end of study (35 days)
Changes from baseline of eGFR derived from the serum creatinine concentrations for samples taken at Day 1 (postdose), Day 2, Day 7, Day 8, and Day 35 will summarized by cohort
Time frame: Baseline (Day -1) to end of study (36 days)
Changes from baseline (Day -1) in total kidney volume, measured by abdominal MRI on Day 7 and Day 35, will be summarized by cohort.
Time frame: Baseline (Day -1) to end of study (36 days)
Changes from baseline (Day -1) in liver volume, measured by abdominal MRI on Day 7 and Day 35, will be summarized by cohort.
Time frame: Baseline (Day -1) to end of study (36 days)
Changes from baseline (Day -1) in plasma copeptin, a marker for circulating vasopressin, at Day 2, Day 7, and Day 35 will be summarized by cohort.
Time frame: Baseline (Day 1, predose) to end of study (35 days)
Changes from baseline in serum creatinine for samples taken at Day 2, Day 7, Day 8, and Day 35 will be summarized by cohort.
Time frame: Baseline (Day 1, predose) to end of study (35 days)
Changes from baseline in BUN for samples taken at Day 2, Day 7, Day 8, and Day 35 will be summarized by cohort.
Time frame: Day 7 (am)
The pharmacokinetic parameter VZ/F24H for lixivaptan, calculated as CL/F24H divided by Day 7 PM λZ, will be summarized by cohort. VZ/F24H was not specified in the statistical analysis plan and was calculated for the combined 24-hour period including AM and PM dosing intervals on Day 7. This parameter replaces VZ/F initially planned for the Day 7 AM dose.
Palladio Biosciences
Industry
A Phase 2, Open-Label, Multi-Center Study to Evaluate the Safety, Pharmacokinetics and Pharmacodynamics of Lixivaptan in Subjects With Autosomal Dominant Polycystic Kidney Disease
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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