LNP023
Drugapproximately 2 year of Treatment with LNP023
Other names: iptacopan
NCT Number: NCT03896152
This was a Phase II randomized, open-label, multicenter, efficacy, safety, pharmacokinetic and pharmacodynamic study assessing four iptacopan doses in adult Paroxysmal nocturnal hemoglobinuria (PNH) patients with active hemolysis who were not on eculizumab or any other complement inhibitor less than 3 months prior to first iptacopan dose. Active hemolysis was defined by a lactate dehydrogenase (LDH) value ≥ 1.5 × ULN.
Looking for future studies?
Notify Me18 year and older
All sexes
Interventional
Phase 2
Novartis Investigative Site, Kota Kinabalu, Sabah, Malaysia
LNP023 is a novel oral small molecular weight compound, that inhibits alternative complement pathway (AP). Blockade of the AP with oral LNP023 has the potential to prevent both intra - and extravascular hemolysis.
The total study duration from Screening until end of study (EOS) was approximately 28 months. This three-period study included:
Patients were randomized to Sequence 1 or Sequence 2 in a 1:1 ratio. Sequence 1: Four weeks of treatment with iptacopan 25 mg bid (Twice daily) in Period 1 followed by treatment with 100 mg bid in Period 2 and Period 3. If during Period 1, LDH was not reduced by ≥ 40% from the mean of pretreatment values by Week 2 (Day 15 study visit), the iptacopan dose was to be up-titrated to 100 mg bid (starting from Study Day 17). If LDH was not reduced by ≥ 40% from the mean of pretreatment values at Week 4 (Day 29), the iptacopan dose was to be up-titrated to 200 mg bid in Period 2 and Period 3 (starting from Study Day 30). In the approximate 2-year treatment extension (Period 3), patients maintained the same treatment regimen as used in Period 2.
Sequence 2: Four weeks of treatment with iptacopan 50 mg bid in Period 1 followed by treatment with 200 mg bid in Period 2 and Period 3. If during Period 1, LDH was not reduced by ≥ 40% from the mean of pretreatment values by Week 2 (Day 15 study visit), the iptacopan dose was to be up-titrated to 200 mg bid (starting from Study Day 17). In the approximate 2-year treatment extension (Extension Period 3), patients remained on 200 mg bid. No further up-titration was possible
Healthy volunteers accepted: No
Only the study team can determine whether someone qualifies for participation.
Inclusion criteria
Exclusion criteria
approximately 2 year of Treatment with LNP023
Other names: iptacopan
Time frame: Week 2, week 4, week 8 and week 12
A responder was defined as a patient with at least 60% reduction in LDH compared to Baseline or LDH below the upper limit of normal at any time up to and including Week 12 for that patient.
Time frame: Baseline, week 2, week 4, week 8 and week 12
LDH was used as a hemolysis marker to determine the dose-response effect of iptacopan on the reduction of Paroxysmal nocturnal hemoglobinuria (PNH)-associated hemolysis.
Active hemolysis is defined by an LDH value ≥ 1.5x upper limit of normal (ULN) Baseline LDH was calculated as the average of the last three screening values prior to randomization.
Serum was used to calculate the LDH values
Time frame: Baseline, Week 2, week 4, week 8 and week 12
Hemoglobin was used as a hemolysis marker to determine the dose-response effect of iptacopan on the reduction of PNH-associated hemolysis. Whole blood was used to calculate the hemoglobin values.
Time frame: Baseline, Week 2, week 4, week 8 and week 12
Free hemoglobin was used as a hemolysis marker to determine the dose-response effect of iptacopan on the reduction of PNH-associated hemolysis.
Whole blood was used to calculate the hemoglobin values.
Time frame: Baseline, Week 2, week 4, week 8 and week 12
Carboxyhemoglobin was used as a marker of intravascular and extravascular hemolysis to assess the effect of iptacopan.
Whole blood was used to calculate the carboxyhemoglobin values.
Time frame: Baseline, week 2, week 4, week 8 and week 12
Reticulocyte count was used as a marker of intravascular and extravascular hemolysis to assess the effect of iptacopan.
Whole blood was used to calculate the absolute reticulocyte count.
Time frame: Baseline, week 2, week 4, week 8 and week 12
Erythrocytes were used as a marker of intravascular and extravascular hemolysis to assess the effect of iptacopan.
Whole blood was used to calculate erythrocytes values.
Time frame: Baseline, week 2, week 4, week 8 and week 12
C3 fragment deposition on paroxysmal nocturnal hemoglobinuria red blood cell (PNH RBC) was used as a marker of intravascular and extravascular hemolysis to assess the effect of iptacopan. Accumulation of C3 fragments on red blood cells make them prone to phagocytosis causing extravascular hemolysis.
Whole blood was used to calculate C3 fragment deposition on PNH RBC values.
Time frame: Baseline, week 2, week 4, week 8 and week 12
Haptoglobin levels were used as a hemolysis marker to determine the effect of iptacopan on the reduction of PNH-associated hemolysis.
Serum was used to calculate haptoglobin levels.
Time frame: Baseline, week 2, week 4, week 8 and week 12
Bilirubin levels were used as a hemolysis marker to determine the effect of iptacopan on the reduction of PNH-associated hemolysis.
Serum was used to calculate bilirubin levels.
Time frame: Baseline, week 2, week 4, week 8 and week 12
Platelet counts were used as a marker of intravascular and extravascular hemolysis to assess the effect of iptacopan.
Whole blood was used to calculate platelets count.
Time frame: Baseline, Week 4, Week 8 and week 12
Ferritin levels were used as a marker of intravascular and extravascular hemolysis to assess the effect of iptacopan.
Serum was used to calculate ferritin levels.
Time frame: Baseline, week 2, week 4, week 8 and week 12
PNH clone size was used as a marker of intravascular and extravascular hemolysis to assess the effect of iptacopan.
Whole blood was used to calculate clone size values.
Time frame: Day 29 and 57
Cmax is the maximum (peak) observed plasma drug concentration after single dose administration (mass x volume-1).
PK parameters were determined, using non-compartmental method(s) with Phoenix WinNonlin (Version 8.3), from the plasma concentration-time data.
Time frame: Days 29 and 57
The AUCtau is the area under the plasma concentration-time curve calculated to the end of a dosing interval (tau) at steady-state (amount x time x volume-1).
AUCtau was estimated by imputing the 12-hour iptacopan plasma concentration as the PK profile's corresponding pre-dose (0-hour) value, that is, by assuming that at steady-state the iptacopan plasma concentration is the same as the beginning (pre-dose) and end (12 hours postdose) of the dosing interval.
PK parameters were determined, using non-compartmental method(s) with Phoenix WinNonlin (Version 8.3), from the plasma concentration-time data.
Time frame: Days 29 and 57
Cmin is the lowest plasma concentration observed during a dosing interval at steady state [mass / volume].
PK parameters were determined, using non-compartmental method(s) with Phoenix WinNonlin (Version 8.3), from the plasma concentration-time data.
Time frame: Days 29 and 57
Tmax is the time to reach maximum (peak) plasma drug concentration after single dose administration (time).
PK parameters were determined, using non-compartmental method(s) with Phoenix WinNonlin (Version 8.3), from the plasma concentration-time data.
Time frame: Baseline, week 2, week 4, week 8 and week 12
Fibrinogen level was used as a marker associated with risk of thrombosis. Plasma was used to calculate fibrinogen levels.
Time frame: Baseline, week 2, week 4, week 8 and week 12
Prothrombin time was used as a marker associated with risk of thrombosis. Plasma was used to calculate prothrombin time.
Time frame: Baseline, week 2, week 4, week 8 and week 12
Activated partial thromboplastin time was used as a marker associated with risk of thrombosis.
Plasma was used to calculate activated partial thromboplastin time.
Time frame: Baseline, week 2, week 4, week 8 and week 12
D-dimer levels were used as a marker associated with risk of thrombosis. Plasma was used to calculate D-dimer levels.
Time frame: Baseline, Week 4, Week 8 and Week 12
thrombin clotting time was used as a marker associated with risk of thrombosis. Plasma was used to calculate thrombin clotting time.
Novartis Pharmaceuticals
Industry
A Multi-center, Randomized, Open-label, Efficacy, Safety, Pharmacokinetics and Pharmacodynamics Study, Assessing Multiple LNP023 Doses in Adult Patients With Paroxysmal Nocturnal Hemoglobinuria and Active Hemolysis
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.
NCT04469465
Anemia, Anemia, Hemolytic
Los Angeles, California, United States
View Trial DetailsNCT04463056
Anemia, Anemia, Hemolytic
Moscow, Russia
View Trial DetailsNCT02588833
Anemia, Anemia, Hemolytic
Hong Kong
View Trial DetailsNCT07416162
Anemia, Anemia, Hemolytic
Jeollanam, South Korea
View Trial Details