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Duration of Response (DoR)
Time frame: From study treatment start date until date of radiographic progression or date of death from any cause, whichever comes first, assessed up to approximately 90 months
Duration of Response (DoR) was defined as the time from the first documented occurrence of response (PR or CR) until the date of the first documented progression based on RECIST v1.1 or death.
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Progression Free Survival (PFS)
Time frame: From study treatment start date until date of radiographic progression or date of death from any cause, whichever comes first, assessed up to approximately 90 months
Progression Free Survival (PFS) was defined as the time from study treatment start date to the date of first radiologically documented progression or death due to any cause. If a patient did not progress or die at the time of the analysis data cut-off or start of new antineoplastic therapy, PFS was censored at the date of the last adequate tumor assessment before the earliest of the cut-off date or the start date of additional anti-neoplastic therapy. Progression was defined using Response Evaluation Criteria In Solid Tumors Criteria RECIST v1.1, as 20% increase in the sum of diameter of all measured target lesions, taking as reference the smallest sum of diameter of all target lesions recorded at or after baseline and/or unequivocal progression of the non-target lesions and/or appearance of a new lesion. In addition to the relative increase of 20%, the sum must demonstrate an absolute increase of at least 5 mm.
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Overall Survival (OS)
Time frame: From study treatment start date until date of of death from any cause, assessed up to approximately 90 months
Overall Survival (OS) was defined as the time to death due to any cause.
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Cmax of Dabrafenib and Derived Metabolites in the Triple Combination (D+T+P)
Time frame: Day 1, Day 15, Week 8, Week 12, Week 16, Week 20
Serial blood samples were collected pre-dose and post-dose on Day 1, Day 15 and pre-dose on Day 21 in the first 28 days of dosing. In the continuation period, blood samples were collected every 4 weeks up to and including Week 20 on study. Maximum observed concentration (Cmax) of Dabrafenib and derived metabolites were listed and summarized using descriptive statistics.
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Cmax of Trametinib in the Triple Combination (D+T+P)
Time frame: Day 1, Day 15, Week 8, Week 12, Week 16, Week 20
Serial blood samples were collected pre-dose and post-dose on Day 1, Day 15 and pre-dose on Day 21 in the first 28 days of dosing. In the continuation period, blood samples were collected every 4 weeks up to and including Week 20 on study. Maximum observed concentration (Cmax) of Trametinib was listed and summarized using descriptive statistics.
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Tmax of Dabrafenib and Derived Metabolites in the Triple Combination (D+T+P)
Time frame: Day 1, Day 15, Week 8, Week 12, Week 16, Week 20
Serial blood samples were collected pre-dose and post-dose on Day 1, Day 15 and pre-dose on Day 21 in the first 28 days of dosing. In the continuation period, blood samples were collected every 4 weeks up to and including Week 20 on study. Time of occurrence of Cmax (tmax) of Dabrafenib and derived metabolites were listed and summarized using descriptive statistics.
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Tmax of Trametinib in the Triple Combination (D+T+P)
Time frame: Day 1, Day 15, Week 8, Week 12, Week 16, Week 20
Serial blood samples were collected pre-dose and post-dose on Day 1, Day 15 and pre-dose on Day 21 in the first 28 days of dosing. In the continuation period, blood samples were collected every 4 weeks up to and including Week 20 on study. Time of occurrence of Cmax (tmax) of Trametinib was listed and summarized using descriptive statistics.
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AUC[0-8] of Dabrafenib and Derived Metabolites in the Triple Combination (D+T+P)
Time frame: Day 1, Day 15, Week 8 (Dabrafenib derived metabolites), Week 12, Week 16, Week 20
Serial blood samples were collected pre-dose and post-dose on Day 1, Day 15 and pre-dose on Day 21 in the first 28 days of dosing. In the continuation period, blood samples were collected every 4 weeks up to and including Week 20 on study. Area under the concentration-time curve from zero (pre-dose) 8 hours (AUC[0-8]) of Dabrafenib and derived metabolites were listed and summarized using descriptive statistics.
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AUC[0-8] of Trametinib in the Triple Combination (D+T+P)
Time frame: Day 1, Day 15, Week 8, Week 12, Week 16, Week 20
Serial blood samples were collected pre-dose and post-dose on Day 1, Day 15 and pre-dose on Day 21 in the first 28 days of dosing. In the continuation period, blood samples were collected every 4 weeks up to and including Week 20 on study. Area under the concentration-time curve from zero (pre-dose) 8 hours (AUC[0-8]) of Trametinib was listed and summarized using descriptive statistics.
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Ctau of Dabrafenib and Derived Metabolites in the Triple Combination (D+T+P)
Time frame: Day 15, Week 8, Week 12, Week 16, Week 20
Serial blood samples were collected pre-dose and post-dose on Day 1, Day 15 and pre-dose on Day 21 in the first 28 days of dosing. In the continuation period, blood samples were collected every 4 weeks up to and including Week 20 on study. Pre-dose (trough) concentration at the end of the dosing interval (Ctau) of Dabrafenib and derived metabolites were listed and summarized using descriptive statistics.
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Ctau of Trametinib in the Triple Combination (D+T+P)
Time frame: Day 15, Week 8, Week 12, Week 16, Week 20
Serial blood samples were collected pre-dose and post-dose on Day 1, Day 15 and pre-dose on Day 21 in the first 28 days of dosing. In the continuation period, blood samples were collected every 4 weeks up to and including Week 20 on study. Pre-dose (trough) concentration at the end of the dosing interval (Ctau) of Trametinib was listed and summarized using descriptive statistics.
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Ctau of Panitumumab in the Triple Combination (D+T+P)
Time frame: Day 15, Week 4, Week 8, Week 12, Week 16, Week 20
Serial blood samples were collected pre-dose and post-dose on Day 1, Day 15 and pre-dose on Day 21 in the first 28 days of dosing. In the continuation period, blood samples were collected every 4 weeks up to and including Week 20 on study. Pre-dose (trough) concentration at the end of the dosing interval (Ctau) of Panitumumab was listed and summarized using descriptive statistics.
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Apparent Base Clearance (CL0/F) and Apparent Maximum Inducible Clearance at Steady State (CLIND,SS/F) of Dabrafenib in the Triple Combination (D+T+P) Estimated With a PopPK Model
Time frame: Day 1, Day 15, Week 8, Week 12, Week 16, Week 20
The population pharmacokinetic (PopPK) model of Dabrafenib can be described using a two-compartment model with a delayed 1st order absorption (Alag1, Ka) and an inducible elimination (CL/F) that consists of a base clearance (constant over time, CL0/F) and a dose- and time-dependent inducible clearance (CLind/F). The PopPK analysis examined the influence of demographics (i.e., weight) on the pharmacokinetics of dabrafenib. The apparent base clearance (CL0/F) and apparent maximum inducible clearance at steady state (CLIND,SS/F) of Dabrafenib estimated with the PopPK model are summarized in this record.
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Effect of Combination With Trametinib on Apparent Maximum Inducible Clearance at Steady State of Dabrafenib in the Triple Combination (D+T+P) Estimated With a PopPK Model
Time frame: Day 1, Day 15, Week 8, Week 12, Week 16, Week 20
The population pharmacokinetic (PopPK) model of Dabrafenib can be described using a two-compartment model with a delayed 1st order absorption (Alag1, Ka) and an inducible elimination (CL/F) that consists of a base clearance (constant over time, CL0/F) and a dose- and time-dependent inducible clearance (CLind/F). The PopPK analysis examined the influence of demographics (i.e., weight) on the pharmacokinetics of dabrafenib. The effect of combination with trametinib on apparent maximum inducible clearance at steady state (CLIND,SS/F) (CLCOMBO) of Dabrafenib estimated with the PopPK model is summarized in this record.
The parameter in question is a covariate that describes the effect of Effect of combination with trametinib on apparent maximum inducible clearance: the number denoting the effect means that the including trametinib will decrease the apparent maximum inducible clearance as opposed to when dabrafenib is administered alone.
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Oral Volume of Distribution (V/F) of Dabrafenib in the Triple Combination (D+T+P) Estimated With a PopPK Model
Time frame: Day 1, Day 15, Week 8, Week 12, Week 16, Week 20
The population pharmacokinetic (PopPK) model of Dabrafenib can be described using a two-compartment model with a delayed 1st order absorption (Alag1, Ka) and an inducible elimination (CL/F) that consists of a base clearance (constant over time, CL0/F) and a dose- and time-dependent inducible clearance (CLind/F). The PopPK analysis examined the influence of demographics (i.e., weight) on the pharmacokinetics of dabrafenib. The oral volume of distribution (V/F) of Dabrafenib of Dabrafenib estimated with the PopPK model is summarized in this record.
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Absorption Rate Constant (Ka) of Dabrafenib in the Triple Combination (D+T+P) Estimated With a PopPK Model
Time frame: Day 1, Day 15, Week 8, Week 12, Week 16, Week 20
The population pharmacokinetic (PopPK) model of Dabrafenib can be described using a two-compartment model with a delayed 1st order absorption (Alag1, Ka) and an inducible elimination (CL/F) that consists of a base clearance (constant over time, CL0/F) and a dose- and time-dependent inducible clearance (CLind/F). The PopPK analysis examined the influence of demographics (i.e., weight) on the pharmacokinetics of dabrafenib. The absorption rate constant (Ka) of Dabrafenib estimated with the PopPK model is summarized in this record.
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Cmax of Trametinib in the Double Combination (T+P)
Time frame: Day 1, Day 15, Week 12, Week 20
Serial blood samples were collected pre-dose and post-dose on Day 1, Day 15 and pre-dose on Day 21 in the first 28 days of dosing. In the continuation period, blood samples were collected every 4 weeks up to and including Week 20 on study. Maximum observed concentration (Cmax) of Trametinib was listed and summarized using descriptive statistics.
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Tmax of Trametinib in the Double Combination (T+P)
Time frame: Day 1, Day 15, Week 12, Week 20
Serial blood samples were collected pre-dose and post-dose on Day 1, Day 15 and pre-dose on Day 21 in the first 28 days of dosing. In the continuation period, blood samples were collected every 4 weeks up to and including Week 20 on study. Time of occurrence of Cmax (tmax) of Trametinib was listed and summarized using descriptive statistics.
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AUC[0-t] of Trametinib in the Double Combination (T+P)
Time frame: Day 1, Day 15, Week 12, Week 20
Serial blood samples will be collected pre-dose and post-dose on Day 1, Day 15 and pre-dose on Day 21 in the first 28 days of dosing. In the continuation period, blood samples will be collected every 4 weeks up to and including Week 20 on study. Area under the concentration-time curve from zero (pre-dose) the time of the last quantifiable concentration (AUC[0-t]) of Trametinib was listed and summarized using descriptive statistics.
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Ctau of Trametinib in the Double Combination (T+P)
Time frame: Day 15, Week 8, Week 12, Week 16, Week 20
Serial blood samples were collected pre-dose and post-dose on Day 1, Day 15 and pre-dose on Day 21 in the first 28 days of dosing. In the continuation period, blood samples were collected every 4 weeks up to and including Week 20 on study. Pre-dose (trough) concentration at the end of the dosing interval (Ctau) of Trametinib was listed and summarized using descriptive statistics.
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Ctau of Panitumumab in the Double Combination (T+P)
Time frame: Day 15, Week 8, Week 12, Week 16, Week 20
Serial blood samples were collected pre-dose and post-dose on Day 1, Day 15 and pre-dose on Day 21 in the first 28 days of dosing. In the continuation period, blood samples were collected every 4 weeks up to and including Week 20 on study. Pre-dose (trough) concentration at the end of the dosing interval (Ctau) of Panitumumab was listed and summarized using descriptive statistics.
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Apparent Base Clearance (CL0/F) and Apparent Maximum Inducible Clearance at Steady State (CLIND,SS/F) of Dabrafenib in the Double Combination (T+P) Estimated With a PopPK Model
Time frame: Day 1, Day 15, Week 8, Week 12, Week 16, Week 20
The population pharmacokinetic (PopPK) model of Dabrafenib can be described using a two-compartment model with a delayed 1st order absorption (Alag1, Ka) and an inducible elimination (CL/F) that consists of a base clearance (constant over time, CL0/F) and a dose- and time-dependent inducible clearance (CLind/F). The PopPK analysis examined the influence of demographics (i.e., weight) on the pharmacokinetics of dabrafenib. The apparent base clearance (CL0/F) and apparent maximum inducible clearance at steady state (CLIND,SS/F) dabrafenib estimated with the PopPK model are summarized in this record.
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Oral Volume of Distribution (V/F) of Dabrafenib in the Double Combination (T+P) Estimated With a PopPK Model
Time frame: Day 1, Day 15, Week 8, Week 12, Week 16, Week 20
The population pharmacokinetic (PopPK) model of Dabrafenib can be described using a two-compartment model with a delayed 1st order absorption (Alag1, Ka) and an inducible elimination (CL/F) that consists of a base clearance (constant over time, CL0/F) and a dose- and time-dependent inducible clearance (CLind/F). The PopPK analysis examined the influence of demographics (i.e., weight) on the pharmacokinetics of dabrafenib. The oral volume of distribution (V/F) of Dabrafenib estimated with the PopPK model is summarized in this record.
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Absorption Rate Constant (Ka) of Dabrafenib in the Double Combination (T+P) Estimated With a PopPK Model
Time frame: Day 1, Day 15, Week 8, Week 12, Week 16, Week 20
The population pharmacokinetic (PopPK) model of Dabrafenib can be described using a two-compartment model with a delayed 1st order absorption (Alag1, Ka) and an inducible elimination (CL/F) that consists of a base clearance (constant over time, CL0/F) and a dose- and time-dependent inducible clearance (CLind/F). The PopPK analysis examined the influence of demographics (i.e., weight) on the pharmacokinetics of dabrafenib. The absorption rate constant (Ka) of Dabrafenib estimated with the PopPK model is summarized in this record.
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Apparent Clearance (CL/F) of Trametinib in the Double Combination (T+P) Estimated With a PopPK Model
Time frame: Day 1, Day 15, Week 8, Week 12, Week 16, Week 20
The population pharmacokinetic (PopPK) model of Trametinib can be described using a two-compartment model with dual sequential 1st order absorption (Ka1, Ka2) and 1st order elimination (CL/F). The PopPK analysis examined the influence of demographics (i.e., weight) on the pharmacokinetics of trametinib. The apparent clearance (CL/F) of Trametinib estimated with the PopPK model is summarized in this record.
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Apparent Central Volume (V/F) of Trametinib in the Double Combination (T+P) Estimated With a PopPK Model
Time frame: Day 1, Day 15, Week 8, Week 12, Week 16, Week 20
The population pharmacokinetic (PopPK) model of Trametinib can be described using a two-compartment model with dual sequential 1st order absorption (Ka1, Ka2) and 1st order elimination (CL/F). The PopPK analysis examined the influence of demographics (i.e., weight) on the pharmacokinetics of trametinib. The apparent central volume (V/F) of Trametinib estimated with the PopPK model is summarized in this record.
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Absorption Rate Constant 1 (Ka1) and Absorption Rate Constant 2 (Ka2) of Trametinib in the Double Combination (T+P) Estimated With a PopPK Model
Time frame: Day 1, Day 15, Week 8, Week 12, Week 16, Week 20
The population pharmacokinetic (PopPK) model of Trametinib can be described using a two-compartment model with dual sequential 1st order absorption (Ka1, Ka2) and 1st order elimination (CL/F). The PopPK analysis examined the influence of demographics (i.e., weight) on the pharmacokinetics of trametinib. The absorption rate constant 1 (Ka1) and absorption rate constant 2 (Ka2) of Trametinib estimated with the PopPK model are summarized in this record.
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Time When Ka1 Transitions to Ka2 of Trametinib in the Double Combination (T+P) Estimated With a PopPK Model
Time frame: Day 1, Day 15, Week 8, Week 12, Week 16, Week 20
The population pharmacokinetic (PopPK) model of Trametinib can be described using a two-compartment model with dual sequential 1st order absorption (Ka1, Ka2) and 1st order elimination (CL/F). The PopPK analysis examined the influence of demographics (i.e., weight) on the pharmacokinetics of trametinib. The time when Ka1 transitions to Ka2 of Trametinib estimated with the PopPK model is summarized in this record.
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Change in Levels of Proteins/Ribonucleic Acid (RNA)
Time frame: Baseline, Day 15
H-score or "Histo-score" measures cell membrane immunohistochemistry staining intensity in a fixed field. Membrane staining is categorized as 1+, 2+, or 3+. Minimum score is 0, maximum score is 300 (no subscale values are reported). H-score values themselves are not considered to be better or worse - measurements for levels of proteins/ribonucleic acid (RNA) are surrogate for MAPK pathway activity. Low values = low pathway activity. High values = high pathway activity. Changes in mean phosphorylated-ERK (pERK) and phosphorylated ribosomal protein S6 (pS6) H-score from baseline indicate changes in MAPK pathway activity that may be associated with treatment arms. A positive change from baseline suggests increased pathway activity. A negative change from baseline suggests decreased pathway activity. Total score is calculated as follows: [1 x (% cells 1+) + 2 x (% cells 2+) + 3 x (% cells 3+)].
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Part 3: Overall Response Rate (ORR)
Time frame: From study treatment start date until date of radiographic progression or date of death from any cause, whichever comes first, assessed up to approximately 90 months
Overall Response Rate (ORR) was defined as the proportion of participants with Best Overall Response (BOR) of Complete Response (CR) or Partial Response (PR) using RECIST 1.1
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Part 3: Duration of Response (DoR)
Time frame: From study treatment start date until date of radiographic progression or date of death from any cause, whichever comes first, assessed up to approximately 90 months
Duration of Response (DoR) was defined as the time from the first documented occurrence of response (PR or CR) until the date of the first documented progression based on RECIST v1.1 or death.
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Part 3: Overall Survival (OS)
Time frame: From study treatment start date until date of of death from any cause, assessed up to approximately 90 months
Overall Survival (OS) was defined as the time to death due to any cause.
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Part 3: Number of Participants With Treatment Emergent Adverse Events
Time frame: From study treatment start date till 30 days safety follow-up, assessed up to approximately 90 months
The distribution of adverse events (AE) will be done via the analysis of frequencies for treatment emergent Adverse Event (TEAEs), Serious Adverse Event (TESAEs) and Deaths due to AEs, through the monitoring of relevant clinical and laboratory safety parameters.