GSK Investigational Site
Austin, Texas, 78744, United States
NCT Number: NCT03441984
This is a 2-part, single-dose, open label, randomized 3-way cross-over study to compare BA of pediatric study drugs TRIUMEQ and (DTG/3TC) in healthy volunteers under fasted conditions. Study will be conducted in 2-parts. Each part 1 and part 2 will comprise of 3-treatment periods (TP) where Part 1, will assess BA, of pediatric TRIUMEQ dispersible tablets with an adult TRIUMEQ conventional tablet formulation and Part 2, will assess BA, of pediatric DTG/3TC dispersible tablets with adult DTG and 3TC conventional tablets formulation. Total duration of study is 9-weeks and will be conducted in approximately 36 subjects. The 2-parts, may be run in parallel as they are independent of each other. TRIUMEQ is a registered trademark of GlaxoSmithKline group of companies.
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Notify Me18 year–65 year
All sexes
Interventional
Phase 1
Austin, Texas, 78744, United States
Healthy volunteers accepted: Yes
Only the study team can determine whether someone qualifies for participation.
Inclusion criteria
Exclusion criteria
TRIUMEQ (Adult) administered as a, single dose, fixed dose combination (FDC) tablet - DTG 50 mg/ABC 600 mg/3TC 300 mg as 1 conventional tablet, orally as direct-to-mouth.
TRIUMEQ (Pediatric) administered as a, single dose, FDC tablet - DTG 5 mg/ABC 60 mg/ 3TC 30 mg, orally as 10 dispersible tablets
TRIUMEQ (Pediatric) administered as a, single dose, FDC tablet - DTG 5 mg/ABC 60 mg/3TC 30 mg, orally as direct-to-mouth.
DTG and 3TC (Adult), administered as a, single dose, Single dose, 1 tablet DTG (50 mg) and
1 tablet 3TC (300 mg), orally as direct-to-mouth.
DTG and 3TC (Pediatric) administered as a, single dose, FDC tablet single dose, FDC tablet - DTG 5 mg/3TC 30 mg, orally as 10 dispersible tablets.
DTG and 3TC (Pediatric) administered as a, single dose, FDC tablet single dose, FDC tablet - DTG 5 mg/3TC 30 mg, orally as direct-to-mouth.
Time frame: Pre-dose, 15 and 30 minutes, 1 , 1.5 , 2 , 2.5 , 3 , 4 , 5 , 6 , 8 , 12 , 16 , 24 , 48 and 72 hours post-dose of each treatment period
Blood samples were collected from participants at indicated time points after the administration of study treatment to investigate pharmacokinetic (PK) parameters of DTG in Part 1. Pharmacokinetic analysis was conducted using standard non-compartmental methods. PK population comprised of participants in the all participants population (participants who took at least 1 dose of study medication) for whom PK sample was obtained and who had evaluable PK assay results. Statistics has been presented on geometric least square (LS) means.
Time frame: Pre-dose,15 and 30 minutes,1 ,1.5 ,2 ,2.5 ,3 ,4 ,5 ,6 ,8 ,12 ,16 ,24 ,48 and 72 hours post-dose of each treatment period
Blood samples were collected from participants at indicated time points after the administration of study treatment to investigate PK parameters of DTG in Part 1. Pharmacokinetic analysis was conducted using standard non-compartmental methods. Statistics has been presented on geometric LS means.
Time frame: Pre-dose, 15 and 30 minutes, 1 , 1.5 , 2 , 2.5 , 3 , 4 , 5 , 6 , 8 , 12 , 16 , 24 , 48 and 72 hours post-dose of each treatment period
Blood samples were collected from participants at indicated time points after the administration of study treatment to investigate PK parameters of DTG in Part 1. PK analysis was conducted using standard non-compartmental methods. Statistics has been presented on geometric LS means.
Time frame: Pre-dose, 15 and 30 minutes, 1 , 1.5 , 2 , 2.5 , 3 , 4 , 5 , 6 , 8 , 12 , 16 , 24 , 48 and 72 hours post-dose of each treatment period
Blood samples were collected from participants at indicated time points after the administration of study treatment to investigate PK parameters of ABC in Part 1. Pharmacokinetic analysis was conducted using standard non-compartmental methods. Statistics has been presented on geometric LS means.
Time frame: Pre-dose, 15 and 30 minutes, 1 , 1.5 , 2 , 2.5 , 3 , 4 , 5 , 6 , 8 , 12 , 16 , 24 , 48 and 72 hours post-dose of each treatment period
Blood samples were collected from participants at indicated time points after the administration of study treatment to investigate PK parameters of ABC in Part 1. PK analysis was conducted using standard non-compartmental methods. Statistics has been presented on geometric LS means.
Time frame: Pre-dose, 15 and 30 minutes, 1 , 1.5 , 2 , 2.5 , 3 , 4 , 5 , 6 , 8 , 12 , 16 , 24 , 48 and 72 hours post-dose of each treatment period
Blood samples were collected from participants at indicated time points after the administration of study treatment to investigate PK parameters of ABC in Part 1. Pharmacokinetic analysis was conducted using standard non-compartmental methods. Statistics has been presented on geometric LS means.
Time frame: Pre-dose, 15 and 30 minutes, 1 , 1.5 , 2 , 2.5 , 3 , 4 , 5 , 6 , 8 , 12 , 16 , 24 , 48 and 72 hours post-dose of each treatment period
Blood samples were collected from participants at indicated time points after the administration of study treatment to investigate PK parameters of 3TC in Part 1. Pharmacokinetic analysis was conducted using standard non-compartmental methods. Statistics has been presented on geometric LS means.
Time frame: Pre-dose, 15 and 30 minutes, 1 , 1.5 , 2 , 2.5 , 3 , 4 , 5 , 6 , 8 , 12 , 16 , 24 , 48 and 72 hours post-dose of each treatment period
Blood samples were collected from participants at indicated time points after the administration of study treatment to investigate PK parameters of 3TC in Part 1. Pharmacokinetic analysis was conducted using standard non-compartmental methods. Statistics has been presented on geometric LS means.
Time frame: Pre-dose, 15 and 30 minutes, 1 , 1.5 , 2 , 2.5 , 3 , 4 , 5 , 6 , 8 , 12 , 16 , 24 , 48 and 72 hours post-dose of each treatment period
Blood samples were collected from participants at indicated time points after the administration of study treatment to investigate PK parameters of 3TC in Part 1. Pharmacokinetic analysis was conducted using standard non-compartmental methods. Statistics has been presented on geometric LS means
Time frame: Pre-dose, 15 and 30 minutes, 1 , 1.5 , 2 , 2.5 , 3 , 4 , 5 , 6 , 8 , 12 , 16 , 24 , 48 and 72 hours post-dose of each treatment period
Blood samples were collected from participants at indicated time points after the administration of study treatment to investigate PK parameters of DTG in Part 2. PK analysis was conducted using standard non-compartmental methods. Statistics has been presented on geometric LS means.
Time frame: Pre-dose, 15 and 30 minutes, 1 , 1.5 , 2 , 2.5 , 3 , 4 , 5 , 6 , 8 , 12 , 16 , 24 , 48 and 72 hours post-dose of each treatment period
Blood samples were collected from participants at indicated time points after the administration of study treatment to investigate PK parameters of DTG in Part 2. PK analysis was conducted using standard non-compartmental methods. Statistics has been presented on geometric LS means.
Time frame: Pre-dose, 15 and 30 minutes, 1 , 1.5 , 2 , 2.5 , 3 , 4 , 5 , 6 , 8 , 12 , 16 , 24 , 48 and 72 hours post-dose of each treatment period
Blood samples were collected from participants at indicated time points after the administration of study treatment to investigate PK parameters of DTG in Part 1. PK analysis was conducted using standard non-compartmental methods. Statistics has been presented on geometric LS means.
Time frame: Pre-dose, 15 and 30 minutes, 1 , 1.5 , 2 , 2.5 , 3 , 4 , 5 , 6 , 8 , 12 , 16 , 24 , 48 and 72 hours post-dose of each treatment period
Blood samples were collected from participants at indicated time points after the administration of study treatment to investigate PK parameters of 3TC in Part 2. Pharmacokinetic analysis was conducted using standard non-compartmental methods. Statistics has been presented on geometric LS means.
Time frame: Pre-dose, 15 and 30 minutes, 1 , 1.5 , 2 , 2.5 , 3 , 4 , 5 , 6 , 8 , 12 , 16 , 24 , 48 and 72 hours post-dose of each treatment period
Blood samples were collected from participants at indicated time points after the administration of study treatment to investigate PK parameters of 3TC in Part 2. Pharmacokinetic analysis was conducted using standard non-compartmental methods. Statistics has been presented on geometric LS means.
Time frame: Pre-dose, 15 and 30 minutes, 1 , 1.5 , 2 , 2.5 , 3 , 4 , 5 , 6 , 8 , 12 , 16 , 24 , 48 and 72 hours post-dose of each treatment period
Blood samples were collected from participants at indicated time points after the administration of study treatment to investigate PK parameters of 3TC in Part 1. Pharmacokinetic analysis was conducted using standard non-compartmental methods. Statistics has been presented on geometric LS means.
Time frame: Pre-dose, 15 and 30 minutes, 1 , 1.5 , 2 , 2.5 , 3 , 4 , 5 , 6 , 8 , 12 , 16 and 24 hours post-dose of each treatment period
Blood samples were collected from participants at indicated time points after the administration of study treatment to investigate PK parameters of DTG in Part 1. Pharmacokinetic analysis was conducted using standard non-compartmental methods.
Time frame: Pre-dose, 15 and 30 minutes, 1 , 1.5 , 2 , 2.5 , 3 , 4 , 5 , 6 , 8 , 12 , 16 , 24 , 48 and 72 hours post-dose of each treatment period
Blood samples were collected from participants at indicated time points after the administration of study treatment to investigate PK parameters of DTG in Part 1. Pharmacokinetic analysis was conducted using standard non-compartmental methods.
Time frame: Pre-dose, 15 and 30 minutes, 1 , 1.5 , 2 , 2.5 , 3 , 4 , 5 , 6 , 8 , 12 , 16 , 24 , 48 and 72 hours post-dose of each treatment period
Blood samples were collected from participants at indicated time points after the administration of study treatment to investigate PK parameters of DTG in Part 1. Pharmacokinetic analysis was conducted using standard non-compartmental methods.
Time frame: Pre-dose, 15 and 30 minutes, 1 , 1.5 , 2 , 2.5 , 3 , 4 , 5 , 6 , 8 , 12 , 16 , 24 , 48 and 72 hours post-dose of each treatment period
Blood samples were collected from participants at indicated time points after the administration of study treatment to investigate PK parameters of DTG in Part 1. Pharmacokinetic analysis was conducted using standard non-compartmental methods.
Time frame: Pre-dose, 15 and 30 minutes, 1 , 1.5 , 2 , 2.5 , 3 , 4 , 5 , 6 , 8 , 12 , 16 , 24 , 48 and 72 hours post-dose of each treatment period
Blood samples were collected from participants at indicated time points after the administration of study treatment to investigate PK parameters of DTG in Part 1. Pharmacokinetic analysis was conducted using standard non-compartmental methods.
Time frame: Pre-dose, 15 and 30 minutes, 1 , 1.5 , 2 , 2.5 , 3 , 4 , 5 , 6 , 8 , 12 , 16 and 24 hours post-dose of each treatment period
Blood samples were collected from participants at indicated time points after the administration of study treatment to investigate PK parameters of DTG in Part 1. Pharmacokinetic analysis was conducted using standard non-compartmental methods. Statistics has been presented on geometric LS means.
Time frame: Pre-dose, 15 and 30 minutes, 1 , 1.5 , 2 , 2.5 , 3 , 4 , 5 , 6 , 8 , 12 , 16 , 24 , 48 and 72 hours post-dose of each treatment period
Blood samples were collected from participants at indicated time points after the administration of study treatment to investigate PK parameters of DTG in Part 1. Pharmacokinetic analysis was conducted using standard non-compartmental methods.
Time frame: Pre-dose, 15 and 30 minutes, 1 , 1.5 , 2 , 2.5 , 3 , 4 , 5 , 6 , 8 , 12 , 16 , 24 , 48 and 72 hours post-dose of each treatment period
Blood samples were collected from participants at indicated time points after the administration of study treatment to investigate PK parameters of DTG in Part 1. Pharmacokinetic analysis was conducted using standard non-compartmental methods.
Time frame: Pre-dose, 15 and 30 minutes, 1 , 1.5 , 2 , 2.5 , 3 , 4 , 5 , 6 , 8 , 12 , 16 , 24 , 48 and 72 hours post-dose of each treatment period
Blood samples were collected from participants at indicated time points after the administration of study treatment to investigate PK parameters of DTG in Part 1. Pharmacokinetic analysis was conducted using standard non-compartmental methods.
Time frame: Pre-dose, 15 and 30 minutes, 1 , 1.5 , 2 , 2.5 , 3 , 4 , 5 , 6 , 8 , 12 , 16 and 24 hours post-dose of each treatment period
Blood samples were collected from participants at indicated time points after the administration of study treatment to investigate PK parameters of ABC in Part 1. Pharmacokinetic analysis was conducted using standard non-compartmental methods.
Time frame: Pre-dose, 15 and 30 minutes, 1 , 1.5 , 2 , 2.5 , 3 , 4 , 5 , 6 , 8 , 12 , 16 , 24 , 48 and 72 hours post-dose of each treatment period
Blood samples were collected from participants at indicated time points after the administration of study treatment to investigate PK parameters of ABC in Part 1. Pharmacokinetic analysis was conducted using standard non-compartmental methods.
Time frame: Pre-dose, 15 and 30 minutes, 1 , 1.5 , 2 , 2.5 , 3 , 4 , 5 , 6 , 8 , 12 , 16 , 24 , 48 and 72 hours post-dose of each treatment period
Blood samples were collected from participants at indicated time points after the administration of study treatment to investigate PK parameters of ABC in Part 1. Pharmacokinetic analysis was conducted using standard non-compartmental methods.
Time frame: Pre-dose, 15 and 30 minutes, 1 , 1.5 , 2 , 2.5 , 3 , 4 , 5 , 6 , 8 , 12 , 16 , 24 , 48 and 72 hours post-dose of each treatment period
Blood samples were collected from participants at indicated time points after the administration of study treatment to investigate PK parameters of ABC in Part 1. Pharmacokinetic analysis was conducted using standard non-compartmental methods.
Time frame: Pre-dose, 15 and 30 minutes, 1 , 1.5 , 2 , 2.5 , 3 , 4 , 5 , 6 , 8 , 12 , 16 , 24 , 48 and 72 hours post-dose of each treatment period
Blood samples were collected from participants at indicated time points after the administration of study treatment to investigate PK parameters of ABC in Part 1. Pharmacokinetic analysis was conducted using standard non-compartmental methods.
Time frame: Pre-dose, 15 and 30 minutes, 1 , 1.5 , 2 , 2.5 , 3 , 4 , 5 , 6 , 8 , 12 , 16 and 24 hours post-dose of each treatment period
Blood samples were collected from participants at indicated time points after the administration of study treatment to investigate PK parameters of ABC in Part 1. Pharmacokinetic analysis was conducted using standard non-compartmental methods. Statistics has been presented on geometric LS means.
Time frame: Pre-dose, 15 and 30 minutes, 1 , 1.5 , 2 , 2.5 , 3 , 4 , 5 , 6 , 8 , 12 , 16 , 24 , 48 and 72 hours post-dose of each treatment period
Blood samples were collected from participants at indicated time points after the administration of study treatment to investigate PK parameters of ABC in Part 1. Pharmacokinetic analysis was conducted using standard non-compartmental methods.
Time frame: Pre-dose, 15 and 30 minutes, 1 , 1.5 , 2 , 2.5 , 3 , 4 , 5 , 6 , 8 , 12 , 16 , 24 , 48 and 72 hours post-dose of each treatment period
Blood samples were collected from participants at indicated time points after the administration of study treatment to investigate PK parameters of ABC in Part 1. Pharmacokinetic analysis was conducted using standard non-compartmental methods.
Time frame: Pre-dose, 15 and 30 minutes, 1 , 1.5 , 2 , 2.5 , 3 , 4 , 5 , 6 , 8 , 12 , 16 and 24 hours post-dose of each treatment period
Blood samples were collected from participants at indicated time points after the administration of study treatment to investigate PK parameters of 3TC in Part 1. Pharmacokinetic analysis was conducted using standard non-compartmental methods.
Time frame: Pre-dose, 15 and 30 minutes, 1 , 1.5 , 2 , 2.5 , 3 , 4 , 5 , 6 , 8 , 12 , 16 , 24 , 48 and 72 hours post-dose of each treatment period
Blood samples were collected from participants at indicated time points after the administration of study treatment to investigate PK parameters of 3TC in Part 1. Pharmacokinetic analysis was conducted using standard non-compartmental methods.
Time frame: Pre-dose, 15 and 30 minutes, 1 , 1.5 , 2 , 2.5 , 3 , 4 , 5 , 6 , 8 , 12 , 16 , 24 , 48 and 72 hours post-dose of each treatment period
Blood samples were collected from participants at indicated time points after the administration of study treatment to investigate PK parameters of 3TC in Part 1. Pharmacokinetic analysis was conducted using standard non-compartmental methods.
Time frame: Pre-dose, 15 and 30 minutes, 1 , 1.5 , 2 , 2.5 , 3 , 4 , 5 , 6 , 8 , 12 , 16 , 24 , 48 and 72 hours post-dose of each treatment period
Blood samples were collected from participants at indicated time points after the administration of study treatment to investigate PK parameters of 3TC in Part 1. Pharmacokinetic analysis was conducted using standard non-compartmental methods.
Time frame: Pre-dose, 15 and 30 minutes, 1 , 1.5 , 2 , 2.5 , 3 , 4 , 5 , 6 , 8 , 12 , 16 , 24 , 48 and 72 hours post-dose of each treatment period
Blood samples were collected from participants at indicated time points after the administration of study treatment to investigate PK parameters of 3TC in Part 1. Pharmacokinetic analysis was conducted using standard non-compartmental methods.
Time frame: Pre-dose, 15 and 30 minutes, 1 , 1.5 , 2 , 2.5 , 3 , 4 , 5 , 6 , 8 , 12 , 16 and 24 hours post-dose of each treatment period
Blood samples were collected from participants at indicated time points after the administration of study treatment to investigate PK parameters of 3TC in Part 1. Pharmacokinetic analysis was conducted using standard non-compartmental methods. Statistics has been presented on geometric LS means.
Time frame: Pre-dose, 15 and 30 minutes, 1 , 1.5 , 2 , 2.5 , 3 , 4 , 5 , 6 , 8 , 12 , 16 , 24 , 48 and 72 hours post-dose of each treatment period
Blood samples were collected from participants at indicated time points after the administration of study treatment to investigate PK parameters of 3TC in Part 1. Pharmacokinetic analysis was conducted using standard non-compartmental methods.
Time frame: Pre-dose, 15 and 30 minutes, 1 , 1.5 , 2 , 2.5 , 3 , 4 , 5 , 6 , 8 , 12 , 16 , 24 , 48 and 72 hours post-dose of each treatment period
Blood samples were collected from participants at indicated time points after the administration of study treatment to investigate PK parameters of 3TC in Part 1. Pharmacokinetic analysis was conducted using standard non-compartmental methods.
Time frame: Pre-dose, 15 and 30 minutes, 1 , 1.5 , 2 , 2.5 , 3 , 4 , 5 , 6 , 8 , 12 , 16 and 24 hours post-dose of each treatment period
Blood samples were collected from participants at indicated time points after the administration of study treatment to investigate PK parameters of DTG in Part 2. Pharmacokinetic analysis was conducted using standard non-compartmental methods.
Time frame: Pre-dose, 15 and 30 minutes, 1 , 1.5 , 2 , 2.5 , 3 , 4 , 5 , 6 , 8 , 12 , 16 , 24 , 48 and 72 hours post-dose of each treatment period
Blood samples were collected from participants at indicated time points after the administration of study treatment to investigate PK parameters of DTG in Part 2. Pharmacokinetic analysis was conducted using standard non-compartmental methods.
Time frame: Pre-dose, 15 and 30 minutes, 1 , 1.5 , 2 , 2.5 , 3 , 4 , 5 , 6 , 8 , 12 , 16 , 24 , 48 and 72 hours post-dose of each treatment period
Blood samples were collected from participants at indicated time points after the administration of study treatment to investigate PK parameters of DTG in Part 2. Pharmacokinetic analysis was conducted using standard non-compartmental methods.
Time frame: Pre-dose, 15 and 30 minutes, 1 , 1.5 , 2 , 2.5 , 3 , 4 , 5 , 6 , 8 , 12 , 16 , 24 , 48 and 72 hours post-dose of each treatment period
Blood samples were collected from participants at indicated time points after the administration of study treatment to investigate PK parameters of DTG in Part 2. Pharmacokinetic analysis was conducted using standard non-compartmental methods.
Time frame: Pre-dose, 15 and 30 minutes, 1 , 1.5 , 2 , 2.5 , 3 , 4 , 5 , 6 , 8 , 12 , 16 , 24 , 48 and 72 hours post-dose of each treatment period
Blood samples were collected from participants at indicated time points after the administration of study treatment to investigate PK parameters of DTG in Part 2. Pharmacokinetic analysis was conducted using standard non-compartmental methods.
Time frame: Pre-dose, 15 and 30 minutes, 1 , 1.5 , 2 , 2.5 , 3 , 4 , 5 , 6 , 8 , 12 , 16 and 24 hours post-dose of each treatment period
Blood samples were collected from participants at indicated time points after the administration of study treatment to investigate PK parameters of DTG in Part 2. Pharmacokinetic analysis was conducted using standard non-compartmental methods. Statistics has been presented on geometric LS means.
Time frame: Pre-dose, 15 and 30 minutes, 1 , 1.5 , 2 , 2.5 , 3 , 4 , 5 , 6 , 8 , 12 , 16 , 24 , 48 and 72 hours post-dose of each treatment period
Blood samples were collected from participants at indicated time points after the administration of study treatment to investigate PK parameters of DTG in Part 2. Pharmacokinetic analysis was conducted using standard non-compartmental methods.
Time frame: Pre-dose, 15 and 30 minutes, 1 , 1.5 , 2 , 2.5 , 3 , 4 , 5 , 6 , 8 , 12 , 16 , 24 , 48 and 72 hours post-dose of each treatment period
Blood samples were collected from participants at indicated time points after the administration of study treatment to investigate PK parameters of DTG in Part 2. Pharmacokinetic analysis was conducted using standard non-compartmental methods.
Time frame: Pre-dose, 15 and 30 minutes, 1 , 1.5 , 2 , 2.5 , 3 , 4 , 5 , 6 , 8 , 12 , 16 , 24 , 48 and 72 hours post-dose of each treatment period
Blood samples were collected from participants at indicated time points after the administration of study treatment to investigate PK parameters of DTG in Part 2. Pharmacokinetic analysis was conducted using standard non-compartmental methods.
Time frame: Pre-dose, 15 and 30 minutes, 1 , 1.5 , 2 , 2.5 , 3 , 4 , 5 , 6 , 8 , 12 , 16 and 24 hours post-dose of each treatment period
Blood samples were collected from participants at indicated time points after the administration of study treatment to investigate PK parameters of 3TC in Part 2. Pharmacokinetic analysis was conducted using standard non-compartmental methods.
Time frame: Pre-dose, 15 and 30 minutes, 1 , 1.5 , 2 , 2.5 , 3 , 4 , 5 , 6 , 8 , 12 , 16 , 24 , 48 and 72 hours post-dose of each treatment period
Blood samples were collected from participants at indicated time points after the administration of study treatment to investigate PK parameters of 3TC in Part 2. Pharmacokinetic analysis was conducted using standard non-compartmental methods.
Time frame: Pre-dose, 15 and 30 minutes, 1 , 1.5 , 2 , 2.5 , 3 , 4 , 5 , 6 , 8 , 12 , 16 , 24 , 48 and 72 hours post-dose of each treatment period
Blood samples were collected from participants at indicated time points after the administration of study treatment to investigate PK parameters of 3TC in Part 2. Pharmacokinetic analysis was conducted using standard non-compartmental methods.
Time frame: Pre-dose, 15 and 30 minutes, 1 , 1.5 , 2 , 2.5 , 3 , 4 , 5 , 6 , 8 , 12 , 16 , 24 , 48 and 72 hours post-dose of each treatment period
Blood samples were collected from participants at indicated time points after the administration of study treatment to investigate PK parameters of 3TC in Part 2. Pharmacokinetic analysis was conducted using standard non-compartmental methods.
Time frame: Pre-dose, 15 and 30 minutes, 1 , 1.5 , 2 , 2.5 , 3 , 4 , 5 , 6 , 8 , 12 , 16 , 24 , 48 and 72 hours post-dose of each treatment period
Blood samples were collected from participants at indicated time points after the administration of study treatment to investigate PK parameters of 3TC in Part 2. Pharmacokinetic analysis was conducted using standard non-compartmental methods.
Time frame: Pre-dose, 15 and 30 minutes, 1 , 1.5 , 2 , 2.5 , 3 , 4 , 5 , 6 , 8 , 12 , 16 and 24 hours post-dose of each treatment period
Blood samples were collected from participants at indicated time points after the administration of study treatment to investigate PK parameters of 3TC in Part 2. Pharmacokinetic analysis was conducted using standard non-compartmental methods. Statistics has been presented on geometric LS means.
Time frame: Pre-dose, 15 and 30 minutes, 1 , 1.5 , 2 , 2.5 , 3 , 4 , 5 , 6 , 8 , 12 , 16 , 24 , 48 and 72 hours post-dose of each treatment period
Blood samples were collected from participants at indicated time points after the administration of study treatment to investigate PK parameters of 3TC in Part 2. Pharmacokinetic analysis was conducted using standard non-compartmental methods.
Time frame: Pre-dose, 15 and 30 minutes, 1 , 1.5 , 2 , 2.5 , 3 , 4 , 5 , 6 , 8 , 12 , 16 , 24 , 48 and 72 hours post-dose of each treatment period
Blood samples were collected from participants at indicated time points after the administration of study treatment to investigate PK parameters of 3TC in Part 2. Pharmacokinetic analysis was conducted using standard non-compartmental methods.
Time frame: Up to Day 33
An AE is any untoward medical occurrence in a clinical study participant, temporally associated with the use of a study treatment, whether or not considered related to the study treatment. A SAE is defined as any untoward medical occurrence that, at any dose results in death, is life-threatening, requires inpatient hospitalization or prolongation of existing hospitalization, results in persistent disability/incapacity, is a congenital anomaly/birth defect, associated with liver injury and impaired liver function or any other situations as per medical or scientific judgement. Safety population comprised of all participants enrolled in the study, who took at least one dose of study treatment.
Time frame: Up to Day 33
An AE is any untoward medical occurrence in a clinical study participant, temporally associated with the use of a study treatment, whether or not considered related to the study treatment. A SAE is defined as any untoward medical occurrence that, at any dose results in death, is life-threatening, requires inpatient hospitalization or prolongation of existing hospitalization, results in persistent disability/incapacity, is a congenital anomaly/birth defect, associated with liver injury and impaired liver function or any other situations as per medical or scientific judgement.
Time frame: Day 2 of each treatment period
Blood samples were collected for the analysis of clinical chemistry parameters which included glucose, calcium, potassium, sodium and urea. All participants population included all participants who received at least one dose of study medication. This population corresponded to all participants enrolled.
Time frame: Day 2 of each treatment period
Blood samples were collected for the analysis of clinical chemistry parameters including ALT, ALP, AST and CPK.
Time frame: Day 2 of each treatment period
Blood samples were collected for the analysis of clinical chemistry parameters including albumin and protein.
Time frame: Day 2 of each treatment period
Blood samples were collected for the analysis of clinical chemistry parameters including bilirubin, creatinine and direct bilirubin.
Time frame: Day 2 of each treatment period
Blood samples were collected for the analysis of clinical chemistry parameters including glucose, calcium, potassium, sodium and urea.
Time frame: Day 2 of each treatment period
Blood samples were collected for the analysis of clinical chemistry parameters including ALT, ALP, AST and CPK.
Time frame: Day 2 of each treatment period
Blood samples were collected for the analysis of clinical chemistry parameters including albumin and protein.
Time frame: Day 2 of each treatment period
Blood samples were collected for the analysis of clinical chemistry parameters including bilirubin, creatinine and direct bilirubin.
Time frame: Baseline (Day -1) and Day 2
Blood samples were collected for the analysis of clinical chemistry parameters including glucose, calcium, potassium, sodium and urea. Day -1 was defined as Baseline for clinical chemistry parameters. Change from Baseline value is calculated as the value at the post-dose visit minus the Baseline value.
Time frame: Baseline (Day -1) and Day 2
Blood samples were collected for the analysis of clinical chemistry parameters including ALT, ALP, AST and CPK. Day -1 was defined as Baseline for clinical chemistry parameters. Change from Baseline value is calculated as the value at the post-dose visit minus the Baseline value.
Time frame: Baseline (Day -1) and Day 2
Blood samples were collected for the analysis of clinical chemistry parameters including albumin and protein. Day -1 was defined as Baseline for clinical chemistry parameters. Change from Baseline value is calculated as the value at the post-dose visit minus the Baseline value.
Time frame: Baseline (Day -1) and Day 2
Blood samples were collected for the analysis of clinical chemistry parameters including bilirubin, creatinine and direct bilirubin. Day -1 was defined as Baseline for clinical chemistry parameters. Change from Baseline value is calculated as the value at the post-dose visit minus the Baseline value.
Time frame: Baseline (Day -1) and Day 2
Blood samples were collected for the analysis of clinical chemistry parameters including glucose, calcium, potassium, sodium and urea. Day -1 was defined as Baseline for clinical chemistry parameters. Change from Baseline value is calculated as the value at the post-dose visit minus the Baseline value.
Time frame: Baseline (Day -1) and Day 2
Blood samples were collected for the analysis of clinical chemistry parameters including ALT, ALP, AST and CPK. Day -1 was defined as Baseline for clinical chemistry parameters. Change from Baseline value is calculated as the value at the post-dose visit minus the Baseline value.
Time frame: Baseline (Day -1) and Day 2
Blood samples were collected for the analysis of clinical chemistry parameters including albumin and protein. Day -1 was defined as Baseline for clinical chemistry parameters. Change from Baseline value is calculated as the value at the post-dose visit minus the Baseline value.
Time frame: Baseline (Day -1) and Day 2
Blood samples were collected for the analysis of clinical chemistry parameters including bilirubin, creatinine and direct bilirubin. Day -1 was defined as Baseline for clinical chemistry parameters. Change from Baseline value is calculated as the value at the post-dose visit minus the Baseline value.
Time frame: Day 2 of each treatment period
Blood samples were collected for the analysis of hematology parameters including basophils, eosinophils, lymphocytes, monocytes, neutrophils, leukocytes and platelets in Part 1 at indicated time points.
Time frame: Day 2 of each treatment period
Blood samples were collected for the analysis erythrocyte mean corpuscular hemoglobin in Part 1 at indicated time points.
Time frame: Day 2 of each treatment period
Blood samples were collected for the analysis erythrocytes in Part 1 at indicated time points.
Time frame: Day 2 of each treatment period
Blood samples were collected for the analysis hemocrit in Part 1 at indicated time points.
Time frame: Day 2 of each treatment period
Blood samples were collected for the analysis hemoglobin in Part 1 at indicated time points.
Time frame: Day 2 of each treatment period
Blood samples were collected for the analysis of hematology parameters including basophils, eosinophils, lymphocytes, monocytes, neutrophils, leukocytes and platelets in Part 2 at indicated time points.
Time frame: Day 2 of each treatment period
Blood samples were collected for the analysis erythrocyte mean corpuscular hemoglobin in Part 2 at indicated time points.
Time frame: Day 2 of each treatment period
Blood samples were collected for the analysis erythrocyte mean corpuscular hemoglobin in Part 2 at indicated time points.
Time frame: Day 2 of each treatment period
Blood samples were collected for the analysis erythrocytes in Part 2 at indicated time points.
Time frame: Day 2 of each treatment period
Blood samples were collected for the analysis hemocrit in Part 2 at indicated time points.
Time frame: Day 2 of each treatment period
Blood samples were collected for the analysis hemoglobin in Part 2 at indicated time points.
Time frame: Baseline (Day -1) and Day 2
Blood samples were collected for the analysis of hematology parameters including basophils, eosinophils, lymphocytes, monocytes, neutrophils, leukocytes and platelets in Part 1 at indicated time points. Day -1 was defined as Baseline for hematology parameters. Change from Baseline is calculated as the value at specified time point minus the Baseline value.
Time frame: Baseline (Day -1) and Day 2
Blood samples were collected for the analysis erythrocyte mean corpuscular hemoglobin in Part 1 at indicated time points. Day -1 was defined as Baseline for hematology parameters. Change from Baseline is calculated as the value at specified time point minus the Baseline value.
Time frame: Baseline (Day -1) and Day 2
Blood samples were collected for the analysis erythrocyte mean corpuscular hemoglobin in Part 1 at indicated time points. Day -1 was defined as Baseline for hematology parameters. Change from Baseline is calculated as the value at specified time point minus the Baseline value.
Time frame: Baseline (Day -1) and Day 2
Blood samples were collected for the analysis erythrocytes in Part 1 at indicated time points. Day -1 was defined as Baseline for hematology parameters. Change from Baseline is calculated as the value at specified time point minus the Baseline value.
Time frame: Baseline (Day -1) and Day 2
Blood samples were collected for the analysis hemocrit in Part 1 at indicated time points. Day -1 was defined as Baseline for hematology parameters. Change from Baseline is calculated as the value at specified time point minus the Baseline value.
Time frame: Baseline (Day -1) and Day 2
Blood samples were collected for the analysis hemoglobin in Part 1 at indicated time points. Day -1 was defined as Baseline for hematology parameters. Change from Baseline is calculated as the value at specified time point minus the Baseline value.
Time frame: Baseline (Day -1) and Day 2
Blood samples were collected for the analysis of hematology parameters including basophils, eosinophils, lymphocytes, monocytes, neutrophils, leukocytes and platelets in Part 2 at indicated time points. Day -1 was defined as Baseline for hematology parameters. Change from Baseline is calculated as the value at specified time point minus the Baseline value.
Time frame: Baseline (Day -1) and Day 2
Blood samples were collected for the analysis erythrocyte mean corpuscular hemoglobin in Part 2 at indicated time points. Day -1 was defined as Baseline for hematology parameters. Change from Baseline is calculated as the value at specified time point minus the Baseline value.
Time frame: Baseline (Day -1) and Day 2
Blood samples were collected for the analysis erythrocyte mean corpuscular hemoglobin in Part 2 at indicated time points. Day -1 was defined as Baseline for hematology parameters. Change from Baseline is calculated as the value at specified time point minus the Baseline value.
Time frame: Baseline (Day -1) and Day 2
Blood samples were collected for the analysis erythrocytes in Part 2 at indicated time points. Day -1 was defined as Baseline for hematology parameters. Change from Baseline is calculated as the value at specified time point minus the Baseline value.
Time frame: Baseline (Day -1) and Day 2
Blood samples were collected for the analysis hemocrit in Part 2 at indicated time points. Day -1 was defined as Baseline for hematology parameters. Change from Baseline is calculated as the value at specified time point minus the Baseline value.
Time frame: Baseline (Day -1) and Day 2
Blood samples were collected for the analysis hemoglobin in Part 2 at indicated time points. Day -1 was defined as Baseline for hematology parameters. Change from Baseline is calculated as the value at specified time point minus the Baseline value.
Time frame: Up to Day 33
The dipstick test gives results in a semi-quantitative manner and results for urinalysis parameters can be read as increased, decreased, increase to trace, 1+ and 3+ indicating proportional concentrations in the urine sample. Only participants with abnormal findings for urinalysis at any visit has been presented.
Time frame: Up to Day 33
Urine samples were collected for analysis of urine pH. pH is calculated on a scale of 0 to 14, values on the scale refer to the degree of alkalinity or acidity. A pH of 7 is neutral. A pH of less than 7 is acidic and a pH of greater than 7 is basic. Normal urine has a slightly acidic pH (5.0-6.0).
Time frame: Up to Day 33
The dipstick test gives results in a semi-quantitative manner and results for urinalysis parameters can be read as increased, decreased, increase to trace, 1+ and 3+ indicating proportional concentrations in the urine sample. Only participants with abnormal findings for urinalysis at any visit has been presented.
Time frame: Up to Day 33
Urine samples were collected for analysis of urine pH. pH is calculated on a scale of 0 to 14, values on the scale refer to the degree of alkalinity or acidity. A pH of 7 is neutral. A pH of less than 7 is acidic and a pH of greater than 7 is basic. Normal urine has a slightly acidic pH (5.0-6.0).
Time frame: Baseline (Day -1)
Full 12-lead ECGs were recorded with the participant in a supine position. Absolute QTc Interval: >450, absolute PR Interval: <110 and Absolute QRS Interval: <75 were considered to be potential clinically significant ECG finding. The number of participants with abnormal clinically significant ECG findings are presented.
Time frame: Baseline (Day -1)
Full 12-lead ECGs were recorded with the participant in a supine position. Absolute QTc Interval: >450, absolute PR Interval: <110 and Absolute QRS Interval: <75 were considered to be potential clinically significant ECG finding. The number of participants with abnormal clinically significant ECG findings are presented
Time frame: Day 1 at 4 hours post intervention and Day 2 of each treatment period
Blood pressure of participants were measured at indicated time points in semi-supine position after 5 minutes rest.
Time frame: Day 1 at 4 hours post intervention and Day 2 of each treatment period
Pulse rate of participants were measured at indicated time points in semi-supine position after 5 minutes rest.
Time frame: Day 1 at 4 hours post intervention dose and Day 2 of each treatment period
Temperature of participants were measured at indicated time points in semi-supine position after 5 minutes rest.
Time frame: Day 1 at 4 hours post intervention dose and Day 2 of each treatment period
Blood pressure of participants were measured at indicated time points in semi-supine position after 5 minutes rest.
Time frame: Day 1 at 4 hours post intervention dose and Day 2 of each treatment period
Pulse rate of participants were measured at indicated time points in semi-supine position after 5 minutes rest.
Time frame: Day 1 at 4 hours post intervention dose and Day 2 of each treatment period
Temperature of participants were measured at indicated time points in semi-supine position after 5 minutes rest.
Time frame: Baseline (Day 1, pre-dose), Day 1- 4 hours and Day 2
Blood pressure of participants were measured at indicated time points in semi-supine position after 5 minutes rest. Day 1 (Pre-dose) value was defined as Baseline for vital sign parameters. Change from Baseline value is calculated as the value at the post-dose visit minus the Baseline value.
Time frame: Baseline (Day 1, pre-dose), Day 1- 4 hours and Day 2
Pulse rate of participants were measured at indicated time points in semi-supine position after 5 minutes rest. Day 1 (Pre-dose) value was defined as Baseline for vital sign parameters. Change from Baseline value is calculated as the value at the post-dose visit minus the Baseline value.
Time frame: Baseline (Day 1, pre-dose), Day 1- 4 hours and Day 2
Temperature of participants were measured at indicated time points in semi-supine position after 5 minutes rest. Day 1 (Pre-dose) value was defined as Baseline for vital sign parameters. Change from Baseline value is calculated as the value at the post-dose visit minus the Baseline value.
Time frame: Baseline (Day 1, pre-dose), Day 1- 4 hours and Day 2
Blood pressure of participants were measured at indicated time points in semi-supine position after 5 minutes rest. Day 1 (Pre-dose) value was defined as Baseline for vital sign parameters. Change from Baseline value is calculated as the value at the post-dose visit minus the Baseline value.
Time frame: Baseline (Day 1, pre-dose), Day 1- 4 hours and Day 2
Pulse rate of participants were measured at indicated time points in semi-supine position after 5 minutes rest. Day 1 (Pre-dose) value was defined as Baseline for vital sign parameters. Change from Baseline value is calculated as the value at the post-dose visit minus the Baseline value.
Time frame: Baseline (Day 1, pre-dose), Day 1- 4 hours and Day 2
Temperature of participants were measured at indicated time points in semi-supine position after 5 minutes rest. Day 1 (Pre-dose) value was defined as Baseline for vital sign parameters. Change from Baseline value is calculated as the value at the post-dose visit minus the Baseline value.
ViiV Healthcare
Industry
A 2-Part, Phase I, Single-Dose, 3-Period Crossover Relative Bioavailability Study of a Pediatric TRIUMEQ Dispersible Tablet and Pediatric Dolutegravir and Lamivudine (DTG/3TC) Fixed Dose Combination Dispersible Tablet Formulations as Compared With Adult Tablets in Healthy Volunteers
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