The purpose of this study is to compare the safety, tolerability and effectiveness of 12 weeks of treatment with telbivudine 600 mg daily plus tenofovir DF 300 mg one daily (OD) taken together vs. tenofovir DF 300 mg once daily (QD) or vs telbivudine 600 mg monotherapy daily (QD). This is an open labeled, active controlled, viral kinetics study which means the subjects and study doctor will know what study drug subjects have been assigned. This study is open to male and female subjects, \<40 years of age, who have been infected with HBV for at least 6 months and have not received oral treatment for HBV.
Study Type
INTERVENTIONAL
Allocation
RANDOMIZED
Purpose
TREATMENT
Masking
NONE
Enrollment
83
600 mg monotherapy supplied in film-coated tablets.
Tenofovir disoproxil fumarate was supplied in 300 mg tablets
Telbivudine 600 mg and Tenofovir 300 mg were purchased in commercial packs. Patients were instructed to take medication(s) orally every morning either with or without food.
Department of Medicine, Queen Mary Hospital
Hong Kong, China
Change in Hepatitis B Virus (HBV) Deoxyribonucleic Acid (DNA) Level From Baseline to Week 12.
Baseline HBV DNA is defined as the last pre-dose assessment of HBV DNA. Serum HBV DNA determinations were performed at a central laboratory through use of the COBAS TaqMan™ HBV DNA assay (Roche Molecular Systems, Pleasanton, CA, USA) which utilized the Real-time polymerase chain reaction (PCR) method and automated extraction by Cobas Ampliprep (threshold for detection 12 IU/mL). The Screening serum HBV DNA values must be ≥ 7 log10 copies/mL by COBAS TaqMan™ HBV DNA assay.
Time frame: Baseline, Week 12
Change in Hepatitis B Virus (HBV) Deoxyribonucleic Acid (DNA) Level From Baseline to Weeks 2, 4 and 8.
Baseline HBV DNA is defined as the last pre-dose assessment of HBV DNA. Serum HBV DNA determinations were performed at a central laboratory through use of the COBAS TaqMan™ HBV DNA assay (Roche Molecular Systems, Pleasanton, CA, USA) which utilized the Real-time polymerase chain reaction (PCR) method and automated extraction by Cobas Ampliprep (threshold for detection 12 IU/mL). The Screening serum HBV DNA values must be ≥ 7 log10 copies/mL by COBAS TaqMan™ HBV DNA assay.
Time frame: Baseline, Week 2, Week 4, Week 8
Percentage of Patients Who Are Polymerase Chain Reaction(PCR)Negative at Week 12
Polymerase Chain Reaction (PCR) Negative is defined as HBV DNA levels \<25 copies/ml.
Time frame: Week 12
Percentage of Patients Who Achieve Hepatitis B "e" Antigen (HBeAg) Loss and HBeAg Seroconversion at Week 12
HBeAg loss is defined as the loss of detectable serum HBeAg in a patient who was HBeAg positive at baseline. HBeAg seroconversion is defined as HBeAg loss with detectable Hepatitis B 'e' antibody (HBeAb). HBeAg stands for hepatitis B "e" antigen. This antigen is a protein from the hepatitis B virus that circulates in infected blood when the virus is actively replicating. The presence of HBeAg suggests that the person is infectious and is able to spread the virus to other people.
Time frame: Week 12
Characterization of Very Early Viral Kinetics Through Estimated Viral Load
The underlying bi-phasic model of viral kinetics can be described as follows: V(t) (1 )pI(t) cV(t)I(t) (1 ) (T I(t))V(t) I(t)where V denotes serum viral load, I productively infected cells, ε the efficiency factor of blocking virus production, p the viral production rate, c the viral clearance rate, η the efficiency factor of blocking de novo infection, β the de novo infection rate, Tg comprise all infected and uninfected target cells, and δ the rate of infected cell loss
Time frame: Week 12
Characterization of Very Early Viral Kinetics Through Viral Clearance
The underlying bi-phasic model of viral kinetics can be described as follows: V(t) (1 )pI(t) cV(t)I(t) (1 ) (T I(t))V(t) I(t)where V denotes serum viral load, I productively infected cells, ε the efficiency factor of blocking virus production, p the viral production rate, c the viral clearance rate, η the efficiency factor of blocking de novo infection, β the de novo infection rate, Tg comprise all infected and uninfected target cells, and δ the rate of infected cell loss
Time frame: Week 12
Characterization of Very Early Viral Kinetics Through Rate of Infected Cell Loss
The underlying bi-phasic model of viral kinetics can be described as follows: V(t) (1 )pI(t) cV(t)I(t) (1 ) (T I(t))V(t) I(t)where V denotes serum viral load, I productively infected cells, ε the efficiency factor of blocking virus production, p the viral production rate, c the viral clearance rate, η the efficiency factor of blocking de novo infection, β the de novo infection rate, Tg comprise all infected and uninfected target cells, and δ the rate of infected cell loss
Time frame: Week 12
Characterization of Very Early Viral Kinetics Through Efficiency Factor of Blocking Virus Production.
The underlying bi-phasic model of viral kinetics can be described as follows: V(t) (1 )pI(t) cV(t) I(t) (1 ) (T I(t))V(t) I(t) where V denotes serum viral load, I productively infected cells, ε the efficiency factor of blocking virus production, p the viral production rate, c the viral clearance rate, η the efficiency factor of blocking de novo infection, β the de novo infection rate, Tg comprise allinfected and uninfected target cells, and δ the rate of infected cell loss
Time frame: Week 12
Characterization of Very Early Viral Kinetics Through Half-live of Free Virus
The underlying bi-phasic model of viral kinetics can be described as follows: V(t) (1 )pI(t) cV(t)I(t) (1 ) (T I(t))V(t) I(t)where V denotes serum viral load, I productively infected cells, ε the efficiency factor of blocking virus production, p the viral production rate, c the viral clearance rate, η the efficiency factor of blocking de novo infection, β the de novo infection rate, Tg comprise all infected and uninfected target cells, and δ the rate of infected cell loss
Time frame: Week 12
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