- ICH GCP
- US Clinical Trials Registry
- Clinical Trial NCT01601899
Differences Between Stavudine and Tenofovir Each Combined With Lamivudine and Efavirenz in SA HIV-infected Patients (CHRU01)
Molecular, Biochemical and Clinical Differences Between Stavudine and Tenofovir, Each Combined With Lamivudine and Efavirenz in South African HIV-infected Patients
Even with the benefits of HIV therapy, there is a possibility that HIV-infected individuals develop metabolic complications once they initiate treatment, which may also ultimately put them at a risk for impending heart disease in the next decades.
The main mechanism through which the main HIV drugs are thought to cause these metabolic changes and organ toxicities is mitochondrial toxicity. Most of studies that have been done, have taken place in the West, but few, if any, have been done in South Africa.
The purpose of this study is to prospectively identify early changes between the two different drugs, Stavudine and Tenofovir, to assess their virological response, molecular, biochemical and clinical picture, and the possible associated change in cardiovascular risk factors, this, in the South African setting, and make recommendations to modify the current National AIDS role out programme
Study Overview
Status
Conditions
Intervention / Treatment
Detailed Description
There has been a major improvement in the survival of HIV-infected individuals with the role out highly active anti-retroviral therapy (HAART) in the public health sector by the South African Government in 2004.
Despite the unparalleled benefits of HAART, there is an increasing recognition that adverse events remain an important source of morbidity and even mortality. Knowledge of the adverse effects of different therapeutic regimes and understanding genetic factors that modulate the risk of toxicity, are important in the management of HIV/AIDS patients.
There are two regimens offered in the public sector, these contain a triple drug course, with either a nucleoside reverse transcriptase inhibitor (NRTI), a non-nucleoside reverse transcriptase inhibitor (NNRTI) or a protease inhibitor (PI). With adherence to treatment, it is possible to convert HIV from a fatal infection to a chronic and manageable illness.
But, unfortunately, these therapeutic regimens are associated with the development of metabolic complications, such as dyslipidaemia, insulin resistance. Occasionally frank diabetes, and altered fat distribution, such as peripheral lipoatrophy and centripetal fat accumulation. There is a growing concern that these complications may lead to an increase in the long-term risk of cardiovascular disease in these individuals.
The first regime which contains stavudine, which is a NRTI. It is cheap and easy to administer in the short term but however is associated with more side effects, with relatively higher rates of long term risks of lipoatrophy, and peripheral neuropathy. It is also associated with an asymptomatic or a sometimes fatal lactic acidosis, it is also associated with complications such as myopathies and pancreatitis. However, some studies have suggested that reducing the d4T dose improves the toxicity profile while maintaining efficacy.
Tenofovir on the other hand, is a nucleotide analogue, it was approved in 2001 in the United States, and it use has grown since its approval. It is commonly used in initial therapy. It has shown to have a favourable lipid and mt DNA profile when compared to stavudine, but however it had no difference in virological response.
Clinical practice is moving increasingly towards the use of regimes that combine high levels of tolerability and efficacy. HIV-infected individuals develop a pattern similar to that of the metabolic syndrome once they initiate treatment, ultimately putting them at a risk for impending cardiovascular disease in the next decades. Most studies have been done in the West, but there is no data on patients from third world countries including South Africa.
This purpose of this study is to prospectively identify differences between the two different NRTIs, Stavudine, a nucleoside analogue (in different doses), and Tenofovir, a nucleotide analogue, to assess their virological response, molecular, biochemical and clinical pictures, and the possible associated change in cardiovascular risk factors, this, in the South African setting, and make recommendations to modify the current National AIDS role out programme
Primary Objectives
The following questions will be addressed:
- To determine if there are any molecular differences (before and after starting treatment) between the regimens.
- To determine the biochemical differences (before and after starting treatment) between the three regimens.
- To determine clinical differences in patients in all three arms of treatment.
Secondary Objectives
The following questions will be addressed:
- To determine the outcome of immune reconstitution by monitoring T-cell subsets changes.
- To determine virological response by monitoring the viral load changes.
- To determine which of the three treatment arms results in better adherence.
- To determine if there are any changes in cardiovascular risk factors after treatment.
Study Design This is a randomised controlled study comparing two NRTIs, a nucleoside analogue Stavudine (standard dose, and low dose), and a nucleotide analogue Tenofovir, each combined with Lamivudine and Efavirenz in HIV-infected treatment-naïve patients to be conducted concurrently.
This study will compare the virologic response, molecular, biochemical and clinical differences between all treatment arms.
At entry, all participants will be enrolled into either Arm A, B or C after randomization.
Duration:48 weeks after randomization of the final participant.From enrollment, the participants had a minimum of four study visits.
Sample size:90 participants randomized (1:1:1) to either Arm A (30 participants), Arm B (30 participants) and Arm C (30 participants).
Population:HIV-infected, treatment-naïve patients, at least 18 years of age, with CD4+ cell count <200 cells/mm3.
At study entry, participants will be randomized (as described above) to one of the following treatment arms:
Arm A Stavudine (d4T) 30 mg po BD if wt < 60kg, or 40 mg po BD if wt > 60kg PLUS Lamivudine (3TC) 150mg po BD PLUS Efavirenz 600mg po nocte
OR Arm B Stavudine (d4T) 20 mg po BD if wt < 60kg, or 30 mg po BD if wt > 60kg PLUS Lamivudine (3TC) 150mg po BD PLUS Efavirenz 600mg po nocte
OR Arm C TDF 300 mg po QD PLUS Lamivudine (3TC) 150mg po BD PLUS Efavirenz 600mg po nocte
Study Type
Enrollment (Actual)
Phase
- Phase 4
Contacts and Locations
Study Locations
-
-
Gauteng
-
Johannesburg, Gauteng, South Africa, 2006
- Themba Lethu Clinic, Helen Joseph Hospital, Auckland Park
-
-
Participation Criteria
Eligibility Criteria
Ages Eligible for Study
Accepts Healthy Volunteers
Genders Eligible for Study
Description
Inclusion Criteria:
- HIV-1 infection, documented by a rapid HIV test or any licensed ELISA test kit, and confirmed by either a second rapid HIV test or an ELISA consistent with the Themba Lethu Clinic guidelines.
- Age >/= 18 years,
- CD4+ cell count < 200 cells/mm3.
The following laboratory values obtained within 45 days prior to study entry:
- Absolute neutrophil count (ANC) ≥ 750/mm3
- Hemoglobin ≥ 7.0 g/dL
- Platelet count ≥ 50,000/mm3
- AST (SGOT), ALT (SGPT), and alkaline phosphatase ≤ 2.5 x ULN
- Total bilirubin ≤ 2.5 x ULN
Evidence of normal renal function within 45 days prior to study entry as determined by an estimated creatinine clearance of ≥60 mL/min using the Cockcroft-Gault formula:
{[140 - age (yr)] x [weight (kg)] ÷ [72 x serum Cr (mg/dL)]} (X 0.85 in females.)
- Participants of reproductive age (defined as girls who have reached menarche or women who have not been post-menopausal for at least 24 consecutive months, i.e. who have had menses within the preceding 24 months), or who have not undergone surgical sterilization (e.g. hysterectomy, or bilateral oophorectomy or salpingotomy) must have a negative serum or urine pregnancy test within 45 days prior to study entry.
Participants of reproductive potential, must be willing to abstain from participation in a conception process (e.g. active attempt to become pregnant or in vitro fertilization). If participants are sexual active, that could lead to pregnancy, they must use at least one reliable form of contraception listed below while receiving protocol-specified medications and for 6 weeks after stopping the medication.
- Male or female condoms with or without a spermicidal agent (condoms are recommended because their appropriate use is the only contraception method effective for preventing HIV transmission).
- Diaphragm or cervical cap with spermicide
- IUD
- Hormonal-based contraception
- Possible interactions of study drugs with estrogen-based contraceptives: LPV/RTV decrease plasma levels of ethinyl estradiol; therefore, estrogen-based contraceptives are not reliable for women receiving LPV/RTV and an alternative contraception method must be used.
- NOTE: Participants who are not of reproductive potential (girls who have not reached menarche, women who have been post-menopausal for at least 24 consecutive months) girls and women who are not participating in sexual activity that could lead to pregnancy, or women who have undergone surgical sterilization, (e.g. hysterectomy, or bilateral oophorectomy or salpingotomy) are eligible without requiring the use of contraception.
- Ability and willingness of participant
- Intent to remain in current geographical area of residence for the duration of study.
- Willingness to attend study visits as required by the study.
Exclusion Criteria:
- Receipt of any antiretrovirals (including for purposes of occupational or sexual post exposure prophylaxis), except for SD Nevirapine taken within six months.
- Use of systemic cancer chemotherapy, systemic investigational agents, immunomodulators (growth factors, systemic corticosteroids, HIV vaccines, immune globulin, interleukins, interferons) or rifampin within 30 days prior to study entry.
- Breastfeeding or pregnancy.
- Allergy to study drugs.
- Any condition, including active drug or alcohol use or dependence that, in the opinion of the investigator, would interfere with adherence to study requirements.
- Any serious illness requiring systemic treatment and/or hospitalization until participant either completes therapy or is clinically stable on therapy, in the opinion of the investigator, for at least 30 days prior to study entry.
- Involuntary incarceration in a correctional facility, for legal reasons or in a medical facility for treatment of either a psychiatric or physical (e.g., infectious disease) illness.
Study Plan
How is the study designed?
Design Details
- Primary Purpose: Treatment
- Allocation: Randomized
- Interventional Model: Parallel Assignment
- Masking: None (Open Label)
Arms and Interventions
Participant Group / Arm |
Intervention / Treatment |
---|---|
Active Comparator: ARM A
Stavudine (d4T) 30 mg po BD if wt < 60kg, or 40 mg po BD if wt > 60kg PLUS Lamivudine (3TC) 150mg po BD PLUS Efavirenz 600mg po nocte
|
30 mg po BD if wt < 60kg, or 40 mg po BD if wt > 60kg
Other Names:
20 mg po BD if wt < 60kg, or 30 mg po BD if wt > 60kg
Other Names:
|
Active Comparator: ARM B
Stavudine (d4T) 20 mg po BD if wt < 60kg, or 30 mg po BD if wt > 60kg PLUS Lamivudine (3TC) 150mg po BD PLUS Efavirenz 600mg po nocte
|
30 mg po BD if wt < 60kg, or 40 mg po BD if wt > 60kg
Other Names:
20 mg po BD if wt < 60kg, or 30 mg po BD if wt > 60kg
Other Names:
|
Active Comparator: ARM C
TDF 300 mg po QD PLUS Lamivudine (3TC) 150mg po BD PLUS Efavirenz 600mg po nocte
|
300 mg po QD
Other Names:
|
What is the study measuring?
Primary Outcome Measures
Outcome Measure |
Time Frame |
---|---|
changes in mitochondrial DNA copy number in adipocyte tissue
Time Frame: from baseline to 4 weeks
|
from baseline to 4 weeks
|
changes in gene expression in adipocyte tissue
Time Frame: from baseline to 4 weeks
|
from baseline to 4 weeks
|
changes in lipid levels
Time Frame: from baseline to 4 weeks
|
from baseline to 4 weeks
|
changes in glycaemic indices
Time Frame: from baseline to 4 weeks
|
from baseline to 4 weeks
|
changes in adipocytokines
Time Frame: from baseline to 4 weeks
|
from baseline to 4 weeks
|
changes in lipid levels
Time Frame: from baseline to 48 weeks
|
from baseline to 48 weeks
|
changes in glycaemic indices
Time Frame: from baseline to 48 weeks
|
from baseline to 48 weeks
|
changes in adipocytokines
Time Frame: from baseline to 48 weeks
|
from baseline to 48 weeks
|
Secondary Outcome Measures
Outcome Measure |
Time Frame |
---|---|
Time from randomization to virologic failure
Time Frame: up to 48 weeks
|
up to 48 weeks
|
Time from randomization to death
Time Frame: up to 48 weeks
|
up to 48 weeks
|
time from randomization to the first adverse event requiring discontinuation of any of the drugs that formed the initial regimen
Time Frame: up to 48 weeks
|
up to 48 weeks
|
time from randomization to the first Grade 3 or higher adverse event.
Time Frame: up to 48 weeks
|
up to 48 weeks
|
Time from randomization to HIV-related disease progression (defined as progression to WHO Clinical Stage 3 or 4)
Time Frame: up to 48 weeks
|
up to 48 weeks
|
Adherence to study drug regimens as assessed by participant self-report and pill count.
Time Frame: up to 48 weeks
|
up to 48 weeks
|
Collaborators and Investigators
Investigators
- Principal Investigator: Colin N Menezes, FCP(SA), Clinical HIV Research Unit, University of the Witwatersrand
- Study Director: Ian Sanne, FCP(SA), Clinical HIV Research Unit, University of the Witwatersrand
Study record dates
Study Major Dates
Study Start
Primary Completion (Actual)
Study Completion (Actual)
Study Registration Dates
First Submitted
First Submitted That Met QC Criteria
First Posted (Estimate)
Study Record Updates
Last Update Posted (Estimate)
Last Update Submitted That Met QC Criteria
Last Verified
More Information
Terms related to this study
Additional Relevant MeSH Terms
- Molecular Mechanisms of Pharmacological Action
- Anti-Infective Agents
- Antiviral Agents
- Reverse Transcriptase Inhibitors
- Nucleic Acid Synthesis Inhibitors
- Enzyme Inhibitors
- Anti-HIV Agents
- Anti-Retroviral Agents
- Antimetabolites
- Cytochrome P-450 Enzyme Inhibitors
- Cytochrome P-450 Enzyme Inducers
- Cytochrome P-450 CYP3A Inducers
- Cytochrome P-450 CYP2B6 Inducers
- Cytochrome P-450 CYP2C9 Inhibitors
- Cytochrome P-450 CYP2C19 Inhibitors
- Tenofovir
- Lamivudine
- Stavudine
- Efavirenz
Other Study ID Numbers
- CHRU01
This information was retrieved directly from the website clinicaltrials.gov without any changes. If you have any requests to change, remove or update your study details, please contact register@clinicaltrials.gov. As soon as a change is implemented on clinicaltrials.gov, this will be updated automatically on our website as well.
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