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Updated: May 6, 2026

An Affordable HIV-1 Drug Resistance Monitoring Method for Resource Limited Settings
Published on: March 30, 2014
Nevirapine versus ritonavir-boosted lopinavir for HIV-infected children
Avy Violari1, Jane C Lindsey, Michael D Hughes
1Perinatal HIV Research Unit, University of the Witwatersrand, Johannesburg, South Africa.
Insights
Ritonavir-boosted lopinavir showed superior outcomes compared to nevirapine in treating HIV in young children without prior nevirapine exposure. This finding is crucial for guiding treatment decisions in resource-limited settings.
Area of Science:
- Pediatric infectious diseases
- HIV/AIDS treatment
- Antiretroviral therapy
Background:
- Nevirapine is a common antiretroviral therapy for children in resource-limited settings.
- Nevirapine resistance is frequent after exposure for preventing mother-to-child HIV transmission.
- The comparative efficacy of nevirapine versus ritonavir-boosted lopinavir in young children is not well-established.
Purpose of the Study:
- To compare the efficacy and safety of nevirapine versus ritonavir-boosted lopinavir in HIV-infected children.
- To evaluate treatment outcomes in children aged 2 to 36 months with no prior nevirapine exposure.
Main Methods:
- A randomized trial was conducted in six African countries and India.
- HIV-infected children (2-36 months) received zidovudine, lamivudine, and either nevirapine or ritonavir-boosted lopinavir.
- The primary endpoint was virologic failure or treatment discontinuation by week 24.
Main Results:
- The primary endpoint was reached by significantly more children in the nevirapine group (40.8%) than the ritonavir-boosted lopinavir group (19.3%).
- Over half of nevirapine-treated children with virologic failure developed nevirapine resistance.
- Nevirapine treatment was associated with shorter time to toxicity and death.
Conclusions:
- Ritonavir-boosted lopinavir demonstrated superior outcomes in young children with no prior nevirapine exposure.
- Suboptimal nevirapine results may be linked to baseline viral load, resistance selection, and dosing strategy.
- Findings present challenges for policymakers regarding pediatric HIV treatment in resource-limited settings.
Background:
Nevirapine-based antiretroviral therapy is the predominant (and often the only) regimen available for children in resource-limited settings. Nevirapine resistance after exposure to the drug for prevention of maternal-to-child human immunodeficiency virus (HIV) transmission is common, a problem that has led to the recommendation of ritonavir-boosted lopinavir in such settings. Regardless of whether there has been prior exposure to nevirapine, the performance of nevirapine versus ritonavir-boosted lopinavir in young children has not been rigorously established.
Methods:
In a randomized trial conducted in six African countries and India, we compared the initiation of HIV treatment with zidovudine, lamivudine, and either nevirapine or ritonavir-boosted lopinavir in HIV-infected children 2 to 36 months of age who had no prior exposure to nevirapine. The primary end point was virologic failure or discontinuation of treatment by study week 24.
Results:
A total of 288 children were enrolled; the median percentage of CD4+ T cells was 15%, and the median plasma HIV type 1 (HIV-1) RNA level was 5.7 log(10) copies per milliliter. The percentage of children who reached the primary end point was significantly higher in the nevirapine group than in the ritonavir-boosted lopinavir group (40.8% vs. 19.3%; P<0.001). Among the nevirapine-treated children with virologic failure for whom data on resistance were available, more than half (19 of 32) had resistance at the time of virologic failure. In addition, the time to a protocol-defined toxicity end point was shorter in the nevirapine group (P=0.04), as was the time to death (P=0.06).
Conclusions:
Outcomes were superior with ritonavir-boosted lopinavir among young children with no prior exposure to nevirapine. Factors that may have contributed to the suboptimal results with nevirapine include elevated viral load at baseline, selection for nevirapine resistance, background regimen of nucleoside reverse-transcriptase inhibitors, and the standard ramp-up dosing strategy. The results of this trial present policymakers with difficult choices. (Funded by the National Institute of Allergy and Infectious Diseases and others; P1060 ClinicalTrials.gov number, NCT00307151.).
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