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First-line HIV treatment failures in non-B subtypes and recombinants: A cross-sectional analysis of multiple populations in Uganda

  • The Ugandan Drug Resistance Study Team

Research output: Contribution to JournalArticleAcademicpeer-review

Abstract

Background: Our understanding of HIV-1 and antiretroviral treatment (ART) is strongly biased towards subtype B, the predominant subtype in North America and western Europe. Efforts to characterize the response to first-line treatments in other HIV-1 subtypes have been hindered by the availability of large study cohorts in resource-limited settings. To maximize our statistical power, we combined HIV-1 sequence and clinical data from every available study population associated with the Joint Clinical Research Centre (JCRC) in Uganda. These records were combined with contemporaneous ART-naive records from Uganda in the Stanford HIVdb database. Methods: Treatment failures were defined by the presence of HIV genotype records with sample collection dates after the ART start dates in the JCRC database. Drug resistances were predicted by the Stanford HIVdb algorithm, and HIV subtype classification and recombination detection was performed with SCUEAL. We used Bayesian network analysis to evaluate associations between drug exposures and subtypes, and binomial regression for associations with recombination. Results: This is the largest database of first-line treatment failures ( $$n=1724$$ n = 1724 ) in Uganda to date, with a predicted statistical power of 80% to detect subtype associations at an odds ratio of $$\ge 1.2$$ ≥ 1.2. In the subset where drug regimen data were available, we observed that use of 3TC was associated with a higher rate of first line treatment failure, whereas regimens containing AZT and TDF were associated with reduced rates of failure. In the complete database, we found limited evidence of associations between HIV-1 subtypes and treatment failure, with the exception of a significantly lower frequency of failures among A/D recombinants that comprised about 7% of the population. First-line treatment failure was significantly associated with reduced numbers of recombination breakpoints across subtypes. Conclusions: Expanding access to first-line ART should confer the anticipated public health benefits in Uganda, despite known differences in the pathogenesis of HIV-1 subtypes. Furthermore, the impact of ART may actually be enhanced by frequent inter-subtype recombination in this region.

Original languageEnglish
Article number3
Pages (from-to)1-10
Number of pages10
JournalAIDS research and therapy
Volume16
Issue number1
Early online date22 Jan 2019
DOIs
Publication statusPublished - 2019
Externally publishedYes

Bibliographical note

Publisher Copyright:
© 2019 The Author(s).

Funding

This study was supported by grants from the National Institutes of Health (AI49170, AI36219 and AI‑71747), the Case Western Reserve University/ University Hospitals Center for AIDS Research (P30 AI036219), the Canadian Institutes of Health Research (CIHR BOP‑149562, PJT‑155990 and PJT‑156178), and in part by the Government of Canada through Genome Canada and the Ontario Genomics Institute (OGI‑131). EN was supported by a Queen Elizabeth II Diamond Jubilee Scholarship (Western University DLI O19375892122). AFYP was supported by a CIHR New Investigator Award (FRN‑130609). This study was supported by grants from the National Institutes of Health (AI49170, AI36219 and AI-71747), the Case Western Reserve University/ University Hospitals Center for AIDS Research (P30 AI036219), the Canadian Institutes of Health Research (CIHR BOP-149562, PJT-155990 and PJT-156178), and in part by the Government of Canada through Genome Canada and the Ontario Genomics Institute (OGI-131). EN was supported by a Queen Elizabeth II Diamond Jubilee Scholarship (Western University DLI O19375892122). AFYP was supported by a CIHR New Investigator Award (FRN-130609).

FundersFunder number
Government of Canada
Genome Canada
Queen Elizabeth II Diamond Jubilee Scholarship
Case Western Reserve University
National Institutes of Health
Western UniversityFRN‑130609, DLI O19375892122
Ontario Genomics InstituteOGI‑131
National Institute of Allergy and Infectious DiseasesR01AI049170, R21AI071747, P30AI036219
Canadian Institutes of Health ResearchPJT‑156178, PJT‑155990, BOP‑149562
University Hospitals Center for AIDS ResearchP30 AI036219

    Keywords

    • Drug resistance
    • HIV-1 subtypes
    • Recombination
    • Sub-Saharan Africa
    • Treatment failure

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