Comparison of Different HIV-1 Resistance Interpretation Tools for Next-Generation Sequencing in Italy

Next-generation sequencing (NGS) is gradually replacing Sanger sequencing for HIV genotypic drug resistance testing (GRT). This work evaluated the concordance among different NGS-GRT interpretation tools in a real-life setting. Routine NGS-GRT data were generated from viral RNA at 11 Italian laborat...

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Veröffentlicht in:Viruses 2024-09, Vol.16 (9), p.1422
Hauptverfasser: Armenia, Daniele, Carioti, Luca, Micheli, Valeria, Bon, Isabella, Allice, Tiziano, Bonura, Celestino, Bruzzone, Bianca, Bracchitta, Fiorenza, Cerutti, Francesco, Giammanco, Giovanni Maurizio, Stefanelli, Federica, Bonifacio, Maria Addolorata, Bertoli, Ada, Vatteroni, Marialinda, Ibba, Gabriele, Novazzi, Federica, Lipsi, Maria Rosaria, Cuomo, Nunzia, Vicenti, Ilaria, Ceccherini-Silberstein, Francesca, Rossetti, Barbara, Bezenchek, Antonia, Saladini, Francesco, Zazzi, Maurizio, Santoro, Maria Mercedes
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Sprache:eng
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Zusammenfassung:Next-generation sequencing (NGS) is gradually replacing Sanger sequencing for HIV genotypic drug resistance testing (GRT). This work evaluated the concordance among different NGS-GRT interpretation tools in a real-life setting. Routine NGS-GRT data were generated from viral RNA at 11 Italian laboratories with the AD4SEQ HIV-1 Solution v2 commercial kit. NGS results were interpreted by the SmartVir system provided by the kit and by two online tools (HyDRA Web and Stanford HIVdb). NGS-GRT was considered valid when the coverage was >100 reads (100×) at each PR/RT/IN resistance-associated position listed in the HIVdb 9.5.1 algorithm. Among 629 NGS-GRT, 75.2%, 74.2%, and 70.9% were valid according to SmartVir, HyDRA Web, and HIVdb. Considering at least two interpretation tools, 463 (73.6%) NGS-GRT had a valid coverage for resistance analyses. The proportion of valid samples was affected by viremia 10% showed fair concordance among different interpretation tools. This Italian survey on NGS resistance testing suggests that viremia levels and HIV subtype affect NGS-GRT coverage. Within the current routine method for NGS-GRT, only mutations with frequency >10% seem reliably detected across different interpretation tools.
ISSN:1999-4915
1999-4915
DOI:10.3390/v16091422