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Identification by high-throughput sequencing of HPV variants and quasispecies that are untypeable by linear reverse blotting assay in cervical specimens

The linear reverse blotting assays are valid methods for accurate human papillomavirus (HPV) typing required to manage women at risk of developing cervical cancer. However, some samples showed a positive signal in HPV lines but failed to display a positive signal in subsequent typing lines (designat...

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Autores principales: Molet, Lucie, Girlich, Delphine, Bonnin, Rémy A., Proust, Alexis, Bouligand, Jérôme, Bachelerie, Françoise, Hantz, Sébastien, Deback, Claire
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6620621/
https://www.ncbi.nlm.nih.gov/pubmed/31283993
http://dx.doi.org/10.1016/j.pvr.2019.100169
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author Molet, Lucie
Girlich, Delphine
Bonnin, Rémy A.
Proust, Alexis
Bouligand, Jérôme
Bachelerie, Françoise
Hantz, Sébastien
Deback, Claire
author_facet Molet, Lucie
Girlich, Delphine
Bonnin, Rémy A.
Proust, Alexis
Bouligand, Jérôme
Bachelerie, Françoise
Hantz, Sébastien
Deback, Claire
author_sort Molet, Lucie
collection PubMed
description The linear reverse blotting assays are valid methods for accurate human papillomavirus (HPV) typing required to manage women at risk of developing cervical cancer. However, some samples showed a positive signal in HPV lines but failed to display a positive signal in subsequent typing lines (designated as HPV-X), which indicate that certain types were not available on the respective typing blots. The aim of this study is to elucidate the types or variants of HPV through the high-throughput sequencing (HTS) of 54 ASCUS cervical samples in which the viruses remained untypeable with INNO LiPA HPV(®) assays. Low-risk (LR)-HPV types (HPV6, 30, 42, 62, 67, 72, 74, 81, 83, 84, 87, 89, 90 and 114), high-risk (HR)-HPV35 and possibly (p)HR-HPV73 were detected among HPV-X. Individual multiple infections (two to seven types) were detected in 40.7% of samples. Twenty-two specimens contained variants characterised by 2–10 changes. HPV30 reached the maximal number of 17 variants with relative abundance inferior or equal to 2.7%. The presence of L1 quasispecies explains why linear reverse blotting assays fail when variants compete or do not match the specific probes. Further studies are needed to measure the LR-HPV quasispecies dynamics and its role during persistent infection.
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spelling pubmed-66206212019-07-22 Identification by high-throughput sequencing of HPV variants and quasispecies that are untypeable by linear reverse blotting assay in cervical specimens Molet, Lucie Girlich, Delphine Bonnin, Rémy A. Proust, Alexis Bouligand, Jérôme Bachelerie, Françoise Hantz, Sébastien Deback, Claire Papillomavirus Res Article The linear reverse blotting assays are valid methods for accurate human papillomavirus (HPV) typing required to manage women at risk of developing cervical cancer. However, some samples showed a positive signal in HPV lines but failed to display a positive signal in subsequent typing lines (designated as HPV-X), which indicate that certain types were not available on the respective typing blots. The aim of this study is to elucidate the types or variants of HPV through the high-throughput sequencing (HTS) of 54 ASCUS cervical samples in which the viruses remained untypeable with INNO LiPA HPV(®) assays. Low-risk (LR)-HPV types (HPV6, 30, 42, 62, 67, 72, 74, 81, 83, 84, 87, 89, 90 and 114), high-risk (HR)-HPV35 and possibly (p)HR-HPV73 were detected among HPV-X. Individual multiple infections (two to seven types) were detected in 40.7% of samples. Twenty-two specimens contained variants characterised by 2–10 changes. HPV30 reached the maximal number of 17 variants with relative abundance inferior or equal to 2.7%. The presence of L1 quasispecies explains why linear reverse blotting assays fail when variants compete or do not match the specific probes. Further studies are needed to measure the LR-HPV quasispecies dynamics and its role during persistent infection. Elsevier 2019-07-05 /pmc/articles/PMC6620621/ /pubmed/31283993 http://dx.doi.org/10.1016/j.pvr.2019.100169 Text en © 2019 The Authors http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Article
Molet, Lucie
Girlich, Delphine
Bonnin, Rémy A.
Proust, Alexis
Bouligand, Jérôme
Bachelerie, Françoise
Hantz, Sébastien
Deback, Claire
Identification by high-throughput sequencing of HPV variants and quasispecies that are untypeable by linear reverse blotting assay in cervical specimens
title Identification by high-throughput sequencing of HPV variants and quasispecies that are untypeable by linear reverse blotting assay in cervical specimens
title_full Identification by high-throughput sequencing of HPV variants and quasispecies that are untypeable by linear reverse blotting assay in cervical specimens
title_fullStr Identification by high-throughput sequencing of HPV variants and quasispecies that are untypeable by linear reverse blotting assay in cervical specimens
title_full_unstemmed Identification by high-throughput sequencing of HPV variants and quasispecies that are untypeable by linear reverse blotting assay in cervical specimens
title_short Identification by high-throughput sequencing of HPV variants and quasispecies that are untypeable by linear reverse blotting assay in cervical specimens
title_sort identification by high-throughput sequencing of hpv variants and quasispecies that are untypeable by linear reverse blotting assay in cervical specimens
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6620621/
https://www.ncbi.nlm.nih.gov/pubmed/31283993
http://dx.doi.org/10.1016/j.pvr.2019.100169
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