Publications by authors named "I Vicenti"

Background: Next-generation sequencing (NGS) kits are needed to finalise the transition from Sanger sequencing to NGS in HIV-1 genotypic drug resistance testing.

Materials And Methods: We compared a homemade NGS amplicon-based protocol and the AD4SEQ HIV-1 Solution v2 (AD4SEQ) NGS kit from Arrow Diagnostics for identifying resistance-associated mutations (RAMs) above the 5% threshold in 28 plasma samples where Sanger sequencing previously detected at least one RAM.

Results: The samples had a median 4.

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Article Synopsis
  • Next-generation sequencing (NGS) is replacing Sanger sequencing for HIV genotypic drug resistance testing, and this study assessed how consistent different interpretation tools are in a real-world setting.
  • The research involved analyzing NGS results from 11 Italian labs using the AD4SEQ HIV-1 Solution v2 kit and compared interpretations from SmartVir, HyDRA Web, and Stanford HIVdb.
  • Findings indicated that viremia levels and HIV subtypes influence the validity of NGS-GRT, with only mutations present at frequencies over 10% showing reliable agreement among the interpretation tools.
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Influenza viruses (IV) are single-stranded RNA viruses with a negative-sense genome and have the potential to cause pandemics. While vaccines exist for influenza, their protection is only partial. Additionally, there is only a limited number of approved anti-IV drugs, which are associated to emergence of drug resistance.

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Motivation: In predicting HIV therapy outcomes, a critical clinical question is whether using historical information can enhance predictive capabilities compared with current or latest available data analysis. This study analyses whether historical knowledge, which includes viral mutations detected in all genotypic tests before therapy, their temporal occurrence, and concomitant viral load measurements, can bring improvements. We introduce a method to weigh mutations, considering the previously enumerated factors and the reference mutation-drug Stanford resistance tables.

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Introduction: The 2021/2022 influenza season was not characterised by a well-defined incidence peak. As reported by the Italian National Institute of Health, a high value of incidence of influenza cases was recorded in week 13, but it was still lower than in other influenza seasons. This abnormal circulation was probably due to relaxation of the COVID-19 pandemic restriction measures, such as social distancing, smart-working, home leaning and the use of masks, which greatly reduced the circulation of respiratory-transmitted viruses, including human respiratory syncytial virus (HRSV).

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