Identification of two novel subtypes of hepatitis C virus genotype 8 and a potential new genotype successfully treated with direct acting antivirals

Hepatitis C virus (HCV) has a high genetic diversity and is classified into 8 genotypes and over 90 subtypes with some endemic to specific world regions. This could compromise direct-acting antiviral (DAA) efficacy and global HCV elimination. We characterised HCV subtypes 'rare' to the UK...

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Veröffentlicht in:The Journal of infectious diseases 2024-05, Vol.NA
Hauptverfasser: Mbisa, Jean L, Lapp, Zena, Bibby, David F, Phillips, Laura T, Manso, Carmen F, Packer, Simon, Simmons, Ruth, Harris, Kathryn, Mohan, Jaiganesh, Chinnappan, Lalitha, Leitner, Thomas, Bradshaw, Daniel
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Sprache:eng
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Zusammenfassung:Hepatitis C virus (HCV) has a high genetic diversity and is classified into 8 genotypes and over 90 subtypes with some endemic to specific world regions. This could compromise direct-acting antiviral (DAA) efficacy and global HCV elimination. We characterised HCV subtypes 'rare' to the UK (non-1a/1b/2b/3a/4d) by whole genome sequencing via a national surveillance programme. Genetic analyses to determine the genotype of samples with unresolved genotypes were undertaken by comparison with ICTV HCV reference sequences. Two HCV variants were characterised as being closely related to the recently identified genotype 8 (GT8), with >85% pairwise genetic distance similarity to GT8 sequences and within the typical inter-subtype genetic distance range. The individuals infected by the variants were UK residents originally from Pakistan and India. In contrast, a third variant was only confidently identified to be more similar to GT6 compared to other genotypes across 6% of the genome and was isolated from a UK resident originally from Guyana. All three were cured with pangenotypic DAAs (Sofosbuvir + Velpatasvir or Glecaprevir + Pibrentasvir) despite the presence of resistance polymorphisms in NS3 (80 K/168E), NS5A (28 V/30S/62L/92S/93S) and NS5B (159F). This study expands our knowledge of HCV diversity by identifying two new GT8 subtypes and potentially a new genotype.
ISSN:0022-1899
1537-6613
1537-6613
DOI:10.1093/infdis/jiae253