Computational analysis of resistance mutations in the hepatitis C virus

Hepatitis C virus (HCV) continues to be a public health problem worldwide. The development of drugs that target virus proteins such as NS5B, aims to provide more effective treatment in the future. These direct-acting antivirals (DAAs) have demonstrated potent in vitro and in vivo effect; however, mu...

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Main Authors: Karina Salvatierra, Hector Florez
Format: Article
Language:English
Published: Universidad Distrital Francisco José de Caldas 2018-05-01
Series:Revista Vínculos
Subjects:
Online Access:https://revistas.udistrital.edu.co/index.php/vinculos/article/view/12973
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spelling doaj-7f9efd091e3d4e6fbffc15f0a8dc421e2020-11-25T02:03:39ZengUniversidad Distrital Francisco José de CaldasRevista Vínculos1794-211X2322-939X2018-05-01151273310.14483/2322939X.1297312973Computational analysis of resistance mutations in the hepatitis C virusKarina SalvatierraHector FlorezHepatitis C virus (HCV) continues to be a public health problem worldwide. The development of drugs that target virus proteins such as NS5B, aims to provide more effective treatment in the future. These direct-acting antivirals (DAAs) have demonstrated potent in vitro and in vivo effect; however, mutations have been described in HCV NS5B associated with resistance to DAA. Detecting mutations that are resistant to DAAs is important to prevent potential treatment failures. In this work, we developed a software to analyze mutations that are resistant to DAAs in NS5B gene of HCV. For this, we used the NS5B gene sequence isolate Con1 genotype 1b HCV, based on the main positions mutations associated with resistance to DAAs in vitro and in vivo described in the literature. The software algorithm allows computer analysis of possible changes in nucleotide and amino acid positions associated with resistance mutations to DAAs in NS5B of HCVhttps://revistas.udistrital.edu.co/index.php/vinculos/article/view/12973antiviralscomputational analysishepatitis c virusns5b
collection DOAJ
language English
format Article
sources DOAJ
author Karina Salvatierra
Hector Florez
spellingShingle Karina Salvatierra
Hector Florez
Computational analysis of resistance mutations in the hepatitis C virus
Revista Vínculos
antivirals
computational analysis
hepatitis c virus
ns5b
author_facet Karina Salvatierra
Hector Florez
author_sort Karina Salvatierra
title Computational analysis of resistance mutations in the hepatitis C virus
title_short Computational analysis of resistance mutations in the hepatitis C virus
title_full Computational analysis of resistance mutations in the hepatitis C virus
title_fullStr Computational analysis of resistance mutations in the hepatitis C virus
title_full_unstemmed Computational analysis of resistance mutations in the hepatitis C virus
title_sort computational analysis of resistance mutations in the hepatitis c virus
publisher Universidad Distrital Francisco José de Caldas
series Revista Vínculos
issn 1794-211X
2322-939X
publishDate 2018-05-01
description Hepatitis C virus (HCV) continues to be a public health problem worldwide. The development of drugs that target virus proteins such as NS5B, aims to provide more effective treatment in the future. These direct-acting antivirals (DAAs) have demonstrated potent in vitro and in vivo effect; however, mutations have been described in HCV NS5B associated with resistance to DAA. Detecting mutations that are resistant to DAAs is important to prevent potential treatment failures. In this work, we developed a software to analyze mutations that are resistant to DAAs in NS5B gene of HCV. For this, we used the NS5B gene sequence isolate Con1 genotype 1b HCV, based on the main positions mutations associated with resistance to DAAs in vitro and in vivo described in the literature. The software algorithm allows computer analysis of possible changes in nucleotide and amino acid positions associated with resistance mutations to DAAs in NS5B of HCV
topic antivirals
computational analysis
hepatitis c virus
ns5b
url https://revistas.udistrital.edu.co/index.php/vinculos/article/view/12973
work_keys_str_mv AT karinasalvatierra computationalanalysisofresistancemutationsinthehepatitiscvirus
AT hectorflorez computationalanalysisofresistancemutationsinthehepatitiscvirus
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