Globally, about 70 million people are infected with the hepatitis C virus (HCV), and about 400 thousand people die annually from chronic hepatitis C complications. The management of patients with chronic hepatitis C may require HCV genotyping, since the efficiency of some widely used antiviral drugs strongly depend on the viral genotype and/or subtype. The most prevalent HCV circulating recombinant form, RF1_2k/1b, is misclassified as genotype 2 by many commercial HCV genotyping kits, based on the RT-PCR analysis of the 5' untranslated region of the HCV genome. This leads to inappropriate patient treatment, since the accepted treatment schemes for HCV genotype 2 are ineffective for the RF1_2k/1b. Here we describe a method for detecting the RNA HCV RF1_2k/1b in blood samples by RT-PCR analysis of two regions in HCV genome (5'UTR and NS5b). The method was tested on 240 blood serum samples from HCV infected patients, in which HCV genotype was defined as 2 or mixed (2+1 or 2+3) by the two commercial genotyping kits "OT-Hepatogen-C genotype" ("DNA-Technology", Moscow) and "RealBest RNA HCV-1/2/3" ("Vector- Best ", Novosibirsk). 50 (20.8%) RF1_2k/1b cases were revealed, including three mixed infections: RF1_2k/1b + 1a, RF1_2k/1b + 3a, RF1_2k/1b + 1b. In all cases, the accuracy of HCV typing by the proposed method was confirmed by Sanger sequencing and phylogenetic analysis. The method is easy to implement into clinical practice and may be used in clinical settings equipped for RT-PCR analysis to correctly identify the recombinant variant RF1_2k/1b.
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http://dx.doi.org/10.51620/0869-2084-2021-66-2-122-128 | DOI Listing |
Viruses
December 2024
Department of Microbiology, Virology, and Immunology, I. Horbachevsky Ternopil National Medical University, 46001 Ternopil, Ukraine.
Metformin, a widely used antidiabetic medication, has emerged as a promising broad-spectrum antiviral agent due to its ability to modulate cellular pathways essential for viral replication. By activating AMPK, metformin depletes cellular energy reserves that viruses rely on, effectively limiting the replication of pathogens such as influenza, HIV, SARS-CoV-2, HBV, and HCV. Its role in inhibiting the mTOR pathway, crucial for viral protein synthesis and reactivation, is particularly significant in managing infections caused by HIV, CMV, and EBV.
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December 2024
Centre for Outcomes Research and Evaluation, Research Institute of the McGill University Health Centre, Montreal, Canada.
Hepatitis C virus (HCV) disproportionately affects certain sub-populations, including people with experience of incarceration (PWEI). Little is known about how perceptions of HCV and treatment have changed despite simplifications in testing and treatment in carceral settings. Nineteen semi-structured interviews were conducted with people living with or having a history of HCV infection released from Quebec provincial prison.
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December 2024
Department of Translational Medicine, Università del Piemonte Orientale, 28100 Novara, Italy.
Hepatitis C virus (HCV) infection is a significant risk factor for liver cirrhosis and hepatocellular carcinoma (HCC). Traditionally, the primary prevention strategy for HCV-associated HCC has focused on removing infection through antiviral regimes. Currently, highly effective direct-acting antivirals (DAAs) offer extraordinary success across all patient categories, including cirrhotics.
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December 2024
Infectious Diseases Department, Royal Adelaide Hospital, Central Adelaide Local Health Network, Adelaide 5000, Australia.
Background: Point-of-care hepatitis C virus (HCV) testing streamlines testing and treatment pathways. In this study, we established an HCV model of care in a homelessness service by offering antibody and RNA point-of-care testing.
Methods: A nurse and peer-led HCV model of care with peer support were implemented between November 2021 and April 2022 at a homelessness service in Adelaide, Australia.
Viruses
November 2024
Department of Infectious Diseases, Molecular Virology, Section Virus-Host Interactions, Heidelberg University, 69120 Heidelberg, Germany.
The study of hepatitis C virus (HCV) replication in cell culture is mainly based on cloned viral isolates requiring adaptation for efficient replication in Huh7 hepatoma cells. The analysis of wild-type (WT) isolates was enabled by the expression of SEC14L2 and by inhibitors targeting deleterious host factors. Here, we aimed to optimize cell culture models to allow infection with HCV from patient sera.
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