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Re-Designed Recombinant Hepatitis B Virus Vectors Enable Efficient Delivery of Versatile Cargo Genes to Hepatocytes with Improved Safety

Hepatitis B virus (HBV) takes humans as its sole natural host, and productive infection in vivo is restricted exclusively to hepatocytes in the liver. Consequently, HBV-derived viral vectors are attractive candidates for liver-targeting gene therapies. Previously, we developed a novel recombinant HB...

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Autores principales: Bai, Weiya, Cui, Xiaoxian, Chen, Ruidong, Tao, Shuai, Hong, Ran, Zhang, Jiming, Zhang, Junqi, Wang, Yongxiang, Xie, Youhua, Liu, Jing
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4885084/
https://www.ncbi.nlm.nih.gov/pubmed/27171107
http://dx.doi.org/10.3390/v8050129
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author Bai, Weiya
Cui, Xiaoxian
Chen, Ruidong
Tao, Shuai
Hong, Ran
Zhang, Jiming
Zhang, Junqi
Wang, Yongxiang
Xie, Youhua
Liu, Jing
author_facet Bai, Weiya
Cui, Xiaoxian
Chen, Ruidong
Tao, Shuai
Hong, Ran
Zhang, Jiming
Zhang, Junqi
Wang, Yongxiang
Xie, Youhua
Liu, Jing
author_sort Bai, Weiya
collection PubMed
description Hepatitis B virus (HBV) takes humans as its sole natural host, and productive infection in vivo is restricted exclusively to hepatocytes in the liver. Consequently, HBV-derived viral vectors are attractive candidates for liver-targeting gene therapies. Previously, we developed a novel recombinant HBV vector, designated 5c3c, from a highly replicative clinical isolate. 5c3c was demonstrated to be capable of efficiently delivering protein or RNA expression into infected primary tupaia hepatocytes (PTH), but the design of 5c3c imposes stringent restrictions on inserted sequences, which have limited its wider adoption. In this work, we addressed issues with 5c3c by re-designing the insertion strategy. The resultant vector, designated 5dCG, was more replicative than parental 5c3c, imposed no specific restrictions on inserted sequences, and allowed insertion of a variety of cargo genes without significant loss of replication efficiency. 5dCG-based recombinant HBV effectively delivered protein and RNA expression into infected PTH. Furthermore, due to the loss of functional core ORF, 5dCG vectors depend on co-infecting wild type HBV for replication and efficient expression of cargo genes. Development of the improved 5dCG vector makes wider applications of recombinant HBV possible, while dependence on co-infecting wild type HBV results in improved safety for certain in vivo applications.
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spelling pubmed-48850842016-05-31 Re-Designed Recombinant Hepatitis B Virus Vectors Enable Efficient Delivery of Versatile Cargo Genes to Hepatocytes with Improved Safety Bai, Weiya Cui, Xiaoxian Chen, Ruidong Tao, Shuai Hong, Ran Zhang, Jiming Zhang, Junqi Wang, Yongxiang Xie, Youhua Liu, Jing Viruses Article Hepatitis B virus (HBV) takes humans as its sole natural host, and productive infection in vivo is restricted exclusively to hepatocytes in the liver. Consequently, HBV-derived viral vectors are attractive candidates for liver-targeting gene therapies. Previously, we developed a novel recombinant HBV vector, designated 5c3c, from a highly replicative clinical isolate. 5c3c was demonstrated to be capable of efficiently delivering protein or RNA expression into infected primary tupaia hepatocytes (PTH), but the design of 5c3c imposes stringent restrictions on inserted sequences, which have limited its wider adoption. In this work, we addressed issues with 5c3c by re-designing the insertion strategy. The resultant vector, designated 5dCG, was more replicative than parental 5c3c, imposed no specific restrictions on inserted sequences, and allowed insertion of a variety of cargo genes without significant loss of replication efficiency. 5dCG-based recombinant HBV effectively delivered protein and RNA expression into infected PTH. Furthermore, due to the loss of functional core ORF, 5dCG vectors depend on co-infecting wild type HBV for replication and efficient expression of cargo genes. Development of the improved 5dCG vector makes wider applications of recombinant HBV possible, while dependence on co-infecting wild type HBV results in improved safety for certain in vivo applications. MDPI 2016-05-10 /pmc/articles/PMC4885084/ /pubmed/27171107 http://dx.doi.org/10.3390/v8050129 Text en © 2016 by the authors; licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC-BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Bai, Weiya
Cui, Xiaoxian
Chen, Ruidong
Tao, Shuai
Hong, Ran
Zhang, Jiming
Zhang, Junqi
Wang, Yongxiang
Xie, Youhua
Liu, Jing
Re-Designed Recombinant Hepatitis B Virus Vectors Enable Efficient Delivery of Versatile Cargo Genes to Hepatocytes with Improved Safety
title Re-Designed Recombinant Hepatitis B Virus Vectors Enable Efficient Delivery of Versatile Cargo Genes to Hepatocytes with Improved Safety
title_full Re-Designed Recombinant Hepatitis B Virus Vectors Enable Efficient Delivery of Versatile Cargo Genes to Hepatocytes with Improved Safety
title_fullStr Re-Designed Recombinant Hepatitis B Virus Vectors Enable Efficient Delivery of Versatile Cargo Genes to Hepatocytes with Improved Safety
title_full_unstemmed Re-Designed Recombinant Hepatitis B Virus Vectors Enable Efficient Delivery of Versatile Cargo Genes to Hepatocytes with Improved Safety
title_short Re-Designed Recombinant Hepatitis B Virus Vectors Enable Efficient Delivery of Versatile Cargo Genes to Hepatocytes with Improved Safety
title_sort re-designed recombinant hepatitis b virus vectors enable efficient delivery of versatile cargo genes to hepatocytes with improved safety
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4885084/
https://www.ncbi.nlm.nih.gov/pubmed/27171107
http://dx.doi.org/10.3390/v8050129
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