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Non-invasive bioluminescence imaging of HCoV-OC43 infection and therapy in the central nervous system of live mice

Human coronaviruses (HCoVs) are important pathogens that cause upper respiratory tract infections and have neuroinvasive abilities; however, little is known about the dynamic infection process of CoVs in vivo, and there are currently no specific antiviral drugs to prevent or treat HCoV infection. He...

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Autores principales: Niu, Junwei, Shen, Liang, Huang, Baoying, Ye, Fei, Zhao, Li, Wang, Huijuan, Deng, Yao, Tan, Wenjie
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier B.V. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7114176/
https://www.ncbi.nlm.nih.gov/pubmed/31705922
http://dx.doi.org/10.1016/j.antiviral.2019.104646
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author Niu, Junwei
Shen, Liang
Huang, Baoying
Ye, Fei
Zhao, Li
Wang, Huijuan
Deng, Yao
Tan, Wenjie
author_facet Niu, Junwei
Shen, Liang
Huang, Baoying
Ye, Fei
Zhao, Li
Wang, Huijuan
Deng, Yao
Tan, Wenjie
author_sort Niu, Junwei
collection PubMed
description Human coronaviruses (HCoVs) are important pathogens that cause upper respiratory tract infections and have neuroinvasive abilities; however, little is known about the dynamic infection process of CoVs in vivo, and there are currently no specific antiviral drugs to prevent or treat HCoV infection. Here, we verified the replication ability and pathogenicity of a reporter HCoV-OC43 strain expressing Renilla luciferase (Rluc; rOC43-ns2DelRluc) in mice with different genetic backgrounds (C57BL/6 and BALB/c). Additionally, we monitored the spatial and temporal progression of HCoV-OC43 through the central nervous system (CNS) of live BALB/c mice after intranasal or intracerebral inoculation with rOC43-ns2DelRluc. We found that rOC43-ns2DelRluc was fatal to suckling mice after intranasal inoculation, and that viral titers and Rluc expression were detected in the brains and spinal cords of mice infected with rOC43-ns2DelRluc. Moreover, viral replication was initially observed in the brain by non-invasive bioluminescence imaging before the infection spread to the spinal cord of BALB/c mice, consistent with its tropism in the CNS. Furthermore, the Rluc readout correlated with the HCoV replication ability and protein expression, which allowed quantification of antiviral activity in live mice. Additionally, we validated that chloroquine strongly inhibited rOC43-ns2DelRluc replication in vivo. These results provide new insights into the temporal and spatial dissemination of HCoV-OC43 in the CNS, and our methods provide an extremely sensitive platform for evaluating the efficacy of antiviral therapies to treat neuroinvasive HCoVs in live mice.
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spelling pubmed-71141762020-04-02 Non-invasive bioluminescence imaging of HCoV-OC43 infection and therapy in the central nervous system of live mice Niu, Junwei Shen, Liang Huang, Baoying Ye, Fei Zhao, Li Wang, Huijuan Deng, Yao Tan, Wenjie Antiviral Res Article Human coronaviruses (HCoVs) are important pathogens that cause upper respiratory tract infections and have neuroinvasive abilities; however, little is known about the dynamic infection process of CoVs in vivo, and there are currently no specific antiviral drugs to prevent or treat HCoV infection. Here, we verified the replication ability and pathogenicity of a reporter HCoV-OC43 strain expressing Renilla luciferase (Rluc; rOC43-ns2DelRluc) in mice with different genetic backgrounds (C57BL/6 and BALB/c). Additionally, we monitored the spatial and temporal progression of HCoV-OC43 through the central nervous system (CNS) of live BALB/c mice after intranasal or intracerebral inoculation with rOC43-ns2DelRluc. We found that rOC43-ns2DelRluc was fatal to suckling mice after intranasal inoculation, and that viral titers and Rluc expression were detected in the brains and spinal cords of mice infected with rOC43-ns2DelRluc. Moreover, viral replication was initially observed in the brain by non-invasive bioluminescence imaging before the infection spread to the spinal cord of BALB/c mice, consistent with its tropism in the CNS. Furthermore, the Rluc readout correlated with the HCoV replication ability and protein expression, which allowed quantification of antiviral activity in live mice. Additionally, we validated that chloroquine strongly inhibited rOC43-ns2DelRluc replication in vivo. These results provide new insights into the temporal and spatial dissemination of HCoV-OC43 in the CNS, and our methods provide an extremely sensitive platform for evaluating the efficacy of antiviral therapies to treat neuroinvasive HCoVs in live mice. Elsevier B.V. 2020-01 2019-11-06 /pmc/articles/PMC7114176/ /pubmed/31705922 http://dx.doi.org/10.1016/j.antiviral.2019.104646 Text en © 2019 Elsevier B.V. All rights reserved. Since January 2020 Elsevier has created a COVID-19 resource centre with free information in English and Mandarin on the novel coronavirus COVID-19. The COVID-19 resource centre is hosted on Elsevier Connect, the company's public news and information website. Elsevier hereby grants permission to make all its COVID-19-related research that is available on the COVID-19 resource centre - including this research content - immediately available in PubMed Central and other publicly funded repositories, such as the WHO COVID database with rights for unrestricted research re-use and analyses in any form or by any means with acknowledgement of the original source. These permissions are granted for free by Elsevier for as long as the COVID-19 resource centre remains active.
spellingShingle Article
Niu, Junwei
Shen, Liang
Huang, Baoying
Ye, Fei
Zhao, Li
Wang, Huijuan
Deng, Yao
Tan, Wenjie
Non-invasive bioluminescence imaging of HCoV-OC43 infection and therapy in the central nervous system of live mice
title Non-invasive bioluminescence imaging of HCoV-OC43 infection and therapy in the central nervous system of live mice
title_full Non-invasive bioluminescence imaging of HCoV-OC43 infection and therapy in the central nervous system of live mice
title_fullStr Non-invasive bioluminescence imaging of HCoV-OC43 infection and therapy in the central nervous system of live mice
title_full_unstemmed Non-invasive bioluminescence imaging of HCoV-OC43 infection and therapy in the central nervous system of live mice
title_short Non-invasive bioluminescence imaging of HCoV-OC43 infection and therapy in the central nervous system of live mice
title_sort non-invasive bioluminescence imaging of hcov-oc43 infection and therapy in the central nervous system of live mice
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7114176/
https://www.ncbi.nlm.nih.gov/pubmed/31705922
http://dx.doi.org/10.1016/j.antiviral.2019.104646
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