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Attenuation of Zika Virus by Passage in Human HeLa Cells

Zika virus (ZIKV) is a mosquito-borne Flavivirus. Previous studies have shown that mosquito-transmitted flaviviruses, including yellow fever, Japanese encephalitis, and West Nile viruses, could be attenuated by serial passaging in human HeLa cells. Therefore, it was hypothesized that wild-type ZIKV...

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Autores principales: Li, Li, Collins, Natalie D., Widen, Steven G., Davis, Emily H., Kaiser, Jaclyn A., White, Mellodee M., Greenberg, M. Banks, Barrett, Alan D. T., Bourne, Nigel, Sarathy, Vanessa V.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6789458/
https://www.ncbi.nlm.nih.gov/pubmed/31434319
http://dx.doi.org/10.3390/vaccines7030093
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author Li, Li
Collins, Natalie D.
Widen, Steven G.
Davis, Emily H.
Kaiser, Jaclyn A.
White, Mellodee M.
Greenberg, M. Banks
Barrett, Alan D. T.
Bourne, Nigel
Sarathy, Vanessa V.
author_facet Li, Li
Collins, Natalie D.
Widen, Steven G.
Davis, Emily H.
Kaiser, Jaclyn A.
White, Mellodee M.
Greenberg, M. Banks
Barrett, Alan D. T.
Bourne, Nigel
Sarathy, Vanessa V.
author_sort Li, Li
collection PubMed
description Zika virus (ZIKV) is a mosquito-borne Flavivirus. Previous studies have shown that mosquito-transmitted flaviviruses, including yellow fever, Japanese encephalitis, and West Nile viruses, could be attenuated by serial passaging in human HeLa cells. Therefore, it was hypothesized that wild-type ZIKV would also be attenuated after HeLa cell passaging. A human isolate from the recent ZIKV epidemic was subjected to serial HeLa cell passaging, resulting in attenuated in vitro replication in both Vero and A549 cells. Additionally, infection of AG129 mice with 10 plaque forming units (pfu) of wild-type ZIKV led to viremia and mortality at 12 days, whereas infection with 10(3) pfu of HeLa-passage 6 (P6) ZIKV led to lower viremia, significant delay in mortality (median survival: 23 days), and increased cytokine and chemokine responses. Genomic sequencing of HeLa-passaged virus identified two amino acid substitutions as early as HeLa-P3: pre-membrane E87K and nonstructural protein 1 R103K. Furthermore, both substitutions were present in virus harvested from HeLa-P6-infected animal tissue. Together, these data show that, similarly to other mosquito-borne flaviviruses, ZIKV is attenuated following passaging in HeLa cells. This strategy can be used to improve understanding of substitutions that contribute to attenuation of ZIKV and be applied to vaccine development across multiple platforms.
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spelling pubmed-67894582019-10-16 Attenuation of Zika Virus by Passage in Human HeLa Cells Li, Li Collins, Natalie D. Widen, Steven G. Davis, Emily H. Kaiser, Jaclyn A. White, Mellodee M. Greenberg, M. Banks Barrett, Alan D. T. Bourne, Nigel Sarathy, Vanessa V. Vaccines (Basel) Article Zika virus (ZIKV) is a mosquito-borne Flavivirus. Previous studies have shown that mosquito-transmitted flaviviruses, including yellow fever, Japanese encephalitis, and West Nile viruses, could be attenuated by serial passaging in human HeLa cells. Therefore, it was hypothesized that wild-type ZIKV would also be attenuated after HeLa cell passaging. A human isolate from the recent ZIKV epidemic was subjected to serial HeLa cell passaging, resulting in attenuated in vitro replication in both Vero and A549 cells. Additionally, infection of AG129 mice with 10 plaque forming units (pfu) of wild-type ZIKV led to viremia and mortality at 12 days, whereas infection with 10(3) pfu of HeLa-passage 6 (P6) ZIKV led to lower viremia, significant delay in mortality (median survival: 23 days), and increased cytokine and chemokine responses. Genomic sequencing of HeLa-passaged virus identified two amino acid substitutions as early as HeLa-P3: pre-membrane E87K and nonstructural protein 1 R103K. Furthermore, both substitutions were present in virus harvested from HeLa-P6-infected animal tissue. Together, these data show that, similarly to other mosquito-borne flaviviruses, ZIKV is attenuated following passaging in HeLa cells. This strategy can be used to improve understanding of substitutions that contribute to attenuation of ZIKV and be applied to vaccine development across multiple platforms. MDPI 2019-08-20 /pmc/articles/PMC6789458/ /pubmed/31434319 http://dx.doi.org/10.3390/vaccines7030093 Text en © 2019 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
Li, Li
Collins, Natalie D.
Widen, Steven G.
Davis, Emily H.
Kaiser, Jaclyn A.
White, Mellodee M.
Greenberg, M. Banks
Barrett, Alan D. T.
Bourne, Nigel
Sarathy, Vanessa V.
Attenuation of Zika Virus by Passage in Human HeLa Cells
title Attenuation of Zika Virus by Passage in Human HeLa Cells
title_full Attenuation of Zika Virus by Passage in Human HeLa Cells
title_fullStr Attenuation of Zika Virus by Passage in Human HeLa Cells
title_full_unstemmed Attenuation of Zika Virus by Passage in Human HeLa Cells
title_short Attenuation of Zika Virus by Passage in Human HeLa Cells
title_sort attenuation of zika virus by passage in human hela cells
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6789458/
https://www.ncbi.nlm.nih.gov/pubmed/31434319
http://dx.doi.org/10.3390/vaccines7030093
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