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The African Swine Fever Isolate ASFV-Kenya-IX-1033 Is Highly Virulent and Stable after Propagation in the Wild Boar Cell Line WSL

We describe the characterization of an African swine fever genotype IX virus (ASFV-Kenya-IX-1033), which was isolated from a domestic pig in western Kenya during a reported outbreak. This includes the efficiency of virus replication and in vivo virulence, together with genome stability and virulence...

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Autores principales: Hemmink, Johanneke D., Abkallo, Hussein M., Henson, Sonal P., Khazalwa, Emmanuel M., Oduor, Bernard, Lacasta, Anna, Okoth, Edward, Riitho, Victor, Fuchs, Walter, Bishop, Richard P., Steinaa, Lucilla
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9505471/
https://www.ncbi.nlm.nih.gov/pubmed/36146718
http://dx.doi.org/10.3390/v14091912
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author Hemmink, Johanneke D.
Abkallo, Hussein M.
Henson, Sonal P.
Khazalwa, Emmanuel M.
Oduor, Bernard
Lacasta, Anna
Okoth, Edward
Riitho, Victor
Fuchs, Walter
Bishop, Richard P.
Steinaa, Lucilla
author_facet Hemmink, Johanneke D.
Abkallo, Hussein M.
Henson, Sonal P.
Khazalwa, Emmanuel M.
Oduor, Bernard
Lacasta, Anna
Okoth, Edward
Riitho, Victor
Fuchs, Walter
Bishop, Richard P.
Steinaa, Lucilla
author_sort Hemmink, Johanneke D.
collection PubMed
description We describe the characterization of an African swine fever genotype IX virus (ASFV-Kenya-IX-1033), which was isolated from a domestic pig in western Kenya during a reported outbreak. This includes the efficiency of virus replication and in vivo virulence, together with genome stability and virulence, following passage in blood macrophages and in a wild boar lung cell line (WSL). The ASFV-Kenya-IX-1033 stock retained its ability to replicate in primary macrophages and retained virulence in vivo, following more than 20 passages in a WSL. At the whole genome level, a few single-nucleotide differences were observed between the macrophage and WSL-propagated viruses. Thus, we propose that the WSL is suitable for the production of live-attenuated ASFV vaccine candidates based on the modification of this wild-type isolate. The genome sequences for ASFV-Kenya-IX-1033 propagated in macrophages and in WSL cells were submitted to GenBank, and a challenge model based on the isolate was developed. This will aid the development of vaccines against the genotype IX ASFV circulating in eastern and central Africa.
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spelling pubmed-95054712022-09-24 The African Swine Fever Isolate ASFV-Kenya-IX-1033 Is Highly Virulent and Stable after Propagation in the Wild Boar Cell Line WSL Hemmink, Johanneke D. Abkallo, Hussein M. Henson, Sonal P. Khazalwa, Emmanuel M. Oduor, Bernard Lacasta, Anna Okoth, Edward Riitho, Victor Fuchs, Walter Bishop, Richard P. Steinaa, Lucilla Viruses Article We describe the characterization of an African swine fever genotype IX virus (ASFV-Kenya-IX-1033), which was isolated from a domestic pig in western Kenya during a reported outbreak. This includes the efficiency of virus replication and in vivo virulence, together with genome stability and virulence, following passage in blood macrophages and in a wild boar lung cell line (WSL). The ASFV-Kenya-IX-1033 stock retained its ability to replicate in primary macrophages and retained virulence in vivo, following more than 20 passages in a WSL. At the whole genome level, a few single-nucleotide differences were observed between the macrophage and WSL-propagated viruses. Thus, we propose that the WSL is suitable for the production of live-attenuated ASFV vaccine candidates based on the modification of this wild-type isolate. The genome sequences for ASFV-Kenya-IX-1033 propagated in macrophages and in WSL cells were submitted to GenBank, and a challenge model based on the isolate was developed. This will aid the development of vaccines against the genotype IX ASFV circulating in eastern and central Africa. MDPI 2022-08-29 /pmc/articles/PMC9505471/ /pubmed/36146718 http://dx.doi.org/10.3390/v14091912 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Hemmink, Johanneke D.
Abkallo, Hussein M.
Henson, Sonal P.
Khazalwa, Emmanuel M.
Oduor, Bernard
Lacasta, Anna
Okoth, Edward
Riitho, Victor
Fuchs, Walter
Bishop, Richard P.
Steinaa, Lucilla
The African Swine Fever Isolate ASFV-Kenya-IX-1033 Is Highly Virulent and Stable after Propagation in the Wild Boar Cell Line WSL
title The African Swine Fever Isolate ASFV-Kenya-IX-1033 Is Highly Virulent and Stable after Propagation in the Wild Boar Cell Line WSL
title_full The African Swine Fever Isolate ASFV-Kenya-IX-1033 Is Highly Virulent and Stable after Propagation in the Wild Boar Cell Line WSL
title_fullStr The African Swine Fever Isolate ASFV-Kenya-IX-1033 Is Highly Virulent and Stable after Propagation in the Wild Boar Cell Line WSL
title_full_unstemmed The African Swine Fever Isolate ASFV-Kenya-IX-1033 Is Highly Virulent and Stable after Propagation in the Wild Boar Cell Line WSL
title_short The African Swine Fever Isolate ASFV-Kenya-IX-1033 Is Highly Virulent and Stable after Propagation in the Wild Boar Cell Line WSL
title_sort african swine fever isolate asfv-kenya-ix-1033 is highly virulent and stable after propagation in the wild boar cell line wsl
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9505471/
https://www.ncbi.nlm.nih.gov/pubmed/36146718
http://dx.doi.org/10.3390/v14091912
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