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Early Isolates of SARS-CoV-2 Result in Different Pathogenesis in the Transduced Mouse Model of COVID-19.
Smither, Sophie J; Kempster, Sarah; Priestnall, Simon L; Suárez-Bonnet, Alejandro; Stapleton, Helen; Laws, Thomas R; Ferguson, Deborah; Almond, Neil; Lever, Mark S; Williamson, E Diane.
  • Smither SJ; Chemical Biological and Radiological (CBR) Division, Defence Science and Technology Laboratory (Dstl), Salisbury SP4 0JQ, UK.
  • Kempster S; Division of Infectious Disease Diagnostics, National Institute for Biological Standards and Control (NIBSC), Medicines and Healthcare Products Regulatory Agency, Blanche Lane, South Mimms EN6 3QG, UK.
  • Priestnall SL; Department Pathobiology & Population Sciences, The Royal Veterinary College, Hawkshead Lane, North Mymms, Hatfield AL9 7TA, UK.
  • Suárez-Bonnet A; Department Pathobiology & Population Sciences, The Royal Veterinary College, Hawkshead Lane, North Mymms, Hatfield AL9 7TA, UK.
  • Stapleton H; Chemical Biological and Radiological (CBR) Division, Defence Science and Technology Laboratory (Dstl), Salisbury SP4 0JQ, UK.
  • Laws TR; Chemical Biological and Radiological (CBR) Division, Defence Science and Technology Laboratory (Dstl), Salisbury SP4 0JQ, UK.
  • Ferguson D; Division of Infectious Disease Diagnostics, National Institute for Biological Standards and Control (NIBSC), Medicines and Healthcare Products Regulatory Agency, Blanche Lane, South Mimms EN6 3QG, UK.
  • Almond N; Division of Infectious Disease Diagnostics, National Institute for Biological Standards and Control (NIBSC), Medicines and Healthcare Products Regulatory Agency, Blanche Lane, South Mimms EN6 3QG, UK.
  • Lever MS; Chemical Biological and Radiological (CBR) Division, Defence Science and Technology Laboratory (Dstl), Salisbury SP4 0JQ, UK.
  • Williamson ED; Chemical Biological and Radiological (CBR) Division, Defence Science and Technology Laboratory (Dstl), Salisbury SP4 0JQ, UK.
Viruses ; 14(8)2022 08 13.
Article in English | MEDLINE | ID: covidwho-1987992
ABSTRACT
A transduced mouse model of SARS-CoV-2 infection was established using Balb/c mice. This was achieved through the adenovirus-vectored delivery of the hACE2 gene, to render the mice transiently susceptible to the virus. The model was characterised in terms of the dissemination of hACE2 receptor expression, the dissemination of three SARS-CoV-2 virus variants in vivo up to 10 days following challenge, the resulting histopathology and the clinical signs induced in the mice. In transduced mice, the infection was short-term, with a rapid loss in body weight starting at day 2 with maximum weight loss at day 4, followed by subsequent recovery until day 10. The induced expression of the hACE2 receptor was evident in the lungs, but, upon challenge, the SARS-CoV-2 virus disseminated beyond the lungs to spleen, liver and kidney, peaking at day 2 post infection. However, by day 10 post infection, the virus was undetectable. The lung histopathology was characterised by bronchial and alveolar inflammation, which was still present at day 10 post infection. Transduced mice had differential responses to viral variants ranking CVR-Glasgow 1 > Victoria-1 > England-2 isolates in terms of body weight loss. The transduced mouse model provides a consistent and manipulatable model of SARS-CoV-2 infection to screen viral variants for their relative virulence and possible interventions.
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Full text: Available Collection: International databases Database: MEDLINE Main subject: SARS-CoV-2 / COVID-19 Type of study: Prognostic study Topics: Variants Limits: Animals Language: English Year: 2022 Document Type: Article Affiliation country: V14081769

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Full text: Available Collection: International databases Database: MEDLINE Main subject: SARS-CoV-2 / COVID-19 Type of study: Prognostic study Topics: Variants Limits: Animals Language: English Year: 2022 Document Type: Article Affiliation country: V14081769