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Fluorescent and Bioluminescent Reporter Mouse-Adapted Ebola Viruses Maintain Pathogenicity and Can Be Visualized in Vivo. | LitMetric

AI Article Synopsis

  • The study focuses on creating mouse-adapted Ebola virus (EBOV) strains, which include versions with fluorescent and bioluminescent reporter proteins for tracking infection.
  • The recombinant mouse-adapted EBOVs were found to have no negative impact on viral growth and caused high lethality rates in infected mice (100% for some strains, 73% for those with dual reporters).
  • The researchers successfully detected viral presence using advanced imaging techniques, supporting the utility of these adapted EBOV strains for further understanding Ebola pathology in animal models.

Article Abstract

Ebola virus (EBOV) causes lethal disease in humans but not in mice. Here, we generated recombinant mouse-adapted (MA) EBOVs, including 1 based on the previously reported serially adapted strain (rMA-EBOV), along with single-reporter rMA-EBOVs expressing either fluorescent (ZsGreen1 [ZsG]) or bioluminescent (nano-luciferase [nLuc]) reporters, and dual-reporter rMA-EBOVs expressing both ZsG and nLuc. No detriment to viral growth in vitro was seen with inclusion of MA-associated mutations or reporter proteins. In CD-1 mice, infection with MA-EBOV, rMA-EBOV, and single-reporter rMA-EBOVs conferred 100% lethality; infection with dual-reporter rMA-EBOV resulted in 73% lethality. Bioluminescent signal from rMA-EBOV expressing nLuc was detected in vivo and ex vivo using the IVIS Spectrum CT. Fluorescent signal from rMA-EBOV expressing ZsG was detected in situ using handheld blue-light transillumination and ex vivo through epi-illumination with the IVIS Spectrum CT. These data support the use of reporter MA-EBOV for studies of Ebola virus in animal disease models.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11014640PMC
http://dx.doi.org/10.1093/infdis/jiad136DOI Listing

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