A nanoluciferase SFTSV for rapid screening antivirals and real-time visualization of virus infection in mice

EBIOMEDICINE(2024)

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摘要
Background Severe fever with thrombocytopenia syndrome virus (SFTSV) is an emerging tick -borne pathogen that causes severe hemorrhagic fever in humans, but no FDA -approved specific antivirals or vaccines are available to treat or prevent SFTS. Methods The plasmids construction and transfection were performed to generate the recombinant SFTSV harboring the nanoluciferase gene (SFTSV-Nluc). Immunostaining plaque assay was performed to measure viral titers, and DNA electrophoresis and Sanger sequencing were performed to evaluate the genetic stability. Luciferase assay and quantitative RT-PCR were performed to evaluate the efficacy of antivirals in vitro. Bioluminescence imaging, titration of virus from excised organs, hematology, and histopathology and immunohistochemistry were performed to evaluate the efficacy of antivirals in vivo. Findings SFTSV-Nluc exhibited high genetic stability and replication kinetics similar to those of wild -type virus (SFTSVwt), then a rapid high -throughput screening system for identifying inhibitors to treat SFTS was developed, and a nucleoside analog, 4-FlU, was identified to effectively inhibit SFTSV in vitro. SFTSV-Nluc mimicked the replication characteristics and localization of SFTSVwt in counterpart model mice. Bioluminescence imaging of SFTSV-Nluc allowed real-time visualization and quantification of SFTSV replication in the mice. 4-FlU was demonstrated to inhibit the replication of SFTSV with more efficiency than T-705 and without obvious adverse effect in vivo. Interpretation The high -throughput screening system based on SFTSV-Nluc for use in vitro and in vivo revealed that a safe and effective antiviral nucleoside analog, 4-FlU, may be a basis for the strategic treatment of SFTSV and other bunyavirus infections, paving the way for the discovery of antivirals.
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关键词
Severe fever with thrombocytopenia syndrome virus,Nanoluciferase reporter gene,High-throughput drug screening,In vivo bioluminescence imaging,4'-fluorouridine
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