A Fluorescent Real-Time Plaque Assay Enables Single-Cell Analysis of Virus-Induced Cytopathic Effect by Live-Cell Imaging
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Arias Arias, Jorge Luis
Corrales Aguilar, Eugenia
Mora Rodríguez, Rodrigo Antonio
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Abstract
Conventional plaque assays rely on the use of overlays to restrict viral infection allowing
the formation of distinct foci that grow in time as the replication cycle continues leading to countable
plaques that are visualized with standard techniques such as crystal violet, neutral red, or immuno-
labeling. This classical approach takes several days until large enough plaques can be visualized
and counted with some variation due to subjectivity in plaque recognition. Since plaques are clonal
lesions produced by virus-induced cytopathic effect, we applied DNA fluorescent dyes with differen-
tial cell permeability to visualize them by live-cell imaging. We could observe different stages of that
cytopathic effect corresponding to an early wave of cells with chromatin-condensation followed by a
wave of dead cells with membrane permeabilization within plaques generated by different animal
viruses. This approach enables an automated plaque identification using image analysis to increase
single plaque resolution compared to crystal violet counterstaining and allows its application to
plaque tracking and plaque reduction assays to test compounds for both antiviral and cytotoxic
activities. This fluorescent real-time plaque assay sums to those next-generation technologies by
combining this robust classical method with modern fluorescence microscopy and image analysis
approaches for future applications in virology
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Keywords
vesicular stomatitis, herpes simplex, yellow fever, animal viruses, plaque assay, real-time, live-cell imaging, automated image analysis, DNA fluorescent dyes, antiviral screening
Citation
https://www.mdpi.com/journal/viruses