Visualizing Influenza A Virus Infection and Host Processes Using Fluorescence Microscopy

Virus infections unfold through spatially organized events whose timing and progression vary among individual cells. Imaging complements population-based approaches by preserving spatial context and, in live experiments, temporal progression at single-cell and tissue scales. This review examines how imaging has advanced our understanding of virus infection, using influenza A virus (IAV) as the principal example. The review is organized around three complementary perspectives: visualization of viral components throughout infection, analysis of virus-induced host-cell and tissue remodeling, and investigation of heterogeneous antiviral responses. Together, these perspectives show how imaging preserves the spatial, temporal, and cell-to-cell context needed to relate viral processes to host-cell responses across scales. Because imaging approaches differ in what they directly measure, this review considers their complementary strengths and limitations and distinguishes descriptive observations from mechanistic conclusions.

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Publication Details

Journal
Viruses
Published
2026-09-29
DOI
https://doi.org/10.3390/v18101074
Primary Topic
Advanced Fluorescence Microscopy Techniques
Type
article
Field-Weighted Citation Impact
0.00
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article

Visualizing Influenza A Virus Infection and Host Processes Using Fluorescence Microscopy

Bernhard A. Kramer, Huib H. Rabouw, Janin Schokolowski
Viruses
Advanced Fluorescence Microscopy Techniques
article

Visualizing Influenza A Virus Infection and Host Processes Using Fluorescence Microscopy

Bernhard A. Kramer, Huib H. Rabouw, Janin Schokolowski
article en

Abstract

Virus infections unfold through spatially organized events whose timing and progression vary among individual cells. Imaging complements population-based approaches by preserving spatial context and, in live experiments, temporal progression at single-cell and tissue scales. This review examines how imaging has advanced our understanding of virus infection, using influenza A virus (IAV) as the principal example. The review is organized around three complementary perspectives: visualization of viral components throughout infection, analysis of virus-induced host-cell and tissue remodeling, and investigation of heterogeneous antiviral responses. Together, these perspectives show how imaging preserves the spatial, temporal, and cell-to-cell context needed to relate viral processes to host-cell responses across scales. Because imaging approaches differ in what they directly measure, this review considers their complementary strengths and limitations and distinguishes descriptive observations from mechanistic conclusions.

VirusesVol. 18(10)
University Medical Center Utrecht (NL), Oncode Institute (NL)
Openalex Percentile: Top 13%
Advanced Fluorescence Microscopy Techniques
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