Live Cell Visualization

Live cell visualization is the real-time imaging of living cells to observe their structure, behavior, and responses without fixing or destroying the specimen. Using methods such as phase-contrast microscopy, fluorescence microscopy, and genetically encoded reporters, researchers track cellular features over time as light or fluorescent signals reveal specific components, activities, or molecular events. In biology, time-lapse imaging can show cell division, migration, signaling, organelle dynamics, and responses to drugs or environmental changes. By preserving viability and capturing dynamic processes, live cell visualization links cellular mechanisms to tissue function and disease progression while supporting quantitative analysis and experimental design.

Live Cell Visualization - Related Videos

Research

JoVE Journal - Immunology and Infection

Visualization of Bacterial Toxin Induced Responses Using Live Cell Fluorescence Microscopy

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Cited by 15 •

2012

Methods for purifying the cholesterol binding toxin streptolysin O from recombinant E. coli and visualization of toxin binding to live eukaryotic cells are described. Localized delivery of toxin induces rapid and complex changes in targeted cells revealing novel aspects of toxin biology.

Using Fluorescent Proteins to Visualize and Quantitate Chlamydia Vacuole Growth Dynamics in Living Cells

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Cited by 4 •

2015

A live cell fluorescent protein based method for illuminating cellular vacuoles (inclusions) containing Chlamydia is described. This strategy enables rapid, automated determination of Chlamydia infectivity in samples and can be used to quantitatively investigate inclusion growth dynamics.

Research

JoVE Journal - Immunology and Infection
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Visualizing Cell-to-cell Transfer of HIV using Fluorescent Clones of HIV and Live Confocal Microscopy

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Cited by 4 •

2010

This visualized experiment is a guide for utilizing a fluorescent molecular clone of HIV for live confocal imaging experiments.

Lattice Light Sheet Microscopy to Visualize Receptor-Ligand Interactions in Live Cells

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2025

In this video, we describe the lattice light-sheet microscopy technique to visualize interactions between live T-cells and antigen-presenting cells. The method involves focusing an ultrathin lattice light sheet on an interacting cell pair to obtain a series of two-dimensional images, which are combined to obtain high-resolution four-dimensional images that reveal the spatiotemporal dynamics of the cell-cell interaction.

Precision-cut Mouse Lung Slices to Visualize Live Pulmonary Dendritic Cells

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Cited by 52 •

2017

We describe a method for generating Precision-cut Lung Slices (PCLS) and immunostaining them to visualize the localization of various immune cell types in the lung. Our protocol can be extended to visualize the location and function of many different cell types under a variety of conditions.

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