Real-time Cell Analysis

Real-time cell analysis is the continuous monitoring of living cells to measure changes in behavior, growth, viability, or function as they occur. Depending on the platform, sensors detect electrical impedance changes caused by cell attachment and spreading, while optical imaging or fluorescent reporters track morphology, movement, gene expression, or intracellular activity without requiring repeated endpoint measurements. These methods provide time-resolved data on proliferation, cytotoxicity, migration, signaling, and drug responses in cultured cells. By revealing transient effects and dynamic cellular responses, real-time cell analysis supports more informative biological assays and improves the evaluation of therapeutic candidates and disease mechanisms.

Real-time Cell Analysis - Related Videos

Research

JoVE EoE - Immunodiagnostics

Real-Time Analysis of Resident T-cell Migration in Different Tumor Regions Using Confocal Microscopy

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2025

This video describes the imaging of resident tumor-infiltrating CD8 T cells labeled with fluorescently coupled antibodies within human lung tumor slices. This technique permits real-time analyses of CD8 T cell migration using confocal microscopy.

Cellular Impedance-Based Analysis for Monitoring of Cellular Processes in Real-Time

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2025

In this video, we demonstrate the process of real-time monitoring of cellular events, including the proliferation of adherent cells, via a cellular impedance assay. Here, the adherent cells act as insulators, restricting the current flow between the electrodes and increasing the impedance.

Research

JoVE Journal - Biology
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qPCRTag Analysis - A High Throughput, Real Time PCR Assay for Sc2.0 Genotyping

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Cited by 18 •

2015

Designer chromosomes of the Synthetic Yeast Genome project, Sc2.0, can be distinguished from their native counterparts using a PCR-based genotyping assay called PCRTagging, which has a presence/absence endpoint. Here we describe a high-throughput real time PCR detection method for PCRTag genotyping.

Monitoring Influenza Virus Survival Outside the Host Using Real-Time Cell Analysis

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2021

Reported here is a protocol for the quantification of infectious viral particles using real-time monitoring of electrical impedance of infected cells. A practical application of this method is presented by quantifying influenza A virus decay under different physicochemical parameters mimicking environmental conditions.

Assay to Measure Nucleocytoplasmic Transport in Real Time within Motor Neuron-like NSC-34 Cells

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Cited by 6 •

2017

This protocol describes a method to sensitively measure the nucleocytoplasmic transport rate within motor neuron-like NSC-34 cells by quantifying the real-time change in the nuclear import of a NLS-NES-GFP protein.

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