Real-time Barrier Function Assessment

Real-time barrier function assessment is a set of methods for continuously measuring how effectively a cell layer restricts the movement of ions, molecules, or microbes, providing a dynamic view of barrier integrity. These systems commonly track electrical impedance or transepithelial electrical resistance, while permeability assays monitor the passage of labeled tracers across epithelial or endothelial monolayers. In immunology and infection research, the approach reveals how pathogens, inflammatory cytokines, immune cells, or candidate treatments alter tight junctions and barrier permeability. Continuous measurements capture transient disruptions and recovery that endpoint assays can miss, supporting mechanistic studies and therapeutic evaluation.

Real-time Barrier Function Assessment - Related Videos

Research

JoVE Journal - Biology

Oral Gavage in Neonatal Mouse Pups and Functional Assessment of Gut Barrier Integrity Using Ussing Chambers

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2026

This article describes: (1) oral gavage delivery of test molecules to neonatal mice as early as DOL 6; and (2) ex vivo evaluation of colonic epithelial barrier function in biopsies from DOL 10 to weaning (DOL 20) pups by assessing paracellular and transcellular permeability with Ussing chambers.

Research

JoVE Journal - Medicine
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Assessment of Ovarian Cancer Spheroid Attachment and Invasion of Mesothelial Cells in Real Time

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Cited by 21 •

2014

Ovarian cancer cell invasion into the mesothelial lining of the peritoneum is a dynamic process over time. Utilizing a real time analyzer, the invasive capacity of ovarian cancer cells in a spheroid-mesothelial cell co-culture model can be quantified over prolonged time periods, providing insights into factors regulating the metastatic process.

Real-time Measurement of Epithelial Barrier Permeability in Human Intestinal Organoids

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Cited by 50 •

2017

This protocol describes the measurement of epithelial barrier permeability in real-time following pharmacologic treatment in human intestinal organoids using fluorescent microscopy and live cell microscopy.

Recording Human Electrocorticographic (ECoG) Signals for Neuroscientific Research and Real-time Functional Cortical Mapping

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Cited by 134 •

2012

We present a method for collecting electrocorticographic signals for research purposes from humans who are undergoing invasive epilepsy monitoring. We show how to use the BCI2000 software platform for data collection, signal processing and stimulus presentation. Specifically, we demonstrate SIGFRIED, a BCI2000-based tool for real-time functional brain mapping.

Electric Cell-substrate Impedance Sensing for the Quantification of Endothelial Proliferation, Barrier Function, and Motility

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Cited by 213 •

2014

This protocol reviews Electric Cell-substrate Impedance Sensing, a method to record and analyze the impedance spectrum of adherent cells for the quantification of cell attachment, proliferation, motility, and cellular responses to pharmacological and toxic stimuli. Detection of endothelial permeability and assessment of cell-cell and cell-substrate contacts are emphasized.

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