Calu-3 Cell Culture

Calu-3 cell culture is a laboratory model that uses human bronchial epithelial cells to study airway biology, respiratory barriers, and disease-related responses. When grown on permeable supports, Calu-3 cells can differentiate into polarized layers with tight junctions and, under air-liquid interface conditions, develop features that resemble the airway surface. Researchers use these cultures to investigate epithelial transport, inhaled drug delivery, mucus-related processes, and interactions between respiratory tissues and infectious agents. Because Calu-3 cells reproduce several structural and functional properties of airway epithelium, they provide a relevant in vitro platform for evaluating barrier integrity, cellular responses, and therapeutic strategies.

Calu-3 Cell Culture - Related Videos

Research

JoVE Journal - Immunology and Infection
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Establishing a Liquid-covered Culture of Polarized Human Airway Epithelial Calu-3 Cells to Study Host Cell Response to Respiratory Pathogens In vitro

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Cited by 25 •

2013

The findings and conclusions in this report are those of the authors and do not necessarily represent the views of the Centers for Disease Control and Prevention.

Research

JoVE Journal - Bioengineering

Self-reporting Scaffolds for 3-Dimensional Cell Culture

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Cited by 7 •

2013

Biocompatible pH responsive sol-gel nanosensors can be incorporated into poly(lactic-co-glycolic acid) (PLGA) electrospun scaffolds. The produced self-reporting scaffolds can be used for in situ monitoring of microenvironmental conditions whilst culturing cells upon the scaffold. This is beneficial as the 3D cellular construct can be monitored in real-time without disturbing the experiment.

Isolation of Stem-like Cells from 3-Dimensional Spheroid Cultures

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Cited by 7 •

2019

Using human primary prostate epithelial cells, we report a novel biomarker-free method of functional characterization of stem-like cells by a spheroid-based label-retention assay. A step-by-step protocol is described for BrdU, CFSE, or Far Red 2D cell labeling; three-dimensional spheroid formation; label-retaining stem-like cell identification by immunocytochemistry; and isolation by FACS.

A Hyaluronic Acid-Based Hydrogel for 3-Dimensional Culture of Glioblastoma Cells

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2025

This video demonstrates how gliomaspheres, derived from brain tumors, are separated into single cells and encapsulated in a hyaluronic acid-based hydrogel. This process promotes cell-cell interactions, forming a structured, three-dimensional glioblastoma model.

3-Dimensional Culture of Lung Carcinoma Cells: A Method To Study Cell-Matrix Interactions

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2023

This video describes the technique of 3-D culture of lung carcinoma cells to study the cell-matrix interactions. In the protocol, we will perform the 3D culture of TUM622 lung carcinoma cells to explore its potential of forming organoids in vitro.

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