Respiratory Epithelial Cells

Respiratory epithelial cells are specialized cells lining the airways and alveoli, where they form a vital interface between inhaled air and the body. Their coordinated functions include creating a selective barrier, producing mucus, moving trapped particles through ciliary beating, and supporting gas exchange in the distal lung; some cells also contribute to innate immune defense and tissue repair. In medicine, studying these cells helps clarify airway inflammation, infection, asthma, chronic obstructive pulmonary disease, and lung injury. Respiratory epithelial cell cultures and related models support research into disease mechanisms, drug responses, toxic exposures, and regenerative therapies.

Respiratory Epithelial Cells - 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 - Medicine

Isolation of Mouse Respiratory Epithelial Cells and Exposure to Experimental Cigarette Smoke at Air Liquid Interface

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Cited by 67 •

2011

Pulmonary epithelial cells can be isolated from the respiratory tract of mice and cultured at air-liquid interface as a model of differentiated respiratory epithelium. A protocol is described for isolating, culturing and exposing these cells to mainstream cigarette smoke, in order to study molecular responses to this environmental toxin.

Culturing of Human Nasal Epithelial Cells at the Air Liquid Interface

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Cited by 135 •

2013

Nasal epithelial cells, obtained through superficial scrape biopsy of human volunteers, are expanded and transferred onto tissue culture inserts. Upon reaching confluency, cells are grown at air liquid interface, yielding cultures of ciliated and non-ciliated cells. Differentiated nasal epithelial cell cultures provide viable experimental models for studying the respiratory mucosa.

Analyzing the Effects of Cigarette Smoke on Antimicrobial Defense in Lung Epithelial Cells

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2026

Source: Li, T., et al. Studying Effects of Cigarette Smoke on Pseudomonas Infection in Lung Epithelial Cells. J. Vis. Exp. (2020).This video demonstrates how cigarette smoke extract weakens antimicrobial defense in lung epithelial cells by reducing AMP production, leading to increased bacterial invasion. The procedure measures intracellular bacterial load to assess the impact of smoke exposure on host-pathogen interactions.

Whole-cell Patch-clamp Recordings of Isolated Primary Epithelial Cells from the Epididymis

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Cited by 1 •

2017

We present a protocol that combines cell isolation and whole-cell patch-clamp recording to measure the electrical properties of the primary dissociated epithelial cells from the rat cauda epididymides. This protocol allows for investigation of the functional properties of primary epididymal epithelial cells to further elucidate the physiological role of the epididymis.

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