Gas Permeable Chambers

Gas permeable chambers are experimental enclosures that maintain cells, tissues, or microorganisms while allowing controlled exchange of gases with the surrounding atmosphere, making them useful for studying how oxygen and other gases shape biological responses. Their gas-permeable membrane or chamber material permits diffusion across the boundary while retaining liquid contents and biological specimens, enabling researchers to adjust exposure conditions without repeatedly opening the system. In immunology and infection research, these chambers can model oxygen-limited or changing environments encountered during inflammation, tissue infection, and microbial growth. They support controlled analysis of pathogen survival, immune-cell function, and host-pathogen interactions.

Gas Permeable Chambers - Related Videos

Research

JoVE Journal - Biology
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Closed System Cell Culture Protocol Using HYPERStack Vessels with Gas Permeable Material Technology

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Cited by 10 •

2010

An Introduction into the technology, protocol and handling of the Corning HYPERStack Vessels and accessories used for high yield adherent cell culture. The protocol will show how to use the closed system vessels for increasing cell harvesting over current stacked plate products.

Canine Intestinal Organoids in a Dual-Chamber Permeable Support System

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Cited by 18 •

2022

Here, we present a protocol describing the culture of canine intestinal organoids in a dual-chamber, permeable support system. Organoid seeding in the permeable supports, the monolayer maintenance, and subsequent drug permeability experiments are described.

Research

JoVE Journal - Environment
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Measurement of Greenhouse Gas Flux from Agricultural Soils Using Static Chambers

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Cited by 143 •

2014

This article showcases the static chamber-based method for measurement of greenhouse gas flux from soil systems. With relatively modest infrastructure investments, measurements may be obtained from multiple treatments/locations and over timeframes ranging from hours to years.

Research

JoVE Journal - Engineering

In Situ Gas Analysis and Fire Characterization of Lithium-Ion Cells During Thermal Runaway Using an Environmental Chamber

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Cited by 3 •

2023

Here, we describe a test procedure developed to characterize thermal runaway and fires in lithium-ion cells through in situ measurements of various parameters in an environmental chamber.

Education

JoVE Science Education - Engineering

Gas Absorber

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2023

Source: Michael G. Benton and Kerry M. Dooley, Department of Chemical Engineering, Louisiana State University, Baton Rouge, LA Gas absorbers are used to remove contaminants from gas streams. Multiple designs are used to accomplish this objective1. A packed bed column uses gas and liquid streams running counter to each other in a column packed with loose packing materials, such as ceramics, metals, and plastics, or structured packing1. The packed bed uses surface area created by the packing to...

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