Hypoxic Physiological Environments in a Gas-Regulated Microfluidic Device

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초록

Hypoxic environment is known as one of the critical factors in various physiological/pathological processes. It is imperative to recapitulate oxygen level in microscale for human physiology/pathology induced by hypoxia. Herein, we propose an oxygen-regulating system that can be applied to in vitro tissue models. We fabricated a microdevice with a gas-permeable membrane, allowing oxygen diffusion without direct contact to cells. We verified the formation of oxygen level less than 2% O-2 concentration inside the device through computational simulation and experiments. H9c2 heart myoblasts were exposed to hypoxic condition in the device, and their cell viability were investigated. We anticipate that our system will be integrated with a platform to study hypoxia-induced human physiology and pathology as an efficient oxygen-regulating system.

키워드

hypoxic conditionmicrofluidic systemcomputational simulationoxygen detectionoxygen scavengerOXIDATIVE STRESSOXYGENCONSEQUENCESTISSUEPDMS
제목
Hypoxic Physiological Environments in a Gas-Regulated Microfluidic Device
저자
Lee, InsuWoo, Jin HyukLee, MinJeon, Tae-JoonKim, Sun Min
DOI
10.3390/mi10010016
발행일
2019-01
유형
Article
저널명
Micromachines
10
1