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Hypoxic Physiological Environments in a Gas-Regulated Microfluidic Device

机译:气体调节微流控设备中的缺氧生理环境

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摘要

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% O2 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.
机译:低氧环境是各种生理/病理过程中的关键因素之一。对于缺氧引起的人体生理学/病理学,必须在微观上概括氧气水平。在这里,我们提出了一种可应用于体外组织模型的氧气调节系统。我们制造了一种具有透气膜的微型设备,该膜允许氧气扩散而无需直接与细胞接触。我们通过计算仿真和实验验证了设备内部氧气含量低于2%O2浓度的形成。 H9c2心脏成肌细胞在设备中处于低氧状态,并对其细胞活力进行了研究。我们期望我们的系统将与一个平台集成在一起,以研究缺氧诱导的人体生理和病理学,并将其作为一种有效的氧气调节系统。

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