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A microfluidic-based lid device for conventional cell culture dishes to automatically control oxygen level

机译:用于常规细胞培养皿的基于微流体的盖装置,以自动控制氧气水平

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Most conventional hypoxic cell culture systems undergo reoxygenation during experimental manipulations, resulting in undesirable effects including the reduction of cell viability. A lid device was developed herein for conventional cell culture dishes to resolve this limitation. The integration of multilayered microfluidic channels inside a thin membrane was designed to prevent the reoxygenation caused by reagent infusion and automatically control the oxygen level. The experimental data clearly show the reducibility of the dissolved oxygen in the infusing reagent and the controllability of the oxygen level inside the dish. The feasibility of the device for hypoxia studies was confirmed by HIF-1 alpha experiments. Therefore, the device could be used as a compact and convenient hypoxic cell culture system to prevent reoxygenation-related issues.
机译:大多数常规的缺氧细胞培养系统在实验操纵期间经历雷诺,导致不希望的效果,包括降低细胞活力。 本文开发了盖装置,用于常规细胞培养皿以解决这些限制。 设计多层微流体通道在薄膜内的整合设计,以防止由试剂输注引起的雷诺,并自动控制氧气水平。 实验数据清楚地表明溶解氧在输注试剂中的还原性以及盘子内氧水平的可控性。 通过HIF-1α实验证实了缺氧研究的装置的可行性。 因此,该装置可用作紧凑且方便的缺氧细胞培养系统,以防止相关的雷诺化问题。

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