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Closed-loop control system for well-defined oxygen supply in micro-physiological systems

机译:微生理系统中明确供氧的闭环控制系统

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To improve cell vitality, sufficient oxygen supply is an important factor. A deficiency in oxygen is called Hypoxia and can influence for example tumor growth or inflammatory processes. Hypoxia assays are usually performed with the help of animal or static human cell culture models. The main disadvantage of these methods is that the results are hardly transferable to the human physiology. Microfluidic 3D cell cultivation systems for perfused hypoxia assays may overcome this issue since they can mimic the in-vivo situation in the human body much better. Such a Hypoxia-on-a-Chip system was recently developed. The chip system consists of several individually laser-structured layers which are bonded using a hot press or chemical treatment. Oxygen sensing spots are integrated into the system which can be monitored continuously with an optical sensor by means of fluorescence lifetime detection.Hereby presented is the developed hard- and software requiered to control the oxygen content within this microfluidic system. This system forms a closed-loop control system which is parameterized and evaluated.
机译:为了提高细胞活力,充足的氧气供应是重要的因素。缺氧称为缺氧,可影响例如肿瘤的生长或炎症过程。缺氧测定通常在动物或静态人类细胞培养模型的帮助下进行。这些方法的主要缺点是结果很难转移到人体生理上。用于灌注缺氧测定的微流体3D细胞培养系统可以克服此问题,因为它们可以更好地模拟人体的体内情况。最近开发了这种芯片缺氧系统。芯片系统由几个单独的激光结构层组成,这些层使用热压或化学处理进行粘合。氧气感应点已集成到系统中,可通过荧光寿命检测通过光学传感器进行连续监测。在此介绍了开发的硬件和软件,以控制该微流体系统中的氧气含量。该系统形成一个闭环控制系统,该系统已被参数化和评估。

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