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Development of a multiparametric handheld biosensor for use in mobile applications

机译:开发用于移动应用的多参数手持式生物传感器

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Assays entirely based on cells often require large stationary devices for the use in a laboratory environment. As cells are very sensitive the impact of various agents and compounds can be observed. The potential to understand the dynamics of cellular processes justified the development of Lab-on-a-Chip-Systems which allow measurement of the cellular activity in real time. Cells work as signal transducers. The handheld device introduced herein is able to collect the data of the metabolism in the cells micro milieu. Extracellular acidification (pH), oxygen consumption (pO2) as well as morphology (impedance, for adherent cell lines) can be monitored online. For Point of Care operation the presented Micro-Lab (muLa) uses yeast cells for testing for harmful agents or compounds. This paper describes the technological background of the biosensor system together with its sensor technology. The set-up of cell experiments is described. The concept of an energy-saving microfluidic system is provided as well as data interpretation algorithms and measurement results are presented.
机译:完全基于细胞的测定通常需要大型固定装置才能在实验室环境中使用。由于细胞非常敏感,因此可以观察到各种试剂和化合物的影响。理解细胞过程动力学的潜力证明了“芯片实验室系统”的发展,该系统允许实时测量细胞活性。细胞充当信号转换器。本文介绍的手持设备能够收集细胞微环境中的代谢数据。可以在线监测细胞外酸化(pH),耗氧量(pO 2 )和形态(阻抗,对于贴壁细胞系)。对于Point of Care操作,本文介绍的Micro-Lab(muLa)使用酵母细胞测试有害物质或化合物。本文介绍了生物传感器系统及其传感器技术的技术背景。描述了细胞实验的设置。提供了节能微流体系统的概念,以及数据解释算法和测量结果。

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