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Fieldbus controlled live support system for cell-based biohybrid measuring systems

机译:用于基于细胞的生物揭露测量系统的现场总线控制实时支持系统

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In biological research, the determination of the vitality of cells and its interactions with substances is important. To measure the vital parameters of living cells, the Intelligent Mobile Lab (IMOLA) with the BioChip-C has been developed. With this modular high-content screening system the metabolic cell activity can be measured label free and in real time. This way it is possible to determine the cellular respiration, the extracellular acidification, the adhesion and the morphology of cells in-vitro. On the basis of the obtained bio-electronic signals the dynamics of the cells' reaction on certain drugs can be studied. The fields of application are environmental monitoring, toxicology, cell biology and pharmacology. Several IMOLA systems can operate simultaneously to form a parallel and redundant assay. To improve the reprodu-cibility and to minimize possible malfunctions, a high grade of automation is required. The individual modules are cross-linked to each other and controlled by a personal computer. The communication is realized via the Controller Area Network (CAN), an established industrial field bus system with the advantage of high data transfer rates, low fault liability and automatic error correction. A live support system supplies the cell culture with nutrient or drug media. The medium selection is accomplished by integrated valves and occurring air bubbles in the measuring chamber are avoided by a bypass system. To guarantee a sterile working environment, the design of the fluidic system is enclosed and inert. A high precision peristaltic pump is used to transport the medium. For controlled environmental conditions, the system is mounted in an incubator. An integrated sensor on the cell chip continuously detects the temperature in the cell chamber. With the introduced high-content screening system, a user-friendly, reliable and highly automatic test-platform is available. It enables standardized and reproducible assays.
机译:在生物学研究中,测定细胞活力及其与物质的相互作用是重要的。为了测量活细胞的重要参数,已经开发了Biochip-C的智能移动实验室(IMOLA)。通过这种模块化的高含量筛选系统,代谢细胞活性可以​​自由且实时测量标签。这种方式可以确定体外细胞呼吸,细胞外酸化,粘附性和形态。在获得的生物电子信号的基础上,可以研究细胞对某些药物的反应的动态。应用领域是环境监测,毒理学,细胞生物学和药理学。几个iMOLA系统可以同时操作以形成平行和冗余的测定。为了提高再现和最大限度地减少可能的故障,需要高等级的自动化。各个模块彼此交联并由个人计算机控制。通过控制器区域网络(CAN)实现通信,该基工业现场总线系统具有高数据传输速率,低故障责任和自动纠错的优势。实时支持系统用营养素或药物培养基提供细胞培养物。介质选择是通过集成阀完成的,并且通过旁路系统避免了测量室中的发生气泡。为了保证无菌的工作环境,封闭流体系统的设计和惰性。高精度蠕动泵用于运输介质。对于受控环境条件,系统安装在培养箱中。电池芯片上的集成传感器连续地检测电池室中的温度。通过推出的高含量筛选系统,可提供用户友好,可靠且高度自动的测试平台。它能够实现标准化和可重复的测定。

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