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LTCC based bioreactors for cell cultivation

机译:基于LTCC的细胞栽培生物反应器

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LTCC multilayers offer a wide range of structural options and flexibility of connections not available in standard thin film technology. Therefore they are considered as material base for cell culture reactors. The integration of microfluidic handling systems and features for optical and electrical capturing of indicators for cell culture growth offers the platform for an open system concept. The present paper assesses different approaches for the creation of microfluidic channels in LTCC multilayers. Basic functions required for the fluid management in bioreactors include temperature and flow control. Both features can be realized with integrated heaters and temperature sensors in LTCC multilayers. Technological conditions for the integration of such elements into bioreactors are analysed. The temperature regulation for the system makes use of NTC thermistor sensors which serve as real value input for the control of the heater. It allows the adjustment of the fluid temperature with an accuracy of 0.2 K. The tempered fluid flows through the cell culture chamber. Inside of this chamber a thick film electrode array monitors the impedance as an indicator for the growth process of 3-dimensional cell cultures. At the system output a flow sensor is arranged to monitor the continual flow. For this purpose a calorimetric sensor is implemented, and its crucial design parameters are discussed. Thus, the work presented gives an overview on the current status of LTCC based fluid management for cell culture reactors, which provides a promising base for the automation of cell culture processes.
机译:LTCC多层提供广泛的结构选项和标准薄膜技术中不可用的连接灵活性。因此,它们被认为是细胞培养反应器的材料基础。微流体处理系统的整合和用于细胞培养生长指标的光学和电气捕获的特征为开放系统概念提供平台。本文评估了LTCC多层在LTCC多层的微流体通道的不同方法。生物反应器中流体管理所需的基本功能包括温度和流量控制。这两个功能都可以在LTCC多层的集成加热器和温度传感器中实现。分析了将这些元素整合到生物反应器中的技术条件。系统的温度调节利用NTC热敏电阻传感器,其用作用于控制加热器的实际值输入。它允许以0.2K的精度调节流体温度。钢化液流过细胞培养室。该室内的内部厚膜电极阵列将阻抗监测为3维细胞培养物的生长过程的指示。在系统输出,流量传感器被布置为监视不断流量。为此目的,实现了量热传感器,并讨论了其关键设计参数。因此,所提出的工作概述了对细胞培养反应器的LTCC流体管理的当前状态,这为细胞培养方法的自动化提供了有希望的基础。

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