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首页> 外文期刊>Biosensors & Bioelectronics: The International Journal for the Professional Involved with Research, Technology and Applications of Biosensers and Related Devices >Electric impedance sensing in cell-substrates for rapid and selective multipotential differentiation capacity monitoring of human mesenchymal stem cells
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Electric impedance sensing in cell-substrates for rapid and selective multipotential differentiation capacity monitoring of human mesenchymal stem cells

机译:细胞基质中的电阻抗传感,用于快速选择性地监测人间充质干细胞的多电势分化能力

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摘要

Biosensor systems which enable impedance measurements on adherent cell layers under label-free conditions are considered powerful tools for monitoring specific biological characteristics. A radio frequency identification-based sensor platform was adopted to characterize cultivation and differentiation of human bone marrow-derived multipotent stem cells (bmMSC) over periods of up to several days and weeks. Electric cell-substrate impedance sensing was achieved through fabrication of sensitive elements onto glass substrates which comprised two comb-shaped interdigitated gold electrodes covering an area of 1.8 mm × 2. mm. The sensing systems were placed into the wells of a 6-well tissue culture plate, stacked onto a reader unit and could thus be handled and operated under sterile conditions. Continuous measurements were carried out with a sinusoidal voltage of 35. mV at a frequency of 10 kHz. After seeding of human bmMSC, this sensor was able to trace significant impedance changes contingent upon cell spreading and adhesion. The re-usable system was further proven suitable for live examination of cell-substrate attachment or continuous cell monitoring up to several weeks. Induction of either osteogenic or adipogenic differentiation could be validated in bmMSC cultures within a few days, in contrast to state-of-the-art protocols, which require several weeks of cultivation time. In the context of medical cell production in a GMP-compliant process, the here presented interdigitated electric microsensor technology allows the documentation of MSC quality in a fast, efficient and reliable fashion.
机译:在无标签条件下能够测量粘附细胞层阻抗的生物传感器系统被认为是监测特定生物学特性的强大工具。采用基于射频识别的传感器平台来表征人类骨髓来源的多能干细胞(bmMSC)在长达数天和数周的时间内的培养和分化。通过在玻璃基板上制造敏感元件来实现对电池-基板的阻抗感测,玻璃基板包括两个梳形的交叉指形金电极,覆盖面积为1.8 mm×2 mm。将传感系统放置在6孔组织培养板的孔中,堆叠在读取器单元上,因此可以在无菌条件下进行操作。在35 kHz的正弦电压下以10 kHz的频率进行连续测量。植入人bmMSC后,该传感器能够追踪明显的阻抗变化,视细胞扩散和粘附而定。事实证明,该可重复使用的系统适用于细胞基质附着的实时检查或长达数周的连续细胞监测。可以在几天内在bmMSC培养中验证成骨或成脂分化的诱导,这与需要数周培养时间的最新协议相反。在符合GMP规范的医用细胞生产环境中,此处介绍的叉指式电微传感器技术可以快速,有效和可靠地记录MSC质量。

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