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首页> 外文期刊>Physica status solidi, B. Basic research >H-terminated diamond as optically transparent impedance sensor for real-time monitoring of cell growth
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H-terminated diamond as optically transparent impedance sensor for real-time monitoring of cell growth

机译:H端钻石作为光学透明的阻抗传感器,用于实时监测细胞生长

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摘要

Cell-based impedance spectroscopy is a promising method for real-time monitoring of cell cultivation. Here, we present intrinsic diamond film as a material suitable for fully optically transparent impedance biosensor. Conductive interdigitated electrodes are realized in plane by local hydrogen termination of diamond surface, thereby the surface morphology is uniform. The diamond-based impedance sensors are used for real-time electrical (label-free) monitoring of osteoblast-like cells. Fluorescence images confirm that H/O-termination provides a patterned cell colonization at lower cell seeding concentration (16000cellscm~(-2)). The cells form a confluent colony across the whole sensor area at higher cell concentrations (>27000cellscm~(-2)). Time-dependent impedance measurements at 1kHz exhibit similar profiles for the diamond and Au reference sensors. Nevertheless, the diamond sensor seems superior in terms of overall transparency, uniform morphology, and sensitivity to the development of the cell cultures.
机译:基于细胞的阻抗光谱法是一种有前途的实时监测细胞培养的方法。在这里,我们介绍本征金刚石膜作为适合完全光学透明的阻抗生物传感器的材料。导电叉指电极是通过金刚石表面局部氢封端在平面内实现的,因此表面形态是均匀的。基于钻石的阻抗传感器用于对成骨细胞样细胞进行实时电(无标记)监控。荧光图像证实,H / O终止在较低的细胞接种浓度(16000cellscm〜(-2))下提供了模式化的细胞定殖。在较高的细胞浓度(> 27000cellscm〜(-2))下,细胞在整个传感器区域上形成汇合的菌落。对于钻石和金参考传感器,在1kHz下随时间变化的阻抗测量显示出相似的曲线。尽管如此,钻石传感器在总体透明性,均匀的形态以及对细胞培养发展的敏感性方面似乎更为优越。

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