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A CMOS integrated cell adhesion sensor for lab-on-a-chip applications

机译:用于芯片实验室应用的CMOS集成电池粘附传感器

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Cell-based assays for environmental monitoring enable quick information about a broad spectrum of possible contaminations. A key parameter that conveys information about the state of the cell culture is its electrical impedance, representing the amount of cell adhesion and morphological changes. We present a novel sensor for cell impedance measurements designed for application in a multi-parameter cell chip based on CMOS technology. A primary goal in the development of the sensor was keeping its interface to the external world as simple and robust as possible. This was achieved by integrating the sensor front-end electronics in close physical proximity to the sensing site. The result is a CMOS impedance-to-frequency converter with digital square wave output. A test chip featuring an array of 64 sensing microelectrodes, each addressable by a digital interface, was fabricated in a standard CMOS technology supplemented with a backend process for planar gold electrodes. We present measurement results with cells that demonstrate the successful operation of the system and its ability to capture changes in the cells' impedance caused by the model toxin cytochalasin.
机译:用于环境监测的基于细胞的测定法可提供有关各种可能污染的快速信息。传达有关细胞培养状态信息的关键参数是其电阻抗,它代表细胞粘附和形态变化的数量。我们提出了一种用于单元阻抗测量的新型传感器,该传感器设计用于基于CMOS技术的多参数单元芯片中。传感器开发的主要目标是保持与外界的接口尽可能简单和可靠。这是通过将传感器前端电子设备集成在与传感位置物理接近的位置来实现的。结果是具有数字方波输出的CMOS阻抗到频率转换器。一种测试芯片具有64个传感微电极的阵列,每个微电极都可以通过数字接口寻址,是通过标准CMOS技术制造的,并辅以用于平面金电极的后端工艺。我们用细胞展示了测量结果,证明了该系统的成功运行及其捕获由模型毒素细胞松弛素引起的细胞阻抗变化的能力。

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