首页> 外文会议>International Conference on Solid-State Sensors, Actuators and Microsystems & Eurosensors XXXIII >Multimodal Microfluidic Biosensor With Interdigitated Electrodes (IDE) And Microelectrode Array (MEA) For Bacterial Detection And Identification
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Multimodal Microfluidic Biosensor With Interdigitated Electrodes (IDE) And Microelectrode Array (MEA) For Bacterial Detection And Identification

机译:具有指状电极(IDE)和微电极阵列(MEA)的多峰微流生物传感器,用于细菌检测和鉴定

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We demonstrate the integration of multiple sensing modalities for the first time onto a microfluidic platform to enable acquisition of multi-parameter data from bacterial cell cultures allowing for rapid detection and identification. The multimodal microfluidic biosensor consists of Interdigitated Electrodes (IDE) with an electrode pitch of 15 µm and a Microelectrode Array (MEA) having a dimension of 30 µm × 30 µm for impedance and electrophysiological measurements respectively. The impedance analysis of the bacterial cultures reveals time dependent growth dynamics, similar to traditional optical absorbance characterization. Additionally, impedance spectral fingerprinting allowed for the characterization of growth stages in Escherichia coli (Gram negative) and Staphylococcus aureus (Gram positive) bacteria. The device has been fabricated using a union of makerspace and standard microfabrication technologies. Reliable microfluidic channel operations for 96 hours have been obtained with MEA impedance and phase characteristics (37.2 kΩ@1 kHz and -77º@1kHz) similar to those fabricated using conventional cleanroom based techniques.
机译:我们首次展示了多种传感方式在微流控平台上的集成,从而能够从细菌细胞培养物中获取多参数数据,从而实现快速检测和鉴定。多峰微流生物传感器由电极间距为15 µm的叉指式电极(IDE)和尺寸为30 µm×30 µm的微电极阵列(MEA)组成,分别用于阻抗和电生理测量。细菌培养物的阻抗分析揭示了时间依赖性的生长动力学,类似于传统的光吸收特征。此外,阻抗谱指纹图谱可表征大肠杆菌(革兰氏阴性)和金黄色葡萄球菌(革兰氏阳性)细菌的生长阶段。该设备是使用makerspace和标准微制造技术的组合制造的。 MEA阻抗和相位特性(37.2kΩ@ 1 kHz和-77º@ 1kHz)与使用传统无尘室技术制造的类似,具有96小时的可靠微流通道操作。

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