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Real-Time Monitoring of Cellular Bioenergetics with a Multi-Analyte Screen-Printed Electrode

机译:利用多分析物丝网印刷电极实时监测细胞生物能学

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摘要

Real-time monitoring of changes to cellular bioenergetics can provide new insights into mechanisms of action for disease and toxicity. This work describes the development of a multi-analyte screen-printed electrode for the detection of analytes central to cellular bioenergetics: glucose, lactate, oxygen, and pH. Platinum screen-printed electrodes were designed in-house and printed by Pine Research Instrumentation. Electrochemical plating techniques were used to form quasi-reference and pH electrodes. A Dimatix materials inkjet printer was used to deposit enzyme and polymer films to form sensors for glucose, lactate, and oxygen. These sensors were evaluated in bulk solution and microfluidic environments, and found to behave reproducibly and possess a lifetime of up to six weeks. Linear ranges and limits of detection for enzyme-based sensors were found to have an inverse relationship with enzyme loading, and iridium oxide pH sensors were found to have super-Nernstian responses. Preliminary measurements where the sensor was enclosed within a microfluidic channel with RAW 264.7 macrophages were performed to demonstrate the sensors’ capabilities for performing real-time microphysiometry measurements.
机译:实时监测细胞生物能学的变化可以为疾病和毒性的作用机理提供新的见解。这项工作描述了一种多分析物丝网印刷电极的开发,该电极用于检测对细胞生物能学至关重要的分析物:葡萄糖,乳酸,氧和pH。铂丝网印刷电极是在内部设计的,并由Pine Research Instrumentation印刷。电化学电镀技术用于形成准参比电极和pH电极。使用Dimatix材料喷墨打印机沉积酶和聚合物薄膜,以形成葡萄糖,乳酸盐和氧气的传感器。这些传感器在本体溶液和微流体环境中进行了评估,发现其行为可重复,并且使用寿命长达六周。发现基于酶的传感器的线性范围和检测限与酶的含量成反比,并且氧化铱pH传感器被发现具有超能斯特响应。初步测量是使用RAW 264.7巨噬细胞将传感器封装在微流体通道内,以演示传感器进行实时微生理测量的能力。

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