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Label‐Free and Regenerative Electrochemical Microfluidic Biosensors for Continual Monitoring of Cell Secretomes

机译:无标签和再生电化学微流体生物传感器用于细胞分泌组的连续监测

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摘要

Development of an efficient sensing platform capable of continual monitoring of biomarkers is needed to assess the functionality of the in vitro organoids and to evaluate their biological responses toward pharmaceutical compounds or chemical species over extended periods of time. Here, a novel label‐free microfluidic electrochemical (EC) biosensor with a unique built‐in on‐chip regeneration capability for continual measurement of cell‐secreted soluble biomarkers from an organoid culture in a fully automated manner without attenuating the sensor sensitivity is reported. The microfluidic EC biosensors are integrated with a human liver‐on‐a‐chip platform for continual monitoring of the metabolic activity of the organoids by measuring the levels of secreted biomarkers for up to 7 d, where the metabolic activity of the organoids is altered by a systemically applied drug. The variations in the biomarker levels are successfully measured by the microfluidic regenerative EC biosensors and agree well with cellular viability and enzyme‐linked immunosorbent assay analyses, validating the accuracy of the unique sensing platform. It is believed that this versatile and robust microfluidic EC biosensor that is capable of automated and continual detection of soluble biomarkers will find widespread use for long‐term monitoring of human organoids during drug toxicity studies or efficacy assessments of in vitro platforms.
机译:需要开发一种能够连续监测生物标志物的高效传感平台,以评估体外类器官的功能并评估其在较长时间内对药物化合物或化学物种的生物学反应。此处报道了一种新型的无标记微流电化学(EC)生物传感器,该传感器具有独特的内置芯片上再生能力,可在不降低传感器灵敏度的情况下以全自动方式连续测量来自类器官培养物中细胞分泌的可溶性生物标记。微流体EC生物传感器与人类肝芯片平台集成在一起,可通过测量长达7天的分泌生物标志物水平来连续监测类器官的代谢活性,其中类器官的代谢活性会被改变系统应用的药物。生物标志物水平的变化已通过微流体再生EC生物传感器成功测量,并与细胞活力和酶联免疫吸附测定分析非常吻合,从而验证了独特传感平台的准确性。可以相信,这种能够自动和连续检测可溶性生物标记物的多功能,坚固的微流体EC生物传感器将在药物毒性研究或体外平台功效评估期间广泛用于人类类器官的长期监测。

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