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Noninvasive Label-Free Detection of Cortisol and Lactate Using Graphene Embedded Screen-Printed Electrode

机译:使用石墨烯嵌入式丝网印刷电极对皮质醇和乳酸进行无创无标签检测

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摘要

Abstract A sensitive and specific immunosensor for the detection of the hormones cortisol and lactate in human or animal biological fluids, such as sweat and saliva, was devised using the label-free electrochemical chronoamperometric technique. By using these fluids instead of blood, the biosensor becomes noninvasive and is less stressful to the end user, who may be a small child or a farm animal. Electroreduced graphene oxide (e-RGO) was used as a synergistic platform for signal amplification and template for bioconjugation for the sensing mechanism on a screen-printed electrode. The cortisol and lactate antibodies were bioconjugated to the e-RGO using covalent carbodiimide chemistry. Label-free electrochemical chronoamperometric detection was used to analyze the response to the desired biomolecules over the wide detection range. A detection limit of 0.1 ng mL−1 for cortisol and 0.1 mM for lactate was established and a correlation between concentration and current was observed. A portable, handheld potentiostat assembled with Bluetooth communication and battery operation enables the developed system for point-of-care applications. A sandwich-like structure containing the sensing mechanisms as a prototype was designed to secure the biosensor to skin and use capillary action to draw sweat or other fluids toward the sensing mechanism. Overall, the immunosensor shows remarkable specificity, sensitivity as well as the noninvasive and point-of-care capabilities and allows the biosensor to be used as a versatile sensing platform in both developed and developing countries.
机译:摘要采用无标记电化学计时安培技术,设计了一种灵敏而特异性的免疫传感器,用于检测人或动物生物流体(如汗液和唾液)中的皮质醇和乳酸激素。通过使用这些流体而不是血液,生物传感器变得无创且对最终用户(可能是小孩或农场动物)的压力较小。电还原氧化石墨烯(e-RGO)用作信号放大的协同平台和用于生物共轭的模板,用于丝网印刷电极上的传感机制。使用共价碳二亚胺化学方法将皮质醇和乳酸盐抗体生物偶联至e-RGO。使用无标记电化学计时电流分析法来分析在宽广的检测范围内对所需生物分子的响应。建立了皮质醇的检出限为0.1ngmL -1 和乳酸的检出限为0.1mM,并观察到浓度与电流之间的相关性。便携式手持式恒电位仪结合了蓝牙通信和电池操作,可为即时医疗应用开发该系统。设计了一个以感应机构为原型的类似三明治的结构,以将生物传感器固定在皮肤上,并利用毛细作用将汗液或其他液体吸向感应机构。总体而言,免疫传感器显示出显着的特异性,敏感性以及无创和即时护理功能,并使得该生物传感器可以在发达国家和发展中国家用作通用的传感平台。

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