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Sensitive detection of cardiac troponin T based on superparamagnetic bead-labels using a flexible micro-fluxgate sensor

机译:使用柔性微通量传感器基于超顺磁珠标记灵敏检测心肌肌钙蛋白T

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In this study, we describe an innovative micro-fluxgate immunosensor based on superparamagnetic Dynabeads for the detection of cardiac troponin T (cTnT), an important biomarker for cardiovascular diseases. The fluxgate sensor developed in this study uses a double layer of Co-based amorphous ribbons as a sensing element and three-dimensional solenoid copper coils to control the sensitive core. The system was fabricated through a standard micro-fabrication process, including thick photoresist lithography and electroplating. Superparamagnetic Dynabeads were employed as recognition tags and double polyclonal antibody pairs combined using streptavidin–biotin binding were employed to specifically capture and label the cTnT coupled with magnetic beads on a separate Au film-coated wafer via a classical sandwich immunoassay process. Series optimization of the assay parameters was performed to achieve optimal detection parameters. Under optimal conditions, the detection and quantification of cTnT was performed by sensing the magnetic signal of the cTnT-labeled Dynabeads with the micro-fluxgate sensor. The resulting biosystem successfully detected cTnT with satisfactory sensitivity, reproducibility, stability, and specificity. A minimum detectable limit of 0.01 ng mL?1 was achieved with a linearity range of 0.01–10 ng mL?1, demonstrating the high sensitivity of this novel system. In addition to the superior detection performance, the proposed sensor is convenient to manipulate, entirely lab-free, provides a quick result, and is portable. These factors suggest that this system has the potential to be applied as a point-of-care diagnostic tool for cardiovascular disease.
机译:在这项研究中,我们描述了一种基于超顺磁性Dynabeads的创新型微通量免疫传感器,用于检测心肌肌钙蛋白T(cTnT),这是心血管疾病的重要生物标志物。在这项研究中开发的磁通门传感器使用双层的Co基非晶带作为传感元件,并使用三维螺线管铜线圈来控制敏感磁芯。该系统是通过标准的微制造工艺制造的,包括厚光致抗蚀剂光刻和电镀。采用超顺磁性Dynabeads作为识别标签,并使用链霉亲和素-生物素结合结合的双多克隆抗体对,通过经典的三明治将捕获的cTnT与磁珠结合在一起,标记在单独的Au膜包衣晶片上。免疫测定过程。进行测定参数的系列优化以获得最佳检测参数。在最佳条件下,通过用微通量门传感器感测cTnT标记的Dynabeads的磁信号进行cTnT的检测和定量。最终的生物系统以令人满意的灵敏度,可重复性,稳定性和特异性成功检测了cTnT。线性范围为0.01–10 ng mL ?1 ?1 ,表明此新型系统具有很高的灵敏度。除了出色的检测性能外,所提出的传感器还易于操作,完全无需实验室,提供快速结果并且便于携带。这些因素表明,该系统有可能被用作心血管疾病的即时诊断工具。

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