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首页> 外文期刊>Instrumentation and Measurement, IEEE Transactions on >Inductive Integrated Biosensor With Extended Operative Range for Detection of Magnetic Beads for Magnetic Immunoassay
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Inductive Integrated Biosensor With Extended Operative Range for Detection of Magnetic Beads for Magnetic Immunoassay

机译:具有扩展操作范围的感应式集成生物传感器,用于磁珠免疫检测的磁珠检测

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摘要

Biosensors are prominent in several areas, such as medical diagnosis, food preparation, pharmaceutical industries, and clinical analysis; high performances are required in spite of attaining accuracy, sensitivity, low cost, easy handling, and portability, but the major parameter that is always representing a challenge for biosensors is specificity. High sensitivity and specificity can be obtained by combining appropriate transduction methods together with immunoassay techniques. In this paper, integrated inductive biosensors for the magnetic immunoassay process, which use magnetic beads as markers for biomolecules, are presented with potential applications to proteins and DNA measurements. The working principle and a dedicated fabrication technology, which also embeds thermal actuation and control, are described; in particular, an improved sensing architecture is proposed here, which allows one to expand the microsensor operative field toward very low bead concentrations. The sensor characterization results are presented together with the analytical model of the transduction principle; a detection limit of approximately 300 beads has been demonstrated. The microsensor is also capable of operating by measuring up to 450 000 beads with a good linearity. Therefore, the sensor architecture proposed here has been demonstrated for wide operating field with high resolution and good linearity; the results proposed confirm the suitability of the devices developed for magnetic immunoassay applications.
机译:生物传感器在医学诊断,食品制备,制药行业和临床分析等多个领域都很突出。尽管要获得准确性,灵敏度,低成本,易于操作和便携性,但仍需要高性能,但始终代表生物传感器挑战的主要参数是特异性。通过将适当的转导方法与免疫测定技术结合使用,可以获得高灵敏度和特异性。在本文中,提出了用于磁免疫测定过程的集成感应生物传感器,该传感器使用磁珠作为生物分子的标记,在蛋白质和DNA测量中具有潜在的应用前景。描述了工作原理和专用的制造技术,该技术还嵌入了热驱动和控制。特别地,在此提出了一种改进的感测架构,其允许将微传感器的操作领域扩展到非常低的珠子浓度。给出传感器的表征结果以及转导原理的分析模型。已经证明了大约300个珠的检出限。该微传感器还可以通过测量多达450 000个珠子并具有良好的线性度来进行操作。因此,这里提出的传感器架构已被证明具有高分辨率和良好的线性度,适用于广泛的操作领域。提出的结果证实了为磁免疫测定应用开发的设备的适用性。

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