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A micro-pressure sensor-based analytic platform and its application in thrombin quantification

机译:基于微压传感器的分析平台及其在凝血酶定量中的应用

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Although great efforts have been devoted to the design of various kinds of biosensors in recent years, a universal sensor fabricated for daily usage with convenient operation is rare. In this study, based on the fact that hydrogen peroxide can be decomposed by catalase to produce oxygen, which can reinforce the pressure in a closed container, a commercially available micro-pressure sensor ( MPS) with great sensitivity was employed to fabricate an analytic platform for detecting biomedical targets. Taking thrombin as the example, it induces the formation of a catalase-labelled complex, which can be separated and subsequently added to a closed container equipped with a MPS as the pressure monitor and data recorder. Experimental data show that the variation in the pressure recorded by the MPS has a close relationship with the amount of thrombin. The results indicate that biomedical targets can be quantitatively detected using this method without complicated operation, similar to personal glucose meters. Such an original model has great promise in the field of clinical assays once combined with biosensor technology.
机译:尽管近年来已经在各种生物传感器的设计上进行了巨大的努力,但是为日常使用而制造且操作方便的通用传感器却很少。在这项研究中,基于过氧化氢可被过氧化氢酶分解以产生氧气的事实,氧气可增强密闭容器中的压力,因此采用具有高灵敏度的市售微压传感器(MPS)来制造分析平台用于检测生物医学目标。以凝血酶为例,它诱导过氧化氢酶标记的复合物的形成,可以将其分离并随后添加到装有MPS作为压力监测器和数据记录器的密闭容器中。实验数据表明,MPS记录的压力变化与凝血酶量密切相关。结果表明,类似于个人血糖仪,使用这种方法可以定量检测生物医学目标,而无需复杂的操作。一旦与生物传感器技术结合,这种原始模型在临床检测领域将具有广阔的前景。

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