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具有集成微流控通道的量热生物传感器。

Calorimetric biosensors with integrated microfluidic channels.

作者信息

Zhang Yuyan, Tadigadapa Srinivas

机构信息

Department of Electrical Engineering, The Pennsylvania State University, University Park, PA 16802, USA.

出版信息

Biosens Bioelectron. 2004 Jul 15;19(12):1733-43. doi: 10.1016/j.bios.2004.01.009.

Abstract

A microfluidic device capable of measuring real-time enthalpy changes of biochemical reactions and thermal properties of biological fluids is presented in this paper. The device consists of a freestanding microthermopile integrated with a glass microfluidic reaction chamber. The p-type polysilicon/gold microthermopiles fabricated on a 2 microm thick thermally isolated membrane showed a sensitivity of 0.94 V/W and a thermal time constant of less than 100 ms. Although the device is not restricted to enzymatic reactions, in this paper measurements of the heat of reaction from the catalytic action of glucose oxidase, catalase, and urease on glucose, hydrogen peroxide, and urea, respectively, are reported. Reactions were performed in open air using liquid batch testing and in enclosed fluidic reaction chamber by continuous flow experiments. A sensitivity of 53.5 microV/M for glucose, 26.5 microV/M for hydrogen peroxide and 17 microV/M for urea was obtained. Detection limit for glucose in the continuous flow mode is approximately 2mM (30 pmol). The aim of this work is to demonstrate the potential of the integrated calorimetric microfluidic device for fundamental thermodynamic studies in biochemical reactions. Using arrays of such devices with immobilized enzymes multi-analyte detection can be accomplished and the effects of interferents from competing substrates can be compensated. This paper presents the design, fabrication and initial testing results from such a microthermopile-based thermal biosensor.

摘要

本文介绍了一种能够测量生化反应实时焓变和生物流体热性质的微流控装置。该装置由一个与玻璃微流控反应腔集成的独立式微热电堆组成。在2微米厚的热隔离膜上制造的p型多晶硅/金微热电堆显示出0.94 V/W的灵敏度和小于100毫秒的热时间常数。尽管该装置不限于酶促反应,但本文报道了分别测量葡萄糖氧化酶、过氧化氢酶和脲酶对葡萄糖、过氧化氢和尿素催化作用的反应热。反应在露天环境中使用液体批量测试进行,并在封闭的流体反应腔中通过连续流动实验进行。葡萄糖的灵敏度为53.5 μV/M,过氧化氢为26.5 μV/M,尿素为17 μV/M。连续流动模式下葡萄糖的检测限约为2 mM(30 pmol)。这项工作的目的是展示集成量热微流控装置在生化反应基础热力学研究中的潜力。使用固定有酶的此类装置阵列可以实现多分析物检测,并可以补偿来自竞争底物的干扰物的影响。本文介绍了这种基于微热电堆的热生物传感器的设计、制造和初步测试结果。

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