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通过生物分子友好型光刻技术功能化的电化学生物传感器微阵列。

Electrochemical biosensor microarray functionalized by means of biomolecule friendly photolithography.

机构信息

Bioengineering and Bioelectrochemistry Group, Departament d'Enginyeria Química, Escola Tècnica Superior d'Enginyeria Química, Universitat Rovira i Virgili, Tarragona 43007, Spain.

出版信息

Biosens Bioelectron. 2010 May 15;25(9):2115-21. doi: 10.1016/j.bios.2010.02.012. Epub 2010 Feb 24.

DOI:10.1016/j.bios.2010.02.012
PMID:20356728
Abstract

Microfabrication permits the incorporation of dense electrode arrays in microsystems and small volume diagnostic devices. However, the specific functionalization of arbitrary shape electrodes with different biomolecules remains a challenging issue. In the present work, the problem of fabricating closely spaced microelectrodes (20 microm sensor diameter and 20 microm-spaced interdigitated electrodes array) that can be modified selectively in order to create multi-analyte sensor arrays is addressed by employing a biomolecule friendly photolithographic procedure for the sequential immobilization of different biomolecules onto separated electrodes of the same array. The concept was demonstrated with selective detection of oligonucleotides for breast cancer gene mutation detection, the hormone T4 detected with specific antibodies and sarcosine and glucose detected with specific enzymes immobilized in two-analyte arrays in order to assure that the method is compatible with all the types of biorecognition molecules used in biosensors. Electrochemical techniques were used in this array, because of the low cost, high sensitivity and easy miniaturization of these transducers. Although the array was composed of only two sets of electrodes, the results demonstrate that the method proposed is generic and could be used for patterning of electrochemical multi-analyte biosensors at even higher resolution.

摘要

微制造允许将密集的电极阵列集成到微系统和小体积诊断设备中。然而,用不同的生物分子对任意形状的电极进行特定功能化仍然是一个具有挑战性的问题。在本工作中,通过采用生物分子友好的光刻工艺来解决制造紧密间隔的微电极(传感器直径为 20 微米,叉指电极阵列的间距为 20 微米)的问题,这些微电极可以被选择性地修饰,以创建多分析物传感器阵列。该概念通过选择性检测用于乳腺癌基因突变检测的寡核苷酸、用特异性抗体检测激素 T4 以及用特异性酶固定在双分析物阵列中检测肌氨酸和葡萄糖来证明,以确保该方法与生物传感器中使用的所有类型的生物识别分子兼容。电化学技术在该阵列中被使用,因为这些传感器具有低成本、高灵敏度和易于小型化的特点。尽管该阵列仅由两组电极组成,但结果表明,所提出的方法是通用的,可用于以更高的分辨率对电化学多分析物生物传感器进行图案化。

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