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利用数字微镜器件对酶包埋壳聚糖膜进行光寻址电沉积,用于基于多重酶的生物分析。

Light-addressed electrodeposition of enzyme-entrapped chitosan membranes for multiplexed enzyme-based bioassays using a digital micromirror device.

机构信息

Department of Mechanical and Mechatronic Engineering, National Taiwan Ocean University, Keelung 202-24, Taiwan.

出版信息

Sensors (Basel). 2013 Aug 16;13(8):10711-24. doi: 10.3390/s130810711.

Abstract

This paper describes a light-addressed electrolytic system used to perform an electrodeposition of enzyme-entrapped chitosan membranes for multiplexed enzyme-based bioassays using a digital micromirror device (DMD). In this system, a patterned light illumination is projected onto a photoconductive substrate serving as a photo-cathode to electrolytically produce hydroxide ions, which leads to an increased pH gradient. The high pH generated at the cathode can cause a local gelation of chitosan through sol-gel transition. By controlling the illumination pattern on the DMD, a light-addressed electrodeposition of chitosan membranes with different shapes and sizes, as well as multiplexed micropatterning, was performed. The effect of the illumination time of the light pattern on the dimensional resolution of chitosan membrane formation was examined experimentally. Moreover, multiplexed enzyme-based bioassay of enzyme-entrapped chitosan membranes was also successfully demonstrated through the electrodeposition of the chitosan membranes with various shapes/sizes and entrapping different enzymes. As a model experiment, glucose and ethanol were simultaneously detected in a single detection chamber without cross-talk using shape-coded chitosan membranes entrapped with glucose oxidase (GOX), peroxidase (POD), and Amplex Red (AmR) or alcohol oxidase (AOX), POD, and AmR by using same fluorescence indicator (AmR).

摘要

本文描述了一种光寻址电解系统,该系统用于使用数字微镜器件 (DMD) 进行基于酶的多重生物分析的酶包埋壳聚糖膜的电沉积。在该系统中,图案化的光照明被投影到作为光电阴极的光导基底上,以电解产生氢氧根离子,从而导致 pH 梯度增加。阴极处产生的高 pH 值可以通过溶胶-凝胶转变导致壳聚糖局部胶凝。通过控制 DMD 上的照明图案,可以进行具有不同形状和尺寸的壳聚糖膜的光寻址电沉积以及多重微图案化。实验研究了光图案的照明时间对壳聚糖膜形成的空间分辨率的影响。此外,还通过电沉积具有各种形状/尺寸的壳聚糖膜并包埋不同的酶,成功地证明了基于酶的多重生物分析。作为模型实验,使用相同的荧光指示剂 (AmR),通过用葡萄糖氧化酶 (GOX)、过氧化物酶 (POD) 和 Amplex Red (AmR) 或酒精氧化酶 (AOX)、POD 和 AmR 包埋的形状编码壳聚糖膜,在单个检测室中无需交叉干扰即可同时检测葡萄糖和乙醇。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7390/3812624/6b4ad912f985/sensors-13-10711f1.jpg

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