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喷墨打印在无试剂生物传感器上固定酶用于电化学磷酸盐检测。

Enzyme Immobilization by Inkjet Printing on Reagentless Biosensors for Electrochemical Phosphate Detection.

机构信息

Shenzhen Institute for Advanced Study, University of Electronic Science and Technology of China, Yesun Industry Zone, Guanlan Street, Shenzhen 518110, China.

Department of Biomedical Engineering, Western University, 1151 Richmond Street, London, ON N6A 3K7, Canada.

出版信息

Biosensors (Basel). 2024 Mar 30;14(4):168. doi: 10.3390/bios14040168.

Abstract

Enzyme-based biosensors commonly utilize the drop-casting method for their surface modification. However, the drawbacks of this technique, such as low reproducibility, coffee ring effects, and challenges in mass production, hinder its application. To overcome these limitations, we propose a novel surface functionalization strategy of enzyme crosslinking via inkjet printing for reagentless enzyme-based biosensors. This method includes printing three functional layers onto a screen-printed electrode: the enzyme layer, crosslinking layer, and protective layer. Nanomaterials and substrates are preloaded together during our inkjet printing. Inkjet-printed electrodes feature a uniform enzyme deposition, ensuring high reproducibility and superior electrochemical performance compared to traditional drop-casted ones. The resultant biosensors display high sensitivity, as well as a broad linear response in the physiological range of the serum phosphate. This enzyme crosslinking method has the potential to extend into various enzyme-based biosensors through altering functional layer components.

摘要

基于酶的生物传感器通常采用滴涂法进行表面修饰。然而,这种技术存在一些缺点,例如重现性低、咖啡环效应以及大规模生产的挑战,限制了其应用。为了克服这些限制,我们提出了一种通过喷墨打印对无试剂基于酶的生物传感器进行酶交联的新型表面功能化策略。该方法包括在丝网印刷电极上打印三层功能层:酶层、交联层和保护层。在我们的喷墨打印过程中,纳米材料和基底一起预加载。喷墨打印电极具有均匀的酶沉积,与传统的滴涂电极相比,具有更高的重现性和优异的电化学性能。所得生物传感器具有高灵敏度,并且在血清磷酸盐的生理范围内具有宽线性响应。通过改变功能层组件,这种酶交联方法有可能扩展到各种基于酶的生物传感器中。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e17a/11047959/e211e778be19/biosensors-14-00168-g001.jpg

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