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一种通过热喷墨打印制造的电流型葡萄糖生物传感器原型。

An amperometric glucose biosensor prototype fabricated by thermal inkjet printing.

作者信息

Setti L, Fraleoni-Morgera A, Ballarin B, Filippini A, Frascaro D, Piana C

机构信息

Department of Industrial Chemistry and Materials, University of Bologna, Viale del Risorgimento 4, 40136 Bologna, Italy.

出版信息

Biosens Bioelectron. 2005 Apr 15;20(10):2019-26. doi: 10.1016/j.bios.2004.09.022.

Abstract

The prototype of an amperometric glucose biosensor was realized by thermal inkjet printing using biological and electronic water-based inks, containing a glucose oxidase (GOD) from Aspergillus niger and the conducting polymer blend poly(3,4-ethylenedioxythiophene/polystyrene sulfonic acid) (PEDOT/PSS), respectively. The biosensor was fabricated microdepositing PEDOT/PSS and GOD, in sequence, on ITO-glass, by a commercial inkjet printer, with the help of a commercial software. High density microdots matrices were so-realized, with a calculated resolution of about 221 x 221 dpi (dot per inch). By means of a rapid and easy assay it was demonstrated that no activity loss occurred upon the printing of GOD, despite of the use of a thermal printhead. The device was encapsulated in a semipermeable membrane of cellulose acetate, applied by dip-coating, in order to prevent dissolution of the enzyme and/or PEDOT/PSS in water. The preliminary response of the electrode was measured in an aqueous glucose solution in the presence of ferrocenemethanol (FeMeOH) as a mediator, and resulted linear up to 60 mM in glucose. The best sensitivity value achieved was 6.43 microAM(-1) cm(-2) (447 nAM(-1) U(-1) cm(-2)). The characteristics of the device, and the possible performance improvements have been analyzed and discussed. The reported findings indicate that inkjet printing could be a viable instrument for the easy construction of a working biosensor via direct digital design using biological and conductive polymer based inks. Such an approach may be seen as an example of "biopolytronics".

摘要

通过热喷墨打印,使用分别含有黑曲霉葡萄糖氧化酶(GOD)和导电聚合物共混物聚(3,4 - 乙撑二氧噻吩/聚苯乙烯磺酸)(PEDOT/PSS)的生物水性墨水和电子水性墨水,实现了电流型葡萄糖生物传感器的原型。借助商业软件,通过商业喷墨打印机在ITO玻璃上依次微沉积PEDOT/PSS和GOD来制造生物传感器。如此实现了高密度微点矩阵,计算分辨率约为221×221 dpi(每英寸点数)。通过快速简便的检测表明,尽管使用了热打印头,但在打印GOD时没有发生活性损失。该装置通过浸涂法封装在醋酸纤维素半透膜中,以防止酶和/或PEDOT/PSS溶解在水中。在存在二茂铁甲醇(FeMeOH)作为媒介物的情况下,在葡萄糖水溶液中测量电极的初步响应,结果表明在葡萄糖浓度高达60 mM时呈线性关系。实现的最佳灵敏度值为6.43 μA M⁻¹ cm⁻²(447 nA M⁻¹ U⁻¹ cm⁻²)。已对该装置的特性以及可能的性能改进进行了分析和讨论。报告的研究结果表明,喷墨打印可能是一种可行的工具,可通过使用基于生物和导电聚合物的墨水进行直接数字设计,轻松构建工作生物传感器。这种方法可被视为“生物聚tronics”的一个例子。 (注:原文中“biopolytronics”这个词可能有误,推测可能是“biopolytronics”,但不影响整体理解和翻译)

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