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基于分子印迹的电容生物传感器灵敏、实时检测胰蛋白酶

A sensitive and real-time assay of trypsin by using molecular imprinting-based capacitive biosensor.

机构信息

Department of Biotechnology, Lund University, Lund, Sweden; CapSenze Biosystems AB, Lund, Sweden.

出版信息

Biosens Bioelectron. 2016 Dec 15;86:557-565. doi: 10.1016/j.bios.2016.07.046. Epub 2016 Jul 16.

Abstract

Use of a highly sensitive, selective capacitive biosensor is reported for label-free, real-time, easy and rapid detection of trypsin by using the microcontact imprinting method. Real-time trypsin detection was performed with trypsin-imprinted (trypsin-MIP) capacitive electrodes using standard trypsin solutions in the concentration range of 1.0×10(-13)-1.0×10(-7)M with a detection limit of 3.0×10(-13)M. Selectivity and cross-reactivity of the system were tested by using competing proteins including chymotrypsin (chy), bovine serum albumin (BSA), lysozyme (lyz) and cytochrome c (cyt c) in singular and competitive manner and the selectivity of the system was determined with the selectivity coefficients of approximately 705.1, 6.5, 6.4 and 5.1 for chy, BSA, lyz and cyt c, respectively. The trypsin-MIP capacitive electrode was used for ~80 assays during 2 months and retained its binding property during all that time with a decrease of approximately 2.3% in the signal amplitude. In the last step, trypsin activity was measured by using Nα-Benzoyl-D, l-arginine 4-nitroanilide hydrochloride (BAPNA) as the substrate with spectrophotometer at 410nm. The trypsin activity was measured as 9mU/mL by spectrophotometer while the amount of captured enzyme calculated from the capacitive system was 7.9mU/mL which shows the correlation between two methods. From the comparison it is obvious that the new method is an attractive alternative for assaying trypsin and the developed capacitive system might be used successfully to monitor label-free, real-time enzymatic activity of different proteases in a sensitive, rapid, cost-effective manner for different applications.

摘要

本文报道了一种使用微接触印迹技术的高灵敏度、选择性电容生物传感器,用于无标记、实时、简便快速地检测胰蛋白酶。使用标准胰蛋白酶溶液在 1.0×10(-13)-1.0×10(-7)M 的浓度范围内进行实时胰蛋白酶检测,检测限为 3.0×10(-13)M。通过使用竞争蛋白(包括糜蛋白酶(chy)、牛血清白蛋白(BSA)、溶菌酶(lyz)和细胞色素 c(cyt c))以单一和竞争方式测试系统的选择性和交叉反应性,并通过选择性系数约为 705.1、6.5、6.4 和 5.1 分别确定了系统对 chy、BSA、lyz 和 cyt c 的选择性。胰蛋白酶-MIP 电容电极在 2 个月内进行了约 80 次测定,在此期间保留了其结合性能,信号幅度下降约 2.3%。在最后一步中,使用 Nα-苯甲酰-D,L-精氨酸 4-硝基苯胺盐酸盐(BAPNA)作为底物,通过分光光度计在 410nm 处测量胰蛋白酶活性。分光光度计测量的胰蛋白酶活性为 9mU/mL,而从电容系统计算出的捕获酶量为 7.9mU/mL,这表明两种方法之间存在相关性。从比较中可以明显看出,新方法是检测胰蛋白酶的一种有吸引力的替代方法,开发的电容系统可能成功用于以敏感、快速、具有成本效益的方式监测不同蛋白酶的无标记、实时酶活性,适用于不同的应用。

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