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基于纳米多孔氧化铝的三维纳米结构材料用于胰蛋白酶测定的远程生物传感器。

Remote biosensor for the determination of trypsin by using nanoporous anodic alumina as a three-dimensional nanostructured material.

机构信息

Departamento de Ingeniería Electrónica, Eléctrica y Automática, Universitat Rovira i Virgili, Avda. Països Catalans 26, 43007, Tarragona, Spain.

出版信息

Sci Rep. 2020 Feb 11;10(1):2356. doi: 10.1038/s41598-020-59287-7.

Abstract

The determination of trypsin in the human real sample is a routine medical investigation to assess the pancreatic disease. Herein, we fabricated an interferometric reflectance spectroscopy based biosensor for the determination trypsin. For this purpose, urease and fluorescein 5(6)-isothiocyanate (FLITC) were immobilized on the nanoporous anodic alumina (NAA). The operation principle of the proposed biosensor is based on the change in the pH of the solution during the reaction of urease and urea and therefore change in the light-absorbing ability of FLITC in the presence of trypsin. The reaction of the urease enzyme with urea increased the pH of the solution because of producing ammonia. This increase in the pH of solution increased the light-absorbing ability of the immobilized FLITC on NAA and therefore the intensity of the reflected light from the NAA to the charge-coupled device detector decreased. In the presence of trypsin, the catalytic activity of immobilized urease on NAA decreased. This decrease in the activity of urease enzyme consequent on the decrease in the amount of the generated ammonia. Therefore, the immobilized FLITC on the NAA did not absorb more light and consciously, the intensity of the light reflected light into the detector increased. The proposed biosensor exhibited a good response to the concentration of trypsin in the range of 0.25-20 μg.mL with the limit of detection of 0.06 μg.mL.

摘要

在人体实际样本中测定胰蛋白酶是评估胰腺疾病的常规医学检查。在此,我们构建了一种基于干涉反射光谱的用于测定胰蛋白酶的生物传感器。为此,将脲酶和荧光素 5(6)-异硫氰酸酯 (FLITC) 固定在纳米多孔阳极氧化铝 (NAA) 上。该生物传感器的工作原理基于脲酶与尿素反应过程中溶液 pH 的变化,以及在存在胰蛋白酶的情况下 FLITC 的吸光能力的变化。由于产生氨,脲酶酶的反应会增加溶液的 pH 值。溶液 pH 值的这种增加提高了固定在 NAA 上的 FLITC 的吸光能力,因此从 NAA 到电荷耦合器件检测器的反射光强度降低。在存在胰蛋白酶的情况下,固定在 NAA 上的脲酶的催化活性降低。这种酶活性的降低导致生成的氨的量减少。因此,固定在 NAA 上的 FLITC 没有吸收更多的光,并且可以意识到,反射光进入检测器的强度增加。该生物传感器对 0.25-20μg.mL 范围内的胰蛋白酶浓度表现出良好的响应,检测限为 0.06μg.mL。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/87ad/7012875/6e5870199d39/41598_2020_59287_Fig1_HTML.jpg

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