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基于酶修饰氧化铟锡微电极阵列的电化学尿酸生物传感器。

Enzyme-modified indium tin oxide microelectrode array-based electrochemical uric acid biosensor.

作者信息

Puri Nidhi, Sharma Vikash, Tanwar Vinod K, Singh Nahar, Biradar Ashok M

机构信息

Polymer and Soft Material Section, CSIR-National Physical Laboratory, Dr. K.S. Krishnan Road, New Delhi, 110012, India.

出版信息

Prog Biomater. 2013 Feb 22;2(1):5. doi: 10.1186/2194-0517-2-5.

Abstract

We fabricated a miniaturized electrochemical uric acid biosensor with a 3-aminopropyltriethoxysilane (APTES)-modified indium tin oxide (ITO) microelectrode array (μEA). The ITO-μEA on a glass plate was immobilized with the enzyme uricase, through a cross-linker, bis[sulfosuccinimidyl]suberate (BS). The enzyme-immobilized electrode (uricase/BS/APTES/ITO-μEA/glass) was characterized by atomic force microscopy and electrochemical techniques. The cyclic voltammetry and impedance studies show an effective binding of uricase at the μEA surface. The amperometric response of the modified electrode was measured towards uric acid concentration in aqueous solution (pH 7.4), under microfluidic channel made of polydimethylsiloxane. The μEA biosensor shows a linear response over a concentration range of 0.058 to 0.71 mM with a sensitivity of 46.26 μA mM cm. A response time of 40 s reaching a 95% steady-state current value was obtained. The biosensor retains about 85% of enzyme activity for about 6 weeks. The biosensor using μEA instead of a large single band of electrode allows the entire core of the channel to be probed though keeping an improved sensitivity with a small volume of sample and reagents.

摘要

我们制备了一种小型化的电化学尿酸生物传感器,该传感器采用3-氨丙基三乙氧基硅烷(APTES)修饰的氧化铟锡(ITO)微电极阵列(μEA)。通过交联剂双[磺基琥珀酰亚胺]辛二酸酯(BS),将玻璃板上的ITO-μEA固定尿酸酶。采用原子力显微镜和电化学技术对固定化酶电极(尿酸酶/BS/APTES/ITO-μEA/玻璃)进行了表征。循环伏安法和阻抗研究表明尿酸酶在μEA表面有效结合。在由聚二甲基硅氧烷制成的微流控通道下,测量了修饰电极对水溶液(pH 7.4)中尿酸浓度的安培响应。该μEA生物传感器在0.058至0.71 mM的浓度范围内呈现线性响应,灵敏度为46.26 μA mM cm。获得了40 s的响应时间,达到95%的稳态电流值。该生物传感器在约6周内保留了约85%的酶活性。使用μEA而非大型单条电极的生物传感器能够探测通道的整个核心区域,同时通过少量样品和试剂保持了较高的灵敏度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0720/5151101/1c829baaf4a3/40204_2012_Article_8_Fig1_HTML.jpg

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