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首页> 外文期刊>Bioprocess and Biosystems Engineering >Construction of an amperometric TG biosensor based on AuPPy nanocomposite and poly (indole-5-carboxylic acid) modified Au electrode
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Construction of an amperometric TG biosensor based on AuPPy nanocomposite and poly (indole-5-carboxylic acid) modified Au electrode

机译:基于AuPPy纳米复合材料和聚(吲哚-5-羧酸)修饰Au电极的电流型TG生物传感器的构建

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摘要

A method is described for construction of an amperometric triglyceride (TG) biosensor based on cova-lent co-immobilization of lipase, glycerol kinase and glycerol-3-phosphate oxidase onto gold polypyrrole nanocomposite decorated poly indole-5-carboxylic acid elec-trodeposited on the surface of a gold electrode. The enzyme electrode was characterized by transmission electron microscopy, scanning electron microscopy, electrochemical impedance studies, Fourier transform infrared spectroscopy and cyclic voltammetry. Biosensor showed optimum response within 4 s at pH 6.5 and 35 ℃, when polarized at +0.1 V against Ag/AgCl. There was a linear relationship between sensor response and triolein concentration in the range 50-700 mg/dl. Biosensor was employed for determination of TG in serum. Detection limit of the biosensor was 20 mg/dl. Biosensor was evaluated with 91-95 % recovery of added triolein in sera and 4.14 and 5.85 % within and between batch coefficients of variation, respectively. There was a good correlation (r = 0.99) between sera TG values by standard method (Enzymic colorimetric) and the present method. The biosensor was unaffected by a number of serum substances at their physiological concentration. Biosensor lost 50 % of its initial activity after its 100 uses over 7 months, when stored at 4 ℃.
机译:描述了一种基于将脂肪酶,甘油激酶和-3-磷酸甘油氧化酶强力共固定在金吡咯纳米复合修饰的聚吲哚-5-羧酸上电沉积的安培型甘油三酸酯(TG)生物传感器的构建方法。金电极的表面。通过透射电子显微镜,扫描电子显微镜,电化学阻抗研究,傅立叶变换红外光谱和循环伏安法对酶电极进行表征。当在+0.1 V的条件下对Ag / AgCl极化时,生物传感器在4 s的pH 6.5和35℃下显示最佳响应。传感器响应与三油精浓度在50-700 mg / dl之间存在线性关系。使用生物传感器测定血清中的TG。生物传感器的检出限为20mg / dl。评估生物传感器的血清中添加的三油精的回收率为91-95%,批次的变异系数之内和之间分别为4.14和5.85%。通过标准方法(酶比色法)测定的血清TG值与本方法之间存在良好的相关性(r = 0.99)。该生物传感器不受其生理浓度下的多种血清物质的影响。当在4℃储存时,生物传感器100次使用7个月后,其生物活性下降了50%。

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