28 resultados para God.


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For their biocompatibility and potential bionanoelectronic applications, integration of carbon nanotubes (CNTs) with biomolecules such as redox enzyme is highly anticipated. Therein, CNTs are expected to act not only as an electron transfer promoter, but also as immobilizing substrate for biomolecules. In this report, a novel method for immobilization of biomolecules on CNTs was proposed based on ionic interaction, which is of universality and widespread use in biological system. As illustrated, glucose oxidase (GOD) and single-walled carbon nanotubes (SWNTs) were integrated into a unitary bionanocomposite by means of ionic liquid-like unit on functionalized SWNTs. The resulted bionanocomposite illustrated better redox response of immobilized GOD in comparison of that prepared by weak physical absorption without ionic interaction. As a potential application of concept, the electrochemical detection of glucose was exemplified based on this novel bionanocomposite.

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使用简单的方法将葡萄糖氧化酶(GOD)固定在介孔碳(Mesoporous Carbon)修饰的玻碳电极(GCE)表面.循环伏安测试表明:修饰电极上的GOD0.1mol/L磷酸缓冲溶液(PBS)(pH=7.1)中发生了准可逆的氧化还原反应,其克式量电位为-0.4294 V,并且该电化学反应包含有两电子两质子的传递.在氮气饱和的情况下,以羧基二茂铁作为电子传递中介体,GOD将葡萄糖彻底催化氧化,可见介孔碳修饰电极上的GOD持了其生物学活性.

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A novel flow injection optical fiber biosensor for glucose based on luminol electrochemiluminescence (ECL) is presented. The sol-gel method is introduced to immobilize glucose oxidase (GOD) on the surface of a glassy carbon electrode. After optimization of the working conditions, glucose could be quantitated in the concentration ranges between 50 muM and 10 mM with a detection limit of around 26 muM. Signal reproducibility was about 3.62% relative standard deviation for 11 replicated measurements of 0.1 mM glucose. The ECL biosensor also showed good selectivity and operational stability. The proposed method can be applied to determination of glucose in soft drink samples.

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An optical fiber bienzyme sensor based on the luminol chemiluminescent reaction was developed and demonstrated to be sensitive to glucose. Glucose oxidase (GOD) and horseradish peroxidase (HRP) were co-immobilized by microencapsulation in a sol-gel film derived from tetraethyl orthosilicate(TEOS). The calibration plots for glucose were established by the optical fiber glucose sensor fabricated by attaching the bienzyme silica gel onto the glass window of the fiber bundle. The linear range was 0.2-2 mmol/L and the detection limit was approximately 0.12 mmol/L. The relative standard deviation was 5.3% (n = 6). The proposed biosensor was applied to glucose assay in ofloxacin injection successfully.

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A novel amperometric biosensor utilizing two enzymes, glucose oxidase (GOD) and horseradish peroxidase (HRP), was developed for the cathodic detection of glucose. The glucose biosensor was constructed by electrochemical formation of a polypyrrole (PPy) membrane in the presence of GOD on the surface of a HRP-modified sol-gel derived-mediated ceramic carbon electrode. Ferrocenecarboxylic acid (FCA) was used as mediator to transfer electron between enzyme and electrode. In the hetero-bilayer configuration of electrode, all enzymes were well immobilized in electrode matrices and showed favorable enzymatic activities. The amperometric detection of glucose was carried out at +0.16 V (versus saturated calomel reference electrode (SCE)) in 0.1 M phosphate buffer solution (pH 6.9) with a linear response range between 8.0 x 10(-5) and 1.3 x 10(-3) M glucose. The biosensor showed a good suppression of interference in the amperometric detection.

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β-D-葡萄糖的检测是临床化学的常规分析项目 .化学发光分析法测定葡萄糖具有线性范围宽、灵敏度高等优点[1~ 3] .我们曾研究了鲁米诺 ( L uminol) -KIO4 -H2 O2 化学发光反应体系[4 ] ,发现 H2 O2 浓度在 2 .0× 1 0 - 7~ 6.0× 1 0 - 4mol/L范围内与发光强度有良好的线性关系 .本文将生成 H2 O2 的葡萄糖 -葡萄糖氧化酶 ( GOD)的酶促反应与鲁米诺 -KIO4 -H2 O2 的化学发光反应相偶合 ,结合流动注射技术 ,建立了一种流动注射化学发光测定葡萄糖的新方法 .方法的线性范围为 0 .6~ 1 1 0 mg/L ,相关系数为 0 .9997,检出限为 0 .0 8mg/L.对 1 0 mg/L葡萄糖 1 1次平行测定的相对标准偏差为 1 .3 % .该法用于人血清中葡萄糖含量的测定 ,结果令人满意 .β-D-C6 H12 O6 +O2 +H2 O GODp H =7.60 D-C5H11O5COOH+H2 O2L uminol+KIO4H2 O2p H=12 .97C6 H3NH2 ( COOH) 2 +hν仪器与试剂 :鲁米诺分析液...

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A novel amperometric glucose biosensor was constructed by electrochemical formation of a polypyrrole (PPy) membrane in the presence of glucose oxidase (GOD) on the surface of a horseradish peroxidase (HRP) modified ferrocenecarboxylic acid (FCA) mediated sol-gel derived ceramic carbon electrode. The amperometric detection of glucose was carried out at +0.16 V (vs. SCE) in 0.1 mol/L phosphate buffer solution (pH 6.9) with a linear response range between 8.0x10(-5) and 1.3x10(-3) mol/L of glucose. The biosensor showed a good suppression of interference and a negligible deviation in the amperometric detection.

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Glucose oxidase can be effectively adsorbed onto the polypyrrole(PPy) thin film electrochemically formed on an anodized galssy carbon electrode(GCEa). Direct electron communication between the redox of GOD and the modified electrode was successfully achieved, which was detected using cyclic voltammetry. GOD entrapped in PPy film still remained its biological activity and could catalyze the oxidation of glucose. As a third generation biosensor, GOD-PPy/GCEa responded linearly up to 20 mM glucose with a wider linear concentration range.

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The glassy carbon electrode (gce) and highly oriented pyrolytic graphite (hopg) were electrochemically anodized at a potential of +2.0 V (vs. Ag/AgCl) to create active sites and to improve the adsorption of glucose oxidase (GOD) and flavin adenine dinucle

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Native and unfolded glucose oxidase (GOD) structures have been directly observed with scanning tunnelling microscopy (STM) for the first time. STM images show an opening butterfly-shaped pattern for the native GOD. When GOD molecules are extended on anodi

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生物电化学传感器所面临的主要问题,就是干扰和污染。具有选择渗透性的聚合物膜可以防止电活性物质到达电极表面和大分子物质对基底电极的污染,提高电极的选择性,延长使用寿命。这方面的报道已很多。电聚合的邻苯二胺膜的选择渗透性已有报道。其优点是薄(<10nm),且具有自身的绝缘性,可以被均匀地聚合在电极表面。我们用这种聚合物膜修饰电极为基底电极,化学交联法将葡萄糖氧化酶(GOD)固定在基底电极表面,制备了葡萄糖

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本文用聚合物AQ(Eastman-AQ)将二甲基二茂铁、葡萄糖氧化酶固定在微组合电极上制成了葡萄糖微传感器。二甲基二茂铁作为一个介体将电子从电极传递给葡萄糖氧化酶(GOD)。催化电流与葡萄糖浓度在1~12mmol/L呈线性关系,探讨了温度、pH对催化电流的影响。微传感器的响应时间小于15秒,AQ膜的阳离子交换特性和很强的附着力以及二甲基二茂铁的工作电位低,使微传感器的稳定性有所提高,并且消除了抗坏血酸、尿酸的干扰。血清中葡萄糖浓度的测定与分光光度法的结果基本相符。

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A glucose oxidase (GOD) electrode with ferrocene (Fc) used as an electron transfer mediator has been described. Using Nafion, Fc was modified on a glassy carbon (GC) electrode surface, and glucose oxidase was then immobilized on the Fc-Nafion film, forming a GOD-Fc-Nafion enzyme electrode. The preparation method was quite simple and rapid. The enzyme electrode showed a reversible reaction of the redox couple (Fc+/Fc), used in a biosensor system, displayed a sensitive catalytic current response (response time was less than 20 s) on variation of the glucose concentration, with a wide linear range up to 16 mM and with good repeatability. The enzyme electrode showed almost no deterioration over the course of three weeks. There was little or no interference from electro-active anions, such as ascorbic acid, to the determination of glucose based on Nafion film and lower oxidizing potentials of the enzyme electrode.