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首页> 外文期刊>Materials science & engineering >Immobilization of cholesterol oxidase on magnetic fluorescent core-shell-structured nanoparticles
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Immobilization of cholesterol oxidase on magnetic fluorescent core-shell-structured nanoparticles

机译:胆固醇氧化酶在磁性荧光核-壳结构纳米颗粒上的固定化

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摘要

The magnetic fluorescent core-shell structured nanoparticles, Fe_3O_4@SiO_2(F)@meso-SiO_2 nanoparticles, were prepared. Cholesterol oxidase (COD) was immobilized on their surface to form Fe_3O_4@SiO_2(F)@meso-SiO_2@COD nanoparticles. Optimal immobilization was achieved with 2.5% (v/v) APTES, 2.0% (v/v) GA, 10 mg COD (in 15 mg carrier) and solution pH of 7.0. Fe_3O_4@SiO_2(F)@meso-SiO_2@COD nanoparticles showed maximal catalytic activity at pH 7.0 and 50 ℃. The thermal, storage and operational stabilities of COD were improved greatly after its immobilization. After the incubation at 50 ℃ for 5 h, the nanoparticles and free COD retained 80% and 46% of its initial activity, respectively. After kept at 4 ℃ for 30 days, the nanoparticles and free COD maintained 86% and 65% of initial activity, respectively. The nanoparticles retained 71% of its initial activity after 7 consecutive operations. Since Fe_3O_4@SiO_2(F)@meso-SiO_2@COD nanoparticles contained tris(2,2-bipyridyl)dichloro-ruthenium(Ⅱ) hexahydrate (Ru(bpy)_3Cl_2) and were optical sensitive to oxygen in solution, it might be used as the sensing material and has the application potential in multi parameter fiber optic biosensor based on enzyme catalysis and oxygen consumption.
机译:制备了磁性荧光核壳结构纳米粒子Fe_3O_4 @ SiO_2(F)@ meso-SiO_2纳米粒子。将胆固醇氧化酶(COD)固定在其表面上,形成Fe_3O_4 @ SiO_2(F)@ meso-SiO_2 @ COD纳米颗粒。使用2.5%(v / v)APTES,2.0%(v / v)GA,10 mg COD(在15 mg载体中)和溶液pH值为7.0可获得最佳固定效果。 Fe_3O_4 @ SiO_2(F)@ meso-SiO_2 @ COD纳米粒子在pH 7.0和50℃下表现出最大的催化活性。固定化后,COD的热稳定性,储存性和操作稳定性大大提高。在50℃下孵育5小时后,纳米颗粒和游离COD分别保留其初始活性的80%和46%。在4℃下放置30天后,纳米颗粒和游离COD分别保持初始活性的86%和65%。连续7次操作后,纳米粒子保留了其初始活性的71%。由于Fe_3O_4 @ SiO_2(F)@ meso-SiO_2 @ COD纳米粒子含有六水合三(2,2-联吡啶基)二氯钌(Ⅱ)(Ru(bpy)_3Cl_2),并且对溶液中的氧敏感,因此可以使用作为传感材料,在基于酶催化和耗氧的多参数光纤生物传感器中具有应用潜力。

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  • 来源
    《Materials science & engineering》 |2015年第12期|31-37|共7页
  • 作者单位

    National Engineering Laboratory for Fiber Optic Sensing Technology, Wuhan University of Technology, Wuhan 430070, China Key Laboratory of Fiber Optic Sensing Technology and Information Processing (Wuhan University of Technology), Ministry of Education, Wuhan 430070, China;

    National Engineering Laboratory for Fiber Optic Sensing Technology, Wuhan University of Technology, Wuhan 430070, China Key Laboratory of Fiber Optic Sensing Technology and Information Processing (Wuhan University of Technology), Ministry of Education, Wuhan 430070, China;

    National Engineering Laboratory for Fiber Optic Sensing Technology, Wuhan University of Technology, Wuhan 430070, China Key Laboratory of Fiber Optic Sensing Technology and Information Processing (Wuhan University of Technology), Ministry of Education, Wuhan 430070, China;

    National Engineering Laboratory for Fiber Optic Sensing Technology, Wuhan University of Technology, Wuhan 430070, China Key Laboratory of Fiber Optic Sensing Technology and Information Processing (Wuhan University of Technology), Ministry of Education, Wuhan 430070, China;

    National Engineering Laboratory for Fiber Optic Sensing Technology, Wuhan University of Technology, Wuhan 430070, China Key Laboratory of Fiber Optic Sensing Technology and Information Processing (Wuhan University of Technology), Ministry of Education, Wuhan 430070, China;

    National Engineering Laboratory for Fiber Optic Sensing Technology, Wuhan University of Technology, Wuhan 430070, China Key Laboratory of Fiber Optic Sensing Technology and Information Processing (Wuhan University of Technology), Ministry of Education, Wuhan 430070, China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Magnetic fluorescent SiO_2 nanoparticles; COD immobilization; Stability; Fiber optic biosensor;

    机译:磁性荧光SiO_2纳米粒子;化学需氧量固定化;稳定性;光纤生物传感器;

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