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Magnetite-Containing Spherical Silica Nanoparticles for Biocatalysis and Bioseparations

机译:用于生物催化和生物分离的含磁铁矿球形二氧化硅纳米粒子

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The simultaneous entrapment of biological macromolecules and nanostructured silica-coated magnetite in solgel materials using a reverse-micelle technique leads to a bioactive, mechanically stable, nanometer-sized, and magnetically separable particles. These spherical particles have a typical diameter of 53±4 nm, a large surface area of 330 m~(2)/g, an average pore diameter of 1.5 nm, a total pore volume of 1.427 cm~(3)/g and a saturated magnetization (M_(S)) of 3.2 emu/g. Peroxidase entrapped in these particles shows Michaelis-Mentan kinetics and high activity. The catalytic reaction will take place immediately after adding these particles to the reaction solution. These enzyme entrapping particles catalysts can be easily separated from the reaction mixture by simply using an external magnetic field. Experiments have proved that these catalysts have a long-term stability toward temperature and pH change, as compared to free enzyme molecules. To further prove the application of this novel magnetic biomaterial in analytical chemistry, a magnetic-separation immunoassay system was also developed for the quantitative determination of gentamicin. The calibration for gentamicin has a working range of 200-4000 ng/mL, with a detection limit of 160 ng/mL, which is close to that of the fluorescent polarization immunoassay (FPIA) using the same reactants.
机译:使用反向胶束技术将生物大分子和纳米结构的二氧化硅包覆的磁铁矿同时捕获在溶胶凝胶材料中,可产生具有生物活性,机械稳定性,纳米尺寸和磁可分离性的颗粒。这些球形颗粒的典型直径为53±4 nm,大表面积为330 m〜(2)/ g,平均孔径为1.5 nm,总孔体积为1.427 cm〜(3)/ g,且饱和磁化强度(M_(S))为3.2 emu / g。包埋在这些颗粒中的过氧化物酶显示出Michaelis-Mentan动力学和高活性。将这些颗粒添加到反应溶液中后,将立即进行催化反应。仅通过使用外部磁场就可以容易地将这些酶截留颗粒催化剂从反应混合物中分离出来。实验证明,与游离酶分子相比,这些催化剂对温度和pH值变化具有长期稳定性。为了进一步证明这种新型磁性生物材料在分析化学中的应用,还开发了一种磁分离免疫测定系统,用于庆大霉素的定量测定。庆大霉素的校准工作范围为200-4000 ng / mL,检测极限为160 ng / mL,接近于使用相同反应物的荧光偏振免疫测定(FPIA)的检测极限。

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