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首页> 外文期刊>Journal of Applied Polymer Science >Preparation and characterization of superparamagnetic chitosan microspheres: Application as a support for the immobilization of tyrosinase
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Preparation and characterization of superparamagnetic chitosan microspheres: Application as a support for the immobilization of tyrosinase

机译:超顺磁性壳聚糖微球的制备和表征:酪氨酸酶固定化应用

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Superparamagnetic chitosan microspheres were prepared by a water-in-oil suspension-crosslinking technique. To this end, magnetite particles were dispersed in a chitosan solution in acetic acid. The dispersion was added to toluene containing Span 20 as a surfactant with stirring. Chitosan solution droplets were hardened with glutaraldehyde. The magnetic chitosan microspheres obtained were characterized with scanning electron microscopy, differential thermal analysis, and vibrational magnetometry. The microspheres had a wide size distribution, ranging from 43 +/- 25 to 255 +/- 55 mu m, that depended on the reaction conditions. The mean particle size decreased with an increase in the concentration of Span 20 or the amount of glutaraldehyde and with the addition of NaCl. However, a major size reduction was achieved by an increase in the stirring rate. Tyrosinase was immobilized on the microspheres. The immobilized enzyme retained 70% of its activity, as determined by the capacity to degrade phenolic compounds. The immobilized tyrosinase resulted in greater stability than the free enzyme. In addition, the enzyme maintained 65% of its phenol oxidation activity after 10 cycles of reuse. (c) 2005 Wiley Periodicals, Inc.
机译:超顺磁性壳聚糖微球是通过油包水悬浮交联技术制备的。为此,将磁铁矿颗粒分散在壳聚糖的乙酸溶液中。在搅拌下将分散体加入到含有Span 20作为表面活性剂的甲苯中。壳聚糖溶液液滴用戊二醛硬化。用扫描电子显微镜,差热分析和振动磁法对获得的磁性壳聚糖微球进行了表征。微球具有宽的尺寸分布,其范围从43 +/- 25至255 +/-55μm,这取决于反应条件。随着Span 20浓度或戊二醛含量的增加以及NaCl的添加,平均粒径减小。然而,通过增加搅拌速率实现了较大的尺寸减小。酪氨酸酶固定在微球上。固定的酶保留了其70%的活性,这取决于降解酚类化合物的能力。固定化的酪氨酸酶比游离酶具有更高的稳定性。另外,该酶在重复使用10个循环后仍保持其苯酚氧化活性的65%。 (c)2005年Wiley Periodicals,Inc.

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