首页> 外文期刊>ACS applied materials & interfaces >Preparation of Superparamagnetic Fe3O4@Alginate/Chitosan Nanospheres for Candida rugosa lipase Immobilization and Utilization of Layer-by-Layer Assembly to Enhance the Stability of Immobilized Lipase
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Preparation of Superparamagnetic Fe3O4@Alginate/Chitosan Nanospheres for Candida rugosa lipase Immobilization and Utilization of Layer-by-Layer Assembly to Enhance the Stability of Immobilized Lipase

机译:超顺磁性Fe3O4 @藻酸盐/壳聚糖纳米球的制备及其对葡聚糖假单胞菌脂肪酶的固定性及通过分层组装提高固定化脂肪酶的稳定性

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摘要

Superparamagnetic alginate nanospheres with diameter of 50 nm were prepared by self-assembly of alginate in the Ca~(2+) solution; and then superparamagnetic alginate/chitosan nanospheres, which have positive charge and could adsorb lipase directly, were obtained with a following assembly of chitosan based on the electrostatic interaction between alginate and chitosan. Subsequently, oxidic poly (ethylene glycol) was used to functionalize the magnetic alginate/chitosan nanospheres, Thus, the magnetic nanospheres with aldehyde groups and a brushlike structure were formed. With various characterizations, it was verified that the magnetic alginate/chitosan nanospheres held small diameters (around 60 nm) and displayed super-paramagnetism with high saturation magnetization. The Candida rugosa lipase (CRL), meanwhile, was immobilized onto the magnetic alginate/chitosan nanospheres by electrostatic adsorption and covalent bonding, respectively. Afterward, a layer-by-layer (LBL) assembly process was utilized to coat the immobilized CRL (ICRL; with covering layers made up or alginate and chitosan. After studying the properties of ICRL such as activity, kinetic behaviors, stability and reusability, it was proved that the ICRL prepared with two methods displayed more excellent properties than that prepared with electrostatic adsorption only. Additionally, coating ICRL with covering layers showed good effect on improving the stability of ICRL.
机译:通过在Ca〜(2+)溶液中自组装藻酸盐制备直径为50 nm的超顺磁性藻酸盐纳米球。然后,根据藻酸盐与壳聚糖之间的静电相互作用,通过壳聚糖的后续组装,获得了具有正电荷并且可以直接吸附脂肪酶的超顺磁性藻酸盐/壳聚糖纳米球。随后,使用氧化聚(乙二醇)使藻酸盐/壳聚糖磁性纳米球官能化,从而形成具有醛基和刷状结构的磁性纳米球。通过各种表征,证实了藻酸盐/壳聚糖磁性纳米球具有较小的直径(约60 nm)并显示出具有高饱和磁化强度的超顺磁性。同时,通过静电吸附和共价键合,将假丝酵母脂肪酶(CRL)固定在藻酸盐/壳聚糖磁性纳米球上。之后,采用层层(LBL)组装工艺涂覆固定化的CRL(ICRL;覆盖层由藻酸盐或壳聚糖组成),研究了ICRL的特性后,例如活性,动力学行为,稳定性和可重复使用性,结果表明,两种方法制备的ICRL均比仅采用静电吸附法制备的ICRL具有更好的性能,此外,用覆盖层涂覆ICRL对提高ICRL的稳定性也有良好的效果。

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