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New Advancement on Cross-Linked Enzyme Aggregates within Magnetically-Separable Mesoporous Silica

机译:磁性可分离的中孔二氧化硅中交联酶聚集体的新进展

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Magnetically-separable enzyme system has been developed by adsorption, precipitation and cross-linking of enzymes in superparamagnetic hierarchically ordered mesoporous mesocellular silica (M-HMMS). The immobilization of xylanase within M-HMMS were compared between enzyme adsorption (EA), enzyme adsorption and cross-linking (EAC), and enzyme adsorption, precipitation and cross-linking (EAPC). EAPC includes higher enzyme activity immobilized within the matrix in comparison with the other methods. Furthermore, the immobilized enzyme is predicted to be prevented from leaching out of the matrix when exterior blow is being tested on the structure. Thus, the stability of the EAPC of this invention is anticipated to be maintained even after a long time passed since high enzyme activity compared with known method can be supported and immobilized within the matrix. Consequently, it is possible to improve performance of the enzymes by manipulating the preparation and operation condition.
机译:通过在超顺磁性分层排序的介孔中孔胶(M-HMMS)中的酶的吸附,沉淀和交联,开发了磁性可分离的酶系统。在酶吸附(EA),酶吸附和交联(EAC)之间比较了M-HMMS内的木聚糖酶的固定,以及酶吸附,沉淀和交联(EAPC)。 EAPC与其他方法相比,包括固定在基质内的更高酶活性。此外,预测固定化的酶被预防在外部吹在结构上时防止在基质中浸出。因此,即使在与已知方法相比的高酶活性,可以支撑和固定在基质内,预期本发明的EAPC的稳定性即使在长时间通过后,也可以保持。因此,可以通过操纵制备和操作条件来改善酶的性能。

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