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Mesoporous Silicas with Tunable Morphology for the Immobilization of Laccase

机译:具有固定形态的介孔二氧化硅固定漆酶

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摘要

Siliceous ordered mesoporous materials (OMM) are gaining interest as supports for enzyme immobilization due to their uniform pore size, large surface area, tunable pore network and the introduction of organic components to mesoporous structure. We used SBA-15 type silica materials, which exhibit a regular 2D hexagonal packing of cylindrical mesopores of uniform size, for non-covalent immobilization of laccase. Synthesis conditions were adjusted in order to obtain supports with different particle shape, where those with shorter channels had higher loading capacity. Despite the similar isoelectric points of silica and laccase and the close match between the size of laccase and the pore dimensions of these SBA-15 materials, immobilization was achieved with very low leaching. Surface modification of macro-/mesoporous amorphous silica by grafting of amine moieties was proved to significantly increase the isoelectric point of this support and improve the immobilization yield.
机译:硅质有序介孔材料(OMM)由于其孔径均匀,表面积大,可调节的孔网络以及将有机组分引入介孔结构而作为酶固定化的载体而受到关注。我们使用了SBA-15型二氧化硅材料,该材料显示出大小均匀的圆柱形中孔的规则2D六角形堆积,用于非共价固定漆酶。调节合成条件以获得具有不同颗粒形状的载体,其中具有较短通道的那些具有较高的负载能力。尽管二氧化硅和漆酶的等电点相似,并且漆酶的大小与这些SBA-15材料的孔尺寸之间具有紧密的匹配关系,但通过极低的浸出即可实现固定化。已证明通过接枝胺部分对大/中孔无定形二氧化硅进行表面改性可显着增加该载体的等电点并提高固定化率。

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