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Designing Hydrophobically Modified Polysaccharide Derivatives for Highly Efficient Enzyme Immobilization

机译:设计疏水修饰的多糖衍生物以高效固定酶

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摘要

In this contribution, a hydrophobically modified polysaccharide derivative is synthesized in an eco-friendly solvent water by conjugation of benzylamine with the backbone of the biopolymer. Owing to the presence of aromatic moieties, the resulting water-soluble polysaccharide derivative self-assembles spontaneously and selectively from solution on the surface of nanometric thin films and sheets of polystyrene (PS). The synthetic polymer modified in this way bears a biocompatible nanolayer suitable for the immobilization of horseradish peroxidase (HRP), a heme-containing metalloenzyme often employed in biocatalysis and biosensors. Besides the detailed characterization of the polysaccharide derivative, a quartz crystal microbalance with dissipation (QCM-D) and atomic force microscopy (AFM) are used to investigate the binding efficiency and interaction of HRP with the tailored polysaccharide interfaces. Subsequent enzyme activity tests reveal details of the interaction of HRP with the solid support. The novel polysaccharide derivative and its use as a material for the selective modification of PS lead to a beneficial, hydrophilic environment for HRP, resulting in high enzymatic activities and a stable immobilization of the enzyme for biocatalytic and analytic purposes.
机译:在这种贡献中,通过将苄胺与生物聚合物的骨架缀合,在生态友好的溶剂水中合成了疏水改性的多糖衍生物。由于存在芳族部分,所得的水溶性多糖衍生物自溶液自发地并选择性地自纳米薄膜和聚苯乙烯(PS)片的表面上的溶液自组装。以这种方式改性的合成聚合物具有适于固定辣根过氧化物酶(HRP)的生物相容性纳米层,辣根过氧化物酶是一种经常在生物催化和生物传感器中使用的含血红素的金属酶。除了对多糖衍生物进行详细表征外,还使用了带耗散的石英晶体微天平(QCM-D)和原子力显微镜(AFM)来研究HRP与定制的多糖界面的结合效率和相互作用。随后的酶活性测试揭示了HRP与固体支持物相互作用的细节。该新型多糖衍生物及其作为选择性修饰PS的材料的使用为HRP创造了有益的亲水环境,从而实现了高酶活性和酶的稳定固定,可用于生物催化和分析目的。

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