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首页> 外文期刊>Polymer bulletin >Supramolecular host-guest carrier based on maltose-modified hyperbranched polymer and polyelectrolyte multilayers: toward stable and reusable glucose biosensor
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Supramolecular host-guest carrier based on maltose-modified hyperbranched polymer and polyelectrolyte multilayers: toward stable and reusable glucose biosensor

机译:基于麦芽糖改性的超支化聚合物和聚电解质多层的超分子宿主载体:朝向稳定且可重复使用的葡萄糖生物传感器

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Regards to the global prevalence of diabetes, clinical management should tackle the awkwardness of continuous glucose monitoring systems (CGMS). Although CGMS are commercially accepted, they are still suffering due to their low sustainability and reusability. One method to circumvent these shortcomings is the immobilization of enzymes onto stable carriers. In this contribution, our aim was to build up a highly stable and reproducible enzyme-based host-guest carrier from maltose-modified hyperbranched poly(ethylene imine) (PEI-Mal-C) and polyelectrolyte multilayers (PEMs) to monitor glucose level. Thus, enzymes, such as glucose oxidase (GOx) and horseradish peroxide (POx), were immobilized in core-shell PEI-Mal-C and highly packaged in carrier-based PEM. Herein, the PEM was created using the layer-by-layer protocol, where a consecutive deposition of polyions was achieved. Therein, the polycation PEI-Mal-C was alternatively deposited with different polyanions, e.g., poly(acrylic acid) and heparin (HE), on a solid substrate. The enzyme immobilization, leaching and enzymatic activity were investigated through different modules, including ultraviolet-visible (UV-Vis) spectrophotometer, rheometer, X-ray spectroscopy, contact angle meter, atomic force microscopy and conductometer. To conclude, our approach enabled the use of immobilized GOx/POx for more than one time with the significantly similarly fitted regression calibration curve. It is implied that this work will be the first step to construct a stable hyperbranched glyconanomaterial-immobilized enzyme based on assembled multilayers, with the potential to be applied in a stable and reusable biosensor.
机译:关于糖尿病的全球患病率,临床管理应解决连续葡萄糖监测系统(CGMS)的尴尬。虽然CGMS是商业上接受的,但由于它们的可持续性和可重用性低,它们仍然痛苦。一种规避这些缺点的一种方法是将酶固定到稳定的载体上。在这一贡献中,我们的目的是从麦芽糖改性的超支化聚(乙烯亚胺)(PEI-MAL-C)和聚电解质多层(PEMS)中建立高度稳定和可重复的酶的宿主载体,以监测葡萄糖水平。因此,酶如葡萄糖氧化酶(GOX)和辣根过氧化物(POX),其固定在核 - 壳PEI-MAL-C中并高度包装在基于载体的PEM中。在此,使用逐层方案创建PEM,其中达到聚偏移的连续沉积。其中,聚阳离子PEI-MAL-C替代地沉积在固体基质上以不同的聚酰化,例如聚(丙烯酸)和肝素(He)。研究了通过不同的模块研究了酶固定,浸出和酶活性,包括紫外 - 可见(UV-Vis)分光光度计,流变仪,X射线光谱,接触角表,原子力显微镜和导电仪。为了得出结论,我们的方法使得使用固定的GOX / POX以多次使用显着类似的回归校准曲线。暗示该作品将是基于组装的多层构建稳定的超胆囊甘油酰上的固定化酶的第一步,其潜力可用于稳定可重复使用的生物传感器。

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