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Electrochemical Biosensing Platform Using Hydrogel Prepared from Ferrocene Modified Amino Acid as Highly Efficient Immobilization Matrix

机译:以二茂铁修饰氨基酸制备的水凝胶作为高效固定化基质的电化学生物传感平台

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摘要

To increase the loading of glucose oxidase (GOx) and simplify glucose biosensor fabrication, hydrogel prepared from ferrocene (Fc) modified amino acid phenylalanine (Phe, F) was utilized for the incorporation of GOx. The synthesized hydrogel displays good biocompatibility and contains a significant number of Fc moieties, which can be considered as an ideal matrix to immobilize enzymes for the preparation of mediator-based biosensors. The hydrogel was studied by scanning electron microscopy, which indicated that it was composed of nanofibers with a diameter of around 50-100 nm and length extended to 1 mm. With the addition of GOx into the hydrogel and by directly dropping the resulting biocomposite onto the electrode surface, a glucose biosensor, that displays good performance due to improved enzyme loading and efficient electron transfer, can be simply constructed. The favorable network structure and good biocompatibility of the hydrogel could effectively avoid enzyme leakage and maintain the bioactivity of the enzymes, which resulted in good stability of the biosensor. The biosensor was utilized for the detection of glucose in blood samples with results comparable to those obtained from the hospital. The hydrogel as a functional component of an amperometric biosensor has implications for future development of biosensors and for clinical applications.
机译:为了增加葡萄糖氧化酶(GOx)的负载并简化葡萄糖生物传感器的制造,将由二茂铁(Fc)修饰的氨基酸苯丙氨酸(Phe,F)制备的水凝胶用于GOx的掺入。合成的水凝胶显示出良好的生物相容性,并包含大量的Fc部分,可以将其视为固定酶以制备基于介体的生物传感器的理想基质。通过扫描电子显微镜对水凝胶进行了研究,结果表明该水凝胶由纳米纤维组成,直径约50-100 nm,长度延伸至1 mm。通过将GOx添加到水凝胶中并通过将所得的生物复合物直接滴到电极表面上,可以简单地构建由于改善的酶负载和有效的电子转移而显示出良好性能的葡萄糖生物传感器。水凝胶良好的网络结构和良好的生物相容性可有效避免酶的渗漏并维持酶的生物活性,从而使生物传感器具有良好的稳定性。该生物传感器用于检测血液样本中的葡萄糖,其结果与从医院获得的结果相当。作为安培型生物传感器功能组件的水凝胶对生物传感器的未来发展和临床应用具有影响。

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