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Cellulose acetate-chitosan based electrospun nanofibers for bio-functionalized surface design in biosensing

机译:醋酸纤维素 - 壳聚糖基电纺纳米纤维在生物传感中进行生物官能化表面设计

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摘要

Production of multifunctional biomaterials in nanoscale is one of the most popular topics in nanotechnology related to biological applications because of its biocompatibility and biodegradability. Herein, cellulose acetate (CA) was blended with chitosan (CS) for the formation of non-soluble electrospun nanofibers in aqueous medium. Amine-functionalized nanofiber surfaces were obtained using carbohydrates, which is an advantage for biomolecule immobilization by covalent bonds. Different solvent systems and CA-CS feeding ratio were examined to obtain ultrafine non-beaded nanofibers. After showing the surface characteristics of CA-CS nanofibers, glucose oxidase (GOx) was immobilized on CA-CS coated electrode by covalent conjugation. Cyclic voltammetry, differential pulse voltammetry, and electrochemical impedance spectroscopy measurements were carried out to prove the surface modification. Finally, CA-CS/GOx platform was investigated to detect glucose in samples and some potential interfering compounds were tested to find out the performance of CA-CS/GOx. CA-CS electrospun nanofibers were well-characterized and applied successfully to fabricate repeatable electrochemical enzymatic biosensor for the first time in this paper.
机译:由于纳米材料的生物相容性和生物降解性,纳米多功能生物材料的制备是与生物应用相关的纳米技术中最热门的话题之一。本文将醋酸纤维素(CA)与壳聚糖(CS)共混,在水介质中形成不溶性电纺纳米纤维。使用碳水化合物获得了胺功能化纳米纤维表面,这是通过共价键固定生物分子的优势。研究了不同溶剂体系和CA-CS投料比对超细无珠纳米纤维的影响。在展示了CA-CS纳米纤维的表面特征后,通过共价共轭将葡萄糖氧化酶(GOx)固定在CA-CS涂层电极上。通过循环伏安法、微分脉冲伏安法和电化学阻抗谱的测量来证明表面改性。最后,对CA-CS/GOx平台进行了研究,以检测样品中的葡萄糖,并测试了一些潜在的干扰化合物,以了解CA-CS/GOx的性能。本文首次对CA-CS电纺纳米纤维进行了表征,并将其成功应用于可重复电化学酶生物传感器的制备。

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