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Multifunctional glucose biosensors from Fe3O4 nanoparticles modified chitosan/graphene nanocomposites

机译:Fe3O4纳米粒子修饰的壳聚糖/石墨烯纳米复合材料的多功能葡萄糖生物传感器

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摘要

Novel water-dispersible and biocompatible chitosan-functionalized graphene (CG) has been prepared by a one-step ball milling of carboxylic chitosan and graphite. Presence of nitrogen (from chitosan) at the surface of graphene enables the CG to be an outstanding catalyst for the electrochemical biosensors. The resulting CG shows lower ID/IG ratio in the Raman spectrum than other nitrogen-containing graphene prepared using different techniques. Magnetic Fe3O4 nanoparticles (MNP) are further introduced into the as-synthesized CG for multifunctional applications beyond biosensors such as magnetic resonance imaging (MRI). Carboxyl groups from CG is used to directly immobilize glucose oxidase (GOx) via covalent linkage while incorporation of MNP further facilitated enzyme loading and other unique properties. The resulting biosensor exhibits a good glucose detection response with a detection limit of 16 μM, a sensitivity of 5.658 mA/cm2/M, and a linear detection range up to 26 mM glucose. Formation of the multifunctional MNP/CG nanocomposites provides additional advantages for applications in more clinical areas such as in vivo biosensors and MRI agents.
机译:新型的水分散性和生物相容性的壳聚糖官能化石墨烯(CG)是通过羧酸壳聚糖和石墨的一步球磨制备的。石墨烯表面存在氮(来自壳聚糖)使CG成为电化学生物传感器的杰出催化剂。与使用不同技术制备的其他含氮石墨烯相比,所得的CG在拉曼光谱中显示出较低的ID / IG比。磁性Fe3O4纳米颗粒(MNP)进一步引入到合成后的CG中,用于生物传感器(如磁共振成像(MRI))以外的多功能应用。来自CG的羧基用于通过共价键直接固定葡萄糖氧化酶(GOx),而掺入MNP进一步促进了酶的负载和其他独特特性。所得生物传感器显示出良好的葡萄糖检测响应,检测极限为16μmM,灵敏度为5.658μmA/ cm 2 / M,线性检测范围高达26μmM葡萄糖。多功能MNP / CG纳米复合材料的形成为更多的临床领域中的应用提供了更多的优势,例如体内生物传感器和MRI试剂。

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