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Application of chitosan as biocompatible polysaccharide in quantification of some benzodiazepines affecting sleep disorders: A new platform for preparation of bioactive scaffolds

机译:壳聚糖作为生物相容性多糖在量化睡眠障碍影响的一些苯并二氮卓类药物中的应用:一种制备生物活性支架的新平台

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Herein, a reusable and time-saving strategy for the electrochemical polymerization of dopamine (EPD) in the presence of chitosan is reported. In this work, biocompatible polymer chitosan (CS) was electrodeposited on the surface of PDA modified glassy carbon electrode using layer-by-layer strategy. Owing to the abundant catechol and amine groups in the PDA layer, uniform gold nanoparticles (Au NPs) are deposited onto the POLY(DA-CS) and can effectively prevent the recombination of electron-hole pairs generated from photo-electrocatalysis and transfer the captured electrons to participate in the electrocatalytic reaction process. Compared with POLY (DA-CS), the as-prepared POLY(DA-CS)-AuNPs organic-inorganic hybrid exhibit electrochemical sensitivity for the detection of some benzodiazepines and display excellent durability. Furthermore, the mussel-inspired electropolymerization strategy and the fast EPD-Au nanoparticle decorating process presented herein can be readily extended to various biomedical and pharmaceutical analysis. It is the adaptation of the established POLY(DA-CS)-Au NPs organic-inorganic hybrid for a selective, robust, and generalizable sensing system that is the emphasis of this work. (C) 2018 Published by Elsevier B.V.
机译:这里,报道了在壳聚糖存在下,在壳聚糖存在下进行多巴胺(EPD)电化学聚合的可重复使用和时间节省策略。在这项工作中,使用层逐策略在PDA改性玻璃电极的表面上电沉积生物相容性聚合物壳聚糖(CS)。由于PDA层中的丰富的儿茶酚和胺基,均匀的金纳米颗粒(Au nps)沉积在聚(DA-Cs)上,并且可以有效地防止从光电致分析产生的电子空穴对的重组并转移捕获电子参与电催化反应过程。与聚(DA-CS)相比,制备的聚(DA-CS)-aUNPS有机 - 无机杂化表现出用于检测一些苯并二氮杂卓的电化学灵敏度并显示出优异的耐久性。此外,贻贝鼓励的电聚合策略和本文呈现的快速EPD-AU纳米粒子装饰方法可以容易地扩展到各种生物医学和药物分析。它是建立的聚(DA-CS)-AU NPS有机无机杂种用于选择性,坚固,更宽的传感系统,这是对这项工作的重点。 (c)2018由elestvier b.v出版。

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