首页> 外文期刊>Bulletin of the Korean Chemical Society >Optimal Fabrication Conditions of Chitosan-Fe3O4-Gold Nanoshells as an Anticancer Drug Delivery Carriers
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Optimal Fabrication Conditions of Chitosan-Fe3O4-Gold Nanoshells as an Anticancer Drug Delivery Carriers

机译:壳聚糖-Fe3O4-金纳米壳作为抗癌药物递送载体的最佳制备条件

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摘要

A drug delivery system was designed to maximize the treatment effect for effective drug targeting to specific regions. Drug delivery carriers should safely transport drugs to a specific region in the body. As a nontoxic biocompatible polymer obtained by deacetylation of chitin, chitosan is suitable for use as an anticancer agent delivery carrier. Using gold as an additional nanoparticles is useful as it forms a nanocomplex comparatively quickly when linked with chitosan because the nanoparticle has a negative charge. Additionally, when external energy is applied, gold-coated nano-complexes generate heat to emit the absorbed drugs because of their unique metallic properties. Fe3O4 is an oxidized nano size metal with excellent magnetic properties; unlike other metals, it is nontoxic. In this study, the quantities of the reductant, catalyst, and solvent inside the chitosan-Fe3O4-gold nanoshell generated by ionic interactions between the amine, an end group of chitosan, and the metalic nanoparticles were altered and changes to the system evaluated to identify optimal reaction conditions for the drug delivery carrier, which were as follows: 30 mu L of 16.5 wt ascorbic acid, 1.5 mL of 1 wt gold solution, and 30 mu L of 28 wt ammonium hydroxide.
机译:设计了一种药物递送系统,以最大限度地提高治疗效果,从而有效地靶向特定区域。药物递送携带者应安全地将药物运输到体内的特定区域。壳聚糖是一种通过甲壳素脱乙酰化获得的无毒生物相容性聚合物,适合用作抗癌剂递送载体。使用金作为额外的纳米颗粒是有用的,因为当与壳聚糖连接时,它会相对较快地形成纳米复合物,因为纳米颗粒带负电荷。此外,当施加外部能量时,镀金纳米络合物由于其独特的金属特性而产生热量以释放吸收的药物。Fe3O4 是一种氧化纳米尺寸金属,具有优异的磁性;与其他金属不同,它是无毒的。本研究改变了壳聚糖-Fe3O4-金纳米壳内由胺、壳聚糖端基和金属纳米颗粒之间的离子相互作用产生的还原剂、催化剂和溶剂的量,并评估了系统的变化,以确定药物递送载体的最佳反应条件,具体如下: 30 μ L 16.5 wt % 抗坏血酸, 1.5 mL 1 wt % 金溶液和 30 μ L 28 wt % 氢氧化铵。

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