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首页> 外文期刊>ACS applied materials & interfaces >Targeted Delivery of Docetaxel by Use of Transferrin/Poly(allylamine hydrochloride)-functionalized Graphene Oxide Nanocarrier
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Targeted Delivery of Docetaxel by Use of Transferrin/Poly(allylamine hydrochloride)-functionalized Graphene Oxide Nanocarrier

机译:使用转铁蛋白/聚(烯丙胺盐酸盐)官能化的氧化石墨烯纳米载体靶向多西他赛的靶向递送

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摘要

The exceptional chemical and physical properties of graphene oxide (GO) make it an attractive nanomaterial for biomedical applications, particularly in drug delivery. In this work we synthesized a novel, GO-based nanocarrier for the delivery of docetaxel (DTX), a potent hydrophobic chemotherapy drug. The GO was functionalized with transferrin (Tf)-poly(allylamine hydrochloride) (PAH), which provided targeted and specific accumulation to extracellular Tf receptors and stabilized GO in physiological solutions. Tf was conjugated to PAH via amide covalent linkages, and Tf-PAH coated the surface of DTX-loaded GO through electrostatic interactions. The morphology and structure of the resulting nanostructure, along with modifications, were verified by use of Fourier transform infrared (FT-IR) and UV-vis spectroscopy, atomic force microscopy (AFM), and scanning electron microscopy (SEM). DTX was loaded at a relatively high loading capacity of 37% and released in a pH-dependent and sustained manner under physiological conditions. The targeting efficiency and cytotoxicity of this drug delivery system were evaluated on MCF-7 breast cancer cells. Improved efficacy of targeted DTX-loaded nanocarrier was observed compared to nontargeted carrier and free DTX, especially at high drug concentrations. The Tf-PAH-functionalized GO nanocarrier is a promising candidate for targeted delivery and controlled release of DTX.
机译:氧化石墨烯(GO)的出色化学和物理特性使其成为生物医学应用(尤其是药物输送)中有吸引力的纳米材料。在这项工作中,我们合成了一种新型的,基于GO的纳米载体,用于递送有效的疏水化学疗法药物多西他赛(DTX)。 GO用转铁蛋白(Tf)-聚(烯丙胺盐酸盐)(PAH)进行功能化,可为细胞外Tf受体提供靶向性和特异性积累,并在生理溶液中稳定GO。 Tf通过酰胺共价键与PAH结合,并且Tf-PAH通过静电相互作用涂覆了DTX负载的GO表面。通过使用傅立叶变换红外(FT-IR)和紫外可见光谱,原子力显微镜(AFM)和扫描电子显微镜(SEM)验证了所得纳米结构的形态和结构,以及修饰。 DTX以37%的较高装载量装载,并在生理条件下以pH依赖性和持续的方式释放。在MCF-7乳腺癌细胞上评估了该药物递送系统的靶向效率和细胞毒性。与非靶向载体和游离DTX相比,靶向DTX负载的纳米载体的疗效有所改善,尤其是在高药物浓度下。 Tf-PAH功能化的GO纳米载体是DTX靶向递送和控释的有希望的候选者。

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