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Mesoporous titanium dioxide@ zinc oxide-graphene oxide nanocarriers for colon-specific drug delivery

机译:二氧化钛二氧化钛@氧化锌 - 石墨烯氧化物纳米载体用于结肠特异性药物递送

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摘要

In this project, TiO2@ZnO nanoparticles core-shell nanostructured and titanium dioxide@ mesoporous zinc oxide-graphene oxide (TiO2@ZnO-GO) hybrid nanocomposites as controlled targeted drug delivery systems were synthesized by a facile sono-chemical method. We prepared a novel mesoporous and core-shell structure as a drug nanocarrier (NCs) for the loading and pH-responsive characteristics of the chemotherapeutic curcumin. The structure, surface charge, and surface morphology of NCs were studied using with X-ray diffraction, Fourier transform infrared spectroscopy, dynamic light scattering, brunauer-emmett-teller, scanning electron microscopy (SEM), and transmission electron microscopy (TEM). The SEM and TEM images of NCs show the uniform hexagonal mesoporous morphology with average grain size of about similar to 190 nm. The drug loading was very high about 16 and 19 for TiO2@ZnO and TiO2@ZnO-GO, respectively. The NCs showed pH-dependent drug release behavior. Drug release from TiO2@ZnO-GO in neutral pH were higher than in acidic medium, due to anionic charge of GO nanosheet. MTT assay results showed that the curcumin-loaded NCs showed significant toxicity due to which cell viability reduced to below 50% at 140 mu g/mL concentration, thereby confirming its anticancer effects. The goal of this study is the application of water-dispersed TiO2@ZnO-GO with pH-dependent release properties for design a new drug delivery carrier.
机译:在该项目中,TiO2 @ ZnO纳米颗粒核 - 壳纳米结构和二氧化钛@中碘氧化锌 - 石墨烯氧化物(TiO 2 ZnO-Go)杂化纳米复合材料通过轻度超声化学方法合成,作为受控靶向药物输送系统合成。我们制备了一种新型介孔和核心壳结构,作为药物纳米载体(NCS),用于化学治疗姜黄素的负载和pH-响应特性。使用X射线衍射,傅里叶变换红外光谱,动态光散射,Brunauer-Emmett-Teller,扫描电子显微镜(SEM)和透射电子显微镜(TEM)来研究NCS的结构,表面电荷和表面形态。 NCS的SEM和TEM图像显示均匀的六边形介孔形态,平均晶粒尺寸约为190nm。药物负载分别为TiO2 @ ZnO和TiO2 @ ZnO-Go非常高约16和19。 NCS显示pH依赖性药物释放行为。由于GO纳米片的阴离子电荷,从TiO 2 @ ZnO-Go in中性pH中的药物释放高于酸性介质。 MTT测定结果表明,姜黄素负载的NCS显示出显着的毒性,因为该细胞活力在140μmg/ ml浓度下降低至50%以下,从而证实其抗癌效应。本研究的目的是施用水分散的TiO2 @ ZnO-Go与pH依赖性释放性能进行设计,用于设计新的药物递送载体。

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