首页> 外文期刊>Microporous and mesoporous materials: The offical journal of the International Zeolite Association >Novel SO3H functionalized magnetic nanoporous silica/polymer nanocomposite as a carrier in a dual-drug delivery system for anticancer therapy
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Novel SO3H functionalized magnetic nanoporous silica/polymer nanocomposite as a carrier in a dual-drug delivery system for anticancer therapy

机译:新型SO3H官能化磁性纳米多孔二氧化硅/聚合物纳米复合材料作为抗癌治疗双药物递送系统中的载体

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Magnetic nanoporous silica particles (MNS) with spherical morphology and 100 nm particle with advanced characteristics suitable for nanomedicine purposes were synthesized. The obtained nanoparticles were modified with SO3H groups in a two-step post synthesis procedure. An anticancer drug, mitoxantrone (MTX), and an anti-inflammatory drug, prednisolone (PRD), were loaded on the silica support. The mitoxantrone loaded MNS-SO3H nanoparticles were coated by chitosan and then prednisolone was infused in the chitosan layer. A second layer of alginate was then applied around the prednisolone and mitoxantrone containing formulation. All materials were characterized by XRD, N-2 physisorption, Mossbauer spectroscopy, magnetization measurements and transmission electron microscopy in order to demonstrate that by the applied preparation method around 11 nm sized maghemite crystals embedded in spherical mesoporous silica nanoparticles were obtained with high pore volume and surface area. Thermal gravimetric analysis, ATR FT-IR spectroscopy and in vitro release experiments proved that MTX and PRD were successfully loaded on the silica matrix. Alginate coating further improved the release properties by preventing the burst release of MTX and PRD. The cytotoxicity properties of the drugs loaded formulations and their ability to retain the intrinsic pharmacological properties of the encapsulated drugs were investigated on a panel of human tumor cell lines.
机译:合成了具有球形形态和100nm颗粒的磁性纳米孔二氧化硅颗粒(MNS),合成适合于适用于纳米杂草目的的先进特性。用SO3H基团在两步后合成方法中用SO3H基团修饰所得纳米颗粒。抗癌药物,尿催化剂(MTX)和抗炎药,泼尼斯龙(PRD)加载到二氧化硅载体上。用壳聚糖涂覆含有尿催化剂的MNS-SO3H纳米颗粒,然后在壳聚糖层中注入泼尼松龙。然后将第二层藻酸盐涂覆在葡萄球龙和含有含丝糖酮的制剂周围。所有材料的特征在于XRD,N-2物理吸附,磁培素光谱,磁化测量和透射电子显微镜,以证明通过嵌入球形中孔纳米粒子的施加的制备方法约11nm尺寸的哑剧晶体,以高孔体积获得表面积。热重分析,ATR FT-IR光谱和体外释放实验证明,MTX和PRD成功地装载在二氧化硅基质上。海藻酸盐涂层通过防止MTX和PRD的爆发释放进一步改善了释放性能。在人肿瘤细胞系的面板上研究了药物负载配方的细胞毒性特性及其保留包封的药物的内在药理学的能力。

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