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Hybrid bionanomaterials based on nanocrystalline TiO_2 and catechol-grafted polymers: the effect of composition and morphology on photo and bioactivity

机译:基于纳米晶体TiO_2和儿茶酚接枝聚合物的杂种均丙基材料:组成和形态对照片和生物活性的影响

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We here present a synthetic strategy for generating hybrid nanoparticles composed of a size-controlled, crystalline TiO_2 core, coated with a synthetic biocompatible polymeric layer, which was designed to tailor their final photo and bioactivity. A bio-inspired approach was used to graft hydrophilic polymers (i.e. poly(ethylene glycol) or poly(glycerol methacrylate) based polymers), on the TiO_2 nanoparticles, utilising terminal catechol groups as chelating enediol ligands. After purification, these hybrid nanoparticles showed satisfactory stability at physiological conditions, a photoactivity which depends on the grafting density of the polymeric layer and a safe cytotoxic profile. The characteristics of these bionanomaterials provide interesting advantages for biomedical applications, particularly for imaging, cell targeting and immunostimulation.
机译:我们在这里提出了一种用于产生由尺寸控制的结晶TiO_2芯的混合纳米颗粒的合成策略,涂有合成的生物相容性聚合物层,该聚合物层旨在定制其最终照片和生物活性。将生物启发方法用于接枝亲水性聚合物(即聚(乙二醇)或聚(甘油甲基丙烯酸酯)的聚合物),在TiO_2纳米粒子上使用末端儿茶酚基作为螯合丙二醇配体。纯化后,这些杂化纳米颗粒在生理条件下表现出令人满意的稳定性,这是取决于聚合物层的接枝密度和安全细胞毒性剖面的光活性。这些小硫代材料的特性为生物医学应用提供了有趣的优势,特别是用于成像,细胞靶向和免疫刺激。

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