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首页> 外文期刊>International Journal of Biological Macromolecules: Structure, Function and Interactions >Design of psyllium-g-poly(acrylic acid-co-sodium acrylate)/cloisite 10A semi-IPN nanocomposite hydrogel and its mechanical, rheological and controlled drug release behaviour
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Design of psyllium-g-poly(acrylic acid-co-sodium acrylate)/cloisite 10A semi-IPN nanocomposite hydrogel and its mechanical, rheological and controlled drug release behaviour

机译:母碱-G-聚(丙烯酸 - 共烯丙基钠)/克洛亚钛矿10A半IMI-IPN纳米复合水凝胶设计及其机械,流变控制药物释放行为

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摘要

Soft biomaterials derived from polysaccharides are generally suffers from lack of mechanical robustness and instability. The naturally occurring highly abundance low cost polysaccharide has immense aspect as biomaterial after functionalization which can be designed as stretchable and rubber-like elastic with reversible ductility. A highly swellable, stretchable, low creep, non-cytotoxic nanocomposite hydrogel has been fabricated by simple one-pot Michael type covalent grafting of acrylic acid based copolymer onto psyllium biomacromolecular chian by free radical gelation technique. The fabricated hydrogel was rheologically tested which implies its viscoelastic and thixotropic like features. The porous morphology of the hydrogel was confirmed by scanning electron micrograph. The cryo-transmission electron micrograph shows the random dispersion of the nanoclay (cloisite 10A) tactoids in exfoliated as well intercalated forms. These random distributions of clay nanosheets also enhance the mechanical toughness and reversible ductility of the hydrogels which was also supported by the mechanical and loading-unloading cycle measurement. Nonetheless, the nanocomposite hydrogel was non-cytotoxic against human cell-line (human osteosarcoma) and shows good cell attachment of live cells in a 5-day 'live-dead' assay with almost negligible quantity of cell death. These attributes can promote this material as a soft biomaterial for controlled release device with mechanical robustness and rubber-like elasticity. (C) 2018 Elsevier B.V. All rights reserved.
机译:源自多糖的软生物材料通常缺乏机械鲁棒性和不稳定性。天然存在的高度高成本多糖具有巨大的方面,作为官能化后的生物材料,其可以设计为具有可逆延展性的可伸缩和橡胶状弹性。通过自由基凝胶化技术通过自由基胶凝技术通过自由基胶凝技术通过自由基胶凝技术通过简单的单壶迈克尔型共价嫁接,通过自由基胶凝技术通过简单的单壶迈克尔型共价嫁接,通过自由基胶凝技术通过简单的单壶迈克尔型共价嫁接成共价覆吐剂制造了高溶胀性,可伸缩,低蠕变,非细胞毒性纳米复合水凝胶。制造的水凝胶是流变学测试的,其意味着其粘弹性和触变性的特征。通过扫描电子显微照片确认水凝胶的多孔形态。低温透射电子显微照片显示纳米粘土(Cloisite 10A)棕榈作为嵌入形式的剥离中的随机分散体。这些随机分布的粘土纳米片也增强了水凝胶的机械韧性和可逆延展性,其也被机械和装载卸载循环测量支撑。尽管如此,纳米复合水分水凝胶对人细胞系(人骨肉瘤)是非细胞毒性,并且在5天'活死'测定中显示出活细胞的良好细胞附着,细胞死亡数量几乎可以忽略不计。这些属性可以将这种材料促进作为具有机械鲁棒性和橡胶状弹性的控制释放装置的软生物材料。 (c)2018年elestvier b.v.保留所有权利。

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