首页> 外文期刊>Current applied physics: the official journal of the Korean Physical Society >Functionalized alginate/chitosan biocomposites consisted of cylindrical struts and biologically designed for chitosan release
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Functionalized alginate/chitosan biocomposites consisted of cylindrical struts and biologically designed for chitosan release

机译:功能化藻酸盐/壳聚糖生物复合材料由圆柱状支撑组成,并针对脱乙酰壳多糖进行了生物学设计

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摘要

A novel alginate/chitosan composite scaffold was developed. The composite scaffolds were fabricated at low temperature using a three-axis robot system connected to a micro-dispenser and a core/shell nozzle. The structure of the composite scaffolds included hollow struts; deposited chitosan on the inner walls (core region) of the struts reacted electrostatically with the alginate layer (shell region). The fabricated, highly porous composite scaffolds exhibited excellent mechanical properties and controllable chitosan release, which was closely dependent on the weight fraction of the alginate in the shell region. The tensile strength in the dry state was ~1.8-fold greater than that of pure alginate scaffold due to the ionic interaction between alginate and chitosan. To determine the feasibility of using the developed scaffold in tissue regeneration applications, in vitro cellular responses were evaluated using osteoblast-like-cells (MG63). The cell proliferation on the composite scaffold was ~3.4-fold greater than that on the pure alginate scaffold. Alkaline phosphate activity and calcium deposition of the composite scaffold after 14 and 21 days of cell culture were significantly enhanced (1.6- and 1.8-fold greater, respectively) compared with those of the pure alginate scaffold. These results suggested that the alginate/chitosan composite scaffolds with a controlled chitosan release have great potential for use in regenerating various tissues.
机译:开发了新型藻酸盐/壳聚糖复合支架。使用连接到微分配器和核/壳喷嘴的三轴机器人系统在低温下制造复合支架。复合脚手架的结构包括空心支柱。在支杆的内壁(核心区域)上沉积的壳聚糖与藻酸盐层(壳区域)发生静电反应。所制备的高度多孔的复合支架表现出优异的机械性能和可控的壳聚糖释放,这与壳区域中藻酸盐的重量分数密切相关。由于藻酸盐和壳聚糖之间的离子相互作用,在干态下的抗张强度比纯藻酸盐支架高约1.8倍。为了确定在组织再生应用中使用开发的支架的可行性,使用成骨细胞样细胞(MG63)评估了体外细胞反应。复合支架上的细胞增殖比纯藻酸盐支架上的细胞增殖高约3.4倍。与纯藻酸盐支架相比,在细胞培养14天和21天后,复合支架的碱性磷酸酶活性和钙沉积显着增强(分别高1.6倍和1.8倍)。这些结果表明,具有受控的壳聚糖释放的藻酸盐/壳聚糖复合支架具有用于再生各种组织的巨大潜力。

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