首页> 外文期刊>Journal of Materials Science. Materials in Medicine >Multichannel mould processing of 3D structures from microporous coralline hydroxyapatite granules and chitosan support materials for guided tissue regeneration/engineering
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Multichannel mould processing of 3D structures from microporous coralline hydroxyapatite granules and chitosan support materials for guided tissue regeneration/engineering

机译:由微孔珊瑚线羟基磷灰石颗粒和壳聚糖支持材料对3D结构进行多通道模具加工,用于组织再生/工程设计

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摘要

A three-dimensional composite material was produced from microporous coralline origin hydroxyapatite (HA) microgranules, chitosan fibers and chitosan membrane. Cylindrical HA microgranules were oriented along channel direction within multichannel mould space and aligned particles were supported with fibers and a chitosan membrane. The positive replica of mould channels was clasp fixed to produce thicker scaffolds. Light microphotographs of the developed complex structure showed good adhesion between the HA particles, the fibers and the supporting membrane. The composite material showed 88% (w/w) swelling in one hour and preserved the complex structure of the original material upon long-term incubation in physiological medium. MEM extract test of HA chitosan complex showed no cell growth inhibition and cell viability assay (MTS) indicated over 90% cell viability.
机译:由微孔珊瑚来源的羟基磷灰石(HA)微粒,壳聚糖纤维和壳聚糖膜制成三维复合材料。圆柱形HA微颗粒在多通道模具空间内沿通道方向定向,并且对齐的颗粒由纤维和壳聚糖膜支撑。模具通道的阳性复制品被固定以生产更厚的支架。所开发的复杂结构的光学显微照片显示,HA颗粒,纤维和支撑膜之间具有良好的粘合性。该复合材料在一小时内显示88%(w / w)溶胀,并且在生理介质中长期孵育后仍保留了原始材料的复杂结构。 HA壳聚糖复合物的MEM提取物测试未显示细胞生长抑制作用,细胞活力测定(MTS)表明细胞活力超过90%。

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