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首页> 外文期刊>Materials science & engineering >Fabrication and characterization of novel nano-biocomposite scaffold of chitosan-gelatin-alginate-hydroxyapatite for bone tissue engineering
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Fabrication and characterization of novel nano-biocomposite scaffold of chitosan-gelatin-alginate-hydroxyapatite for bone tissue engineering

机译:壳聚糖-明胶-藻酸盐-羟基磷灰石用于骨组织工程的新型纳米生物复合支架的制备与表征

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摘要

A novel nano-biocomposite scaffold was fabricated in bead form by applying simple foaming method, using a combination of natural polymers-chitosan, gelatin, alginate and a bioceramic-nano-hydroxyapatite (nHAp). This approach of combining nHAp with natural polymers to fabricate the composite scaffold, can provide good mechanical strength and biological property mimicking natural bone. Environmental scanning electron microscopy (ESEM) images of the nano-biocomposite scaffold revealed the presence of interconnected pores, mostly spread over the whole surface of the scaffold. The nHAp particulates have covered the surface of the composite matrix and made the surface of the scaffold rougher. The scaffold has a porosity of 82% with a mean pore size of 112 ± 19.0 μm. Swelling and degradation studies of the scaffold showed that the scaffold possesses excellent properties of hydrophilicity and biodegradability. Short term mechanical testing of the scaffold does not reveal any rupturing after agitation under physiological conditions, which is an indicative of good mechanical stability of the scaffold. In vitro cell culture studies by seeding osteoblast cells over the composite scaffold showed good cell viability, proliferation rate, adhesion and maintenance of osteoblastic phenotype as indicated by MTT assay, ESEM of cell-scaffold construct, histological staining and gene expression studies, respectively. Thus, it could be stated that the nano-biocomposite scaffold of chitosan-gelatin-alginate-nHAp has the paramount importance for applications in bone tissue-engineering in future regenerative therapies.
机译:通过使用简单的发泡方法,使用天然聚合物-壳聚糖,明胶,藻酸盐和生物陶瓷-纳米羟基磷灰石(nHAp)的组合,以珠粒形式制备了新型纳米生物复合材料支架。将nHAp与天然聚合物结合以制造复合支架的这种方法可提供模仿天然骨骼的良好机械强度和生物学特性。纳米生物复合材料支架的环境扫描电子显微镜(ESEM)图像显示存在相互连接的孔,这些孔大部分散布在支架的整个表面上。 nHAp颗粒覆盖了复合材料基质的表面,并使支架的表面更粗糙。支架的孔隙率为82%,平均孔径为112±19.0μm。支架的溶胀和降解研究表明,支架具有优异的亲水性和生物降解性。支架的短期机械测试在生理条件下搅拌后没有发现任何破裂,这表明支架具有良好的机械稳定性。通过MTB测定,细胞支架构建体的ESEM,组织学染色和基因表达研究分别表明,通过在复合支架上接种成骨细胞来进行体外细胞培养研究显示出良好的细胞活力,增殖速率,成骨表型的粘附和维持。因此,可以说壳聚糖-明胶-藻酸盐-nHAp的纳米生物复合支架对于在未来的再生疗法中在骨组织工程中的应用具有最重要的意义。

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