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首页> 外文期刊>Progress in Biomaterials >Electrospun eri silk fibroin scaffold coated with hydroxyapatite for bone tissue engineering applications
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Electrospun eri silk fibroin scaffold coated with hydroxyapatite for bone tissue engineering applications

机译:涂有羟基磷灰石的静电纺丝蚕丝素蛋白支架,用于骨组织工程应用

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Natural biomaterials such as collagen, silk fibroin, and chitosan, and synthetic biopolymers such as polylactic acid, polycaprolactone, polyglycolic acid, and their copolymers are being used as scaffold for tissue engineering applications. In the present work, a fibrous mat was electrospun from eri silk fibroin (ESF). A composite of hydroxyapatite (Hap) and the ESF scaffold was prepared by soaking the ESF scaffold in a solution of calcium chloride and then in sodium diammonium phosphate. The average tensile stress of the pure ESF and hydroxyapatite-coated ESF scaffold (ESF-Hap) was found to be 1.84 and 0.378 MPa, respectively. Pure ESF and ESF-Hap scaffolds were evaluated for their characteristics by a themogravimetric analyzer and Fourier transform infrared spectroscope. The crystallinity and thermal stability of the ESF-Hap scaffold were found to be more than that of uncoated eri silk nanofiber scaffold. The water uptake of the pure ESF and ESF-Hap scaffolds was found to be 69% and 340%, respectively, in distilled water as well as phosphate buffer saline. The hemolysis percentage of both scaffolds was less than 5%, which indicate their good blood compatibility. The cytocompatibility studied by 3-(4,5-dimethyl) thiazol-2-yl-2,5-dimethyl tetrazolium bromide assay showed that the scaffold is biocompatible. To assess cell attachment and growth on the scaffold, human mesenchymal stem cells were cultured on the scaffolds. The results from scanning electron microscopy and fluorescent microscopy showed a notable cellular growth and favorable morphological features. Hence, the ESF-Hap scaffold is better suited for cell growth than the pure ESF scaffold.
机译:天然生物材料(例如胶原蛋白,丝素蛋白和壳聚糖)以及合成生物聚合物(例如聚乳酸,聚己内酯,聚乙醇酸及其共聚物)被用作组织工程应用的支架。在目前的工作中,纤维毡是由蚕丝蛋白(ESF)电纺而成的。通过将ESF支架浸泡在氯化钙溶液中,然后浸泡在磷酸二铵钠中,制备羟基磷灰石(Hap)和ESF支架的复合材料。发现纯ESF和羟基磷灰石涂层的ESF支架(ESF-Hap)的平均拉伸应力分别为1.84和0.378 MPa。通过热重分析仪和傅立叶变换红外光谱仪评估纯ESF和ESF-Hap支架的特性。发现ESF-Hap支架的结晶度和热稳定性比未涂覆的蚕丝纳米纤维支架的结晶度和热稳定性高。发现在蒸馏水和磷酸盐缓冲盐水中,纯ESF和ESF-Hap支架的吸水率分别为69%和340%。两种支架的溶血百分比均小于5%,表明它们具有良好的血液相容性。通过3-(4,5-二甲基)噻唑-2-基-2,5-二甲基溴化四唑测定研究的细胞相容性表明该支架是生物相容的。为了评估细胞在支架上的附着和生长,将人间充质干细胞培养在支架上。扫描电子显微镜和荧光显微镜的结果显示出明显的细胞生长和良好的形态特征。因此,ESF-Hap支架比纯ESF支架更适合细胞生长。

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