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Application of supercritical gel drying method on fabrication of mechanically improved and biologically safe three-component scaffold composed of graphene oxide/chitosan/hydroxyapatite and characterization studies

机译:超临界凝胶干燥方法在石墨烯氧化物/壳聚糖/羟基磷灰石和表征研究组成的机械改进和生物安全三组分支架制造中的应用

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Multicomponent-porous scaffolds have recently gained much attention in bone tissue engineering applications due to their ability to mimic the composite structure of natural bone tissue. In the present study, it was aimed to fabricate biologically safe and mechanically improved three-component scaffolds for bone tissue engineering applications. This is the first original report on the application of supercritical gel drying for the fabrication of three-component scaffolds composed of graphene oxide (GO) synthesized by Improved Hummers Method, chitosan (CS) and hydroxyapatite (HAp) derived from eggshells. The phase, morphology, mechanical property and in-vitro biocompatibility of scaffolds were investigated by FTIR, XRD, SEM, TEM, BET, TGA, Universal Instron Mechanical Test System, and MTT testing. For the preparation of scaffolds, GO, CS and HAp solutions were blended at various ratios. Resulting mixtures were molded, frozen, exposed to water-acetone substitution procedure, and dried by supercritical gel drying, respectively. Then, dried scaffolds were subjected to MTT testing for cytotoxicity analysis to examine toxicity effect of GO. Results revealed dose-dependent cytotoxicity effect of GO on MC3T3-E1 cell line. The highest relative cell viability was observed with three-component scaffold composed of GO:1wt%, CS:39wt% and HAp:60wt%. According to characterization studies, this original report demonstrated that scaffold produced with the mentioned procedure had a three-dimensional porous sponge-like structure, highest relative cell viability, and increased mechanical compressive strength compared to other scaffolds fabricated. These properties enable scaffold with combined improvement in biological and mechanical properties to be a promising candidate for application in bone tissue materials.
机译:由于它们模仿天然骨组织的复合结构,多组分多孔支架在骨组织工程应用中最近受到了很多关注。在本研究中,它旨在制造用于骨组织工程应用的生物安全和机械改进的三分支架。这是关于超临界凝胶干燥的第一个原始报告,用于制造由改进的悍马方法,壳聚糖(Cs)和羟基磷灰石(HAP)合成的石墨烯(GO),衍生自蛋壳合成的三分支架。通过FTIR,XRD,SEM,TEM,BET,TGA,Universal Instron机械测试系统和MTT测试研究了支架的相位,形态,力学和体外生物相容性。为了制备支架,GO,Cs和Hap溶液以各种比例混合。将得到的混合物被模塑,冷冻,暴露于水 - 丙酮替代方法,并通过超临界凝胶干燥干燥。然后,对干燥的支架进行MTT测试以进行细胞毒性分析以检查GO的毒性效果。结果揭示了对MC3T3-E1细胞的剂量依赖性细胞毒性效应。观察到最高的相对细胞活力与由Go:1wt%,Cs:39wt%和hap:60wt%组成的三分支架可行性。根据表征研究,该原始报告证明,与所提述的方法产生的支架具有三维多孔海绵状结构,相对细胞活力最高,而且与制造的其他支架相比增加了机械抗压强度。这些性能使得具有伴有生物和机械性能的组合改善的支架成为骨组织材料中施用的有希望的候选者。

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