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Development and in vitro evaluation of κ-carrageenan based polymeric hybrid nanocomposite scaffolds for bone tissue engineering

机译:基于κ树壳蛋白杂交纳米复合材料支架骨组织工程的开发和体外评价

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The excellent biocompatible and osteogenesis characteristics of porous scaffolds play a vital role in bone regeneration. In this study, we have synthesized polymeric hybrid nanocomposites via free-radical polymerization from carrageenan/acrylic-acid/graphene/hydroxyapatite. Porous hybrid nanocomposite scaffolds were fabricated through a freeze-drying method to mimic the structural and chemical composition of natural bone. Fourier-transform infrared spectroscopy (FTIR), scanning electron microscopy (SEM) and water contact-angle studies were carried-out for functional groups, surface morphology and hydrophilicity of the materials, followed by biodegradation and swelling analysis. The cell viability, cell culture and proliferation were evaluated against mouse pre-osteoblast ( MC3T3-E1 ) cell lines using neutral red dye assay. The cell adherence and proliferation studies were determined by SEM. Physical characterization including optimum porosity and pore size (49.75% and 0.41 × 10 ~(3) μm ~(2) ), mechanical properties (compression strength 8.87 MPa and elastic modulus 442.63 MPa), swelling (70.20% at 27 °C and 77.21% at 37 °C) and biodegradation (23.8%) were performed. The results indicated CG- g -AAc-3 with a high optical density and better cell viability. Hence, CG- g -AAc-3 was found to be more efficient for bone regeneration with potential applications in fractured bone regeneration.
机译:多孔支架的优异生物相容性和骨质发生特征在骨再生中发挥着至关重要的作用。在该研究中,我们通过从角叉菜胶/丙烯酸/石墨烯/羟基磷灰石的自由基聚合进行了合成的聚合物杂化纳米复合材料。通过冷冻干燥方法制造多孔杂交纳米复合支架,以模仿天然骨的结构和化学成分。傅里叶变换红外光谱(FTIR),扫描电子显微镜(SEM)和水接触角研究是用于官能团,表面形态和材料的亲水性,然后进行生物降解和溶胀分析。使用中性红染料测定对小鼠预成骨细胞(MC3T3-E1)细胞系评估细胞活力,细胞培养和增殖。通过SEM确定细胞粘附和增殖研究。物理表征,包括最佳孔隙率和孔径(49.75%和0.41×10〜(3)μm〜(2)),机械性能(压缩强度为8.87MPa和弹性模量442.63MPa),溶胀(70.20%在27°C和77.21。在37℃下%,进行生物降解(23.8%)。结果表明了具有高光密度和更好的细胞活力的CG-G -AAC-3。因此,发现CG-G -AAC-3对骨再生具有更有效的骨再生,骨折骨再生中的潜在应用。

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