首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >Fabrication and characterization of highly porous barium titanate based scaffold coated by Gel/HA nanocomposite with high piezoelectric coefficient for bone tissue engineering applications
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Fabrication and characterization of highly porous barium titanate based scaffold coated by Gel/HA nanocomposite with high piezoelectric coefficient for bone tissue engineering applications

机译:凝胶/公共纳米复合材料具有高压电系数对骨组织工程应用的高孔钛基三氧化物的制备与表征

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Abstract It is well established that the piezoelectric effect plays an important physiological role in bone growth, remodeling and fracture healing. Barium titanate, as a well-known piezoelectric ceramic, is especially an attractive material as a scaffold for bone tissue engineering applications. In this regard, we tried to fabricate a highly porous barium titanate based scaffolds by foam replication method and polarize them by applying an external electric field. In order to enhance the mechanical and biological properties, polarized/non-polarized scaffolds were coated with gelatin and nanostructured HA and characterized for their morphologies, porosities, piezoelectric and mechanical properties. The results showed that the compressive strength and piezoelectric coefficient of porous scaffolds increased with the increase of sintering temperature. After being coated with Gel/HA nanocomposite, the interconnected porous structure and pore size of the scaffolds almost remain unchanged while the Gel/nHA-coated scaffolds exhibited enhanced compressive strength and elastic modulus compared with the uncoated samples. Also, the effect of polarizing and coating of optimal scaffolds on adhesion, viability, and proliferation of the MG63 osteoblast-like cell line was evaluated by scanning electron microscope (SEM) and MTT assay. The cell culture experiments revealed that developed scaffolds had good biocompatibility and cells were able to adhere, proliferate and migrate into pores of the scaffolds. Furthermore, cell density was significantly higher in the coated scaffolds at all tested time-points. These results indicated that highly porous barium titanate scaffolds coated with Gel/HA nanocomposite has great potential in tissue engineering applications for bone tissue repair and regeneration.
机译:摘要建立了,压电效应在骨生长,重塑和骨折愈合中起着重要的生理作用。钛酸钡作为众所周知的压电陶瓷,尤其是用于骨组织工程应用的支架的有吸引力的材料。在这方面,我们试图通过泡沫复制方法制造高度多孔的钛酸钡的支架,并通过施加外部电场来偏振它们。为了增强机械和生物学性质,偏振/非偏振支架涂有明胶和纳米结构的HA,并表征它们的形态,孔隙率,压电和机械性能。结果表明,随着烧结温度的增加,多孔支架的抗压强度和压电系数增加。涂覆凝胶/公顷纳米复合材料后,支架的相互连接的多孔结构和孔径几乎保持不变,而凝胶/ NHA涂覆的支架表现出增强的抗压强度和与未涂覆的样品相比的弹性模量。此外,通过扫描电子显微镜(SEM)和MTT测定,评估最佳支架对Mg63成骨细胞样细胞系的粘附,活力和增殖的偏振和涂层的影响。细胞培养实验表明,发育的支架具有良好的生物相容性,并且细胞能够粘附,可掺入和迁移到支架的孔中。此外,在所有测试时间点的涂覆支架中,细胞密度显着较高。这些结果表明,涂​​有凝胶/公纳米复合材料的高孔钛酸钡支架在组织工程应用中具有很大的潜力,用于骨组织修复和再生。

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