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Fabrication and characterization of hydroxyapatite-coated forsterite scaffold for tissue regeneration applications

机译:用于组织再生应用的羟基磷灰石涂层镁橄榄石支架的制备与表征

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摘要

In this study, a novel hydroxyapatite (HA)-coated forsterite scaffold with a desired porous structure, high mechanical properties and good bioactivity was successfully fabricated via gel-casting and sol gel in low pressure methods. X-ray diffraction, scanning electron microscopy, transmission electron microscopy and X-ray map techniques were utilized in order to evaluate the phase composition, dimension, morphology, interconnectivity of the pores and state of the coating on the porosities of the synthesized scaffold. The porosity and compressive strength of the scaffolds were measured and the bioactivity was investigated by soaking the scaffolds in simulated body fluid (SBF). The results show that the prepared scaffolds had highly interconnected spherical pores with size in the range of 65-245 mu m. Additionally, compressive strength and elastic modulus were 7.5 +/- 0.2 and 291 +/- 10 MPa, respectively. The crystallite size of the scaffolds was less than 60 nm. True (total) and apparent (interconnected) porosity of the scaffolds were in the range of 75-80 and 65-70%, respectively. In vitro tests in the SBF also confirmed good bioactivity of the prepared scaffolds. While bone-like apatite formation started from the first day of soaking and apatite covered the entire surface and inner wall of the scaffolds pores at long immersion time. Conclusion suggested that HA coating on forsterite scaffolds could significantly improve the mechanical properties and bioactivity, which might be promising for tissue engineering applications.
机译:在这项研究中,通过低压铸造法和溶胶凝胶法成功地制备了具有所需多孔结构,高机械性能和良好生物活性的新型羟基磷灰石(HA)涂层镁橄榄石支架。为了评估合成支架的孔隙的相组成,尺寸,形态,孔的互连性和涂层的状态,使用了X射线衍射,扫描电子显微镜,透射电子显微镜和X射线图技术。测量支架的孔隙率和抗压强度,并通过将支架浸泡在模拟体液(SBF)中来研究生物活性。结果表明,所制备的支架具有高度互连的球形孔,尺寸在65-245μm的范围内。另外,抗压强度和弹性模量分别为7.5 +/- 0.2和291 +/- 10MPa。支架的微晶尺寸小于60nm。支架的真实(全部)和表观(互连)孔隙率分别在75-80%和65-70%的范围内。在SBF中的体外测试也证实了所制备支架的良好生物活性。虽然从浸泡的第一天开始就开始形成骨状磷灰石,但磷灰石在长时间浸泡后覆盖了支架孔的整个表面和内壁。结论表明,在镁橄榄石支架上的HA涂层可以显着改善机械性能和生物活性,这对于组织工程应用可能是有希望的。

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