Synthesis and characterization of bioactive glass coated forsterite scaffold for tissue engineering applications
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Synthesis and characterization of bioactive glass coated forsterite scaffold for tissue engineering applications

机译:组织工程应用生物活性玻璃涂层叉座支架的合成与表征

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AbstractIn recent years forsterite scaffolds have been studied for bone regeneration. Many attempts have been focused on preparing highly porous scaffolds with appropriate mechanical strength and bioactivity. This paper proposes a simple way to improve the compressive strength and bioactivity of forsterite scaffolds by coating them with bioactive glass. Results showed that the scaffolds exhibited high porosity (up to 78%) with pores diameters in the range of 70–245?μm. The maximum values of compressive strength and elastic modulus of the prepared scaffolds were found to be about 7.8?MPa and 309?MPa, respectively. In?vitro test in the simulated body fluid proved the good bioactivity of the bioactive glass coated forsterite scaffold 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 short immersion time. The obtained scaffolds provided good mechanical support with remarkable bioactivity so they could be used as tissue engineering scaffolds for load bearing applications.Graphical abstractDisplay OmittedHighlights?Coating is one method for increasing mechanical and biological properties.?Sol-gel coating in low pressure for uniform coating coverage on porosities wall is proposed.?By coating forsterite scaffolds with BG, compressive strengths reached to 7.5?MPa.?Coated scaffolds had better bioactivity than uncoated ones.]]>
机译:<![CDATA [ 抽象 近年来已经研究了Forsterite脚手架用于骨再生。许多尝试都集中在制备具有适当机械强度和生物活性的高度多孔支架上。本文提出了一种简单的方法来通过将它们用生物活性玻璃涂覆它们来提高流星支架的抗压强度和生物活性。结果表明,支架表现出高孔隙率(高达78%),孔径为70-245Ωμm。发现制备的支架的压缩强度和弹性模量的最大值分别为约7.8℃和309℃。在模拟体外的体外试验中,证明了生物活性玻璃涂层的牙齿支架的良好生物活性,同时浸泡的磷灰石形成的骨骼开始,并且磷灰石在短时间内覆盖了支架孔的整个表面和内壁。所获得的支架提供了良好的机械载体,具有显着的生物活性,因此它们可以用作用于承载应用的组织工程支架。 图形抽象 显示省略 突出显示 涂层是的e方法增加机械和生物学特性。 溶胶 - 凝胶涂层在低压压力下,孔隙墙上的均匀涂层覆盖。 通过用BG涂覆Forsterite支架,压缩强度达到7.5?MPa。 涂覆的脚手架具有比未涂覆的粘接性更好的生物活力。 ]]]>

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