首页> 外文期刊>Acta biomaterialia >Surface modification of bioactive glass nanoparticles and the mechanical and biological properties of poly(l-lactide) composites.
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Surface modification of bioactive glass nanoparticles and the mechanical and biological properties of poly(l-lactide) composites.

机译:生物活性玻璃纳米粒子的表面改性以及聚(丙交酯)复合材料的机械和生物学特性。

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Novel bioactive glass (BG) nanoparticles/poly(l-lactide) (PLLA) composites were prepared as promising bone-repairing materials. The BG nanoparticles (Si:P:Ca=29:13:58 weight ratio) of about 40nm diameter were prepared via the sol-gel method. In order to improve the phase compatibility between the polymer and the inorganic phase, PLLA (M(n)=9700Da) was linked to the surface of the BG particles by diisocyanate. The grafting ratio of PLLA was in the vicinity of 20wt.%. The grafting modification could improve the tensile strength, tensile modulus and impact energy of the composites by increasing the phase compatibility. When the filler loading reached around 4wt.%, the tensile strength of the composite increased from 56.7 to 69.2MPa for the pure PLLA, and the impact strength energy increased from 15.8 to 18.0kJm(-2). The morphology of the tensile fracture surface of the composite showed surface-grafted bioactive glass particles (g-BG) to be dispersed homogeneously in the PLLA matrix. An in vitro bioactivity test showed that, compared to pure PLLA scaffold, the BG/PLLA nanocomposite demonstrated a greater capability to induce the formation of an apatite layer on the scaffold surface. The results of marrow stromal cell culture revealed that the composites containing either BG or g-BG particles have much better biocompatibility compared to pure PLLA material.
机译:新型生物活性玻璃(BG)纳米粒子/聚(l-丙交酯)(PLLA)复合材料被制备为有希望的骨修复材料。通过溶胶-凝胶法制备了约40nm直径的BG纳米颗粒(Si:P:Ca = 29:13:58重量比)。为了改善聚合物和无机相之间的相相容性,PLLA(M(n)= 9700Da)通过二异氰酸酯连接到BG颗粒的表面。 PLLA的接枝率在20wt。%附近。通过增加相相容性,接枝改性可以提高复合材料的拉伸强度,拉伸模量和冲击能。当填料含量达到4wt。%左右时,纯PLLA的复合材料的拉伸强度从56.7增加到69.2MPa,冲击强度能量从15.8增加到18.0kJm(-2)。复合材料的拉伸断裂表面的形态显示表面接枝的生物活性玻璃颗粒(g-BG)均匀分散在PLLA基质中。体外生物活性测试表明,与纯PLLA支架相比,BG / PLLA纳米复合材料具有更大的诱导支架表面磷灰石层形成的能力。骨髓基质细胞培养的结果表明,与纯PLLA材料相比,含有BG或g-BG颗粒的复合材料具有更好的生物相容性。

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