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Photocurable bioactive bone cement based on hydroxyethyl methacrylate-poly(acrylic/maleic) acid resin and mesoporous sol gel-derived bioactive glass

机译:基于甲基丙烯酸羟乙酯-聚(丙烯酸/马来酸)树脂和中孔溶胶凝胶衍生的生物活性玻璃的光固化生物活性骨水泥

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摘要

This paper reports on strong and bioactive bone cement based on ternary bioactive SiO_2-CaO-P_2O_5 glass particles and a photocurable resin comprising hydroxyethyl methacrylate (HEMA) and poly(acrylic/maleic) acid. The as-cured composite represented a compressive strength of about 95 MPa but it weakened during soaking in simulated body fluid, SBF, qua its compressive strength reached to about 20 MPa after immersing for 30 days. Biode-gradability of the composite was confirmed by reducing its initial weight (~32%) as well as decreasing the molecular weight of early cured resin during the soaking procedure. The composite exhibited in vitro calcium phosphate precipitation in the form of nanosized carbonated hydroxyapatite, which indicates its bone bonding ability. Proliferation of calvarium-derived newborn rat osteoblasts seeded on top of the composite was observed during incubation at 37 ℃, meanwhile, an adequate cell supporting ability was found. Consequently, it seems that the produced composite is an appropriate alternative for bone defect injuries, because of its good cell responses, high compressive strength and ongoing biodegradability, though more in vivo experiments are essential to confirm this assumption.
机译:本文报道了基于三元生物活性SiO_2-CaO-P_2O_5玻璃粒子和包含甲基丙烯酸羟乙酯(HEMA)和聚(丙烯酸/马来酸)的光固化树脂的坚固而具有生物活性的骨水泥。固化后的复合材料的抗压强度约为95 MPa,但在浸泡模拟体液SBF期间会减弱,浸泡30天后其抗压强度达到约20 MPa。通过降低复合材料的初始重量(〜32%)以及在浸泡过程中降低早期固化树脂的分子量,可以确认其生物降解性。该复合材料以纳米碳酸盐羟基磷灰石的形式表现出体外磷酸钙沉淀,表明其具有骨粘结能力。在37℃温育过程中观察到了钙化钙来源的新生大鼠成骨细胞在复合材料顶部的增殖,同时发现了足够的细胞支持能力。因此,尽管它具有良好的细胞反应,高抗压强度和持续的生物降解性,但似乎更多的体内实验对于确认这一假设至关重要,因此似乎可以用这种复合材料替代骨缺损。

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