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首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >Bioactive composite for keratoprosthesis skirt
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Bioactive composite for keratoprosthesis skirt

机译:角膜假体裙的生物活性复合材料

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In this study, the fabrication and properties of a synthetic keratoprosthesis skirt for use in osteo-odonto-keratoprosthesis (OOKP) surgery are discussed. In the search for a new material concept, bioactive glass and polymethyl methacrylate (PMMA)-based composites were prepared. Three different bioactive glasses (i.e. 45S5, S53P4 and 1-98) and one slowly resorbing glass, FL107, with two different forms (i.e. particles and porous glass structures) were employed in the fabrication of specimens. In in vitro studies, the dissolution behaviour in simulated aqueous humour, compressive properties, and pore formation of the composites were investigated. According to the results, FL107 dissolved very slowly (2.4% of the initial glass content in three weeks); thus, the pore formation of the FL107 composite was also observed to be restricted. The dissolution rates of the bioactive glass-PMMA composites were greater (12%-17%). These faster dissolving bioactive glass particles caused some porosity on the outermost surfaces of the composite. The slight surface porosity was also confirmed by a decrease in compressive properties. During six weeks' in vitro dissolution, the compressive strength of the test specimens containing particles decreased by 22% compared to values in dry conditions (90-107 MPa). These results indicate that the bioactive composites could be stable synthetic candidates for a keratoprosthesis skirt in the treatment of severely damaged or diseased cornea.
机译:在这项研究中,讨论了用于骨-牙本质-角膜假体(OOKP)手术的合成角膜假体裙的制造和性能。为了寻找新的材料概念,制备了生物活性玻璃和基于聚甲基丙烯酸甲酯(PMMA)的复合材料。三种不同的生物活性玻璃(即45S5,S53P4和1-98)和一种缓慢吸收的玻璃FL107(具有两种不同的形式(即颗粒和多孔玻璃结构))被用于样品的制造。在体外研究中,研究了复合材料在模拟水性幽默中的溶解行为,压缩特性和孔形成。根据结果​​,FL107溶解非常缓慢(三周之内占初始玻璃含量的2.4%)。因此,还观察到FL107复合材料的孔形成受到限制。生物活性玻璃-PMMA复合材料的溶解率更高(12%-17%)。这些更快溶解的生物活性玻璃颗粒在复合材料的最外表面上引起了一些孔隙。压缩性能的降低也证实了轻微的表面孔隙率。在六周的体外溶解过程中,与干燥条件(90-107 MPa)相比,含颗粒的试样的抗压强度降低了22%。这些结果表明,在严重受损或患病的角膜的治疗中,生物活性复合材料可能是用于角膜假体裙的稳定的合成候选物。

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