首页> 外文期刊>International Journal of Nanomedicine >Effects of mechanical loading on the degradability and mechanical properties of the nanocalcium-deficient hydroxyapatite–multi(amino acid) copolymer composite membrane tube for guided bone regeneration
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Effects of mechanical loading on the degradability and mechanical properties of the nanocalcium-deficient hydroxyapatite–multi(amino acid) copolymer composite membrane tube for guided bone regeneration

机译:机械载荷对纳米钙缺陷型羟基磷灰石-多(氨基酸)共聚物引导膜再生复合膜管降解性能和力学性能的影响

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Background and methods: Guided bone regeneration (GBR) is a new treatment for bone defects, and the property of membrane is critical to the success of GBR. This study focuses on a novel membrane tube for GBR, which was prepared by a nanocalcium-deficient hydroxyapatite–multi(amino acid) copolymer (n-CDHA-MAC) composite. The biomechanical strength and degradability of this membrane tube under mechanical loading after immersion in phosphate-buffered solution were investigated to evaluate the effects of mechanical loading on the membrane tube. The membrane-tube group with no mechanical loading and femora bone were used as controls.Results: The compressive strength and bending strength of n-CDHA-MAC membrane tubes were 66.4 ± 10.2 MPa and 840.7 ± 12.1 MPa, which were lower than those of the goats’ femoral bones (69.0 ± 5.5 MPa and 900.2 ± 17.3 MPa), but there were no significant (P > 0.05) differences. In the in vitro degradability experiment, all membrane tubes were degradable and showed a surface-erosion degradation model. The PH of solution fluctuated from 7.2 to 7.5. The weight and mechanical strength of loaded tubes decreased more quickly than nonloaded ones, with significant differences (P < 0.05). However, the strength of the loaded group after degradation achieved 20.4 ± 1.2 MPa, which was greater than the maximum mechanical strength of 4.338 MPa based on goat femoral middle stationary state by three-dimensional finite-element analysis.Conclusions: n-CDHA-MAC membrane tubes have good biomechanical strength during degradation under mechanical loading. Therefore, this membrane tube is an ideal GBR membrane for critical size defects of long bones in goats for animal experiments.
机译:背景和方法:引导性骨再生(GBR)是一种治疗骨缺损的新方法,而膜的性质对于GBR的成功至关重要。这项研究的重点是用于GBR的新型膜管,该膜管由纳米钙缺乏的羟基磷灰石-多(氨基酸)共聚物(n-CDHA-MAC)复合材料制成。研究了该膜管在磷酸盐缓冲溶液中浸泡后在机械载荷下的生物力学强度和降解性能,以评估机械载荷对膜管的影响。结果:n-CDHA-MAC膜管的抗压强度和弯曲强度分别为66.4±10.2 MPa和840.7±12.1 MPa,均低于正常人。山羊股骨(69.0±5.5 MPa和900.2±17.3 MPa),但无显着差异(P> 0.05)。在体外可降解性实验中,所有膜管都是可降解的,并显示了表面侵蚀降解模型。溶液的PH从7.2波动到7.5。加载管的重量和机械强度比未加载管下降得更快,差异有统计学意义(P <0.05)。然而,通过三维有限元分析,降解后的受力组的强度达到20.4±1.2 MPa,高于基于山羊股中静止状态的最大机械强度4.338 MPa。结论:n-CDHA-MAC膜管在机械负载下降解期间具有良好的生物力学强度。因此,这种膜管是理想的GBR膜,用于动物实验山羊长骨的关键尺寸缺陷。

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