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首页> 外文期刊>RSC Advances >Biodegradable polyurethane acrylate/HEMA-grafted nanodiamond composites with bone regenerative potential applications: structure, mechanical properties and biocompatibility
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Biodegradable polyurethane acrylate/HEMA-grafted nanodiamond composites with bone regenerative potential applications: structure, mechanical properties and biocompatibility

机译:可生物降解的聚氨酯丙烯酸酯/ HEMA接枝纳米胺复合材料,具有骨再生潜在应用:结构,机械性能和生物相容性

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The present study demonstrates HEMA-grafted nanodiamond (ND-HEMA)/acrylate-terminated polyurethane-acrylate diluents (APUA) composites as promising materials for bone implant applications. Neat APUA and APUA composites containing ND-HEMA at different loadings up to 2 wt% were prepared by an in situ polymerization method. Morphological analysis demonstrated that ND-HEMAs were actually in the form of tightly bound aggregates which led to formation of big agglomerates at a concentration of 2 wt%. It was also suggested that ND-HEMAs were preferentially localized in the continuous soft domain of APUA; however it interacted by both soft and hard domains. Moreover, ND-HEMAs caused considerable phase separation between soft and hard domains as well as increased crystallinity. Maximum improvement in tensile properties of APUA was observed at 1 wt% loading of ND-HEAMs, namely 175% improvement in modulus and 40% increase in strength. The hydrophilic nature of ND-HEMA enhanced water absorption of composites resulted in higher hydrolysis degradation of APUA. In vitro biocompatibility evaluation via culturing human osteosarcoma cells (MG-63 osteoblast-like cell line), demonstrated no adverse effect on the cell viability of samples. Furthermore, the composites showed favorable cell adhesion and growth, and ND-HEMAs did not cause any negative effect on proliferation, ALP production and osteoblast attachment by MG-63 cells compared with neat APUA.
机译:本研究证明了HEMA接枝纳米胺(ND-HEMA)/丙烯酸酯封端的聚氨酯 - 丙烯酸稀释剂(APUA)复合材料作为骨植入应用的有希望的材料。通过原位聚合方法制备含有在不同载荷的ND-HEMA的纯净APUA和APUA复合材料是通过原位聚合方法制备的。形态学分析表明,Nd-Hemas实际上是紧密结合的聚集体的形式,其导致以2wt%的浓度形成大聚物。还建议ND-HEMAs优先位于APUA的连续软域中;然而,它由软和硬域互动。此外,ND-HEMAs在软质和硬域之间以及较高的结晶度之间导致相当大的相分离。在1wt%负载的Nd-Heam中观察到APUA的拉伸性能的最大改善,即175%的模量改善,强度增加40%。 ND-HEMA增强的复合材料吸水性的亲水性质导致APUA的较高水解降解。通过培养人骨肉瘤细胞(Mg-63成骨细胞样细胞系)的体外生物相容性评价,证明对样品的细胞活力没有不利影响。此外,复合材料显示出良好的细胞粘附和生长,ND-HEMAs与Mg-63细胞与整齐APUA相比,Mg-63细胞没有对增殖,ALP产生和成骨细胞附着的任何负面影响。

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