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首页> 外文期刊>Biomaterials >Arginine-glycine-aspartic acid modified rosette nanotube-hydrogel composites for bone tissue engineering.
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Arginine-glycine-aspartic acid modified rosette nanotube-hydrogel composites for bone tissue engineering.

机译:用于骨组织工程的精氨酸-甘氨酸-天冬氨酸改性的玫瑰花纳米管-水凝胶复合材料。

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摘要

An RGDSK (Arg-Gly-Asp-Ser-Lys) modified rosette nanotube (RNT) hydrogel composite with unique surface chemistry and favorable cytocompatibility properties for bone repair was developed and investigated. The RNTs are biologically inspired nanomaterials obtained through the self-assembly of a DNA base analog (G wedge C base) with tailorable chemical functionality and physical properties. In this study, a cell-adhesive RGDSK peptide was covalently attached to the G wedge C base, assembled into RNTs, and structurally characterized by (1)H/(13)C NMR spectroscopy, mass spectrometry, and electron microscopy. Importantly, results showed that the RGDSK modified RNT hydrogels caused around a 200% increase in osteoblast (bone-forming cell) adhesion relative to hydrogel controls. In addition, osteoblast proliferation was enhanced on RNT hydrogels compared to hydrogel controls after 3 days, which further confirmed the promising cytocompatibility properties of this scaffold. When analyzing the mechanism of increasedosteoblast density on RNT hydrogels, it was found that more fibronectin (a protein which promotes osteoblast adhesion) adsorption occurred on RNT coated hydrogels than uncoated hydrogels. As osteoblast adhesion was greatly enhanced on RNT coated hydrogels compared to poly l-lysine and collagen coated hydrogels, this study indicated that not only the surface chemistry was important in improving osteoblast density (via lysine or RGD groups functionalized on RNTs), but also the biomimetic nanoscale properties of RNTs provided a cell-favorable environment. These results warrant further studies on RNTs in hydrogels for better bone tissue regeneration.
机译:开发并研究了具有独特的表面化学性质和良好的细胞相容性的RGDSK(Arg-Gly-Asp-Ser-Lys)修饰的玫瑰花纳米管(RNT)水凝胶复合材料,用于骨修复。 RNT是通过具有可定制的化学功能和物理特性的DNA碱基类似物(G楔C碱基)的自组装而获得的具有生物启发性的纳米材料。在这项研究中,细胞粘附的RGDSK肽共价连接到G楔C碱基,组装成RNT,并通过(1)H /(13)C NMR光谱,质谱和电子显微镜对结构进行表征。重要的是,结果表明,相对于水凝胶对照,RGDSK修饰的RNT水凝胶导致成骨细胞(成骨细胞)的粘附力增加了约200%。此外,与水凝胶对照相比,RNT水凝胶在3天后的成骨细胞增殖得到增强,这进一步证实了该支架的有希望的细胞相容性。当分析RNT水凝胶上成骨细胞密度增加的机理时,发现与未涂层的水凝胶相比,在RNT涂层的水凝胶上发生的纤连蛋白(一种促进成骨细胞粘附的蛋白质)吸附更多。与聚l-赖氨酸和胶原蛋白包被的水凝胶相比,RNT包被的水凝胶可显着增强成骨细胞的粘附性,这项研究表明,不仅表面化学对提高成骨细胞密度(通过赖氨酸或RGD官能化的RGD基团)起着重要作用,而且RNTs的仿生纳米尺度特性提供了一个有利于细胞的环境。这些结果值得对水凝胶中的RNTs进行进一步研究,以更好地再生骨骼。

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