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Protein Nanofibril Assemblies Templated by Graphene Oxide Nanosheets Accelerate Early Cell Adhesion and Induce Osteogenic Differentiation of Human Mesenchymal Stem Cells

机译:蛋白质纳米纤维组件通过石墨烯氧化物纳米液相加速早期细胞粘附,并诱导人间充质干细胞的成骨分化

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Bombyx mori silk fibroin (SF) is a promising natural biocompatible protein. However, its interaction with graphene oxide (GO) has never been studied and the resultant SF/GO matrix has not been used to direct stem cell fate. Herein, we found out that mixing SF molecules and GO nanosheets in an aqueous solution can trigger the assembly of SF nanoparticles into oriented nanofibrils due to the guidance of GO nanosheets, forming SF/GO films with unique nanotopographies and improved modulus upon the removal of the solvent. When GO mass percentage in the SF/GO films is 2 and 10%, the SF assemblies are necklace-like nanofibrils (assembled from loosely linked SF nanoparticles) and solid nanofibrils (assembled from densely linked SF nanoparticles) in the resultant films, termed SG2 and SG10, respectively. GO nanosheets guided the SF assembly into nanofibrils by triggering the structural change of SF molecules from random coils to beta-sheets, as confirmed by Fourier transform infrared spectroscopy and circular dichroism measurements. Furthermore, oxidative groups in the GO nanosheets were reduced by the reducing groups in SF during the nanofibril formation according to X-ray photoelectron spectroscopy and Raman spectroscopy. The reduction of the oxidative groups in GO by SF was further verified by the good cell viability on the SF/GO films. The unique nanotopographies of the SF/GO films were found to accelerate the early cell adhesion and induce the osteogenic differentiation of human mesenchymal stem cells (MSCs) even in the absence of additional inducers in the medium. More importantly, SG10 presents a stronger capability in promoting early MSC adhesion by promoting F-actin assembly, increasing cell spreading area, and inducing the osteogenic differentiation of the MSCs by the unique SF/GO nanofibrous matrix. To the best of our knowledge, it is the first report that the SF/GO substrates can induce the osteogenic differentiation of MSCs in the absence of osteogenic differentiation medium. Therefore, SF/GO composite materials would have a potential application in the field of bone tissue engineering.
机译:Bombyx Mori丝素蛋白(SF)是一种有前途的天然生物相容性蛋白质。然而,其与石墨烯(GO)的相互作用从未研究过,并且所得的SF / GO基质未被用于引导干细胞命运。在此发现,由于GO纳米片的指导,在水溶液中混合SF分子并在水溶液中的纳米液将SF纳米颗粒的组装触发到取向的纳米纤维中,形成具有独特的纳米自行图的SF / GO膜和改进的模量溶剂。当SF / GO膜中的GO质量百分比为2和10%时,SF组件是基项状纳米纤维(从松散连接的SF纳米颗粒组装),并在所得薄膜中使用固体纳米纤维(从密集连接的SF纳米颗粒组装),称为SG2和SG10分别。通过傅里叶变换红外光谱和圆形二色性测量来触发从随机线圈的SF分子的结构变化引导SF分子的结构变化将SF分子的结构变化引导到纳米纤维中。此外,根据X射线光电子谱和拉曼光谱,通过SF中的还原基团中的还原基团中的氧化基团降低。通过SF / GO膜上的良好的细胞活力进一步验证SF的氧化基团的还原。发现SF / GO膜的独特纳米自行图加速早期细胞粘附,并使人间充质干细胞(MSCs)的骨质发生分化均匀,即使在没有介质中的额外诱导剂。更重要的是,SG10通过促进F-actin组件,增加的细胞扩散区域,诱导MSCs通过独特的SF / Go纳米纤维基质诱导MSCs的成骨分化来提高促进早期MSC粘附的能力更强。据我们所知,它是第一次报告,即SF / GO衬底可以诱导MSCs在没有成骨分化培养基的情况下诱因的分化。因此,SF / GO复合材料将在骨组织工程领域具有潜在的应用。

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