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首页> 外文期刊>Acta biomaterialia >The role of the micro-pattern and nano-topography of hydroxyapatite bioceramics on stimulating osteogenic differentiation of mesenchymal stem cells
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The role of the micro-pattern and nano-topography of hydroxyapatite bioceramics on stimulating osteogenic differentiation of mesenchymal stem cells

机译:羟基磷灰石生物陶瓷的微观图案和纳米形貌对间充质干细胞刺激的作用

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The micro/nano hybrid structure is considered to be a biomaterial characteristic to stimulate osteogenesis by mimicking the three-dimensional structure of the bone matrix. However, the mechanism of the hybrid structure induced osteogenic differentiation of stem cells is still unknown. For elucidating the mechanisms, one of the challenge is to directly fabricate micro/nano hybrid structure on bioceramics because of its brittleness. In this study, hydroxyapatite (HA) bioceramics with the micro/nano hybrid structure were firstly fabricated via a hydrothermal treatment and template method, and the effect of the different surface structures on the expression of integrins, BMP2 signaling pathways and cell-cell communication was investigated. Interestingly, the results suggested that the osteogenic differentiation induced by micro/nano structures was modulated first through activating integrins and then further activating BMP2 signaling pathway and cell-cell communication, while activated BMP2 could in turn activate integrins and Cx43-related cell cell communication. Furthermore, differences in activation of integrins, BMP2 signaling pathway, and gap junction-mediated cell-cell communication were observed, in which nanorod and micropattern structures activated different integrin subunits, BMP downstream receptors and Cx43. This finding may explain the synergistic effect of the micro/nano hybrid structure on the activation of osteogenic differentiation of BMSCs. Based on our study, we concluded that the different activation mechanisms of micro- and nano structures led to the synergistic stimulatory effect on integrin activation and osteogenesis, in which not only the direct contact of cells on micro/nano structure played an important role, but also other surface characteristics such as protein adsorption might contribute to the bioactive effect.
机译:微/纳米杂化结构被认为是通过模拟骨基质的三维结构来刺激成骨的生物材料特征。然而,杂化结构的机制诱导干细胞的骨质发生分化仍然未知。为了阐明机制,由于其脆性,其中一项挑战是直接在生物陶瓷上制造微/纳米杂化结构。在本研究中,首先通过水热处理和模板方法制造具有微/纳米杂化结构的羟基磷灰石(HA)生物陶瓷,以及不同表面结构对整联蛋白表达,BMP2信号传导路径和细胞 - 细胞通信的影响调查。有趣的是,结果表明,通过激活整年蛋白,通过激活整年蛋白来调制微/纳米结构诱导的骨质发生分化,然后通过活化的BMP2信号传导途径和细胞 - 细胞通信调节,而活化的BMP2可以反过来激活积分蛋白和CX43相关的细胞通信。此外,观察到整联蛋白,BMP2信号通路和间隙结介导的细胞间通信的激活差异,其中纳米棒和微图案结构激活了不同的整联亚基,BMP下游受体和CX43。该发现可以解释微/纳米杂化结构对BMSCs的骨质骨质分化激活的协同作用。基于我们的研究,我们得出结论,微型和纳米结构的不同激活机制导致了对整联素激活和骨质发生的协同刺激作用,其中不仅可以直接接触微/纳米结构对重要作用,但是其他表面特征如蛋白质吸附可能有助于生物活性效果。

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