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首页> 外文期刊>Materials science & engineering, C. Materials for Biogical applications >Effects of graphene on the structure, properties, electro-response behaviors of GO/PAA composite hydrogels and influence of electro-mechanical coupling on BMSC differentiation
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Effects of graphene on the structure, properties, electro-response behaviors of GO/PAA composite hydrogels and influence of electro-mechanical coupling on BMSC differentiation

机译:石墨烯对Go / Paa复合水凝胶结构,性能,电响应行为的影响及电力耦合对BMSC分化的影响

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Electro-responsive Graphene oxide poly(acrylic acid) (GO-PAA) nanocomposite hydrogels with different concentrations of GO were successfully fabricated via in situ polymerization. The covalently crosslinked PAA network is intertwined with GO sheets by the bridging of hydrogen-bond interactions thus resulting in an integrated and stable hydrogel network. The swelling, mechanical and conductivity properties of the hydrogel are impacted as a result. The influences of different factors on the electro-response behavior of the hydrogels were deeply explored. Because of electrostatic double layer of the GO, the response properties of hydrogels in different voltage, pH, and ionic strength improved significantly. Meanwhile, with the addition of GO, the response performance of hydrogel in biological applications was greatly expanded. Furthermore, GO-PAA hydrogel shows a good compatibility with bone marrow-derived mesenchymal stem cells (BMSCs). The electro-mechanical coupling of the hydrogel can change the morphology of the adhesive cells, and regulate the cytoskeleton of the cell under the condition of electrical stimulation, which can further promote the differentiation of neural stem cells. This electro-responsive hydrogel could be widely used in many fields of biomedical application such as artificial muscle and tissue engineering scaffold.
机译:通过原位聚合成功地制造具有不同浓度的氧化烯氧化物聚(丙烯酸)(丙烯酸)(GO-PAA)纳米复合水凝胶。通过氢键相互作用的桥接使得共价交联的PAA网络与Go纸相交,从而导致集成和稳定的水凝胶网络。水凝胶的肿胀,机械和电导性能受到结果。不同因素对水凝胶电响应行为的影响深受探索。由于去的静电双层,水凝胶在不同电压,pH和离子强度中的响应性能显着提高。同时,随着GO的添加,水凝胶在生物应用中的反应性能大大扩大。此外,Go-Paa水凝胶显示出与骨髓衍生的间充质干细胞(BMSC)的良好相容性。水凝胶的电力机械耦合可以改变粘合剂细胞的形态,并在电刺激条件下调节细胞的细胞骨架,这可以进一步促进神经干细胞的分化。这种电响应性水凝胶可以广泛用于生物医学应用的许多领域,例如人造肌肉和组织工程支架。

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