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首页> 外文期刊>Journal of biomedical materials research, Part A >Synthesis and characterization of sensitive hydrogels based on semi-interpenetrated networks of poly[2-ethyl-(2-pyrrolidone) methacrylate] and hyaluronic acid
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Synthesis and characterization of sensitive hydrogels based on semi-interpenetrated networks of poly[2-ethyl-(2-pyrrolidone) methacrylate] and hyaluronic acid

机译:基于半渗透性网络的聚[2-乙基 - (2-吡咯烷酮)甲基丙烯酸酯]和透明质酸的敏感水凝胶的合成与表征。

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Sensitive hydrogels attract interest due to their soft wet appearance and shape response to environmental variations. The synthesis and characterization of semi-interpenetrated hydrogels obtained by radical-induced polymerization of 2-ethyl-(2-pyrrolidone)methacrylate (EPM) in the presence of different concentrations of hyaluronic acid (HA) using N,N'-methylene-bisacrylamide or triethylene glycol dimethacrylate as crosslinker, followed by freeze-drying, are described. Polymeric systems were characterized by NMR, FTIR, SEM, TGA, and DMA. PEPMHA hydrogels' mechanical properties and swelling were found to be intimately related to HA concentration and crosslinker. The swelling response was assessed for temperature and pH variation in order to study the behavior of the hydrogels. We found that the presence of HA in PEPM polymeric systems induced a sensitivity to pH variation rather than temperature. Finally, the biocompatibility profile of the hydrogels was evaluated, using mesenchymal stem cells. Cell adhesion and proliferation results revealed the non-cytotoxicity of the systems. We estimate that PEPMHA hydrogels can be used for applications in tissue engineering and for the controlled release of bioactive compounds. (C) 2012 Wiley Periodicals, Inc. J Biomed Mater Res Part A: 101A:157166, 2013.
机译:敏感水凝胶由于它们的软湿外观和对环境变化的形状应对而引起兴趣。使用N,N'-甲基 - 双丙烯酰胺在不同浓度的透明质酸(HA)存在下通过自由基诱导的2-乙基 - (2-吡咯烷酮)甲基丙烯酸酯(EPM)聚合的半渗透性水凝胶的合成与表征或者描述了三甘醇二甲基丙烯酸酯作为交联剂,然后进行冷冻干燥。聚合物系统的特征是NMR,FTIR,SEM,TGA和DMA。发现Pepmha水凝胶的机械性能和肿胀与HA浓度和交联剂密切相关。评估溶胀反应,用于测量温度和pH变异,以研究水凝胶的行为。我们发现HA在百分子聚合物系统中的存在诱导对pH变异而不是温度的敏感性。最后,使用间充质干细胞评估水凝胶的生物相容性曲线。细胞粘附和增殖结果显示了系统的非细胞毒性。我们估计肽水凝胶可用于组织工程中的应用和生物活性化合物的控制释放。 (c)2012 Wiley期刊,Inc .J生物保解员A部分:101A:157166,2013。

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