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Effects of Freezing-Thawing Cycles on Mechanical Strength of Poly (Vinyl Alcohol) Hydrogels

机译:冷冻循环对聚(乙烯醇)水凝胶机械强度的影响

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Poly (vinyl alcohol) (PVA) hydrogels are widely used in biomimetic cartilage materials for its good biocompatibility and super shock absorbing properties. However, the small pore size, in general, a few micrometers, of pure PVA hydrogels prepared through freezing-thawing method can not provide the suitable microenvironment for the proliferation of chondrocytes, restricting the application of hydrogels in artificial cartilage. In order to solve this barrier, here, agarose is introduced as porogen to prepare the macroporous PVA hydrogels through freezing-thawing method. The obtained PVA hydrogel have the pore size of 20-200 μm, and macropores have good connectivity. The mechanical properties of the macroporous hydrogels are tested using uniaxial compression and tension experiments and the results show that the mechanical properties of macroporous PVA hydrogels are dependent on the preparation parameters, e.g. the duration of freezing, number of freezing-thawing cycles and the temperature of thawing. After optimization, the mechanical properties of the macroporous PVA hydrogels are closer to those of natural articular cartilage and the obtained hydrogels may be used as the artificial replacement materials.
机译:聚(乙烯醇)(PVA)水凝胶广泛用于仿生软骨材料,用于其良好的生物相容性和超减震性能。然而,小孔尺寸,一般来说,通过冷冻解冻方法制备的纯PVA水凝胶的小孔径不能为软骨细胞的增殖提供合适的微环境,限制水凝胶在人造软骨中的应用。为了解决该屏障,这里,琼脂糖被引入致孔剂中,以通过冷冻解冻方法制备大孔PVA水凝胶。所获得的PVA水凝胶具有20-200μm的孔径,并且大孔具有良好的连接性。使用单轴压缩和张力实验测试大孔水凝胶的机械性能,结果表明,大孔PVA水凝胶的机械性能取决于制备参数,例如,冻结的持续时间,冻融循环的次数和解冻温度。优化后,大孔PVA水凝胶的机械性质更接近天然关节软骨的水凝胶,并且所获得的水凝胶可以用作人造替代材料。

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