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首页> 外文期刊>Journal of biomaterials science >Porous PVA/SA/HA hydrogels fabricated by dual-crosslinking method for bone tissue engineering
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Porous PVA/SA/HA hydrogels fabricated by dual-crosslinking method for bone tissue engineering

机译:多孔PVA / SA / HA水凝胶通过双交联方法制造骨组织工程

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In the present work, a new kind of porous polyvinyl alcohol/sodium alginate/hydroxyapatite (PVA/SA/HA) composite hydrogels with tunable structure and mechanical properties have been fabricated by dual-crosslinking method. The morphologies, moisture content, porosity and mechanical properties of the composite hydrogels have been investigated in detail. The PVA/SA/HA hydrogels present uniform, interpenetrating porous structure. The FTIR and XRD results indicate that PVA, SA and HA could be uniformly compounded. The mechanical properties, moisture content and porosity of the samples could be controlled by changing the mass ratio of PVA/SA/HA. The optimized compression modulus (41.74 +/- 7.86 kPa), moisture content (86.99 +/- 0.72%) and porosity (79.98 +/- 1.61%) of the composite hydrogels could be achieved via fixing the weight ratio of PVA/SA/HA at 42:18:40. In vitro biodegradation and mineralization of the composite hydrogels show that the hydrogels could gradually be degraded in PBS solution and sheet-like HA nanocrystals are easily formed on the surface. Moreover, cell culture results indicate that the PVA/SA/HA hydrogels have no negative effects on MC3T3-E1 cell growth and proliferation. Alkaline phosphatase (ALP) activity expressions demonstrate that the nano-HA crystals incorporated composite hydrogels obviously improve the ALP activity of the cells. It confirms that the prepared PVA/SA/HA hydrogels could be a promising candidate for bone repair and bone tissue engineering.
机译:在本作本作中,通过双交联方法制造了一种新的多孔聚乙烯醇/藻酸钠/羟基磷灰石(PVA / SA / HA)复合水凝胶和机械性能。已经详细研究了复合水凝胶的形态,水分含量,孔隙率和机械性能。 PVA / SA / HA水凝胶存在均匀,互穿的多孔结构。 FTIR和XRD结果表明PVA,SA和HA可以均匀地复合。通过改变PVA / SA / HA的质量比来控制样品的机械性能,水分含量和孔隙率。优化的压缩模量(41.74 +/- 7.86kPa),水分含量(86.99 +/- 0.72%)和孔隙率(86.99 +/- 0.72%)和孔隙率可通过固定PVA / SA / / SA / / SA /的重量比来实现复合水凝胶的孔隙率(79.98 +/- 1.61%)。哈率42:18:40。复合水凝胶的体外生物降解和矿化显示,水凝胶可以在PBS溶液中逐渐降解,并且在表面上容易形成片状的HA纳米晶体。此外,细胞培养结果表明PVA / SA / HA水凝胶对MC3T3-E1细胞生长和增殖没有负面影响。碱性磷酸酶(ALP)活性表达表明,纳米-A晶体掺入复合水凝胶明显改善细胞的ALP活性。它证实,制备的PVA / SA / HA水凝胶可能是骨修复和骨组织工程的有希望的候选者。

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