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聚乙烯醇/聚乙烯吡咯烷酮/羟基磷灰石复合水凝胶的物理化学性质。

The physical and chemical properties of the polyvinylalcohol/polyvinylpyrrolidone/hydroxyapatite composite hydrogel.

机构信息

College of Chemistry, Chemical Engineering and Materials Science, Soochow University, Suzhou 215123, China.

College of Chemistry, Chemical Engineering and Materials Science, Soochow University, Suzhou 215123, China.

出版信息

Mater Sci Eng C Mater Biol Appl. 2016 Feb;59:948-957. doi: 10.1016/j.msec.2015.10.081. Epub 2015 Nov 9.

Abstract

A hydrogel of polyvinylalcohol (PVA)/polyvinylpyrrolidone (PVP)/hydroxyapatite (HA) was prepared by a repeated freezing and thawing technique. The effect of HA on the hydrogel was evaluated by comparing the physical and chemical properties of PVA/PVP/HA and PVA/PVP hydrogels. By using theoretical models, the information about the swelling kinetics and the dehydration kinetics have been obtained. From the analysis of structure, mechanical properties, and molecular interaction, the application of PVA/PVP/HA hydrogel as a biomaterial has been evaluated. Relative to PVA/PVP, the PVA/PVP/HA hydrogel is of denser network structure, lower water content, larger storage modulus, and higher dehydration activation energy. These results reveal that, as HA fills in the hydrogel, the molecular interaction is enhanced, the free space of network is compressed, and the diffusion activation energy of water is increased. In spite of its water content being decreased, it is still in the range of meeting the requirement of bio-application. When the hydrogel is subjected to external forces, the matrix will transfer the load to the HA powder, thus enhance the strength of the hydrogel. For application in bio-materials, HA will still have osteoinductivity because its crystalline structure is not interrupted in PVA/PVP/HA hydrogel environment.

摘要

聚醋酸乙烯酯(PVA)/聚乙烯吡咯烷酮(PVP)/羟基磷灰石(HA)水凝胶是通过反复冷冻和解冻技术制备的。通过比较 PVA/PVP/HA 和 PVA/PVP 水凝胶的物理和化学性质,评估了 HA 对水凝胶的影响。通过使用理论模型,获得了关于溶胀动力学和脱水动力学的信息。通过结构、力学性能和分子相互作用的分析,评估了 PVA/PVP/HA 水凝胶作为生物材料的应用。与 PVA/PVP 相比,PVA/PVP/HA 水凝胶具有更密集的网络结构、更低的含水量、更大的储能模量和更高的脱水活化能。这些结果表明,随着 HA 填充到水凝胶中,分子相互作用增强,网络的自由空间被压缩,水的扩散活化能增加。尽管其含水量降低,但仍在满足生物应用要求的范围内。当水凝胶受到外力时,基质将负载转移到 HA 粉末上,从而增强水凝胶的强度。对于生物材料的应用,由于其晶体结构在 PVA/PVP/HA 水凝胶环境中没有中断,因此 HA 仍具有成骨诱导性。

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