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物理交联的 PVA/明胶水凝胶的热行为和力学性能。

Thermal behavior and mechanical properties of physically crosslinked PVA/Gelatin hydrogels.

机构信息

Materials Processing Research Centre, Dublin City University, Glasnevin, Dublin, Ireland.

出版信息

J Mech Behav Biomed Mater. 2010 Feb;3(2):203-9. doi: 10.1016/j.jmbbm.2009.07.001. Epub 2009 Jul 14.

Abstract

Poly (vinyl alcohol)/Gelatin hydrogels are under active investigation as potential vascular cell culture biomaterials, tissue models and vascular implants. The PVA/Gelatin hydrogels are physically crosslinked by the freeze-thaw technique, which is followed by a coagulation bath treatment. In this study, the thermal behavior of the gels was examined by differential scanning calorimetry (DSC) and dynamic mechanical thermal analysis (DMTA). Rheological measurement and uniaxial tensile tests revealed key mechanical properties. The role of polymer fraction in relation to these mechanical properties is explored. Gelatin has no significant effect on the thermal behavior of PVA, which indicates that no substantial change occurs in the PVA crystallite due to the presence of gelatin. The glass transition temperature, melting temperature, degree of crystallinity, polymer fraction, storage modulus (G') and ultimate strength of one freeze-thaw cycle (1FT) hydrogels are inferior to those of 3FT hydrogels. With coagulation, both 1FT and 3FT hydrogels shifted to a lower value of T(g), melting temperature and polymer fraction are further increased and the degree of crystallinity is depressed. The mechanical properties of 1FT, but not 3FT, were strengthened with coagulation treatment. This study gives a detailed investigation of the microstructure formation of PVA/Gelatin hydrogel in each stage of physical treatments which helps us to explain the role of physical treatments in tuning their physical properties for biomechanical applications.

摘要

聚乙烯醇/明胶水凝胶作为潜在的血管细胞培养生物材料、组织模型和血管植入物受到了广泛的关注。PVA/明胶水凝胶通过冻融技术实现物理交联,随后进行凝固浴处理。在这项研究中,通过差示扫描量热法(DSC)和动态力学热分析(DMTA)研究了水凝胶的热行为。流变学测量和单轴拉伸试验揭示了关键的力学性能。探讨了聚合物分数与这些力学性能的关系。明胶对 PVA 的热行为没有显著影响,这表明由于明胶的存在,PVA 微晶没有发生实质性变化。一次冻融循环(1FT)水凝胶的玻璃化转变温度、熔融温度、结晶度、聚合物分数、储能模量(G')和极限强度均低于三次冻融循环(3FT)水凝胶。凝固后,1FT 和 3FT 水凝胶的 T(g)、熔融温度和聚合物分数进一步增加,结晶度降低。凝固处理增强了 1FT 水凝胶的力学性能,但对 3FT 水凝胶没有增强作用。本研究详细研究了 PVA/明胶水凝胶在物理处理各阶段的微观结构形成,有助于解释物理处理在调整其生物力学应用的物理性能方面的作用。

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