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A Novel CCAG Hydrogel: The Mechanical Strength and Crosslinking Densities

机译:新型CCAG水凝胶:机械强度和交联密度

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摘要

In this study, swelling behaviour and mechanical properties of the CS-HLC-HA/β-GP (chitosan-human like collagen-hyaluronic acid/P-sodium glycerophosphate) hydrogels, were investigated. The pH/temperature sensitive CCAG (CS-HLC-HA/β-GP) hydrogels were successfully synthesized by a combination of CCA (CS-HLC-HA) and P-GP by self-assemble technique. Compression-strain measurements were used to analyze the mechanical properties of the hydrogels. It was found that increasing the amount of hyaluronic acid comonomer in the gel structure increases the compression modulus of the materials. The results of mechanical measurements were used to characterize the network structure of the hydrogels. namely the effective crosslinking density (p). It was found that p increasing calculated from the initial amount of hyaluronic acid used for hydrogel synthesis. These hydrogels demonstrated dual sensitivity to both pH and temperature. It showed that the pH-sensitive or temperature-sensitive phase transition behaviour of the gels can be changed by changing the temperature or pH of the swelling medium at constant hydrogel composition. Finally, the results of equilibrium swelling and compression-strain measurements were used to calculate the interaction parameters of these hydrogels using a gel strength instrument.
机译:在这项研究中,研究了CS-HLC-HA /β-GP(壳聚糖-人胶原蛋白-透明质酸/ P-甘油磷酸钠)水凝胶的溶胀行为和力学性能。 pH /温度敏感型CCAG(CS-HLC-HA /β-GP)水凝胶是通过CCA(CS-HLC-HA)和P-GP的自组装技术成功合成的。压缩应变测量用于分析水凝胶的机械性能。发现增加凝胶结构中的透明质酸共聚单体的量增加了材料的压缩模量。机械测量的结果用于表征水凝胶的网络结构。即有效交联密度(p)。发现从用于水凝胶合成的透明质酸的初始量计算出p增加。这些水凝胶显示出对pH和温度的双重敏感性。结果表明,在恒定的水凝胶组成下,可以通过改变溶胀介质的温度或pH值来改变凝胶的pH敏感或温度敏感相变行为。最后,使用凝胶强度仪将平衡溶胀和压缩应变测量的结果用于计算这些水凝胶的相互作用参数。

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