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Emulsion and macromolecules templated alginate based polymer microspheres

机译:乳液和大分子模板藻酸盐基聚合物微球

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摘要

With the aim of improving the performance of calcium alginate (Ca-Alg) hydrogel, a small quantity (5% of dry mass of sodium alginate) of hydroxyethyl cellulose (HEC) was used to associate sodium alginate to form interpenetrating networks (IPNs). Swelling results and mechanical stability tests showed that the formation of IPNs considerably restrained dried samples from swelling in 0.9% sodium chloride aqueous solution and reinforced the mechanical strength of microspheres. For emulsion droplets as template, microscopy showed that the original emulsion templating method employed in preparation of macroporous Ca-Alg microspheres was also applicable in the IPNs system. As for bovine serum albumin molecules as template, Alg/HEC microspheres showed a better recognition effect than that of Ca-Alg microspheres. The reduced network mesh size and strengthened cross-linkages in IPNs are responsible for these results.
机译:为了改善海藻酸钙(Ca-Alg)水凝胶的性能,使用少量(海藻酸钠干质量的5%)的羟乙基纤维素(HEC)将海藻酸钠缔合形成互穿网络(IPN)。溶胀结果和机械稳定性测试表明,IPN的形成大大抑制了干燥样品在0.9%氯化钠水溶液中的溶胀,并增强了微球的机械强度。以乳液液滴为模板,显微镜显示,用于制备大孔Ca-Alg微球的原始乳液模板方法也可用于IPNs系统。以牛血清白蛋白分子为模板,Alg / HEC微球的识别效果优于Ca-Alg微球。减少网络网格的大小和增强IPN中的交叉链接是造成这些结果的原因。

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