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Hyaluronan delivery by polymer demixing in polysaccharide-based hydrogels and membranes for biomedical applications

机译:通过在聚合物基水凝胶和膜中混合聚合物进行透明质酸递送,以用于生物医学应用

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摘要

Alginate-based membranes containing hyaluronic acid (HA) were manufactured by freeze-drying calcium-reticulated hydrogels. The study of the distribution of the two macromolecules within the hydrogel enabled to highlight a polymer demixing mechanism that tends to segregate HA in the external parts of the constructs. Resistance and pliability of the membranes were tuned, while release and degradation studies enabled to quantify the diffusion of both polysaccharides in physiological solution and to measure the viable lifetime of the membranes. Biological studies in vitro proved that the liquid extracts from the HA-containing membranes stimulate wound healing and that fibroblasts are able to colonize the membranes. Overall, such novel alginate-HA membranes represent a promising solution for several medical needs, in particular for wound treatment, giving the possibility to provide an in situ administration of HA from a resorbable device.
机译:含有透明质酸(HA)的藻酸盐基膜是通过将钙网状水凝胶冷冻干燥制成的。对两个大分子在水凝胶中的分布的研究使得能够突出一种聚合物分解机制,该机制倾向于将HA分离在构建体的外部。调节了膜的抗性和柔韧性,同时进行了释放和降解研究,能够量化两种多糖在生理溶液中的扩散并测量膜的使用寿命。体外生物学研究证明,含HA膜的液体提取物可刺激伤口愈合,并且成纤维细胞能够在膜上定植。总体而言,这种新颖的藻酸盐-HA膜代表了用于多种医学需求,特别是用于伤口治疗的有前途的解决方案,从而提供了从可吸收装置原位施用HA的可能性。

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