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Modification of Collagen/Gelatin/Hydroxyethyl Cellulose-Based Materials by Addition of Herbal Extract-Loaded Microspheres Made from Gellan Gum and Xanthan Gum

机译:通过加入由Gellan Gum和黄原胶制成的草药提取物的微球的胶原/明胶/羟乙基纤维素的改性

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摘要

Because consumers are nowadays focused on their health and appearance, natural ingredients and their novel delivery systems are one of the most developing fields of pharmacy, medicine, and cosmetics. The main goal of this study was to design, prepare, and characterize composite materials obtained by incorporation of microspheres into the porous polymer materials consisting of collagen, gelatin, and hydroxyethyl cellulose. Microspheres, based on gellan gum and xanthan gum with encapsulated flower extract, were produced by two methods: extrusion and emulsification. The release profile of the extract from both types of microspheres was compared. Then, obtained microparticles were incorporated into polymeric materials with a porous structure. This modification had an influence on porosity, density, swelling properties, mechanical properties, and stability of materials. Besides, in vitro tests were performed using mouse fibroblasts. Cell viability was assessed with the MTT (3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide) assay. The obtained materials, especially with microspheres prepared by emulsion method, can be potentially helpful when designing cosmetic forms because they were made from safely for skin ingredients used in this industry and the herbal extract was successfully encapsulated into microparticles.
机译:因为消费者现在都专注于自己的健康和外观,天然成分及其新型给药系统是药店,医药和化妆品的发展最快的领域之一。本研究的主要目标是设计,制备和表征通过微球的结合获得的成由胶原蛋白,明胶,和羟乙基纤维素的多孔聚合物材料的复合材料。微球体的基础上,结冷胶和包封花提取物的黄原胶中,通过两种方法制备:挤出和乳化。这两种类型的微球的提取物的释放曲线进行了比较。然后,获得的微粒被纳入聚合物材料具有多孔结构。本变形例中对多孔性,密度,溶胀性能,机械性能,以及材料稳定性的影响。此外,在体外试验用小鼠成纤维细胞进行。细胞活力与MTT(3-(4,5-二甲基吡啶-2-基)-2,5-二苯基溴化四)测定法评估。所获得的材料,尤其是由乳液法制备的微球,可以在设计的美容形式时,因为他们是从安全作出了在这个行业中使用的皮肤成分和草药提取物成功封装成微粒是潜在有用的。

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