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Biopolymeric Delivery Systems for Cosmetic Applications Using

机译:用于化妆品应用的生物聚糖递送系统

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摘要

Cosmetic products in which all the skincare compounds are biomolecules, biocompatible and biodegradable constitute a request of an educated consumer corresponding to a premium cosmetic segment. For this purpose, a cellulose-based delivery system was developed to retain biomolecules for dermic applications. The 3D matrix was built with microfibrillated cellulose, nanofibrillated cellulose and carboxymethylcellulose combined with a crosslinking agent, the alginate, to obtain a 3D matrix capable of retaining and releasing bioactive components of microalgae Chlorella vulgaris and tea tree essential oil. The porosity and pore dimensions and uniformity of this support matrix were optimized using 3D computational tools. The structures of the biopolymers were characterized using SEM, EDX, FTIR-ATR and DSC techniques. The essential oil and the microalgae components were successfully incorporated in a 3D stable matrix. The results indicate that the polymeric matrix retains and releases the essential oil biomolecules in a controlled way, when compared with tea tree essential oil, which is vaporized from 25 °C to 38 °C, without this 3D polymeric matrix. The microalgae and cellulose-based delivery system proved to be an interesting option for dermic and cosmetic applications because the exposure time of the therapeutic biomolecules was improved, and this factor consists of a competitive benefit for dermic systems.
机译:化妆品,其中所有护肤化合物都是生物分子,生物相容性和可生物降解构成了对应于优质化妆品段的受过教育的消费者的要求。为此目的,开发了一种基于纤维素的递送系统以保留皮肤应用的生物分子。用微纤化纤维素,纳米纤化纤维素和羧甲基纤维素组成3D基质,与交联剂,藻酸盐组合,得到3D基质,能够保留和释放微藻藻藻和茶树精油的生物活性成分。使用3D计算工具优化该支持基质的孔隙率和孔径和均匀性。使用SEM,EDX,FTIR-ATR和DSC技术表征生物聚合物的结构。精油和微藻组分成功掺入3D稳定基质中。结果表明,与茶树精油相比,聚合物基质以受控方式保留并释放精油生物分子,当茶树精油相比,其在25℃至38℃的情况下,没有该3D聚合物基质。基于微藻和纤维素的递送系统被证明是皮肤和化妆品应用的有趣选择,因为治疗生物分子的暴露时间得到改善,并且该因素包括皮肤系统的竞争益处。

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