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Multi-functioning deep eutectic solvents as extraction and storage media for bioactive natural products that are readily applicable to cosmetic products

机译:多功能深共熔溶剂,可作为生物活性天然产品的提取和储存介质,很容易应用于化妆品

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As part of our ongoing efforts to apply deep eutectic solvents (DESs) as green versatile solvents, we investigated DESs as multi-functioning solvents using green tea as a model. Green tea (Camellia sinensis) is a valuable source of catechins such as epigallocatechin-3-gallate (EGCG), a potent antioxidant. We screened DESs composed of cosmetics-compatible components, selected effective components, and recombined these components to produce a series of ternary DESs. Examination of the solvents' physicochemical properties suggested that catechin extraction efficiency was partially associated with solvent pH. Among the many solvents with high yields, BGG-4 (betaine, glycerol, and D-(+)-glucose, 4:20:1) was selected as the final solvent after considering usage limits in cosmetic products and production cost. The extraction conditions optimized by response surface methodology were ultrasound-assisted extraction using 81% BGG-4 at room temperature for 6.5 min, resulting in significantly higher extraction yields than alternative methods involving high temperature and/or long extraction times. Scanning electron microscopy analysis of green tea powder before and after extraction under different conditions supported that our optimized method caused rapid exudation of catechins during rupture process and subsequent efficient dissolution of catechins, leading to superior extraction efficiency. Stability of EGCG, which is prone to undesirable alterations, was monitored at 60 degrees C after extraction. Over a three-week storage period, the fastest destabilization was observed in 70% MeOH, leaving 27% of EGCG intact. In contrast, almost 60% of EGCG remained unchanged in BGG-4. These suggest that BGG-4 could serve as a multi functioning medium to produce a beneficial catechin-rich tea extract in which catechins remain relatively stable. Moreover, the solvent itself could function as an active ingredient, and the extract could be readily applicable to cosmetic or pharmaceutical formulations for skin. (C) 2017 Elsevier Ltd. All rights reserved.
机译:作为将深共晶溶剂(DESs)用作绿色通用溶剂的不断努力的一部分,我们以绿茶为模型研究了DESs作为多功能溶剂。绿茶(茶花)是儿茶素的重要来源,例如表没食子儿茶素-3-没食子酸酯(EGCG),一种有效的抗氧化剂。我们筛选了由化妆品兼容成分组成的DES,选择了有效成分,然后将这些成分重新组合以生成一系列三元DES。对溶剂的理化性质的研究表明,儿茶素的提取效率与溶剂的pH值部分相关。考虑到化妆品的使用限制和生产成本,在许多高收率溶剂中,选择BGG-4(甜菜碱,甘油和D-(+)-葡萄糖,4:20:1)作为最终溶剂。通过响应表面方法优化的提取条件是在室温下使用81%BGG-4进行6.5分钟的超声辅助提取,与涉及高温和/或长提取时间的替代方法相比,提取率明显提高。绿茶粉在不同条件下提取前后的扫描电子显微镜分析表明,我们的优化方法在破裂过程中引起儿茶素的快速渗出,并导致儿茶素的有效溶解,从而提高了提取效率。提取后,在60摄氏度下监测易发生不希望有的改变的EGCG的稳定性。在三周的存储期内,在70%的MeOH中观察到最快的去稳定作用,保留了27%的EGCG。相反,在BGG-4中几乎60%的EGCG保持不变。这些表明BGG-4可以用作多功能介质,以生产有益的富含儿茶素的茶提取物,其中儿茶素保持相对稳定。而且,溶剂本身可以起活性成分的作用,并且提取物可以容易地适用于皮肤的化妆品或药物制剂。 (C)2017 Elsevier Ltd.保留所有权利。

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