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树葡萄果皮作为一种可持续的原花青素和鞣花单宁来源,通过磷脂囊泡传递,用于减轻人角质形成细胞的氧化应激。

Jabuticaba () Peel as a Sustainable Source of Anthocyanins and Ellagitannins Delivered by Phospholipid Vesicles for Alleviating Oxidative Stress in Human Keratinocytes.

机构信息

Department of Scienze della Vita e dell'Ambiente, University of Cagliari, 09124 Cagliari, Italy.

Food Processing and Quality, Natural Resources Institute Finland (Luke), FI-31600 Jokioinen, Finland.

出版信息

Molecules. 2021 Nov 5;26(21):6697. doi: 10.3390/molecules26216697.

Abstract

The Brazilian berry scientifically known as jabuticaba is a fruit covered by a dark purple peel that is still rich in bioactives, especially polyphenols. Considering that, this work was aimed at obtaining an extract from the peel of jabuticaba fruits, identifying its main components, loading it in phospholipid vesicles specifically tailored for skin delivery and evaluating their biological efficacy. The extract was obtained by pressurized hot water extraction (PHWE), which is considered an easy and low dissipative method, and it was rich in polyphenolic compounds, especially flavonoids (-diphenols and condensed tannins), anthocyanins (cyanidin 3--glucoside and delphinidin 3--glucoside) and gallic acid, which were responsible for the high antioxidant activity detected using different colorimetric methods (DPPH, FRAP, CUPRAC and metal chelation). To improve the stability and extract effectiveness, it was incorporated into ultradeformable phospholipid vesicles (transfersomes) that were modified by adding two different polymers (hydroxyethyl cellulose and sodium hyaluronate), thus obtaining HEcellulose-transfersomes and hyaluronan-transfersomes. Transfersomes without polymers were the smallest, as the addition of the polymer led to the formation of larger vesicles that were more stable in storage. The incorporation of the extract in the vesicles promoted their beneficial activities as they were capable, to a greater extent than the solution used as reference, of counteracting the toxic effect of hydrogen peroxide and even of speeding up the healing of a wound performed in a cell monolayer, especially when vesicles were enriched with polymers. Given that, polymer enriched vesicles may represent a good strategy to produce cosmetical and cosmeceutical products with beneficial properties for skin.

摘要

巴西莓,又名树葡萄,其果实外覆深紫色果皮,仍富含生物活性物质,尤其是多酚。考虑到这一点,本工作旨在从巴西莓果皮中提取一种提取物,鉴定其主要成分,将其载入专门用于皮肤给药的磷脂囊泡,并评估其生物学功效。提取物通过加压热水提取(PHWE)获得,这种方法被认为是一种简单且低耗散的方法,并且富含多酚化合物,特别是类黄酮(二酚和缩合单宁)、花青素(矢车菊素 3--葡萄糖苷和飞燕草素 3--葡萄糖苷)和没食子酸,这几种物质负责用不同比色法(DPPH、FRAP、CUPRAC 和金属螯合)检测到的高抗氧化活性。为了提高稳定性和提取物的功效,将其载入超变形磷脂囊泡(转胞体)中,通过添加两种不同的聚合物(羟乙基纤维素和透明质酸钠)对其进行修饰,从而获得 HEcellulose-转胞体和 hyaluronan-转胞体。没有聚合物的转胞体是最小的,因为聚合物的加入导致形成更大的囊泡,在储存中更加稳定。提取物的载入促进了囊泡的有益活性,因为它们能够在更大程度上对抗过氧化氢的毒性作用,甚至加速单层细胞培养中的伤口愈合,这比用作参考的溶液更有效,尤其是当囊泡中富含聚合物时。鉴于此,聚合物富集囊泡可能代表了一种生产具有皮肤有益特性的化妆品和美容产品的良好策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ea74/8587422/271b234c0ab4/molecules-26-06697-g001.jpg

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