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A Unique Acylated Flavonol Glycoside from

机译:一种独特的酰基化黄酮苷糖苷来自

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摘要

Polyphenols are known dietary antioxidants. They have recently attracted considerable interest in uses to prevent skin aging and hyperpigmentation resulting from solar UV-irradiation. Prunus persica (L.) leaves are considered by-products and were reported to have a remarkable antioxidant activity due to their high content of polyphenols. This study aimed at the development of a cosmeceutical anti-aging and skin whitening cream preparation using ethanol leaves extract of Prunus persica (L.) (PPEE) loaded in solid lipid nanoparticles (SLNs) to enhance the skin delivery. Chemical investigation of PPEE showed significantly high total phenolic and flavonoids content with notable antioxidant activities (DPPH, ABTS, and β-carotene assays). A unique acylated kaempferol glycoside with a rare structure, kaempferol 3-O-β-4C1-(6″-O-3,4-dihydroxyphenylacetyl glucopyranoside) (KDPAG) was isolated for the first time and its structure fully elucidated. It represents the first example of acylation with 3,4-dihydroxyphenyl acetic acid in flavonoid chemistry. The in-vitro cytotoxicity studies against a human keratinocytes cell line revealed the non-toxicity of PPEE and PPEE-SLNs. Moreover, PPEE, PPEE-SLNs, and KDPAG showed good anti-elastase activity, comparable to that of N-(Methoxysuccinyl)-Ala-Ala-Pro-Val-chloromethyl ketone. Besides, PPEE-SLNs and KDPAG showed significantly (p < 0.001) higher anti-collagenase and anti-tyrosinase activities in comparison to EDTA and kojic acid, respectively. Different PPEE-SLNs cream formulae (2% and 5%) were evaluated for possible anti-wrinkle activity against UV-induced photoaging in a mouse model using a wrinkle scoring method and were shown to offer a highly significant protective effect against UV, as evidenced by tissue biomarkers (SOD) and histopathological studies. Thus, the current study demonstrates that Prunus persica leaf by-products provide an interesting, valuable resource for natural cosmetic ingredients. This provides related data for further studying the potential safe use of PPEE-SLNs in topical anti-aging cosmetic formulations with enhanced skin permeation properties.
机译:多酚是已知的膳食抗氧化剂。他们最近吸引了对用于防止太阳能紫外线辐射产生的皮肤老化和超差异的大量兴趣。 Prunus Persica(L.)叶被认为是副产物,并且据报道,由于它们的高含量为多酚,具有显着的抗氧化活性。本研究旨在使用乙醇叶提取物的药培养抗衰老和皮肤美白奶油制剂的培养,其在固体脂质纳米粒子(SLNS)中加入固体脂质纳米粒子(SLNS)以增强皮肤递送。 PPEE的化学研究显示出显着高的总酚类和黄酮类化合物含量,具有显着的抗氧化活性(DPPH,ABT和β-胡萝卜素测定)。具有稀有结构的独特的酰基化kaempferol糖苷,首次分离出罕见的结构,Kaempferol 3-O-β-4C1-(6“-O-3,4-二羟基苯乙酰基吡喃葡萄糖苷(KDPAG),其结构完全阐明。它代表了在黄酮化学中具有3,4-二羟基苯基乙酸的酰化的第一例。对抗人角蛋白细胞细胞系的体外细胞毒性研究揭示了PPEE和PPEE-SLN的非毒性。此外,PPEE,PPEE-SLN和KDPAG显示出良好的抗弹性蛋白酶活性,与N-(甲氧基琥珀基) - ala-Ala-Pro-val-氯甲基丙酮相当。此外,与EDTA和Kojic acid分别显示出显着的(p <0.001)抗胶原酶和抗酪氨酸酶活性显着(p <0.001)。评估不同的PPEE-SLNS奶油配方(2%和5%),用于使用皱纹评分法在小鼠模型中针对UV诱导的光学手册进行抗皱活性,并显示出对UV的非常显着的保护作用,如证明通过组织生物标志物(SOD)和组织病理学研究。因此,目前的研究表明,Prunus Persica叶副产物为天然化妆品提供了有趣,有价值的资源。这提供了相关数据,用于进一步研究具有增强的皮肤渗透性能的局部抗衰老化妆品配方中PPEE-SLN的潜在安全使用。

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