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Phenolic composition, antioxidant, anti-wrinkles and tyrosinase inhibitory activities of cocoa pod extract

机译:可可荚提取物的酚类组合物,抗氧化剂,抗皱纹和酪氨酸酶抑制活性

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Background Cocoa pod is an outer part of cocoa fruits being discarded during cocoa bean processing. Authors found out that data on its usage in literature as cosmetic materials was not recorded in vast. In this study, cocoa pod extract was investigated for its potential as a cosmetic ingredient. Methods Cocoa pod extract (CPE) composition was accomplished using UHPLC. The antioxidant capacity were measured using scavenging assay of 1,2-diphenyl-2-picrylhydrazyl (DPPH), β-carotene bleaching assay (BCB) and ferric reducing antioxidant power (FRAP). Inhibiting effect on skin degradation enzymes was carried out using elastase and collagenase assays. The skin whitening effect of CPE was determined based on mushroom tyrosinase assay and sun screening effect (UV-absorbance at 200-400?nm wavelength). Results LC-MS/MS data showed the presence of carboxylic acid, phenolic acid, fatty acid, flavonoids (flavonol and flavones), stilbenoids and terpenoids in CPE. Results for antioxidant activity exhibited that CPE possessed good antioxidant activity, based on the mechanism of the assays compared with ascorbic acid (AA) and standardized pine bark extract (PBE); DPPH: AA?>?CPE?>?PBE; FRAP: PBE?>?CPE?>?AA; and BCB: BHT?>?CPE?>?PBE. Cocoa pod extract showed better action against elastase and collagenase enzymes in comparison with PBE and AA. Higher inhibition towards tyrosinase enzyme was exhibited by CPE than kojic acid and AA, although lower than PBE. CPE induced proliferation when tested on human fibroblast cell at low concentration. CPE also exhibited a potential as UVB sunscreen despite its low performance as a UVA sunscreen agent. Conclusions Therefore, the CPE has high potential as a cosmetic ingredient due to its anti-wrinkle, skin whitening, and sunscreen effects.
机译:背景技术可可荚是可可果实在可可豆加工过程中丢弃的可可水果的外部。作者发现,作为化妆材料的文献中的使用数据没有记录在广泛。在该研究中,研究了可可豆荚作为化妆品成分的潜力。方法使用UHPLC完成Cocoa Pod提取物(CPE)组合物。使用1,2-二苯基-2-普里德罗酰胺(DPPH),β-胡萝卜素漂白测定(BCB)和还原抗氧化功率(FRAP)的清除测定测量抗氧化能力。使用弹性蛋白酶和胶原酶测定进行对皮肤劣化酶的抑制作用。基于蘑菇酪氨酸酶测定和太阳筛选效果(在200-400Ω波长下的紫外光吸收)确定CPE的皮肤美白效果。结果LC-MS / MS数据显示存在羧酸,酚酸,脂肪酸,黄酮类(黄酮和黄酮),斯蒂屈剂和CPE中的萜类化合物。抗氧化活性的结果表明,与抗坏血酸(AA)和标准化的松树皮萃取物(PBE)相比,CPE基于测定的机制具有良好的抗氧化活性; DPPH:AA?>?CPE?>?PBE; Frap:pbe?> cpe?>?aa;和bcb:bht?>?cpe?>?pbe。与PBE和AA相比,Cocoa Pod提取物对弹性蛋白酶和胶原酶酶进行了更好的作用。虽然低于pbe,但CPE表现出朝向酪氨酸酶的抑制较高。 CPE在低浓度下在人成纤维细胞上测试时诱导的增殖。尽管其性能低至UVA防晒剂,CPE也呈现为UVB防晒霜。因此,由于其抗皱,皮肤美白和防晒效果,CPE具有高潜力作为化妆品成分。

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