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The UHPLC-QTOF-MS Phenolic Profiling and Activity of Cydonia oblonga Mill. Reveals a Promising Nutraceutical Potential

机译:uhplc-qtof-ms酚醛型酚醛仿素和活性的Cydonia椭圆形磨机。揭示了有希望的营养潜力

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摘要

Cydonia oblonga Mill., normally known as the quince fruit, has been widely used in agro-food industries mainly to produce jams and jellies. However, other parts of the plants are still underutilized and not completely assessed for their nutraceutical profile. Therefore, in this work, the polyphenolic profile of C. oblonga was investigated using an untargeted metabolomics approach based on high-resolution mass spectrometry. Several compounds were identified in the different parts of the plants, including flavonoids (i.e., anthocyanins, flavones, flavan-3-ols, and flavonols), phenolic acids (both hydroxycinnamics and hydroxybenzoics), low-molecular-weight phenolics (tyrosol equivalents), lignans, and stilbenes. Overall, C. oblonga leaves showed the highest in vitro antioxidant potential, as revealed by 2,2-difenil-1-picrylhydrazyl (DPPH), 2,2′-Azino-bis(3-ethylbenzthiazoline-6-sulfonic acid) (ABTS), ferric reducing antioxidant power (FRAP), and cupric ion reducing antioxidant capacity (CUPRAC) assays, being 189.5, 285.6, 158.9, and 348.8 mg Trolox Equivalent/g, respectively. The enzymes acetyl- and butyryl-cholinesterases were both inhibited by the different plant parts of C. oblonga, with stems showing the higher inhibitory potential. Interestingly, the fruit extracts were the only parts inhibiting the α-glucosidase, with a value of 1.36 mmol acarbose equivalents (ACAE)/g. On the other hand, strong tyrosinase inhibition was found for stems and leaves, being 72.11 and 68.32 mg Kojic acid Equivalent/g, respectively. Finally, a high number of significant (0.05 < p < 0.01) correlations were outlined between phenolics (mainly anthocyanins, flava-3-ols, and tyrosol equivalents) and the different biological assays. Taken together, our findings suggest a potential exploitation of C. oblonga leaves and stems for the food, pharmaceutical, and cosmetic industries.
机译:榅桲,通常被称为木瓜果实,已被广泛应用于农产食品工业主要以生产果酱和果冻。然而,植物的其他部分仍未得到充分利用并没有完全评估其营养品的个人资料。因此,在这项工作中,C的长圆的多酚配置文件是使用方法基于高分辨质谱分析的不相关的代谢组学研究。在植物的不同部分,包括类黄酮鉴定几个化合物(即,花青素,黄酮,黄烷-3-醇类,和黄酮醇),酚酸(二者hydroxycinnamics和hydroxybenzoics),低分子量酚醛树脂(酪醇当量) ,木酚素和芪。总体而言,C.桲叶子表明在体外抗氧化能力最高的,由2,2- difenil -1-苦基苯肼(DPPH),2,2'-连氮基 - 双(3​​-乙基苯并噻唑-6-磺酸)(ABTS所揭示),三价铁还原抗氧化能力(FRAP),和铜离子还原的抗氧化能力(CUPRAC)测定,为189.5,285.6,158.9,和348.8毫克Trolox当量/克。酶乙酰基 - 和丁酰胆碱酯酶两个由C.矩的不同植物部分抑制,有杆示出了更高的抑制潜能。有趣的是,水果提取物是抑制α葡糖苷酶的唯一部位,用1.36毫摩尔的阿卡波糖当量的值(ACAE)/克。在另一方面,强酪氨酸酶抑制被发现的茎和叶,分别为72.11和68.32毫克曲酸当量/克。最后,大量的显著(0.05

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