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研究环糊精与新绿原酸的荧光和相互作用,并与绿原酸进行比较。

Study of the fluorescence and interaction between cyclodextrins and neochlorogenic acid, in comparison with chlorogenic acid.

机构信息

Departamento de Bioquímica y Biología Molecular-A, Facultad de Biología, Universidad de Murcia, Regional Campus of International Excellence "Campus Mare Nostrum", 30100, Murcia, Spain.

Dipartimento Di Chimica, Università di Torino, via P. Giuria 7, 10125, Turin, Italy.

出版信息

Sci Rep. 2021 Feb 8;11(1):3275. doi: 10.1038/s41598-021-82915-9.

Abstract

Neochlorogenic acid, a less-studied isomer of chlorogenic acid, has been seen to posses antioxidant, antifungal, anti-inflammatory and anticarcinogenic effects, which makes it an interesting candidate for incorporation in functional foods. However, its poor solubility in water and susceptibility to oxidation make such a task difficult. To overcome that, its encapsulation in cyclodextrins (CDs) is proposed. The fluorescence of neochlorogenic acid in different pH conditions was analyzed, and caffeic acid was proved to be the fluorescent moiety in the molecule. An encapsulation model whereby the ligand poses two potential complexation sites (caffeic and D-(-)-quinic moieties), showed that α-CD and HP-β-CD formed the best inclusion complexes with neochlorogenic acid, followed by M-β-CD, β-CD and γ-CD. Molecular docking with the two best CDs gave better scores for α-CD, despite HP-β-CD providing stabilization through H-bonds. The encapsulation of chlorogenic acid led to a similar CD order and scores, although constants were higher for α-CD, β-CD and M-β-CD, lower for HP-β-CD, and negligible for γ-CD. The protonation state affected these results leading to a different order of CD preference. The solubility and the susceptibility to oxidation of neochlorogenic acid improved after complexation with α-CD and HP-β-CD, while the antioxidant activity of both isomers was maintained.

摘要

新绿原酸是绿原酸的一种较少研究的异构体,具有抗氧化、抗真菌、抗炎和抗癌作用,这使其成为功能性食品中一种很有前途的候选物。然而,其在水中的溶解度差和易氧化性使得这一任务变得困难。为了克服这一问题,人们提出将其包埋在环糊精(CDs)中。分析了新绿原酸在不同 pH 条件下的荧光,证明咖啡酸是分子中的荧光部分。一个包埋模型表明,配体具有两个潜在的络合位点(咖啡酸和 D-(-)-奎尼酸部分),表明 α-CD 和 HP-β-CD 与新绿原酸形成了最好的包合物,其次是 M-β-CD、β-CD 和 γ-CD。与两种最佳 CDs 的分子对接为 α-CD 提供了更好的分数,尽管 HP-β-CD 通过氢键提供了稳定性。绿原酸的包封导致了类似的 CD 顺序和分数,尽管 α-CD、β-CD 和 M-β-CD 的常数较高,HP-β-CD 的常数较低,γ-CD 的常数可以忽略不计。质子化状态影响了这些结果,导致 CD 偏好的顺序不同。新绿原酸与 α-CD 和 HP-β-CD 络合后,其溶解度和氧化易感性得到改善,而两种异构体的抗氧化活性都得到了保持。

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