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类胡萝卜素-黄酮化合物的合成、抗氧化性能及自组装研究。

Study on the Synthesis, Antioxidant Properties, and Self-Assembly of Carotenoid-Flavonoid Conjugates.

机构信息

Department of Biochemistry and Medical Chemistry, University of Pécs, Medical School, Szigeti út 12, H-7624 Pécs, Hungary.

Department of Organic Chemistry, University of Debrecen, POB 400, H-4002 Debrecen, Hungary.

出版信息

Molecules. 2020 Feb 1;25(3):636. doi: 10.3390/molecules25030636.

Abstract

Flavonoids and carotenoids possess beneficial physiological effects, such as high antioxidant capacity, anticarcinogenic, immunomodulatory, and anti-inflammatory properties, as well as protective effects against UV light. The covalent coupling of hydrophobic carotenoids with hydrophilic flavonoids, such as daidzein and chrysin, was achieved, resulting in new amphipathic structures. 7-Azidohexyl ethers of daidzein and chrysin were prepared in five steps, and their azide-alkyne [4 + 2] cycloaddition with pentynoates of 8'-apo-β-carotenol, zeaxanthin, and capsanthin afforded carotenoid-flavonoid conjugates. The trolox-equivalent antioxidant capacity against ABTS radical cation and self-assembly of the final products were examined. The 1:1 flavonoid-carotenoid hybrids generally showed higher antioxidant activity than their parent flavonoids but lower than that of the corresponding carotenoids. The diflavonoid hybrids of zeaxanthin and capsanthin, however, were found to exhibit a synergistic enhancement in antioxidant capacities. ECD (electronic circular dichroism) and UV-vis analysis of zeaxanthin-flavonoid conjugates revealed that they form different optically active J-aggregates in acetone/water and tetrahydrofuran/water mixtures depending on the solvent ratio and type of the applied aprotic polar solvent, while the capsanthin derivatives showed no self-assembly. The zeaxanthin bis-triazole conjugates with daidzein and with chrysin, differing only in the position of a phenolic hydroxyl group, showed significantly different aggregation profile upon the addition of water.

摘要

类黄酮和类胡萝卜素具有有益的生理作用,如高抗氧化能力、抗癌、免疫调节和抗炎特性,以及对紫外线的保护作用。疏水类胡萝卜素与亲水类黄酮(如大豆苷元和白杨素)的共价偶联实现了新的两亲性结构。通过五步反应制备了大豆苷元和白杨素的 7-叠氮己基醚,然后通过叠氮-炔烃[4+2]环加成反应,将它们与 8'-脱辅基-β-胡萝卜醇、玉米黄质和辣椒红素的戊炔酸酯反应,得到类胡萝卜素-类黄酮缀合物。测试了这些产物对 ABTS 自由基阳离子的 Trolox 等效抗氧化能力和自组装能力。黄酮-类胡萝卜素 1:1 杂种通常表现出比其母体黄酮更高的抗氧化活性,但低于相应的类胡萝卜素。然而,玉米黄质和辣椒红素的二黄酮杂种被发现表现出抗氧化能力的协同增强。玉米黄质-类黄酮缀合物的 ECD(电子圆二色性)和 UV-vis 分析表明,它们在丙酮/水和四氢呋喃/水混合物中形成不同的光学活性 J-聚集体,这取决于溶剂比和应用的非质子极性溶剂的类型,而辣椒红素衍生物则不发生自组装。大豆苷元和白杨素与玉米黄质的二唑类缀合物,仅在酚羟基的位置上有所不同,在加入水时显示出明显不同的聚集谱。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3458/7038153/de09cb1c8a81/molecules-25-00636-g001.jpg

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