首页> 美国卫生研究院文献>International Journal of Molecular Sciences >B Type and Complex A/B Type Epicatechin Trimers Isolated from Litchi pericarp Aqueous Extract Show High Antioxidant and Anticancer Activity
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B Type and Complex A/B Type Epicatechin Trimers Isolated from Litchi pericarp Aqueous Extract Show High Antioxidant and Anticancer Activity

机译:从荔枝果皮水提取物中分离得到的B型和复杂的A / B型表儿茶素三聚体具有很高的抗氧化和抗癌活性

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摘要

Litchi (Litchi chinensis Sonn.) fruit is known for its rich source of phenolics. Litchi pericarp contains high levels of epicatechin that may form oligomers of various lengths. Except for several A or B type epicatechin dimers, other soluble oligomers have rarely been identified in the pericarp. Here, bioassay-guided column fractionation was applied to isolate bioactive phenolics from aqueous pericarp extract. A fraction (S3) was obtained by two rounds of Sephadex LH-20 column chromatography, and showed higher antioxidant activity and inhibition on the proliferation of human lung cancer cells (A549) than Litchi anthocyanins. S3 was further separated to isolate fractions P1–P4, which all showed higher antioxidant activity than vitamin C. P3 showed 32.9% inhibition on A549 cells at 30 μg/mL, higher than other fractions and cis-Dichlorodiamineplatinum (DDP, 0.5 μg/mL), but not as high as the combination of the four fractions. Using HPLC-Q-TOF-MS/MS, one B-type and complex A/B type epicatechin trimers were identified in P3; another B-type and two A/B-type trimers were identified in P4. P1 and P2, containing epicatechin and proanthocyanidin B2, respectively, showed no cell inhibition at 30 μg/mL. It is the first time that the two B type trimers of epicatechins (Litchitannin B1 and B2), have been found in Litchi species. The identified proanthocyanidins were detected in the pericarp of the young fruit, and the levels of the compounds decreased as the fruit developed, correlating to the decreasing patterns of the expression of LcLAR and LcANR, two key genes in the catechin biosynthesis pathway.
机译:荔枝果实(荔枝果实)以其丰富的酚类物质来源而闻名。荔枝果皮含有高水平的表儿茶素,可能形成各种长度的寡聚物。除了几种A型或B型表儿茶素二聚体外,果皮中几乎没有发现其他可溶性低聚物。在这里,生物测定引导柱分级分离用于从果皮提取物中分离生物活性酚类。通过两轮Sephadex LH-20柱色谱法获得级分(S3),与荔枝花色苷相比,该级分(S3)具有更高的抗氧化活性和对人肺癌细胞(A549)增殖的抑制作用。 S3进一步分离以分离出级分P1-P4,所有级分均显示出比维生素C高的抗氧化活性。P3在30μg/ mL时对A549细胞的抑制率为32.9%,高于其他级分和顺式二氯二胺铂(DDP,0.5μg/ mL)。 ),但不及这四个分数的组合高。使用HPLC-Q-TOF-MS / MS,在P3中鉴定出一种B型和复杂的A / B型表儿茶素三聚体。在P4中确定了另一个B型和两个A / B型三聚体。分别含有表儿茶素和原花青素B2的P1和P2在30μg/ mL时未显示细胞抑制作用。这是第一次在荔枝种中发现表儿茶素的两个B型三聚体(利奇单宁B1和B2)。在幼果的果皮中检测到已鉴定的原花色素,并且该化合物的水平随着果实的发育而降低,这与儿茶素生物合成途径中的两个关键基因LcLAR和LcANR的表达下降模式有关。

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