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首页> 外文期刊>Functional Foods In Health And Disease >Black soybean seed coat polyphenols promote nitric oxide production in the aorta through the Akt/eNOS pathway
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Black soybean seed coat polyphenols promote nitric oxide production in the aorta through the Akt/eNOS pathway

机译:黑豆豆种子涂层多酚通过Akt / Enos途径促进主动脉的一氧化氮产生

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Background: Black soybean seed coat contains an abundance of flavan-3-ols and possesses various bioregulatory functions. Nitric oxide (NO) is produced by endothelial nitric oxide synthase (eNOS) in vascular endothelial cells and regulates vascular function through vasodilation and the inhibition of platelet aggregation in blood vessels. It has been reported that flavan-3-ols increase NO production, but many previous reports used a high concentration of flavan-3-ols. In the present study, we investigated the effect of flavan-3-ol-rich black soybean seed coat extract (BE) on NO production at a lower concentration that is close to the concentration after permeation through the monolayer of Caco-2 cells.Methods: Human umbilical vein endothelial cells (HUVEC) were incubated with BE, and then NO production in the medium and eNOS phosphorylation in the cells were examined. Intestinal epithelial Caco-2 cells on the upper side of a transwell filter were co-cultured with HUVEC on the basolateral compartment of the transwell apparatus. BE was added from the upper side, and the basolateral medium was collected to measure the concentration of NO and the content of flavan-3-ols. Furthermore, HUVEC were incubated with each flavan-3-ol in order to individuate the most effective compound in BE.Results: BE significantly increased NO production in the medium of HUVEC. When polyphenols in BE were removed from the basolateral medium by ethyl acetate extraction, increased NO production from HUVEC was not observed. Additionally, BE increased phosphorylation of eNOS and Akt in HUVEC. A portion of flavan-3-ols in BE had permeated through intestinal epithelial cells. Among the flavan-3-ols that had permeated, procyanidin C1 had the strongest effect on NO production in HUVEC at the concentration that had permeated the monolayer of Caco-2 cells. Procyanidin C1 (0.05 μM) also induced phosphorylation of eNOS and Akt in HUVEC without affecting the cAMP level.Conclusion: A portion of flavan-3-ols in BE directly promoted NO production through the Akt/eNOS pathway in vascular endothelial cells. These findings suggest that flavan-3-ols in the black soybean seed coat may contribute to improve the vascular function.
机译:背景:黑豆豆种系涂层含有丰富的Flavan-3-Ols,并具有各种生物调节功能。通过血管内皮细胞内皮细胞的内皮酰化氧化氮合酶(ENOS)产生一氧化氮(NO),并通过血管舒张调节血管功能和血管中的血小板聚集。据报道,Flavan-3-OLS不会增加生产,但许多先前的报告使用了高浓度的Flavan-3-OLS。在本研究中,我们研究了香兰-3-富含黑豆豆种子涂料提取物(BE)的效果在较低浓度下,在渗透到通过单层的Caco-2细胞渗透后靠近浓度。方法:将人的脐静脉内皮细胞(HUVEC)与BE一起温育,然后在细胞中没有产生培养基和烯族磷酸化。在Transwell过滤器的上侧上的肠上皮CaCo-2细胞在Transwell装置的基底间隔内与Huvec共培养。从上侧加入,并收集基石运动培养基以测量否定的浓度和黄烷-3-醇的含量。此外,将Huvec与每个Flavan-3-OL一起孵育,以便为最有效的化合物进行分类。结果:在Huvec媒体中没有生产。当通过乙酸乙酯萃取从基石外培养基中除去多酚时,未观察到不再赘述。另外,在HUVEC中增加ENOS和AKT的磷酸化。通过肠上皮细胞渗透的一部分Flavan-3-OL。在渗透的黄兰-3-OL中,Procyanidin C1对渗透了Caco-2细胞单层的浓度的Huvec没有产生了最强的效果。 Procyanidin C1(0.05μm)还诱导Huvec中eNOS和Akt的磷酸化而不影响CAMP水平。结论:直接通过血管内皮细胞中的Akt / eNOS途径直接促进Flavan-3-Ols的一部分。这些发现表明,黑豆种子涂层中的Flavan-3-Ols可能有助于改善血管功能。

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