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Inhibition of Human Platelet Aggregation and Low-Density Lipoprotein Oxidation by Premna foetida Extract and Its Major Compounds

机译:车前子提取物及其主要化合物抑制人血小板聚集和低密度脂蛋白氧化

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摘要

Many Premna species have been used in traditional medicine to treat hypertension and cardiac insufficiency, and as a tonic for cardiac-related problems. Some have been reported to possess cardiovascular protective activity through several possible mechanisms, but not Premna foetida. In the present study, the methanol extract of P. foetida leaves (PFM) and its isolated compounds were evaluated for their ability to inhibit copper-mediated human low-density lipoprotein (LDL) oxidation and arachidonic acid (AA)- and adenosine diphosphate (ADP)-induced platelet aggregation. Six flavonoids, three triterpenoids, vanillic acid and stigmasterol were successfully isolated from PFM. Of the isolated compounds, quercetin was the most active against LDL oxidation (IC50 4.25 µM). The flavonols were more active than the flavones against LDL oxidation, suggesting that hydroxyl group at C-3 and the catechol moiety at B-ring may play important roles in protecting LDL from oxidation. Most tested flavonoids showed stronger inhibition towards AA-induced than the ADP-induced platelet aggregation with apigenin exhibiting the strongest effect (IC50 52.3 and 127.4 µM, respectively) while quercetin and kaempferol showed moderate activity. The results suggested that flavonoids, especially quercetin, apigenin and kaempferol were among the major constituents of P. foetida responsible for anti-LDL oxidation and anti-platelet aggregation.
机译:许多Premna物种已用于传统医学中,以治疗高血压和心脏功能不全,并作为与心脏有关的问题的补品。据报道,有些通过几种可能的机制具有心血管保护作用,但Premna foetida则没有。在本研究中,评估了foet foetida叶的甲醇提取物(PFM)及其分离的化合物抑制铜介导的人类低密度脂蛋白(LDL)氧化和花生四烯酸(AA)和二磷酸腺苷的能力( ADP)诱导的血小板聚集。从PFM中成功分离出6种黄酮,3种三萜,香草酸和豆甾醇。在分离的化合物中,槲皮素对LDL氧化的活性最高(IC50为4.25 µM)。黄酮醇比黄酮具有更强的抗LDL氧化活性,表明C-3的羟基和B环的儿茶酚部分可能在保护LDL免受氧化中起重要作用。大多数测试的类黄酮对芹菜素的抑制作用均强于ADP诱导的血小板凝集,芹菜素显示出最强的作用(分别为IC50 52.3和127.4 µM),而槲皮素和山奈酚则具有中等活性。结果表明,类黄酮,尤其是槲皮素,芹菜素和山emp酚是构成拟南芥抗LDL氧化和抗血小板聚集作用的主要成分。

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