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首页> 外文期刊>Fitoterapia >Advanced glycation inhibition and protection against endothelial dysfunction induced by coumarins and procyanidins from Mammea neurophylla
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Advanced glycation inhibition and protection against endothelial dysfunction induced by coumarins and procyanidins from Mammea neurophylla

机译:先进的糖基化抑制作用和保护作用,防止由豆科动物的香豆素和原花青素诱导的内皮功能障碍

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Advanced glycation end-products (AGES) are associated with many pathogenic disorders such as pathogenesis of diabetes or endothelial dysfunction leading to cardiovascular events. Therefore, the identification of new anti-AGE molecules or extracts aims at preventing such pathologies. Many Clusiaceae and Calophyllaceae species are used in traditional medicines to treat arterial hypertension as well as diabetes. Focusing on these plant families, an anti-AGE plant screening allowed us to select Mammea neurophylla for further phytochemical and biological studies. Indeed, both DCM and MeOH stem bark extracts demonstrated in vitro their ability to prevent inflammation in endothelial cells and to reduce vasoconstriction. A bioguided fractionation of these extracts allowed us to point out 4-phenyl- and 4-(1-acetoxypropyl)coumarins and procyanidins as potent inhibitors of AGE formation, potentially preventing endothelial dysfunction. The fractionation steps also led to the isolation of two new compounds, namely neurophyllols A and B from the DCM bark extract together with thirteen known mammea A and E coumarins (mammea A/AA, mammea A/AB, mammea A/BA, mammea A/BB, mammea A/AA cycloD, mammea A/AB cycloD, disparinol B, mammea A/AB cycloE, ochrocarpin A, mammea A/AA cycloF, mammea A/AB cydoF, mammea E/BA, mammea E/BB) as well as delta-tocotrienol, xanthones (1-hydroxy-7-methoxyxanthone, 2-hydroxyxanthone) and triterpenes (friedelin and betulinic add). During this study, R,S-asperphenamate, previously described from fungal origin was also purified
机译:晚期糖基化终产物(AGES)与许多致病性疾病(例如糖尿病的发病机理或导致心血管事件的内皮功能障碍)相关。因此,鉴定新的抗AGE分子或提取物旨在预防此类病理。传统医学中使用了许多桔梗科和葫芦科物种来治疗动脉高血压和糖尿病。针对这些植物科,通过抗AGE植物筛选,我们可以选择Mammea Neurophylla进行进一步的植物化学和生物学研究。实际上,DCM和MeOH茎皮提取物均在体外证明了它们具有预防内皮细胞炎症和减少血管收缩的能力。这些提取物的生物引导分级分离使我们能够指出4-苯基和4-(1-乙酰氧基丙基)香豆素和原花青素是AGE形成的有效抑制剂,有可能预防内皮功能障碍。分馏步骤还导致从DCM树皮提取物中分离出两种新化合物,即神经叶素A和B以及十三种已知的哺乳动物A和E香豆素(哺乳动物A / AA,哺乳动物A / AB,哺乳动物A / BA,哺乳动物A / BB,乳腺A / AA环D,乳腺A / AB环D,二氢萘酚B,乳腺A / AB环E,och胡萝卜素A,乳腺A / AA环F,乳腺A / AB cydoF,乳腺E / BA,乳腺E / BB以及δ-生育三烯酚,氧杂蒽酮(1-羟基-7-甲氧基黄酮,2-羟基黄酮)和三萜(弗里德林和白藜芦醇)。在这项研究中,还纯化了先前描述于真菌来源的R,S-天冬酰胺

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