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飞燕草素类似物的设计、合成、药理评价及血管作用。

Design, Synthesis, Pharmacological Evaluation and Vascular Effects of Delphinidin Analogues.

机构信息

MINT, UNIV Angers, INSERM 1066, CNRS 6021, IRIS-IBS-CHU, 4 rue Larrey, 49100, Angers, France.

SONAS, EA921, UNIV Angers, SFR QUASAV, Faculty of Health Sciences, Dpt Pharmacy, 16 Bd Daviers, 49045 Angers cedex 01, France.

出版信息

Curr Pharm Des. 2018;24(46):5580-5589. doi: 10.2174/1381612825666190206144913.

Abstract

BACKGROUND

Among polyphenolic compounds suggested to prevent cardiovascular diseases (CVDs) and to explain the "French paradox", the anthocyanidin delphinidin (Dp) has been reported to support at least partly the vascular beneficial effects of dietary polyphenolic compounds including those from fruits and related products as red wine. It has also been highlighted that Dp interacts directly with the active site of estrogen receptor α (ERα), leading to activation of endothelial NO synthase (eNOS) pathway thus contributing to the prevention of endothelial dysfunction in mice aorta. However, anthocyanidins have very low bioavailability and despite a well described in vitro efficacy, the very high hydrophilicity and physicochemical instability of Dp might explain the lack of in vivo reported effects.

OBJECTIVE

The aim of this study was to identify new Dp analogues with increased lipophilicity and vasorelaxation potential by a chemical modulation of its structure and to characterize the signaling pathway notably in relation with ERα signaling and nitric oxide (NO) production.

METHOD

OCH3-substituted delphinidin analogues were obtained through the coupling of the corresponding acetophenones with substituted benzaldehydes. Prediction of resorption of the flavylium derivatives was performed with the calculated logP and induction of vasorelaxation was performed by myography on WT and ERαKO mice thoracic aorta rings and compared to Dp. NO production was evaluated in vitro on human primary endothelial cells.

RESULTS

Eight Dp analogues were synthesized including four new flavylium derivatives. Two compounds (9 and 11) showed a strong increase of vasorelaxation potential and a theoretically increased bioavailability compared to Dp. Interestingly, 9 and 11 induced increased O2 - or NO endothelial production respectively and revealed a novel NO-dependent ERα-independent relaxation compared to Dp. We suggested that this mechanism may be at least in part supported by the inhibition of vascular cyclic nucleotide phosphodiesterase (PDEs).

CONCLUSION

The current study demonstrated that pharmacomodulation of the Dp backbone by replacement of OH groups by OCH3 groups of the A and B rings led to the identification and characterization of two compounds (9 and 11) with enhanced physio-chemical properties that could be associated to higher permeability capability and pharmacological activity for the prevention of CVDs compared to Dp.

摘要

背景

在被认为可以预防心血管疾病 (CVD) 并解释“法国悖论”的多酚化合物中,矢车菊素苷元飞燕草素 (Dp) 已被报道至少部分支持包括水果和相关产品(如红酒)中的多酚化合物的血管有益作用。人们还强调,Dp 直接与雌激素受体 α (ERα) 的活性部位相互作用,导致内皮型一氧化氮合酶 (eNOS) 途径的激活,从而有助于预防小鼠主动脉内皮功能障碍。然而,花青素的生物利用度非常低,尽管在体外具有很好的功效,但 Dp 非常高的亲水性和物理化学不稳定性可能解释了缺乏体内报道的作用。

目的

本研究旨在通过对其结构进行化学修饰,找到具有更高脂溶性和血管舒张潜力的新 Dp 类似物,并对信号通路进行表征,特别是与 ERα 信号和一氧化氮 (NO) 产生有关。

方法

通过相应的苯乙酮与取代的苯甲醛偶联,获得 OCH3 取代的飞燕草素类似物。用计算的 logP 预测 flavylium 衍生物的吸收,用 WT 和 ERαKO 小鼠胸主动脉环的肌描记术评估血管舒张作用,并与 Dp 进行比较。在体外用人原代内皮细胞评估 NO 产生。

结果

合成了 8 种 Dp 类似物,其中包括 4 种新的 flavylium 衍生物。两种化合物(9 和 11)表现出强烈的血管舒张潜力增加和理论上的生物利用度增加,与 Dp 相比。有趣的是,9 和 11 分别诱导内皮产生增加的 O2-或 NO,与 Dp 相比,显示出一种新的、NO 依赖性的 ERα 非依赖性舒张。我们认为,这种机制至少部分是通过抑制血管环核苷酸磷酸二酯酶 (PDEs) 来支持的。

结论

本研究表明,通过用 A 和 B 环上的 OH 基团取代 OCH3 基团对 Dp 骨架进行药物修饰,鉴定和表征了两种化合物(9 和 11),它们具有增强的物理化学性质,与 Dp 相比,可能与更高的通透性能力和预防 CVD 的药理活性相关。

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