首页> 外文期刊>European Journal of Medicinal Chemistry: Chimie Therapeutique >Leonurine-cysteine analog conjugates as a new class of multifunctional anti-myocardial ischemia agent.
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Leonurine-cysteine analog conjugates as a new class of multifunctional anti-myocardial ischemia agent.

机译:熊尿苷-半胱氨酸类似物偶联物是一类新型的多功能抗心肌缺血剂。

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The design, synthesis and biological evaluation of novel Leonurine-cysteine analog conjugates 3,5-dimethoxy-4-(2-amino-3-prop-2-ynylsulfanyl-propionyl)-benzoic acid 4-guanidino-butyl ester (1a), 3,5-dimethoxy-4-(2-animo-3-allysulfanyl-propionyl)-benzoic acid 4-guanidino-butyl ester (1b) and 3,5-dimethoxy-4-(3-(2-chlorocarbonyl-ethyldisulfanyl)-propionyl)-benzoic acid 4-guanidino-butyl ester (2) were reported in this paper. We tested their effects on hypoxia-induced neonatal rat ventricular myocytes. Our data showed that all of them had cardioprotective effects. Both of 1a and 1b were able to modulate hydrogen sulfide production, and 1a possessed higher biological activity than 1b and 2, which indicated that there was positive correlation between conjugates and their precursors. Furthermore we illuminated that the cardioprotective mechanism of 1a were related to increase SOD and CAT activity, decrease MDA and ROS level, protect some cell organs and regulate apoptosis-associated genes and proteins expression (bcl-2 and bax) via the caspase-3 pathway in molecular level. These results indicated that 1a had the potential to be a new class of multifunctional anti-myocardial ischemia agent. Most importantly, these results provided us important clues for the further design and modification of this type of Leonurine-cysteine analog conjugates in future.
机译:新型Leonurine-半胱氨酸类似物共轭物3,5-二甲氧基-4-(2-氨基-3-丙-2-炔基硫烷基-丙酰基)-苯甲酸4-胍基丁酯(1a)的设计,合成和生物学评价, 3,5-二甲氧基-4-(2-氨基-3-烯丙基硫丙基-丙酰基)-苯甲酸4-胍基丁酯(1b)和3,5-二甲氧基-4-(3-(2-氯羰基-乙基二硫烷基)报道了(丙酰基)-苯甲酸4-胍基丁酯(2)。我们测试了它们对缺氧诱导的新生大鼠心室肌细胞的影响。我们的数据表明,它们都具有心脏保护作用。 1a和1b都能够调节硫化氢的产生,并且1a具有比1b和2高的生物活性,这表明缀合物与其前体之间存在正相关。此外,我们阐明了1a的心脏保护机制与通过caspase-3途径增加SOD和CAT活性,降低MDA和ROS水平,保护某些细胞器官以及调节细胞凋亡相关基因和蛋白质表达(bcl-2和bax)有关。在分子水平上。这些结果表明1a有可能成为一类新型的多功能抗心肌缺血剂。最重要的是,这些结果为将来进一步设计和修饰这种类型的Leururine-半胱氨酸类似物偶联物提供了重要的线索。

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