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In vitro evaluation of copper-chelating properties of flavonoids

机译:黄酮类化合物铜螯合性能的体外评价

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Copper is an essential trace element involved in plenty of redox reactions in living systems, however, unbound copper ions cause damage to various biomolecules via excessive generation of reactive oxygen species. Flavonoids, ubiquitous plant secondary metabolites, possess complex effects on human health and chelation of transient metal ions is one of their proposed mechanisms of action. In this in vitro study, 26 flavonoids from various subclasses were screened for their interactions with both copper oxidation states at four (patho)physiologically relevant pH conditions (4.5, 5.5, 6.8 and 7.5) by two spectrophotometric approaches and compared with the clinically used copper chelator trientine. In a slightly competitive environment, the majority of flavonoids were able to chelate cupric ions, however, under more competitive conditions, only flavones and flavonols were able to chelate both cupric and cuprous ions. Apparently, the 2,3-double bond was essential for stable copper chelation. The most efficient copper chelation sites were the 3-hydroxy-4-keto group in flavonols and the 5,6,7-trihydroxyl group in flavones. On the other hand, the 3′,4′-dihydroxyl group was associated only with a weak activity. 3-Hydroxyflavone, kaempferol and partly baicalein were even more potent than trientine in the acidic environment, however, none of the tested flavonoids was able to surpass it at physiological pH or slightly acidic conditions. In conclusion, flavonoids possessing appropriate structural characteristics were efficient copper chelators and some of them were even more potent than trientine under acidic conditions.
机译:铜是一种必要的微量痕量元素,然而,生活系统中有大量的氧化还原反应,然而,未结合的铜离子通过过量产生反应性氧物种对各种生物分子造成损伤。黄酮类化合物,普遍存在的植物次生代谢物,对人类健康和瞬态金属离子的螯合作用具有复杂的影响是其所提出的行动机制之一。在这种体外研究中,将来自各种亚类的26种黄酮筛选在四个(Patho)生理学相关的pH条件(4.5,5.5,6.8和7.5)以两种分光光度法的相互作用,并与临床使用的铜相比螯合剂Trientine。在略有竞争激烈的环境中,大多数黄酮类化合物能够螯合铜离子,然而,在更具竞争力的条件下,只有黄酮和黄酮醇能够螯合铜和亚铜的离子。显然,2,3-双键对于稳定的铜螯合剂至关重要。最效率的铜螯合位点是黄酮中的3-羟基-4-酮基团,黄酮中的5,6,7-三羟基酮。另一方面,3',4'-二羟基仅与弱活动相关联。 3-羟基氟,Kaempferol和部分Baicaline在酸性环境中比Trientine更有效,但是,没有测试的黄酮类化合物能够在生理pH或微酸性条件下超越它。总之,具有适当的结构特征的黄酮类化合物是有效的铜螯合剂,其中一些在酸性条件下比Trientine更有效。

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