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首页> 外文期刊>Analytica chimica acta >An electrochemical approach for detecting copper-chelating properties of flavonoids using disposable pencil graphite electrodes:Possible implications in copper-mediated illnesses
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An electrochemical approach for detecting copper-chelating properties of flavonoids using disposable pencil graphite electrodes:Possible implications in copper-mediated illnesses

机译:使用一次性铅笔状石墨电极检测类黄酮的铜螯合特性的电化学方法:在铜介导的疾病中的可能含义

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摘要

We have studied the electrochemistry of eight flavonoids belonging to four flavonoid sub-classes:flavone,flavonol,flavanol and antho-cyanidin using pencil graphite electrodes (PGEs).We present the electrochemistry of delphinidin,cyanidin and catechin gallate for the first time.The use of electrochemical methods in connection with PGE in the study of flavonoids and their interaction with copper ions has not been previously reported.Our results compare favorably with previously reported studies,which utilised glassy carbon electrodes (GCEs) for the detection of flavonoids.We calibrated all eight flavonoids (r~2>0.9620),six of them at at least two peak potentials.The relative standard deviation (R.S.D.) for peak potential was <5.0% and peak height was <10.0%;thus,this method could be used to characterise and quantify flavonoid-containing extracts (purified).An inverse relationship between oxidation potential and metal-chelation was established.Oxidation potential was influenced by the location of OH groups relative to each other,the oxidation state of the pyranose ring,the presence of a C-4-oxo group and the total number of OH groups.Further,we showed that the steric configuration of the compound influenced the reactivity.The order of flavonoid reactivity to Cu(II) ions was myricertin=catechin gallate>quercetin>delphinidin=baicalein>cyanidin>catechin.These findings may be significant in neuroscience and metal toxicological studies,in which copper ions have been reported to play a crucial role in initiating and/or promoting the progression of diseases such as Alzheimer's and Parkinson's.
机译:我们使用铅笔石墨电极(PGE)研究了黄酮,黄酮醇,黄酮醇和花色素苷中的四种黄酮类的八个类黄酮的电化学性质。我们首次提出了翠雀碱,花青素和儿茶素没食子酸酯的电化学。以前尚未报道过将电化学方法与PGE结合使用来研究类黄酮及其与铜离子的相互作用。我们的结果与以前报道的利用玻璃碳电极(GCE)检测类黄酮的研究相比具有优势。全部八个类黄酮(r〜2> 0.9620),其中六个具有至少两个峰值电势。峰值电势的相对标准偏差(RSD)为<5.0%,峰高为<10.0%;因此,可以使用此方法来表征和定量含黄酮的提取物(纯化的)。建立了氧化电位与金属螯合的反比关系。氧化电位受该位点的影响羟基之间的相对位置,吡喃糖环的氧化态,C-4-氧代基的存在以及羟基的总数。我们进一步表明,化合物的空间构型会影响反应性。黄酮类化合物对Cu(II)离子的反应顺序为杨梅素=儿茶素没食子酸酯>槲皮素> delphinidin =黄ical素>矢车菊苷>儿茶素。在引发和/或促进疾病的发展中发挥重要作用,例如阿尔茨海默氏病和帕金森氏病。

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