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Flow system for the automatic screening of the effect of phenolic compounds on the luminol-hydrogen peroxide-peroxidase chemiluminescence system

机译:自动筛选酚类化合物对鲁米诺-过氧化氢-过氧化物酶化学发光系统影响的流量系统

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In this work, an automated flow-based procedure for the screening of the effect of the different phenolic compounds on the chemiluminescence (CL) luminol-hydrogen peroxide-horseradish peroxidase (HRP) system is presented. This procedure involves the combination of multisyringe flow injection analysis (MFSIA) and sequential injection analysis (SIA) techniques and exploits the ability of the different subgroups of phenols, such as cholorophenols, nitrophenols, methylphenols and polyphenols, to enhance or inhibit the described CL system. The implementation of this reaction in the SIA-MSFIA system enabled favourable and precise conditions to evaluate the effect of phenolic compounds, as it involves an in-line reaction between the phenolic derivative, hydrogen peroxide and peroxidase and subsequent oxidized HRP intermediates generation prior to the fast reaction with the chemiluminogenic reagent. Several studies were then performed with the aim of establishing the appropriate flow system configuration and reaction conditions. It was shown that phenol and chlorophenols produce an enhanced CL response and nitrophenols, methylphenols and polyphenols are inhibitors within the range of concentrations studied (1-100 mg/L). Based on these studies, the developed method was applied to the determination of total polyphenol and phenol content in wine/grape seeds and water samples, respectively, and the results obtained showed good agreement with those furnished by the corresponding Folin-Ciocalteu and 4-aminoantipyrine reference methods. The developed approach is further pursued by designing an automated generic tool for performing studies of peroxidase-catalysed CL reactions of luminol focused on the detection of compounds that will affect the rate of those reactions.
机译:在这项工作中,提出了一种基于流程的自动化流程,用于筛选不同酚类化合物对化学发光(CL)鲁米诺-过氧化氢-辣根过氧化物酶(HRP)系统的影响。此过程涉及多注射器流动注射分析(MFSIA)和顺序注射分析(SIA)技术的结合,并利用酚的不同亚组(如氯酚,硝基酚,甲基酚和多酚)增强或抑制所述CL系统的能力。 。该反应在SIA-MSFIA系统中的实施为评估酚类化合物的效果提供了有利且精确的条件,因为它涉及酚类衍生物,过氧化氢和过氧化物酶之间的在线反应,以及随后生成氧化HRP中间体的过程。与化学发光试剂快速反应。然后进行了几项研究,目的是建立合适的流动系统构型和反应条件。结果表明,在研究浓度范围(1-100 mg / L)内,苯酚和氯酚产生增强的CL反应,硝基酚,甲基酚和多酚是抑制剂。在这些研究的基础上,将所开发的方法分别用于测定葡萄酒/葡萄籽和水样品中的总多酚和酚含量,所获得的结果与相应的Folin-Ciocalteu和4-aminoantipyrine提供的结果吻合良好。参考方法。通过设计用于进行过氧化物酶催化的鲁米诺的CL反应研究的自动化通用工具,可以进一步追求开发的方法,该工具的重点是检测会影响这些反应速率的化合物。

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