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An ultrasensitive and highly selective determination method for quinones by high-performance liquid chromatography with photochemically initiated luminol chemiluminescence.

机译:一种超灵敏,高选择性的醌类测定方法,采用高效液相色谱,光化学引发的鲁米诺化学发光法。

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摘要

Quinones are a class of compounds of substantial toxicological and pharmacological interest. An ultrasensitive and highly selective chemiluminescence (CL) method was newly developed for the determination of quinones based on the utility of photochemically initiated luminol CL. The method involved ultraviolet (UV) irradiation of quinones to generate reactive oxygen species (ROS) through the unique photosensitization reaction accompanied with the photolytical generation of 3,6-dihydroxyphthalic acid (DHPA) from quinones. The photoproducts were detected by luminol CL reaction. Interestingly, it was noticed that DHPA had enhancement effect for the luminol CL. The generation of the enhancer (DHPA) in association with the oxidant (ROS) in the photochemical reaction greatly increases the sensitivity and selectivity of the proposed luminol CL method. In order to elucidate the type of ROS produced by the photosensitizaion reaction in relation to the proposed CL reaction, we investigated the quenching effect of selective ROS scavengers in the luminol CL. Although several ROS were generated, superoxide anion was the most effective ROS for the generated CL. Moreover, the enhancement mechanism of DHPA for luminol CL was confirmed. The enhancement was found to be through the formation of stabilized semiquinone anion radical that provided long-lived CL. The generation of the semiquinone radical was confirmed by electron spin resonance technique. Furthermore, we developed an HPLC method with on-line photochemical reaction followed by the proposed CL detection for the determination of four quinones. A luminol analogue, L-012, was used for its high sensitivity. The detection limits for quinones obtained with the proposed method (S/N=3) were in the range 1.5-24 fmol that were 10-1000 times more sensitive compared with the previous methods. Finally, the developed HPLC-CL system was successfully applied for the determination of quinones in airborne particulate samples collected at Nagasaki city.
机译:醌是一类具有实质毒理学和药理学意义的化合物。基于光化学引发的鲁米诺CL的效用,新开发了一种超灵敏的高选择性化学发光(CL)方法,用于测定醌。该方法涉及通过醌的紫外线(UV)辐照,通过独特的光敏反应并通过醌光解生成3,6-二羟基邻苯二甲酸(DHPA)来生成活性氧(ROS)。通过鲁米诺CL反应检测光产物。有趣的是,注意到DHPA对鲁米诺CL具有增强作用。在光化学反应中与氧化剂(ROS)结合生成增强剂(DHPA)大大提高了拟议的鲁米诺CL法的灵敏度和选择性。为了阐明与拟议的CL反应有关的光敏反应产生的ROS类型,我们研究了鲁米诺CL中选择性ROS清除剂的猝灭作用。尽管生成了几种ROS,但超氧阴离子是生成的CL最有效的ROS。此外,证实了DHPA增强鲁米诺CL的机理。发现该增强是通过形成稳定的半醌阴离子自由基,该自由基提供了长寿命的CL。通过电子自旋共振技术确认了半醌自由基的产生。此外,我们开发了一种在线光化学反应的HPLC方法,然后提出了用于检测四个醌的CL检测方法。鲁米诺类似物L-012被用于其高灵敏度。用所提出的方法(S / N = 3)获得的醌的检出限为1.5-24 fmol,比以前的方法灵敏度高10-1000倍。最后,已开发的HPLC-CL系统成功地用于测定在长崎市采集的空气中悬浮颗粒样品中的醌。

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