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用于生物、食品和环境样品中醛类测定的色谱方法和样品预处理技术。

Chromatographic methods and sample pretreatment techniques for aldehydes determination in biological, food, and environmental samples.

机构信息

Graduate School of Biomedical Sciences, Course of Pharmaceutical Sciences, Nagasaki University, 1-14 Bunkyo-machi, Nagasaki 852-8521, Japan.

Graduate School of Biomedical Sciences, Course of Pharmaceutical Sciences, Nagasaki University, 1-14 Bunkyo-machi, Nagasaki 852-8521, Japan; Department of Pharmaceutical Analytical Chemistry, Faculty of Pharmacy, Mansoura University, Mansoura 35516, Egypt.

出版信息

J Pharm Biomed Anal. 2019 Oct 25;175:112782. doi: 10.1016/j.jpba.2019.112782. Epub 2019 Jul 27.

Abstract

Aldehydes are very reactive carbonyl compounds that are widespread naturally. Aldehydes can be produced in vivo by oxidative reactions and are able to disturb biological functions through binding and modifying biomolecules. Thus, it is necessary to determine their levels in biological samples to estimate their possible adverse effect on human health in addition to their consideration as a biomarker for oxidative stress-related diseases. Furthermore, aldehydes have been found in foodstuffs as by-products of food processing or deterioration and their amounts in food samples were used as an indicator of its quality. Aldehydes also are widely distributed in the environment sourced from the industrial and motor vehicular exhausts and human exposure to them could bring many adverse health effects. From these viewpoints, an effective analytical method for the determination of aldehydes should be essential in various fields including biological, clinical, environmental, and food sciences. Among analytical methodologies, chromatographic determination methods should be suitable tools for the simultaneous determination of wide variety of aldehydes. Derivatization reactions are frequently applied for aldehydes to improve their detection sensitivity as most of them do not possess detectable moiety. Also, derivatization can control their retention behavior on HPLC columns. Moreover, sample pretreatment procedures for aldehydes to modify their high volatility, reactivity, polarity, and inherent instability is vital for their pre-concentration and avoiding matrix effects. In this review, chromatographic determination methods for aldehydes are summarized mainly according to the recent reports with the analytical techniques including the effective extraction and chemical derivatization. Besides, the applications for the chromatographic determination of aldehydes are summarized and significant findings obtained by the application studies are described.

摘要

醛是广泛存在的反应性羰基化合物。醛可以通过氧化反应在体内产生,并通过结合和修饰生物分子来干扰生物功能。因此,除了将其作为氧化应激相关疾病的生物标志物来考虑之外,还需要在生物样品中测定其水平,以评估其对人类健康的可能不利影响。此外,醛已在食品中作为食品加工或变质的副产物被发现,并且食品样品中的含量被用作其质量的指标。醛还广泛分布于环境中,来源于工业和机动车辆废气,人类接触这些醛会带来许多不良健康影响。从这些观点来看,在生物、临床、环境和食品科学等各个领域,都需要建立一种用于测定醛的有效分析方法。在分析方法中,色谱测定方法应该是同时测定多种醛的合适工具。衍生化反应常用于醛的检测,以提高其检测灵敏度,因为大多数醛不具有可检测的部分。此外,衍生化可以控制它们在 HPLC 柱上的保留行为。此外,为了对醛进行预浓缩并避免基质效应,需要对醛进行样品预处理,以改变其高挥发性、反应性、极性和固有不稳定性。本综述主要根据最近的报道,总结了醛的色谱测定方法,包括有效的提取和化学衍生化技术。此外,还总结了醛的色谱测定的应用,并描述了应用研究中获得的重要发现。

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