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衍生化:一种适用于无 MS 检测的常规 HPLC 系统的资产在食品和杂项分析中的应用。

Derivatization, an Applicable Asset for Conventional HPLC Systems without MS Detection in Food and Miscellaneous Analysis.

机构信息

Department of Chemical Sciences, University of Padova, Via Marzolo 1, 35131, Padova, Italy.

Department of Pharmaceutical Sciences & Technology, Maharaja Ranjit Singh Punjab Technical University, Bathinda, 151001, Punjab, India.

出版信息

Crit Rev Anal Chem. 2023;53(8):1807-1827. doi: 10.1080/10408347.2022.2042671. Epub 2022 Feb 24.

Abstract

One of the most valuable practices for analyzing not-so-analytical-friendly analytes in complex, heterogenous matrices is derivatization. Availability of numerous derivatizing reagents (DRs) makes the modification of analyte more exploitable in terms of an analytical perspective. A wide array of derivatization techniques like , , enzymatic, ultrasound-assisted, microwave-assisted, photochemical derivatization has added much-needed methodological strength in analyzing intricate analytical matrices (food, water, and soil). In recent years, analytical chemistry has achieved greater heights through the development of new sensitive methods with simple conventional instruments like High-Performance Liquid Chromatography (HPLC) devoid of Mass detectors. The prompt availability of these straightforward instruments also makes it a favorable option for routine analysis in food, environmental, bioanalytical chemistry. Analyzing food, environmental or bioanalytical specimen has some of the most problematic aspects, like the low concentration of the analytes accompanied by not too suitable analytical properties. Even though conventional HPLC lacks the required sensitivity but merger with derivatization can lead to a remarkable increase in sensitivity. In recent years there has been a lot of application of diverse derivatizations to increase the sensitivity and selectivity of the analyte for available instruments, resulting in notable findings. Therefore, this review describes the application of derivatization principles in the analysis of analytes in food and additional matrices using conventional HPLC instruments such as HPLC-UV, HPLC-DAD, and HPLC-FD. In this article, we will briefly review the different modes and multiple types of derivatizing reagents with their mechanisms and importance for encouraging the use of established HPLC instruments.

摘要

在复杂的、异质基质中分析非分析友好型分析物的最有价值的实践之一是衍生化。大量衍生试剂(DR)的可用性使得从分析角度来看,对分析物的修饰更具可操作性。广泛的衍生化技术,如化学衍生化、酶衍生化、超声辅助衍生化、微波辅助衍生化、光化学衍生化,为分析复杂的分析基质(食品、水和土壤)提供了急需的方法学强度。近年来,分析化学通过开发新的敏感方法,结合简单的传统仪器(如高效液相色谱(HPLC)),而无需质量检测器,取得了更大的成就。这些简单仪器的快速可用性也使其成为食品、环境、生物分析化学中常规分析的首选。分析食品、环境或生物分析样本存在一些最具问题的方面,例如分析物的浓度低,同时分析物的分析性质不太合适。尽管传统的 HPLC 缺乏所需的灵敏度,但与衍生化结合可以显著提高灵敏度。近年来,人们已经对多种衍生化方法进行了大量应用,以提高现有仪器对分析物的灵敏度和选择性,从而取得了显著的发现。因此,本综述描述了衍生化原理在使用常规 HPLC 仪器(如 HPLC-UV、HPLC-DAD 和 HPLC-FD)分析食品和其他基质中的分析物中的应用。在本文中,我们将简要回顾不同模式和多种类型的衍生试剂及其机制和重要性,以鼓励使用已建立的 HPLC 仪器。

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