School of Pharmacy, China Medical University, Shenyang 110122, China; Department of Clinical Pharmacy & Pharmacy Administration, School of Pharmacy, Fudan University, Shanghai, 201203, China.
School of Pharmacy, China Medical University, Shenyang 110122, China.
Food Res Int. 2023 Jan;163:112272. doi: 10.1016/j.foodres.2022.112272. Epub 2022 Nov 29.
Melatonin (MLT) plays a significant role on maintaining the basic physiological functions and regulating various metabolic processes in plentiful organisms. Recent years have witnessed an increase in MLT's share in global market with its affluent functions. However, the worrisome quality issues and inappropriate or excessive application of MLT take place inevitably. In addition, its photosensitive properties, oxidation, complex substrate concentration and trace levels leave exact detection of MLT doubly difficult. Therefore, it is essential to exploit precise, sensitive and stable extraction and detection methods to resolve above questions. In this study, we reviewed the distribution and bioactivities of MLT and conducted a comprehensive overview of the developments of pretreatment and analysis methods for MLT in food samples since 2010. Commonly used pretreatment methods for MLT include not only traditional techniques, but also novel ones, such as solid-phase extraction, QuEChERS, microextraction by packed sorbent, solid phase microextraction, liquid phase microextraction, and so on. Analysis methods include liquid chromatography coupled with different detectors, GC methods, capillary electrophoresis, sensors, and so on. The advantages and disadvantages of different techniques have been compared and the development tendency was prospected.
褪黑素(MLT)在维持丰富生物的基本生理功能和调节各种代谢过程中起着重要作用。近年来,MLT 的丰富功能使其在全球市场中的份额不断增加。然而,不可避免地会出现令人担忧的质量问题以及 MLT 的不适当或过度应用。此外,其光敏感性、氧化、复杂的基质浓度和痕量水平使得 MLT 的准确检测变得加倍困难。因此,开发精确、灵敏和稳定的提取和检测方法来解决上述问题至关重要。在本研究中,我们综述了 MLT 的分布和生物活性,并全面回顾了 2010 年以来食品样品中 MLT 的预处理和分析方法的发展。MLT 的常用预处理方法不仅包括传统技术,还包括新型技术,如固相萃取、QuEChERS、填充吸附剂微萃取、固相微萃取、液相微萃取等。分析方法包括与不同检测器耦合的液相色谱法、GC 方法、毛细管电泳、传感器等。比较了不同技术的优缺点,并展望了发展趋势。