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基于质谱技术检测动物源食品兴奋剂的最新进展。

Recent progress on the detection of animal-derived food stimulants using mass spectrometry-based techniques.

作者信息

Zhang Qiang, Du Hongying, Zhang Yingjian

机构信息

Graduate School, Capital University of Physical Education and Sports, Beijing, China.

Tangshan Normal University, Tangshan, Hebei Province, China.

出版信息

Front Nutr. 2023 Jul 18;10:1226530. doi: 10.3389/fnut.2023.1226530. eCollection 2023.

Abstract

BACKGROUND

The misuse of animal-derived stimulants in food is becoming increasingly common, and mass spectrometry (MS) is used extensively for their detection and analysis. There is a growing demand for abused-substances detection, highlighting the need for systematic studies on the advantages of MS-based methods in detecting animal-derived stimulants.

OBJECTIVE

We reviewed the application of chromatography-mass spectrometry to the screening and detection of food stimulants of animal origin. Specifically, we analyzed four common animal sources of synthetic steroids, β-receptor agonists, zearalenol (ZAL), and glucocorticoids. We also explored the potential of using chromatography-mass spectrometry to detect and analyze animal-derived foods.

METHODS

We searched and screened the Web of Science and Google Scholar databases until April 2023. Our inclusion criteria included a publication year within the last 5 years, publication language of English, and the research fields of food analysis, environmental chemistry, and polymer science. Our keywords were "mass spectrometry," "anabolic androgenic steroids," "β-2agonists," "glucocorticoids," "zearalenone," and "doping."

RESULTS

Although traditional techniques such as thin-layer chromatography and enzyme-linked immunoassays are simple, fast, and suitable for the initial screening of bulk products, they are limited by their relatively high detection limits. Among the methods based on MS, gas chromatography-mass spectrometry and liquid chromatography-tandem mass spectrometry are the most widely used for detecting food doping agents of animal origin. However, a sensitive method with high repeatability and a short analysis time for a large number of samples is still required. Advances in MS have enabled the detection of extremely low concentrations of these substances. Combining different techniques, such as high-resolution mass spectrometry, ultra-high performance liquid chromatography-tandem mass spectrometry, gas chromatography-combustion-isotope ratio mass spectrometry, ultra-high performance liquid chromatography-high resolution mass spectrometry, and two-dimensional chromatography, offers significant advantages for detecting trace illicit drugs in animal-derived foods. Due to advances in assay technology and sample preparation methods, sample collection and storage methods such as dried blood spots, dried urine spots, and volumetric absorptive microsampling are increasingly accepted because of their increased stability and cost-effectiveness.

SIGNIFICANCE

MS significantly improves the efficiency of detecting doping agents of animal origin. With the continuous development of MS technology, its application in the fields of doping detection and the analysis of doping agents of animal origin is expected to become more extensive.

摘要

背景

食品中动物源性兴奋剂的滥用现象日益普遍,质谱法(MS)被广泛用于其检测和分析。对滥用物质检测的需求不断增加,凸显了对基于质谱法检测动物源性兴奋剂优势进行系统研究的必要性。

目的

我们综述了色谱 - 质谱联用技术在动物源性食品兴奋剂筛查和检测中的应用。具体而言,我们分析了合成类固醇、β受体激动剂、玉米赤霉烯醇(ZAL)和糖皮质激素这四种常见的动物源兴奋剂。我们还探讨了使用色谱 - 质谱联用技术检测和分析动物源性食品的潜力。

方法

我们检索并筛选了Web of Science和谷歌学术数据库,截至2023年4月。我们的纳入标准包括过去5年内发表的文献、英文发表语言以及食品分析、环境化学和聚合物科学等研究领域。我们的关键词为“质谱法”“合成代谢雄激素类固醇”“β - 2激动剂”“糖皮质激素”“玉米赤霉酮”和“兴奋剂”。

结果

尽管薄层色谱和酶联免疫吸附测定等传统技术简单、快速且适用于批量产品的初步筛查,但它们受到相对较高检测限的限制。在基于质谱的方法中,气相色谱 - 质谱联用和液相色谱 - 串联质谱联用是检测动物源性食品兴奋剂最广泛使用的方法。然而,仍然需要一种对大量样品具有高重复性和短分析时间的灵敏方法。质谱技术的进步使得能够检测到极低浓度的这些物质。结合不同技术,如高分辨率质谱、超高效液相色谱 - 串联质谱、气相色谱 - 燃烧 - 同位素比值质谱、超高效液相色谱 - 高分辨率质谱和二维色谱,对于检测动物源性食品中的痕量非法药物具有显著优势。由于检测技术和样品制备方法的进步,干血斑、干尿斑和体积吸收微量采样等样品采集和储存方法因其更高的稳定性和成本效益而越来越被接受。

意义

质谱法显著提高了动物源性兴奋剂的检测效率。随着质谱技术的不断发展,其在兴奋剂检测和动物源性兴奋剂分析领域的应用有望变得更加广泛。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0b29/10391635/8d50972c92fa/fnut-10-1226530-g001.jpg

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