Recent advances in sample preparation technologies for analysis of harmful substances in aquatic products

被引:2
|
作者
Wang Xingyi [1 ,2 ]
Chen Yanlong [1 ]
Xiao Xiaohua [1 ]
Li Gongke [1 ]
机构
[1] Sun Yat Sen Univ, Sch Chem, Guangzhou 510275, Peoples R China
[2] Xingyi Normal Univ Nationalities, Sch Biol & Chem, Xingyi 562400, Peoples R China
基金
中国国家自然科学基金;
关键词
sample preparation; environmental pollutants; illegal additive; biotoxins; aquatic products; PERFORMANCE LIQUID-CHROMATOGRAPHY; SOLID-PHASE EXTRACTION; TANDEM MASS-SPECTROMETRY; IN-VIVO DETERMINATION; GAS-CHROMATOGRAPHY; POLYCHLORINATED-BIPHENYLS; RAPID-DETERMINATION; ORGANIC FRAMEWORK; MODIFIED QUECHERS; FISHERY PRODUCTS;
D O I
10.3724/SP.J.1123.2020.07025
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
Aquatic products, which are among the most important sources of animal protein, contain proteins, vitamins, and a variety of trace elements, thus occupying an indispensable part of a reasonable diet. China is the largest consumer market of aquatic products in the world. The quality and safety of aquatic products are closely related not only to the healthy development of the aquaculture industry, but also to people's health. However, the presence of harmful substances has a bearing on the quality and safety of aquatic products in the overall process, including breeding, processing, storage, and transportation. These harmful substances are enriched in aquatic products and are transferred to humans via the food chain. Accurate determination of such harmful substances in aquatic product samples is imperative because of their complex matrices and extremely low concentrations. Many efficient sample preparation techniques such as liquid. liquid extraction, solid. phase extraction, and QuEChERS (quick, easy, cheap, effective, rugged, and safe method) with different configurations have been developed and widely employed for preconcentration in different matrices of aquatic products. Meanwhile, solid. phase microextraction has been demonstrated to be advantageous for some volatile and ultra. trace harmful substances. Suitable sample preparation techniques are important for effectively removing matrix interferences as well as for improving the sensitivity and accuracy of the method. It is important to develop appropriate sample preparation techniques for different target compounds in aquatic products. The harmful substances in aquatic products can be segregated into three categories according to their sources: (1) environmental pollutants in aquatic products; (2) substances acquired during aquaculture, transportation, and processing; (3) biotoxins in aquatic products. This article reviews the progress in sample pretreatment techniques for three harmful substances in aquatic products over the past decade. Various sample pretreatment techniques have been summarized and described, including liquid-liquid extraction, solid. phase extraction, solid-phase microextraction, QuEChERS, and magnetic solid-phase extraction. In addition, the merits and demerits of these techniques and future research directions are discussed. Finally, we reviewed the progress in functionalized materials for the preparation of aquatic product samples. With the increasing demand for aquatic products, quick, sensitive, and practical detection methods, such as surface. enhanced Raman scattering (SERS) are gaining importance. SERS has great potential for fast and accurate on. site detection of harmful substances in aquatic products. Several nondestructive sample pretreatment techniques have also been developed for harmful substances in aquatic products. The application and development of these techniques will guarantee the safety of aquatic products. Moreover, in vivo solid-phase microextraction is a potential method for aquatic product analysis. This technique integrates sampling, extraction, and enrichment into a single step, thus significantly reducing the processing time, labor, and cost. Overall, with the development and application of sophisticated materials and techniques, we can expect theoretical and practical advances in aquatic product analysis.
引用
收藏
页码:34 / 45
页数:12
相关论文
共 83 条
  • [1] Microplastics in the marine environment: Current trends in environmental pollution and mechanisms of toxicological profile
    Alimba, Chibuisi Gideon
    Faggio, Caterina
    [J]. ENVIRONMENTAL TOXICOLOGY AND PHARMACOLOGY, 2019, 68 : 61 - 74
  • [2] Ionic imprinted polymer based solid phase extraction for cadmium and lead pre-concentration/determination in seafood
    Barciela-Alonso, M. C.
    Plata-Garcia, V.
    Rouco-Lopez, A.
    Moreda-Pineiro, A.
    Bermejo-Barrera, P.
    [J]. MICROCHEMICAL JOURNAL, 2014, 114 : 106 - 110
  • [3] Fish and food safety: Determination of formaldehyde in 12 fish species by SPME extraction and GC-MS analysis
    Bianchi, F.
    Careri, M.
    Musci, M.
    Mangia, A.
    [J]. FOOD CHEMISTRY, 2007, 100 (03) : 1049 - 1053
  • [4] [岑剑伟 Cen Jianwei], 2010, [中国水产科学, Journal of Fishery Sciences of China], V17, P1036
  • [5] Rapid in vivo determination of tetrodotoxin in pufferfish (Fugu) muscle by solid-phase microextraction coupled to high-performance liquid chromatography tandem mass spectrometry
    Chen, Le
    Qiu, Junlang
    Tang, Yijia
    Xu, Jianqiao
    Huang, Shuyao
    Liu, Yuan
    Ouyang, Gangfeng
    [J]. TALANTA, 2017, 171 : 179 - 184
  • [6] Chen QiuHua Chen QiuHua, 2018, Shipin Kexue / Food Science, V39, P337
  • [7] Rapid determination of multiple prohibited and restricted veterinary drug residues in fish and shrimp by ultra high performance liquid chromatography-tandem mass spectrometry
    Chen Xinglian
    Lin Tao
    Liu Xingyong
    Mei Wenquan
    Wang Li
    Geng Huichun
    Cheng Long
    Wang Luxiang
    [J]. CHINESE JOURNAL OF CHROMATOGRAPHY, 2020, 38 (05) : 538 - 546
  • [8] Cheng Hai Cheng Hai, 2020, Journal of Food Safety and Quality, V11, P449
  • [9] Dispersive liquid-liquid microextraction for the determination of menthol residue in fish by GC-MS
    Coelho Botrel, Bianca Mesquita
    Pereira Abreu, Daiane Cassia
    Saczk, Adelir Aparecida
    Ferreira Bazana, Matheus Julien
    Nascimento, Carina de Fatima
    Vieira e Rosa, Priscila
    [J]. MICROCHEMICAL JOURNAL, 2017, 133 : 70 - 75
  • [10] Determination of nitrofuran metabolites in shrimp by high performance liquid chromatography with fluorescence detection and liquid chromatography-tandem mass spectrometry using a new derivatization reagent
    Du, Na-Na
    Chen, Ming-Ming
    Sheng, Liang-Quan
    Chen, Shui-Sheng
    Xu, Hua-Jie
    Liu, Zhao-Di
    Song, Chong-Fu
    Qiao, Rui
    [J]. JOURNAL OF CHROMATOGRAPHY A, 2014, 1327 : 90 - 96