高芳芳, 王迪, 陈胜军, 邓建朝, 冯阳, 潘创, 李春生. 罗氏沼虾氨基脲分布特征及贮藏变化研究[J]. 南方水产科学, 2023, 19(1): 147-154. DOI: 10.12131/20220138
引用本文: 高芳芳, 王迪, 陈胜军, 邓建朝, 冯阳, 潘创, 李春生. 罗氏沼虾氨基脲分布特征及贮藏变化研究[J]. 南方水产科学, 2023, 19(1): 147-154. DOI: 10.12131/20220138
GAO Fangfang, WANG Di, CHEN Shengjun, DENG Jianchao, FENG Yang, PAN Chuang, LI Chunsheng. Study on distribution characteristics and storage variation of semicarbazide in Macrobrachium rosenbergii[J]. South China Fisheries Science, 2023, 19(1): 147-154. DOI: 10.12131/20220138
Citation: GAO Fangfang, WANG Di, CHEN Shengjun, DENG Jianchao, FENG Yang, PAN Chuang, LI Chunsheng. Study on distribution characteristics and storage variation of semicarbazide in Macrobrachium rosenbergii[J]. South China Fisheries Science, 2023, 19(1): 147-154. DOI: 10.12131/20220138

罗氏沼虾氨基脲分布特征及贮藏变化研究

Study on distribution characteristics and storage variation of semicarbazide in Macrobrachium rosenbergii

  • 摘要: 氨基脲 (Semicarbazide, SEM) 为一种有毒物质,是判断呋喃西林是否违规使用的标记性残留物。为探讨甲壳类水产品中氨基脲的检出情况,采用高效液相色谱-串联质谱联用法 (High performance liquid chromatography-mass spectrometry, HPLC-MS/MS) 对罗氏沼虾 (Macrobrachium rosenbergii) 中的SEM进行了检测。结果显示,罗氏沼虾不同部位均检出SEM,其中头胸甲和虾壳等甲壳部位SEM检出值较高 平均 (32.02±3.75) 和 (26.85±13.90) μg·kg−1,肌肉和肝脏的SEM检出值较低 平均 (1.35±0.67) 和 (5.56±0.87) μg·kg−1,均超过我国现行规定的残留限量标准 (1 μg·kg−1);罗氏沼虾虾壳和虾肉中的SEM检出值随贮藏时间的增加而减小,甲壳组织中SEM检出值始终高于1.0 μg·kg−1,而不同贮藏温度对罗氏沼虾中SEM检出值影响较小。因此,以SEM为标志物对罗氏沼虾进行呋喃西林残留检测时,应考虑样品贮藏时间及本底含量因素,以避免误判;同时为确保检测结果的真实性和准确性,在制备样品时应避免将碎壳混入虾肉中。

     

    Abstract: Semicarbazide (SEM) is a toxic substance, which is a marker residue to determine whether Nitrofurazone is used illegally or not. To explore the detection of SEM in Crustacean aquatic products, we detected the SEM content of M. rosenbergii by High Performance Liquid Chromatography-Mass Spectrometry (HPLC-MS/MS). The results show that SEM was detected in different parts of M. rosenbergii, higher in the cephalothorax and shrimp shell Average: (32.02±3.75) and (26.85±13.90) μg·kg−1, but lower in the muscle and liver Average: (1.35±0.67) and (5.56±0.87) μg·kg−1, and all exceeded the residue limit standards in China (1 μg·kg−1). The SEM content in the shrimp shell and shrimp meat increased with the prolongation of storage time, but that in the shrimp shell was higher than 1.0 μg·kg−1. Different storage temperatures had a little effect on the SEM content of M. rosenbergii. Therefore, when taking SEM as a marker for Nitrofurazone residue detection of M. rosenbergii, the detection time and background content factors should be considered so as to avoid false judgment; and in order to ensure the authenticity and accuracy of the test results, the crushed shell should be avoided in preparing samples.

     

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