State Key Laboratory of Marine Resources Utilization in South China Sea and Center for Eco-Environment Restoration of Hainan Province, Hainan University, Haikou 570228, China.
NHC Key Laboratory of Tropical Disease Control, School of Tropical Medicine, Hainan Medical University, Haikou, Hainan 571199, China.
J Agric Food Chem. 2024 Jul 24;72(29):16076-16094. doi: 10.1021/acs.jafc.4c01865. Epub 2024 Jul 16.
Marine biotoxins are metabolites produced by algae that can accumulate in shellfish or fish and enter organisms through the food chain, posing a serious threat to biological health. Therefore, accurate and rapid detection is an urgent requirement for food safety. Although various detection methods, including the mouse bioassay, liquid chromatography-mass spectrometry, and cell detection methods, and protein phosphatase inhibition assays have been developed in the past decades, the current detection methods cannot fully meet these demands. Among these methods, the outstanding immunoassay virtues of high sensitivity, reliability, and low cost are highly advantageous for marine biotoxin detection in complex samples. In this work, we review the recent 5-year progress in marine biotoxin immunodetection technologies such as optical immunoassays, electrochemical immunoassays, and piezoelectric immunoassays. With the assistance of immunoassays, the detection of food-related marine biotoxins can be implemented for ensuring public health and preventing food poisoning. In addition, the immunodetection technique platforms including lateral flow chips and microfluidic chips are also discussed. We carefully investigate the advantages and disadvantages for each immunoassay, which are compared to demonstrate the guidance for selecting appropriate immunoassays and platforms for the detection of marine biotoxins. It is expected that this review will provide insights for the further development of immunoassays and promote the rapid progress and successful translation of advanced immunoassays with food safety detection.
海洋生物毒素是藻类产生的代谢物,可在贝类或鱼类中积累,并通过食物链进入生物体,对生物健康构成严重威胁。因此,准确、快速的检测是食品安全的迫切要求。尽管过去几十年来已经开发出了各种检测方法,包括小鼠生物测定法、液相色谱-质谱法和细胞检测方法以及蛋白磷酸酶抑制测定法,但目前的检测方法仍无法完全满足这些需求。在这些方法中,免疫测定法具有高灵敏度、高可靠性和低成本的突出优点,非常有利于复杂样品中海洋生物毒素的检测。在这项工作中,我们综述了过去 5 年来光学免疫测定法、电化学免疫测定法和压电免疫测定法等海洋生物毒素免疫检测技术的最新进展。借助免疫测定法,可以实现与食品相关的海洋生物毒素的检测,从而保障公众健康,防止食物中毒。此外,还讨论了包括横向流芯片和微流控芯片在内的免疫检测技术平台。我们仔细研究了每种免疫测定法的优缺点,并进行了比较,为选择适当的免疫测定法和平台以用于海洋生物毒素的检测提供了指导。预计本文的综述将为免疫测定法的进一步发展提供思路,并促进具有食品安全检测功能的先进免疫测定法的快速发展和成功转化。