College of Food Science and Engineering, Ocean University of China, Qingdao 266003, China.
College of Life Science and Technology, Beijing University of Chemical Technology, Beijing 100029, China.
Toxins (Basel). 2018 Oct 25;10(11):427. doi: 10.3390/toxins10110427.
Marine biotoxins distribute widely, have high toxicity, and can be easily accumulated in water or seafood, exposing a serious threat to consumer health. Achieving specific and sensitive detection is the most effective way to prevent emergent issues caused by marine biotoxins; however, the previous detection methods cannot meet the requirements because of ethical or technical drawbacks. Aptamers, a kind of novel recognition element with high affinity and specificity, can be used to fabricate various aptasensors (aptamer-based biosensors) for sensitive and rapid detection. In recent years, an increasing number of aptamers and aptasensors have greatly promoted the development of marine biotoxins detection. In this review, we summarized the recent aptamer-related advances for marine biotoxins detection and discussed their perspectives. Firstly, we summarized the sequences, selection methods, affinity, secondary structures, and the ion conditions of all aptamers to provide a database-like information; secondly, we summarized the reported aptasensors for marine biotoxins, including principles, detection sensitivity, linear detection range, etc.; thirdly, on the basis of the existing reports and our own research experience, we forecast the development prospects of aptamers and aptasensors for marine biotoxins detection. We hope this review not only provides a comprehensive summary of aptamer selection and aptasensor development for marine biotoxins, but also arouses a broad readership amongst academic researchers and industrial chemists.
海洋生物毒素分布广泛,毒性高,容易在水中或海鲜中积累,对消费者健康构成严重威胁。实现特异性和敏感性检测是预防海洋生物毒素引起的紧急问题的最有效方法;然而,由于伦理或技术上的缺陷,以前的检测方法无法满足要求。适体是一种具有高亲和力和特异性的新型识别元件,可用于制备各种适体传感器(基于适体的生物传感器),以实现敏感和快速检测。近年来,越来越多的适体和适体传感器极大地促进了海洋生物毒素检测的发展。在这篇综述中,我们总结了近年来与海洋生物毒素检测相关的适体进展,并讨论了它们的前景。首先,我们总结了所有适体的序列、选择方法、亲和力、二级结构和离子条件,为数据库提供了类似的信息;其次,我们总结了用于海洋生物毒素检测的报告适体传感器,包括原理、检测灵敏度、线性检测范围等;第三,基于现有报告和我们自己的研究经验,我们预测了适体和适体传感器用于海洋生物毒素检测的发展前景。我们希望本综述不仅全面总结了海洋生物毒素适体选择和适体传感器的开发,还能引起学术界研究人员和工业化学家的广泛关注。