Duncan Hadyn, Agulló Consuelo, Mercader Josep V, Abad-Somovilla Antonio, Abad-Fuentes Antonio
Institute of Agricultural Chemistry and Food Technology (IATA), Spanish Scientific Research Council (CSIC), Av. Agustí Escardino 7, Paterna 46980, Valencia, Spain.
Department of Organic Chemistry, University of Valencia, Doctor Moliner 50, Burjassot 46100, Valencia, Spain.
Anal Chem. 2024 Jul 15;96(30):12370-7. doi: 10.1021/acs.analchem.4c01631.
Mycotoxins are globally pervasive contaminants that threaten food safety worldwide. Regulatory authorities have established maximum permissible levels for certain mycotoxins, and their presence is routinely monitored throughout the food chain to ensure the provision of healthy food and safe feed for humans and animals. While immunoanalytical methods are essential for mycotoxin screening, monoclonal antibodies for the detection of patulin are notably absent. Moreover, leading immunodiagnostic companies currently do not offer rapid tests for patulin in their product portfolios. This deficiency in mycotoxin testing is primarily due to the electrophilic reactivity of patulin. In this study, we exploit this reactivity to develop an innovative strategy that targets the stable adduct formed by the reaction of patulin with aryl-1,2-dithiolates, rather than analyzing the mycotoxin itself. Based on this previously unknown reaction, we present the first collection of monoclonal antibodies, enabling the long-sought goal of sensitive, simple, and user-friendly immunosensing of patulin.
霉菌毒素是全球普遍存在的污染物,威胁着全世界的食品安全。监管机构已为某些霉菌毒素制定了最大允许限量,并在整个食物链中对其存在情况进行常规监测,以确保为人类和动物提供健康的食品和安全的饲料。虽然免疫分析方法对于霉菌毒素筛查至关重要,但用于检测展青霉素的单克隆抗体却明显缺乏。此外,领先的免疫诊断公司目前在其产品组合中未提供展青霉素快速检测方法。霉菌毒素检测方面的这一缺陷主要是由于展青霉素的亲电反应性。在本研究中,我们利用这种反应性开发了一种创新策略,该策略针对展青霉素与芳基 - 1,2 - 二硫醇盐反应形成的稳定加合物,而不是分析霉菌毒素本身。基于这一此前未知的反应,我们展示了首批单克隆抗体,实现了对展青霉素进行灵敏、简单且用户友好的免疫传感这一长期追求的目标。