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磺胺类广谱适体的分离及其在鱼样中多种磺胺类药物同时检测中的应用。

Broad-Specificity Aptamer of Sulfonamides: Isolation and Its Application in Simultaneous Detection of Multiple Sulfonamides in Fish Sample.

机构信息

Key Laboratory for Analytical Science of Food Safety and Biology of MOE, College of Chemistry, Fuzhou University, Fuzhou, Fujian 350108, China.

State Key Laboratory of Ecological Pest Control for Fujian and Taiwan Crops, College of Plant Protection, Fujian Agriculture and Forestry University, Fuzhou 350002, China.

出版信息

J Agric Food Chem. 2022 Sep 21;70(37):11804-11812. doi: 10.1021/acs.jafc.2c03423. Epub 2022 Sep 7.

Abstract

Sulfonamide antibiotics (SAs) are widely used in animal husbandry and aquaculture, and the excess residues of SAs in animal-derived foods will harm the health of consumers. In reality, various SAs were alternately used in animal husbandry and aquaculture, and thus, it is urgent need to develop simple and high-throughput methods for simultaneously detecting multiple SAs or groups of SAs in order to realize rapid screening of total SAs residues in animal-derived foods. We herein isolated a broad-specificity aptamer for SAs by using a multi-SAs systematic evolution of ligands by exponential enrichment (SELEX) strategy. The isolated broad-specificity aptamer has a higher binding affinity to five different SAs including sulfaquinoxaline (SQ), sulfamethoxypyridazine (SMPZ), sulfametoxydiazine (SMD), sulfachloropyridazine (SCP), and sulfapyridine (SPD) and, thus, can be used as a bioreceptor for developing various high-throughput methods for the simultaneous detection or rapid screening of above five SAs. Based on the isolated broad-specificity aptamer and Cy7 (diethylthiatricarbocyanine) displacement strategy, a colorimetric aptasensor was developed for the simultaneous detection of SQ, SMPZ, SMD, SCP, and SPD with a visual detection limit of 2.0-5.0 μM and a spectrometry detection limit of 0.2-0.5 μM. The colorimetric aptasensor was successfully used to detect SQ, SMPZ, SMD, SCP, and SPD in fish muscle with a recovery of 82%-92% and a RSD ( = 5) < 7%. The success of this study provided a promising bioreceptor for developing various high-throughput methods for on-site rapid screening of multiple SAs residues, as well as a simple method for the rapid and cost-effective screening of total SQ, SMPZ, SMD, SCP, and SPD in seafood.

摘要

磺胺类抗生素(SAs)被广泛应用于畜牧业和水产养殖业,动物源性食品中磺胺类抗生素的过量残留会危害消费者的健康。实际上,畜牧业和水产养殖业中各种磺胺类抗生素被交替使用,因此,迫切需要开发简单、高通量的方法来同时检测多种磺胺类抗生素或磺胺类抗生素组,以实现对动物源性食品中总磺胺类抗生素残留的快速筛选。本研究采用多磺胺系统进化配体指数富集(SELEX)策略,分离出一种磺胺类抗生素的广谱适配体。该分离出的广谱适配体对包括磺胺喹恶啉(SQ)、磺胺二甲嘧啶(SMPZ)、磺胺间甲氧嘧啶(SMD)、磺胺氯哒嗪(SCP)和磺胺吡啶(SPD)在内的五种不同磺胺类抗生素具有更高的结合亲和力,因此可作为生物受体,用于开发各种高通量方法来同时检测或快速筛选这五种磺胺类抗生素。基于分离出的广谱适配体和 Cy7(二乙基噻二嗪碳菁)置换策略,建立了一种用于同时检测 SQ、SMPZ、SMD、SCP 和 SPD 的比色适体传感器,其目视检测限为 2.0-5.0 μM,光谱检测限为 0.2-0.5 μM。该比色适体传感器成功地用于鱼肉中 SQ、SMPZ、SMD、SCP 和 SPD 的检测,回收率为 82%-92%,相对标准偏差(RSD,n = 5)<7%。本研究的成功为开发现场快速筛选多种磺胺类抗生素残留的高通量方法提供了一种有前景的生物受体,同时也为快速、经济高效地筛选海鲜中总 SQ、SMPZ、SMD、SCP 和 SPD 提供了一种简单方法。

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