The abuse of sulfameter (SME) in animal husbandry can cause drug resistance and toxic or allergic reactions in humans. Therefore, it is very important to establish a simple, inexpensive, and efficient method for detecting SME in food. In this work, we propose a single fluorescent aptamer/graphene oxide (GO)-based biosensor to detect SME residues in milk. Aptamers that specifically bind to SME were screened using capture-SELEX and a ssDNA library immobilized on magnetic beads. The 68 active candidate aptamers were chemically synthesized for specificity and affinity characterization. Among the aptamers, the aptamer sulf-1 revealed the highest affinity (Kd = 77 ± 15 nM) to SME and was selected to construct a GO-based fluorescent biosensor for real milk sample detection. Under optimal conditions, the single fluorescent aptasensor had a wide linear range (R2 was 0.997) from 7 to 336 ng/ml and a low detection limit of 3.35 ng/ml that was calculated with a 3SD/slope. The single fluorescent method was also validated using SME-fortified milk samples, showing average recoveries ranging from 99.01% to 104.60% with a relative standard deviation of less than 3.88%. These results demonstrate that this novel aptamer sensor provides an opportunity for sensitive, convenient, and accurate detection of SME residues in milk.
客户采用G-SA链霉亲和素磁珠偶联核酸适配体发表SCI论文2篇
He, Y., et al. Selected ssDNA aptamers–graphene oxide‐based fluorescent biosensor to detect sulfameter in milk, Luminescence 2023, 38(5), 518. https://doi.org/10.1002/bio.4473 (SA磁珠偶联适配体)
Selected ssDNA aptamers–graphene oxide-based fluorescent biosensor to detect sulfameter in milk
选定基于ssDNA适配体-氧化石墨烯的荧光生物传感器用于检测牛奶中的磺胺对甲氧嘧啶
Jinru Zhou, et al. A ratiometric fluorescent aptasensor based on EXPAR to detect shellfish tropomyosin in food system, Food Control, Volume 144, 2023, 109380,
https://doi.org/10.1016/j.foodcont.2022.109380. (SA磁珠偶联适配体)
A ratiometric fluorescent aptasensor based on EXPAR to detect shellfish tropomyosin in food system
摘要
贝类过敏是一个关键的公共卫生问题,因此迫切需要一种准确、简单和可靠的方法来量化复杂食物系统中的贝类过敏原。原肌球蛋白(TM)被称为贝类的主要过敏原。本文开发了一种以TM特异性适配体为识别探针的新型开关转换比例荧光生物传感器,用于检测复杂食品系统中的TM。所提出的适体传感器对食品中TM的定量表现出良好的准确性、稳定性和选择性。此外,使用七种不同的贝类样品验证了该适体传感器在复杂食品样品中的适用性。因此,这种比例式荧光适体传感器能够准确检测食品中TM痕量的存在,为过敏原标签监督提供技术支持。
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