Xinyue Yin, Qi Pu, Chumeng Wang, Yuhong Xiang, Nengsheng Ye
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引用次数: 0
摘要
卡那霉素(KANA)在治疗细菌感染方面发挥着重要作用,并被广泛用于畜牧业。然而,过度使用卡那霉素会导致动物源性食品中出现抗生素残留。食品安全急需 KANA 的检测方法。大多数已开发的检测 KANA 的荧光适配体传感器都使用亲代适配体(kana-Apt)作为识别单元。然而,过多的碱基容易形成二级结构,导致高背景或非特异性信号。本研究开发了基于一个(kana1-Apt)和两个(kana1/kana2-Apt)分裂片段的两种荧光传感器,用于检测 KANA。kana1-Apt/ThT 系统和 kana1/kana2-Apt/ThT 系统的检测限分别为 4.88 nM 和 4.53 nM。此外,在检测牛奶中的 KANA 时,kana1-Apt/ThT 系统和 kana1/kana2-Apt/ThT 系统也获得了令人满意的回收率,分别为 97.6%-104.5% 和 98.4%-105.9%。此外,结果表明 kana1-Apt 片段在识别中起着关键作用。总之,本研究的结果提供了一种基于拆分适配体的分子检测新策略。
Label-free fluorescence displacement sensors based on split aptamers and Thioflavin T for the rapid and sensitive detection of kanamycin in milk.
Kanamycin (KANA) plays a key role in the treatment of bacterial infections and has been widely used in animal husbandry. However, its overuse causes antibiotic residues in animal-derived foods. Determination methods for KANA are urgently needed for food safety. Most of the developed fluorescent aptamer sensors for detecting KANA use parental aptamer (kana-Apt) as recognition unit. However, excessive bases tend to form secondary structures and lead to high background or nonspecific signals. In this study, two fluorescent sensors based on one (kana1-Apt) and two (kana1/kana2-Apt) split fragments were developed for KANA detection. The LODs of the kana1-Apt/ThT system and kana1/kana2-Apt/ThT systems were 4.88 nM and 4.53 nM, respectively. In addition, satisfactory recoveries of the kana1-Apt/ThT system and kana1/kana2-Apt/ThT system were obtained in the detection of KANA in milk, which were 97.6%-104.5% and 98.4%-105.9%, respectively. Moreover, the results indicated that the kana1-Apt fragment plays a critical role in recognition. In conclusion, the results of the present study provide a novel strategy for molecular detection based on split aptamers.
期刊介绍:
Food Additives & Contaminants: Part A publishes original research papers and critical reviews covering analytical methodology, occurrence, persistence, safety evaluation, detoxification and regulatory control of natural and man-made additives and contaminants in the food and animal feed chain. Papers are published in the areas of food additives including flavourings, pesticide and veterinary drug residues, environmental contaminants, plant toxins, mycotoxins, marine biotoxins, trace elements, migration from food packaging, food process contaminants, adulteration, authenticity and allergenicity of foods. Papers are published on animal feed where residues and contaminants can give rise to food safety concerns. Contributions cover chemistry, biochemistry and bioavailability of these substances, factors affecting levels during production, processing, packaging and storage; the development of novel foods and processes; exposure and risk assessment.