首页> 外文期刊>Biosensors & Bioelectronics: The International Journal for the Professional Involved with Research, Technology and Applications of Biosensers and Related Devices >Gonyautoxin 1/4 aptamers with high-affinity and high-specificity: From efficient selection to aptasensor application
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Gonyautoxin 1/4 aptamers with high-affinity and high-specificity: From efficient selection to aptasensor application

机译:具有高亲和力和高特异性的Gonyautoxin 1/4适体:从有效选择到适体传感器应用

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摘要

Gonyautoxin 1/4 (GTX1/4) are potent marine neurotoxins with significant public health impact. However, the ethical issues and technical defects associated with the currently applied detection methods for paralytic shellfish toxin GTX1/4 are pressing further studies to develop suitable alternatives in a regulatory monitoring system. This work describes the first successful selection, optimization, and characterization of an aptamer that bind with high affinity and specificity to GTX1/4. Compared to the typical MB-SELEX, GO-SELEX, an advanced screening technology, has significant advantages for small molecular aptamer development. Furthermore, we truncated GTX1/4 aptamer and obtained the aptamer core sequence with a higher K-d of 17.7 nM. The aptamer GO18-T-d was then used to construct a label-free and real-time optical BLI aptasensor for the detection of GTX1/4. The aptasensor showed a broad detection range from 0.2 to 200 ng/mL GTX1/4 (linear range from 0.2 to 90 ng/mL), with a low detection limit of 50 pg/mL. Moreover, the aptasensor exhibited a high degree of specificity for GTX1/4 and no cross reactivity to other marine toxins. The aptasensor was then applied to the detection of GTX1/4 in spiked shellfish samples and showed a good reproducibility and stability. We believe that this novel aptasensor offers a promising alternative to traditional analytical methods for the rapid detection of the marine biotoxin GTX1/4. (C) 2016 Elsevier B.V. All rights reserved.
机译:Gonyautoxin 1/4(GTX1 / 4)是有效的海洋神经毒素,对公共健康有重大影响。但是,与当前应用的麻痹性贝类毒素GTX1 / 4检测方法相关的伦理问题和技术缺陷正在推动进一步的研究,以开发监管监测系统中的合适替代品。这项工作描述了与GTX1 / 4高亲和力和特异性结合的适体的首次成功选择,优化和表征。与典型的MB-SELEX相比,GO-SELEX是一种先进的筛选技术,在开发小分子适体方面具有显着优势。此外,我们截短了GTX1 / 4适体,并获得了具有17.7nM的较高K-d的适体核心序列。然后将适体GO18-T-d用于构建用于检测GTX1 / 4的无标记实时BLI光学适体传感器。适体传感器显示出0.2至200 ng / mL GTX1 / 4的宽检测范围(0.2至90 ng / mL的线性范围),低检测限50 pg / mL。而且,适体传感器对GTX1 / 4表现出高度的特异性,并且与其他海洋毒素没有交叉反应性。然后将适体传感器用于加标贝类样品中GTX1 / 4的检测,并显示出良好的重现性和稳定性。我们相信,这种新颖的适体传感器为快速检测海洋生物毒素GTX1 / 4提供了一种有希望的替代传统分析方法的方法。 (C)2016 Elsevier B.V.保留所有权利。

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