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A reusable aptamer-based evanescent wave all-fiber biosensor for highly sensitive detection of Ochratoxin A

机译:基于可重复使用的适体的van逝波全纤维生物传感器,用于O曲霉毒素A的高灵敏度检测

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摘要

Although aptamer-based biosensors have attracted ever-increasing attentions and found potential applications in a wide range of areas, they usually adopted the assay protocol of immobilizing DNA probe (e.g., aptamer, aptamer-complementary oligonucleotides) on a solid sensing surface, making it critical and challengeable to keep the integration of nucleic acid surface during the regeneration and the restoration to its original DNA probe form after repeated uses. In order to address the issue, we report a novel aptamer-based biosensing strategy based on an evanescent wave all-fiber (EWA) platform. In a simple target capturing step using aptamer-functionalized magnetic microbeads, signal probes conjugated with streptavidin are released and further detected by a EWA biosensor via a facial dethiobiotin-streptavidin recognition. Apart from the inherent advantages of aptamer-based evanescent wave biosensors (e.g. target versatility, sensitivity, selectivity and portability), the proposed strategy exhibits a high stability and remarkable reusability over other aptasensors. Under the optimized conditions, the typical calibration curve obtained for Ochratoxin A has a detection limit of 3 nM with a linear response ranging from 6 nM to 500 nM. The dethiobiotin-streptavidin sensing surface instead of the traditional nucleic acid one can be reused for over 300 times without losing sensitivity. (C) 2014 Elsevier B.V. All rights reserved.
机译:尽管基于适体的生物传感器引起了越来越多的关注,并在广泛的领域中发现了潜在的应用,但它们通常采用将DNA探针(例如,适体,适体-互补寡核苷酸)固定在固体传感表面上的测定方案,从而使其成为现实。对于在重复使用后保持核酸表面的整合以及将其恢复为原始DNA探针形式的过程中保持核酸表面的整合至关重要。为了解决该问题,我们报告了一种基于van逝波全光纤(EWA)平台的基于适体的新型生物传感策略。在使用适体功能化的磁性微珠的简单目标捕获步骤中,与链霉亲和素缀合的信号探针被释放,并通过EWA生物传感器通过面部脱硫生物素-链霉亲和素识别进一步检测。除了基于适体的e逝波生物传感器的固有优势(例如目标多功能性,灵敏度,选择性和便携性)外,与其他适体传感器相比,所提出的策略还具有很高的稳定性和可重用性。在优化的条件下,O曲毒素A的典型校准曲线的检测极限为3 nM,线性响应范围为6 nM至500 nM。脱硫生物素-链霉亲和素传感表面代替了传统的核酸,可以重复使用300次以上而不会降低灵敏度。 (C)2014 Elsevier B.V.保留所有权利。

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