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Characterization and Inkjet Printing of an RNA Aptamer for Paper-Based Biosensing of Ciprofloxacin

机译:用于纸纸纸体的RNA适体的特征和喷墨印刷 - CiProxacin的生物传感

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摘要

The excessive use of antibiotics in food-producing animals causes a steady rise of multiple antibiotic resistance in foodborne bacteria. Next to sulfonamides, the most common antibiotics groups are fluoroquinolones, aminoglycosides, and ß-lactams. Therefore, there is a need for a quick, efficient, and low-cost detection procedure for antibiotics. In this study, we propose an inkjet-printed aptamer-based biosensor developed for the detection of the fluoroquinolone ciprofloxacin. Due to their extraordinary high affinity and specificity, aptamers are already widely used in various applications. Here we present a ciprofloxacin-binding RNA aptamer developed by systematic evolution of ligands by exponential enrichment (SELEX). We characterized the secondary structure of the aptamer and determined the KD to 36 nM that allow detection of antibiotic contamination in a relevant range. We demonstrate that RNA aptamers can be inkjet-printed, dried, and resolved while keeping their functionality consistently intact. With this proof of concept, we are paving the way for a potential range of additional aptamer-based, printable biosensors.
机译:过量使用食品动物中的抗生素会导致食物载体细菌中多种抗生素抗性的稳定上升。在磺胺酰胺旁边,最常见的抗生素组是氟喹诺酮,氨基糖苷和β-内酰胺。因此,需要一种快速,有效和低成本的抗生素检测程序。在这项研究中,我们提出了一种用于检测氟喹诺酮环丙沙星的喷墨印刷的基于适体的生物传感器。由于其非凡的高亲和力和特异性,适体已经广泛用于各种应用。在这里,我们介绍了通过指数富集(SELEX)的配体的系统演化开发的环丙沙星结合RNA适体。我们表征了适体的二级结构,并确定了允许在相关范围内检测抗生素污染的KD至36nm。我们证明RNA适体可以是喷墨印刷的,干燥和解决,同时保持其功能一致完整。通过这种概念证明,我们正在为潜在的基于适体,可印刷的生物传感器铺平潜在范围的方式。

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