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Aptasensing of Chloramphenicol in the Presence of Its Analogues: Reaching the Maximum Residue Limit

机译:氯霉素类似物的存在:达到最大残留限量

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摘要

A novel, label-free folding induced aptamerbased electrochemical biosensor for the detection of chloramphenicol (CAP) in the presence of its analogues has been developed. CAP is a broad-spectrum antibiotic that has lost its favor due to its serious adverse toxic effects on human health. Aptamers are artificial nucleic acid ligands (ssDNA or RNA) able to specifically recognize a target such as CAP. In this article, the aptamers are fixed onto a gold electrode surface by a self-assembly approach. In the presence of CAP, the unfolded ssDNA on the electrode surface changes to a hairpin structure, bringing the target molecules close to the surface and triggering electron transfer. Detection limits were determined to be 1.6 X 10~(-9) mol L~(-1). In addition, thiamphenicol (TAP) and florfenicol (FF), antibiotics with a structure similar to CAP, did not influence the performance of the aptasensor, suggesting a good selectivity of the CAP-aptasensor. Its simplicity and low detection limit (because of the home-selected aptamers) suggest that the electrochemical aptasensor is suitable for practical use in the detection of CAP in milk samples.
机译:已经开发出一种新颖的,无标记的,可折叠的,基于适配子的电化学生物传感器,用于在氯霉素(CAP)类似物存在的情况下对其进行检测。 CAP是一种广谱抗生素,由于其对人体健康的严重不良毒性作用而受到青睐。适体是能够特异性识别靶标如CAP的人工核酸配体(ssDNA或RNA)。在本文中,适体通过自组装方法固定在金电极表面上。在CAP存在下,电极表面上未折叠的ssDNA变为发夹结构,使目标分子靠近表面并触发电子转移。检出限确定为1.6 X 10〜(-9)mol L〜(-1)。此外,结构类似于CAP的抗生素苯丙胺醇(TAP)和氟苯尼考(FF)不会影响适体传感器的性能,表明CAP适体传感器具有良好的选择性。它的简单性和低检测限(由于是自选适体)表明,电化学适体传感器适合实际用于检测牛奶样品中的CAP。

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