Lee A-Young, Ha Na-Reum, Jung In-Pil, Kim Sang-Heon, Kim A-Ru, Yoon Moon-Young
Department of Chemistry and Research Institute of Natural Sciences, Hanyang University, Seoul 04763, Republic of Korea.
Department of Chemistry and Research Institute of Natural Sciences, Hanyang University, Seoul 04763, Republic of Korea.
Anal Biochem. 2017 Aug 15;531:1-7. doi: 10.1016/j.ab.2017.05.013. Epub 2017 May 15.
Antibiotics are useful for improving the living conditions of livestock. However, residual antibiotics induce several human diseases such as food-borne illness and infection of carbapenem-resistant Enterobacteriaceae (CRE). In this study, the identification of a benzylpenicillin-specific aptamer was selected by rGO-SELEX (reduced Graphene Oxide-Systematic Evolution of Ligands by EXponential enrichment). A random ssDNA library was incubated with rGO for adsorption and eluted with benzylpenicillin. As a result of the selection process, a DNA aptamer was found that specifically bound to benzylpenicillin with high binding affinity, K = 383.4 nM, and had a low limit of detection (LOD) of 9.2 nM. The characterization of the aptamer was performed through the fluorescence recovery signal from rGO surface. In addition, detection of benzylpenicillin was performed in pretreated milk samples, and its detection accuracy was shown to be 100± 10%. This represented that BBA1 was used for fluorescence aptasensor system in real sample. Furthermore, this benzylpenicillin binding aptamer showed high specificity against other antibiotics except for ampicillin. With these advantageous characteristics, we expect that this aptamer could be applied to an on-site detection system for residual benzylpenicillin.
抗生素有助于改善牲畜的生活条件。然而,残留的抗生素会引发多种人类疾病,如食源性疾病和耐碳青霉烯类肠杆菌科细菌(CRE)感染。在本研究中,通过还原氧化石墨烯指数富集配体系统进化技术(rGO-SELEX)筛选出了一种苄青霉素特异性适配体。将随机单链DNA文库与rGO孵育以进行吸附,然后用苄青霉素洗脱。经过筛选过程,发现了一种DNA适配体,它能以高结合亲和力(K = 383.4 nM)特异性结合苄青霉素,且检测限低至9.2 nM。通过rGO表面的荧光恢复信号对该适配体进行了表征。此外,对预处理后的牛奶样品进行了苄青霉素检测,其检测准确率为100±10%。这表明BBA1可用于实际样品中的荧光适配体传感器系统。此外,除氨苄青霉素外,这种苄青霉素结合适配体对其他抗生素具有高度特异性。基于这些优势特性,我们期望这种适配体能够应用于苄青霉素残留的现场检测系统。