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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 >Construction of Ce-MOF@COF hybrid nanostructure: Label-free aptasensor for the ultrasensitive detection of oxytetracycline residues in aqueous solution environments
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Construction of Ce-MOF@COF hybrid nanostructure: Label-free aptasensor for the ultrasensitive detection of oxytetracycline residues in aqueous solution environments

机译:CE-MOF @ COF杂交纳米结构的构建:无溶血素残留在水溶液环境中的无敏感检测的无标记Aptasensor

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Porous organic framework (COP) nanomaterials have drawn increasing attention and showed promising potential in the applications of various fields. Nevertheless, its applications in biosensing or biomedical fields are still in the early stage. In this work, we designed and synthesized a series of nanohybrids of COF and Ce-based metal organic framework (Ce-MOF) for the first time as label-free bioplatforms for a sensitive electrochemical aptasensor to detect oxytetracycline (OTC). A novel kinds of Ce-MOF@COF hybrids were prepared by adding different dosages of COP, into the preparation system of Ce-MOF, for which COF was synthesized using melamine and cyanutic acidmonomers through polycondensation (represented by MCA), Basic characterizations revealed that Ce-MOF@MCA nanohybrids not only remained their orignal crystal and chemical structure and features, such as different Ce species containing in Ce-MOF (Ce3+ and Ce4+), various functional amino-groups of MCA, and individual frameworks, but also showed a large specific surface area and interpenetrated morphologies. As a result, the Ce-MOF@MCA hybrid with high content of MCA exhibited high bioaffmity toward the OTC-targeted aptamer, further leading to the incremental detection effect for OTC detection. Among different hybrid-based aptasensors, the Ce-MOF@MCA-based one with an MCA dosage of 500 mg exhibited the lowest limit of detection at 17.4 fg mL(-1) within a wider linearity of the OTC concentration within 0.1-0.5 ng mL(-1), Additionally, the fabricated aptasensor displayed excellent analytical performance with great reproducibility, high selectivity and stability, and acceptable applicability for detecting OTC in various aqueous solutions, including milk, wastewater, and urine samples. This new Ce-MOF@MCA hybrid will become an excellent aptasensors platform for detecting various analytes, such as antibiotics, heavy metal ions, or cancer markers, and it have shown the promissing application potentials in the fields o
机译:多孔有机骨架(COP)纳米材料吸引了越来越长的关注,并且在各种领域的应用中表现出有希望的潜力。尽管如此,它在生物体传感或生物医学领域的应用仍在早期。在这项工作中,我们首次设计并合成了一系列COF和基于CE基金属有机骨架(CE-MOF)作为无标记的Bioplatforms,用于检测催产素(OTC)。通过将不同剂量的COP,进入CE-MOF的制备系统来制备一种新型CE-MOF @ COF杂种,通过缩聚(由MCA表示)合成COF和氰基酸铵合成的COF,基本表征显示CE-MOF @ MCA纳米冬青不仅仍然保持了它们的ORIGNAL晶体和化学结构和特征,例如含有CE-MOF(CE3 +和CE4 +)的不同CE物种,MCA各种功能氨基和个体框架,而且还显示出一个大的比表面积和渗入形态。结果,具有高含量MCA的CE-MOF @ MCA杂种朝向OTC靶向适体的高生物处理,进一步导致OTC检测的增量检测效果。在不同的杂交的Aptasensors中,具有500mg的MCA剂量的CE-MOF @ MCA-1在0.1-0.5 ng内的OTC浓度的更宽线性度内显示出在17.4 fg ml(-1)的最低检测限。另外,制造的Aptasensor的ML(-1)表现出优异的分析性能,具有很强的再现性,高选择性和稳定性,以及用于检测各种水溶液中的OTC的可接受适用性,包括牛奶,废水和尿液样本。这种新的CE-MOF @ MCA混合动力车将成为检测各种分析物,例如抗生素,重金属离子或癌症标记的优秀Aptasensors平台,并且它已经显示了田间o的概念应用潜力o

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