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Ce-MOF@COF 杂化纳米结构的构建:用于在水溶液环境中超灵敏检测土霉素残留的无标记适体传感器。

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

机构信息

Department of Orthopedics, The First Affiliated Hospital of Zhengzhou University, No. 1, Jianshe East Road, Zhengzhou 450052, PR China.

Henan Provincial Key Laboratory of Surface and Interface Science, Zhengzhou University of Light Industry, No. 136, Science Avenue, Zhengzhou 450001, PR China.

出版信息

Biosens Bioelectron. 2019 Feb 15;127:92-100. doi: 10.1016/j.bios.2018.12.024. Epub 2018 Dec 18.

Abstract

Porous organic framework (COF) 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 COF, 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 (Ce and Ce), 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 bioaffinity 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 within a wider linearity of the OTC concentration within 0.1-0.5 ng mL. 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 of biomedicine, food safety and environmental monitoring.

摘要

多孔有机骨架(COF)纳米材料在各个领域的应用中引起了越来越多的关注,并显示出了巨大的潜力。然而,其在生物传感或生物医学领域的应用仍处于早期阶段。在这项工作中,我们首次设计并合成了一系列 COF 和基于铈的金属有机骨架(Ce-MOF)的纳米杂化材料,作为无标记的生物平台,用于构建一种灵敏的电化学适体传感器,以检测土霉素(OTC)。通过在 Ce-MOF 的制备体系中加入不同剂量的 COF,制备了一种新型的 Ce-MOF@COF 杂化材料,其中 COF 是由三聚氰胺和氰尿酸单体通过缩聚反应合成的(用 MCA 表示)。基本特性表明,Ce-MOF@MCA 纳米杂化材料不仅保留了其原始的晶体和化学结构及特征,如 Ce-MOF 中含有的不同 Ce 物种(Ce 和 Ce)、MCA 中的各种功能氨基基团以及各自的骨架,而且还表现出较大的比表面积和互穿形貌。结果,具有高 MCA 含量的 Ce-MOF@MCA 杂化材料对 OTC 靶向适体表现出较高的生物亲和力,从而进一步提高了 OTC 检测的增量检测效果。在不同的基于杂化材料的适体传感器中,Ce-MOF@MCA 基适体传感器在 MCA 用量为 500mg 时,对 OTC 的检测下限为 17.4fg/mL,OTC 浓度在 0.1-0.5ng/mL 范围内具有较宽的线性范围。此外,所构建的适体传感器具有出色的分析性能,重现性好、选择性高、稳定性好,并且可以接受地用于检测各种水溶液中的 OTC,包括牛奶、废水和尿液样品。这种新型的 Ce-MOF@MCA 杂化材料将成为一种优秀的适体传感器平台,可用于检测各种分析物,如抗生素、重金属离子或癌症标志物,并且在生物医药、食品安全和环境监测等领域显示出了巨大的应用潜力。

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