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基于环己烷六酮-美仑共价有机框架的电化学适配体传感器测定 VEGF

Determination of VEGF using impedimetric aptasensor based on cyclohexanehexone-melem covalent-organic framework.

机构信息

Department of Orthopedics, The First Affiliated Hospital of Zhengzhou University, No. 1, Jianshe East Road, Zhengzhou, 450052, People's Republic of China.

School of Materials and Chemical Engineering, Zhengzhou University of Light Industry, No. 136, Science Avenue, Zhengzhou, 450001, People's Republic of China.

出版信息

Mikrochim Acta. 2021 May 28;188(6):211. doi: 10.1007/s00604-021-04843-9.

Abstract

A porous nanostructured covalent-organic framework (COF) has been prepared via condensation polymerization between the two building blocks of melem and hexaketocyclohexane octahydrate (represented as M-HO-COF). Basic characterizations revealed that the M-HO-COF network was composed of C=N and highly conjugated aromatic moieties, along with a high surface area, large pore size, remarkable electrochemical activity, and strong bioaffinity toward aptamer strands. Given that the vascular endothelial growth factor 165 (VEGF)-targeted aptamer was stably anchored over M-HO-COF via weak intermolecular forces, the prepared M-HO-COF network exhibited great potential as a sensitive and selective platform for the impedimetric VEGF aptasensor. Consequently, the M-HO-COF-based aptasensor displayed an ultralow limit of detection of 0.18 fg mL within a wide range of VEGF concentrations from 1 fg mL to 10 ng mL. Considering its strong fluorescence performance, excellent biocompatibility, and small nanosheet-like structure, the obtained COF-based aptasensor showed a superior sensing performance and regeneration capability after 7 regeneration cycles for the detection of osteosarcoma cells (K7M2 cells), which overexpressed with VEGF, with a low limit of detection of 49 cells mL. For real f human serum samples, the obtained COF-based aptasensor exhibits acceptable mean apparent recoveries of 97.41% with a relative standard deviation of 4.60%. Furthermore, the proposed bifunctional aptasensor for the detection VEGF and K7M2 cells exhibited good stability, appropriate selectivity toward other biomarkers or normal cells, acceptable reproducibility, and applicability. A bifunctional sensing system was constructed for detecting osteosarcoma cells (K7M2 cells) and VEGF based on the a porous nanostructured covalent-organic framework (M-HO-COF) via condensation polymerization between melem and hexaketocyclohexane octahydrate. The M-HO-COF-based aptasensor displayed ultralow detection limit of 0.18 fg mL toward VEGF and 49 cell mL for K7M2 cells with high selectivity, acceptable reproducibility, and good stability.

摘要

一种多孔纳米结构的共价有机框架(COF)是通过亚甲基和六亚甲基环六亚水合物(表示为 M-HO-COF)之间的缩合聚合制备的。基本特性表明,M-HO-COF 网络由 C=N 和高度共轭的芳族部分组成,具有高表面积、大孔径、显著的电化学活性和对适体链的强生物亲和力。由于靶向血管内皮生长因子 165(VEGF)的适体通过弱分子间力稳定地锚定在 M-HO-COF 上,因此制备的 M-HO-COF 网络作为灵敏和选择性的基于阻抗的 VEGF 适体传感器平台具有很大的潜力。因此,基于 M-HO-COF 的适体传感器在 VEGF 浓度从 1 fg/mL 到 10 ng/mL 的宽范围内显示出超低的检测限为 0.18 fg/mL。考虑到其强荧光性能、优异的生物相容性和小纳米片状结构,在用于检测过表达 VEGF 的骨肉瘤细胞(K7M2 细胞)的 7 次再生循环后,获得的基于 COF 的适体传感器表现出优异的传感性能和再生能力,检测限低至 49 个细胞/mL。对于真实的人血清样本,基于 COF 的适体传感器的平均表观回收率为 97.41%,相对标准偏差为 4.60%。此外,用于检测 VEGF 和 K7M2 细胞的这种双功能适体传感器表现出良好的稳定性、对其他生物标志物或正常细胞的适当选择性、可接受的重现性和适用性。通过 melem 和六亚甲基环六亚水合物之间的缩合聚合,构建了一种基于多孔纳米结构的共价有机框架(M-HO-COF)的用于检测骨肉瘤细胞(K7M2 细胞)和 VEGF 的双功能传感系统。基于 M-HO-COF 的适体传感器对 VEGF 的检测限低至 0.18 fg/mL,对 K7M2 细胞的检测限低至 49 个细胞/mL,具有高选择性、可接受的重现性和良好的稳定性。

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