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Covalent organic framework-based electrochemical aptasensors for the ultrasensitive detection of antibiotics

机译:基于共价有机框架的电化学Aptasensors,用于超细抗生素检测

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摘要

We designed and synthesized a novel covalent organic framework (COF) by condensation polymerization of 1,3,6,8-tetrakis(4-formylphenyl)pyrene and melamine through imine bonds (represented by Py-M-COF). The basic characterizations revealed that the Py-M-COF not only exhibited an extended pi-conjugation framework, a large specific surface area (495.5 m(2) g(-1)), big pore cavities, and nanosheet-like structure but also possessed rich functional groups, such as (CC)-C-center dot, (CN)-N-center dot, (CO)-O-center dot and NH2. These features endowed the Py-M-COF with high charge carrier mobility, further improving the strong immobilization of DNA aptamer strands via pi-pi stacking interaction and electrostatic interaction. As such, the Py-M-COF-based electrochemical aptasensors are ultrasensitive in detecting different antibiotics, including enrofloxacin (ENR) and ampicillin (AMP), yielding extremely low detection limits of 6.07 and 0.04 fg mL(-1) (S/N = 3) toward ENR and AMP, respectively, along with other excellent sensing performances. This biosensing platform based on Py-M-COF has potential applications for the sensitive detection of antibiotics or other analytes by replacing the corresponding aptamers.
机译:我们通过亚胺键(由Py-M-COF表示的1,3,6,8-四甲苯基)芘和三聚氰胺的缩聚来设计和合成新的共价有机骨架(COF)。基本表征揭示了Py-M-COF不仅表现出扩展的PI缀合框架,大的比表面积(495.5米(2)G(-1)),大孔腔和纳米片状结构也是如此具有富含官能团,例如(CC)-C中心点,(CN)-N中心点,(CO)-O中心点和NH2。这些特征赋予具有高电荷载流子迁移率的PY-M-COF,进一步通过PI-PI堆叠相互作用和静电相互作用进一步改善DNA适体链的强固定。因此,基于Py-M-COF的电化学Aptasensors在检测不同的抗生素时是超声敏感的,包括瑞氧氟沙星(ENR)和氨苄青霉素(AMP),产生6.07和0.04FG mL(-1)的极低检测限率(S / N)(S / N. = 3)分别朝向和放大器以及其他出色的感测性能。该基于PY-M-COF的这种生物传感平台具有通过更换相应的适体来敏感抗生素或其他分析物的潜在应用。

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