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A facile one-pot synthesis of polyethyleneimine functionalized graphene for the highly-sensitive and selective electrochemical impedance aptasensing of kanamycin in serum

机译:聚乙烯亚胺官能化石墨烯的容易单壶合成,用于血清中葛霉素的高敏和选择性电化学阻抗分布

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摘要

A facile one-pot synthesis method for polyethyleneimine-functionalized graphene (PEI-G) was created by employing polyethyleneimine (PEI) as both the reductive and functionalized reagent to reduce and wrap exfoliated graphene oxide (EGO) to maintain the single layer status of graphene without aggregation. Based on the fine conductivity of PEI-G and high selectivity of the aptamer specially designed for kanamycin, a novel electrochemical impedance aptasensor for the highly-sensitive and selective detection of kanamycin in serum was fabricated using PEI-G as the electrode substrate to enhance the electrochemical signal and using the aptamer as a biological recognition unit to promote the selectivity. After the specific capture of kanamycin in the sample, the proposed aptasensor exhibited a fine line response for kanamycin within the range of 10 fM to 100 pM with a detection limit of 5.2 fM. Moreover, the proposed aptasensor also displayed a good reproducibility, stability and specificity, which was suitable for the trace kanamycin analyses in a real serum sample. Therefore, this proposed electrochemical impedance aptasensing strategy opens a new insight into potential applications in the clinical diagnostic use of kanamycin.
机译:通过使用聚乙烯亚胺(PEI)作为减少和官能化试剂来减少和包裹剥落的石墨烯氧化物(EGO)以维持石墨烯的单层状态来产生用于聚乙烯亚胺官能化石墨烯(PEI-G)的化合物一罐合成方法。没有聚合。基于PEI-G和专为卡那霉素专门设计的适体的高选择性的细电导率,使用PEI-G作为电极基板制造了一种用于高敏感和选择性检测的Kanamycin的高敏感和选择性检测的新型电化学阻抗Aptasensor以增强电化学信号和使用适体作为生物识别单元以促进选择性。在样品中的特定捕获后捕获卡那霉素之后,所提出的Aptasensor在10 fm至100pm的范围内表现出kanamycin的细线响应,检测限为5.2 fm。此外,所提出的Aptasensor也显示出良好的再现性,稳定性和特异性,其适用于真正的血清样品中的痕量Kanamycin分析。因此,这一提出的电化学阻抗Aptasensing策略在临床诊断用途的临床诊断使用中开辟了新的洞察。

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