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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 >Short communication Novel electrochemical sensing platform based on magnetic field-induced self-assembly of Fe_3O_4@Polyaniline nanoparticles for clinical detection of creatinine
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Short communication Novel electrochemical sensing platform based on magnetic field-induced self-assembly of Fe_3O_4@Polyaniline nanoparticles for clinical detection of creatinine

机译:短途通信基于Fe_3O_4 @ Polyaniline纳米粒子的磁场诱导自组装的新型电化学传感平台,用于肌酐的临床检测

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摘要

A novel electrochemical sensing platform based on magnetic field-induced self-assembly of Fe_3O_4@ Polyaniline nanoparticles (Fe_3O_4@PANI NPs) has been for the first time fabricated for the sensitive detection of creatinine in biological fluids. The template molecule, creatinine, was self-assembled on the surface of Fe_3O_4@PANI NPs together with the functional monomer aniline by the formation of N-H hydrogen bonds. After pre-assembled, through the magnetic-induction of the magnetic glassy carbon electrode(MGCE), the ordered structure of molecularly imprinted polymers (MIPs) were established by the electropolymerization and assembled on the surface of MGCE with the help of magnetic fields by a simple one-step approach. The structural controllability of the MIPs film established by magnetic field- induced self-assembly was further studied. The stable and hydrophilic Fe_3O_4@PANI can not only provide available functionalized sites with which the template molecule creatinine can form hydrogen bond by the abundant amino groups in PANI matrix, but also afford a promoting pathway for electron transfer. The as-prepared molecularly imprinted electrochemical sensor (MIES) shows good stability and reproducibility for the determination of creatinine with the detection limit reached 0.35 nmol L~(-1) (S/ N=3). In addition, the highly sensitive and selective MIES has been successfully used for the clinical determination of creatinine in human plasma and urine samples. The average recoveries were 90.8- 104.9% with RSD lower than 2.7%.
机译:基于磁场诱导的Fe_3O_4 @聚苯胺纳米粒子(Fe_3O_4 @ PANI NPs)的自组装的新型电化学传感平台已经首次被制造出来,用于灵敏地检测生物流体中的肌酐。模板分子肌酐通过形成N-H氢键与功能性单体苯胺一起自组装在Fe_3O_4 @ PANI NPs的表面上。预组装后,通过磁性玻碳电极(MGCE)的磁感应,通过电聚合建立分子印迹聚合物(MIP)的有序结构,并借助磁场通过磁场将其组装在MGCE的表面上。简单的一步式方法。进一步研究了磁场诱导自组装建立的MIPs薄膜的结构可控性。稳定且亲水的Fe_3O_4 @ PANI不仅可以提供可用的官能化位点,模板分子肌酸酐可以利用这些官能化位点通过PANI基质中的大量氨基形成氢键,而且还提供了促进电子转移的途径。制备的分子印迹电化学传感器(MIES)在测定肌酐的检测限达到0.35 nmol L〜(-1)(S / N = 3)时显示出良好的稳定性和可重复性。此外,高灵敏度和选择性的MIES已成功用于临床测定人血浆和尿液样本中的肌酐。平均回收率为90.8-104.9%,RSD低于2.7%。

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