4.6 Article

Nanochannel Array on Electrochemically Polarized Screen Printed Carbon Electrode for Rapid and Sensitive Electrochemical Determination of Clozapine in Human Whole Blood

期刊

MOLECULES
卷 27, 期 9, 页码 -

出版社

MDPI
DOI: 10.3390/molecules27092739

关键词

nanochannel array; screen-printed carbon electrode; electrochemical polarization; electrochemical determination of clozapine; human blood

资金

  1. National Natural Science Foundation of China [21904117]
  2. Construction Fund of Key Medical Disciplines of Hangzhou [OO20200093]
  3. Zhejiang Provincial Natural Science Foundation of China [LY20B050007]

向作者/读者索取更多资源

This study demonstrates a rapid and highly sensitive determination method for clozapine using a miniaturized, integrated, disposable electrochemical sensing platform with nanochannel arrays. By utilizing simple electrochemical polarization and electrochemically assisted self-assembly, the electrochemical performance of the carbon electrodes is enhanced, and a vertically ordered mesoporous silica nanomembrane film is formed on the surface. The developed sensor allows for direct and sensitive determination of clozapine in human blood, with dual signal amplification.
Rapid and highly sensitive determination of clozapine (CLZ), a psychotropic drug for the treatment of refractory schizophrenia, in patients is of great significance to reduce the risk of disease recurrence. However, direct electroanalysis of CLZ in human whole blood remains a great challenge owing to the remarkable fouling that occurs in a complex matrix. In this work, a miniaturized, integrated, disposable electrochemical sensing platform based on the integration of nanochannel arrays on the surface of screen-printed carbon electrodes (SPCE) is demonstrated. The device achieves high determination sensitivity while also offering the electrode anti-fouling and anti-interference capabilities. To enhance the electrochemical performance of SPCE, simple electrochemical polarization including anodic oxidation and cathodic reduction is applied to pretreat SPCE. The electrochemically polarized SPCE (p-SPCE) exhibits an enhanced electrochemical peak signal toward CLZ compared with bare SPCE. An electrochemically assisted self-assembly method (EASA) is utilized to conveniently electrodeposit a vertically ordered mesoporous silica nanomembrane film (VMSF) on the p-SPCE, which could further enrich CLZ through electrostatic interactions. Owing to the dual signal amplification based on the p-SPCE and VMSF nanochannels, the developed VMSF/SPCE sensor enables determination of CLZ in the range from 50 nM to 20 mu M with a low limit of detection (LOD) of 28 nM (S/N = 3). Combined with the excellent anti-fouling and anti-interference abilities of VMSF, direct and sensitive determination of CLZ in human blood is also achieved.

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