4.7 Article

A Novel Electrochemical Sensor Based on Plastic Antibodies for Vitamin D3 Detection in Real Samples

Journal

IEEE SENSORS JOURNAL
Volume 19, Issue 13, Pages 4752-4757

Publisher

IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
DOI: 10.1109/JSEN.2019.2903090

Keywords

Molecularly imprinted polymers; vitamin D; electropolymerization; electrochemical sensors; screen-printed carbon electrode (SPCE)

Funding

  1. Ardabil University of Medical Sciences

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A highly sensitive voltammetric sensor for vitamin D3 is designed and build by the electropolymerization of molecularly imprinted polymer (MIP). Vitamin D3 selective MIP is synthesized by the electropolymerization of p-phenylenediamine-resorcinol mixture on the screen-printed carbon electrode (SPCE) surface in the presence of the vitamin D3 molecules. The electropolymerization of monomers made a film deposition on electrode surface which absolutely suppressed the reduction of ferricyanide. The removal of the vitamin D3 creates the cavities which caused noticeably increased ferricyanide signal, which was again suppressed after the rebinding of vitamin D3. It was shown that the decrease of the ferricyanide peak of the MIP electrode was affected linearly by vitamin D3 concentration. Various factors, by which the response current of the electrode is mainly affected, were studied and optimized. This sensor shows a linear response range of 1 x 10(-11) -2 x 10(-9) M and lower detection limit of 1 x 10(-12 )M. The sensor was successfully applied for the detection of vitamin D3 in human plasma samples.

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