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Biomedical subjects

Jinqing Kan

Publications and source records attributed to Jinqing Kan.

2 recordsLinked to original sources

A noninterference polypyrrole glucose biosensor.

In order to eliminate the interference of impurities, such as ascorbic acid, a noninterference polypyrrole glucose biosensor was constructed with a four-electrode cell consisting of a polypyrrole film electrode, a polypyrrole-glucose oxidase electrode, a counter electrode and a reference electrode. The pure catalytic current of glucose oxidase (GOD) can be obtained from the difference between response currents of two working electrodes with and without GOD. The effects of potential, pH and temperature on analytical performance of the glucose biosensor were discussed. The optimum pH and apparent activation energy of enzyme-catalyzed reaction are 5.5 and 25 kJ mol(-1), respectively. The response current of the biosensor increases linearly with the increasing glucose concentration from 0.005 to 20.0 mmol dm(-3). The results show the glucose biosensor with under 2% of relative deviation has good ability of anti-interference. The glucose biosensor was also characterized with FT-IR and UV-vis spectra.

Biosensing Techniques↗

Polyaniline-uricase biosensor prepared with template process.

Polyaniline (PANI) uricase biosensor prepared with template process is reported first in this paper. The fabrication process is as follows. Firstly, a PANI-uricase electrode is obtained using one-step process. Secondly, the electrode is hydrolyzed in 6.0 mol/dm(3) hydrochloric acid solution to remove the uricase that may be affected by aniline monomer from PANI film. Finally, active uricase is immobilized into the PANI film based on the principle of the doping and undoping of the conducting polymer and a PANI-uricase biosensor is obtained. Some factors that affect response current are studied, such as temperature, pH, potential and substrate concentration. The determination of biosensors indicates that the response current of the biosensor prepared by template process decreases only by about 18% for 60 days, but that prepared by two-step process decreases by approximately 39% for 40 h. The uricase in PANI-uricase biosensor prepared by template process mainly interacts with the nitrogen linked to the quinoid ring. The biosensor is characterized with FTIR, UV-Vis and SEM for the first time.

Adsorption↗