The interaction between monoamine oxidase(MAO)and substrate Kyn was characterized by affinity capillary electrophoresis.The specific interaction between them was further demonstrated by adding an inhibitor clorgiline to MAO.The results demonstrated that the relative migration time ratio(RMTR)of Kyn decreased with the increase of MAO concentration in running buffer and the chromatographic peak of Kyn migrated far from that of triethyl benzyl ammonium chloride(TEBA) gradually.However,after adding the MAO inhibitor clorgiline,it was found that the values of RMTR of Kyn increased.This showed that the active site of MAO was occupied by clorgiline and the interaction between Kyn and MAO was inhibited.The developed method can be used to characterize the specific interaction between MAO and Kyn.Compared with the traditional methods of MAO inhibitors screening,eg.spectrophotometric assay and radiochemical analysis,the presented method could provide a potential analytical tool for the screening of MAO inhibitor with the advantages of rapidness,convenience and less sample consumption.
Determination of Fluoroquinolones in Environmental Water Samples by Capillary Electrophoresis with Dispersive Liquid-Liquid Microextraction Based on Ultrasonic-assisted in-situ Formation and Solidification of Floating Deep Eutectic Solvent
Rapid and Sensitive Determination of Available Phosphorus in Soil by Capillary Electrophoresis with On-line Preconcentration and Contactless Conductivity Detection
Spectroscopic Studies on Interactions Between Human Serum Albumin and Nonivamide
Screening of α Glucosidase Inhibitors in Scutellaria Baicalensis by Liquid Chromatography-Mass Spectrometry with Microdialysis
Structural Elucidation of N-Glycans in IgG and Human Serum Glycoprotein Through the Combination of Offline Two-dimensional Chromatography and Exoglycosidase Sequencing
Related Author
No data
Related Institution
School of Environmental Science and Engineering,Suzhou University of Science and Technology
Jiangsu Key Laboratory of Environmental Science and Engineering
School of Environmental and Pharmaceutical Engineering,Taizhou Institute of Science and Technology,Nanjing University of Science and Technology
School of Chemistry,Sun Yat-sen University
Key Laboratory of Luminescence and Real-time Analysis of the Ministry of Education,School of Chemistry and Chemical Engineering,Southwest University