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Glucose‐β‐CD interaction assisted ACN field‐amplified sample stacking in CZE for determination of trace amlodipine in beagle dog plasma
Authors:Ji Li  You Li  Wenting Zhang  Zhao Chen  Guorong Fan
Affiliation:1. Department of Pharmaceutical Analysis, School of Pharmacy, Second Military Medical University, , Shanghai, P.R. China;2. Shanghai Key Laboratory for Pharmaceutical Metabolite Research, , Shanghai, P.R. China;3. College of Food Science & Technology, Shanghai Ocean University, , Shanghai, China
Abstract:A simple, sensitive and low‐cost method using CE coupled with glucose‐β‐CD interaction assisted ACN stacking technique has been developed for quantification of trace amlodipine in dog plasma. The plasma samples were extracted with methyl tert‐butyl ether. The separation was performed at 25°C in a 31.2 cm × 75 μm fused‐silica capillary with an applied voltage of 15 kV. The BGE was composed of 6.25 mM borate/25 mM phosphate (pH 2.5) and 5 mg/mL glucose‐β‐CD. The detection wavelength was 200 nm. Because CD could diminish the interaction between drugs and matrix, and derivation groups of CD play an important role in separation performance, the effects of β‐CD, and its derivatives on the separation were studied at several concentrations (0, 2.5, 5.0, 10.0 mg/mL). In this study, organic solvent field‐amplified sample stacking technique in combination with glucose‐β‐CD enhanced the sensitivity about 60–70 folds and glucose‐β‐CD could effectively improve the peak shape. All the validation data, such as accuracy, precision extraction recovery, and stability, were within the required limits. The calibration curve was linear for amlodipine from 1 to 200 ng/mL. The method developed was successfully applied to the pharmacokinetic studies of amlodipine besylate in beagle dogs.
Keywords:ACN field‐amplified sample stacking  Amlodipine besylate  CD  CZE  Plasma
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