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1.
Acta Pharmaceutica Sinica ; (12): 1140-1144, 2009.
Article in Chinese | WPRIM | ID: wpr-344042

ABSTRACT

The paper is to report the development of a high-performance liquid chromatographic/tandem mass spectrometry (HPLC-MS/MS) method for the determination of icaritin (ICT) in rat plasma. After precipitated with acetonitrile from the plasma, ICT was isolated chromatographically on a Dikma C18 column. The mobile phase consisted of acetonitrile-water-acetic acid (72 : 28 : 1.5, v/v/v). Electrospray ionization (ESI) source was applied and operated in the positive ion mode. Multiple reaction monitoring (MRM) mode with the transitions of m/z 387 --> m/z 313 and m/z 331 --> m/z 315 were used to quantify ICT and the internal standard, respectively. The linear calibration curve was obtained in the concentration range of 2.5-1,000 ng x mL(-1). The lower limit of quantification was 2.5 ng x mL(-1). The inter- and intra-day precision (RSD) were less than 9.63%, and the accuracy (relative error) was within +/-7.42%. The method was proved to be suitable for the pharmacokinetics of ICT, which offers advantages of high sensitivity and selectivity.


Subject(s)
Animals , Female , Male , Rats , Administration, Oral , Chromatography, High Pressure Liquid , Methods , Epimedium , Chemistry , Flavonoids , Blood , Pharmacokinetics , Plants, Medicinal , Chemistry , Rats, Wistar , Reproducibility of Results , Sensitivity and Specificity , Spectrometry, Mass, Electrospray Ionization , Methods , Tandem Mass Spectrometry , Methods
2.
Journal of Zhejiang University. Science. B ; (12): 111-115, 2007.
Article in English | WPRIM | ID: wpr-309028

ABSTRACT

Radiotracer techniques were employed to characterize (65)Zn adsorption and desorption in root-cell-wall of hyperaccumulating ecotype (HE) and non-hyperaccumulating ecotype (NHE) species of Sedum alfredii Hance. The results indicated that at the end of a 30 min short time radioisotope loading period, comparable amounts of (65)Zn were accumulated in the roots of the two ecotypes Sedum alfredii, whereas 2.1-fold more (65)Zn remains in NHE root after 45-min desorption. At the end of 60 min uptake period, no difference of (65)Zn accumulation was observed in undesorbed root-cell-wall of Sedum alfredii. However, 3.0-fold more (65)Zn accumulated in desorbed root-cell-wall of NHE. Zn(2+) binding in root-cell-wall preparations of NHE was greater than that in HE under high Zn(2+) concentration. All these results suggested that root-cell-wall of the two ecotypes Sedum alfredii had the same ability to adsorb Zn(2+), whereas the desorption characteristics were different, and with most of (65)Zn binding on root of HE being available for loading into the xylem, as a result, more (65)Zn was translocated to the shoot.


Subject(s)
Adsorption , Biodegradation, Environmental , Cells, Cultured , Kinetics , Metabolic Clearance Rate , Plant Roots , Cell Biology , Metabolism , Sedum , Cell Biology , Metabolism , Zinc , Pharmacokinetics
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