Article

Development and validation of a UPLC-MS/MS method for quantification of SKLB010, an investigational anti-inflammatory compound, and its application to pharmacokinetic studies in beagle dogs.

State Key Laboratory of Biotherapy and Cancer Center, West China Hospital, West China Medical School, Sichuan University, Chengdu, China.
Journal of pharmaceutical and biomedical analysis (impact factor: 2.45). 05/2011; 56(2):366-72. DOI:10.1016/j.jpba.2011.05.031 pp.366-72
Source: PubMed

ABSTRACT SKLB010 is currently under development as a potential therapeutic agent for the treatment of acute hepatitis and rheumatoid arthritis. The purpose of this paper was to investigate the pre-clinical pharmacokinetics of SKLB010 in beagle dogs. An ultra performance liquid chromatographic tandem mass spectroscopy (UPLC-MS/MS) method was developed and validated for the quantitative determination of SKLB010 in dog plasma, using rosiglitazone as the internal standard (I.S.). Plasma samples were prepared by a simple solid phase extraction (SPE) method. The analyte and internal standard were separated by an Acquity UPLC BEH C18 (2.1 mm × 50 mm) column with a mobile phase of methanol-water (80/20, v/v) over 2 min. Detection was based on the multiple reaction monitoring with the precursor-to-product ion transitions m/z 234.10→147.92 (SKLB010) and m/z 356.15→150.00 (I.S.). The method was validated according to FDA guidelines on bio-analytical method validation. The selectivity, sensitivity, linearity, accuracy, precision, extraction recovery, ion suppression and stability were within the acceptable ranges. The method described above was successfully applied to reveal the single- and multi-pharmacokinetic profiles of SKLB010 in beagle dogs and should be extendable to pharmacokinetic studies in other species as well.

0 0
 · 
0 Bookmarks
 · 
49 Views

Keywords

2 min
 
acceptable ranges
 
acute hepatitis
 
beagle dogs
 
bio-analytical method validation
 
dog plasma
 
extraction recovery
 
FDA guidelines
 
I.S.). Plasma samples
 
internal standard
 
ion suppression
 
linearity
 
multi-pharmacokinetic profiles
 
multiple reaction monitoring
 
potential therapeutic agent
 
pre-clinical pharmacokinetics
 
quantitative determination
 
simple solid phase extraction
 
ultra performance liquid chromatographic tandem mass spectroscopy
 
UPLC-MS/MS
 

Xia Ye