Roupe Kathryn, Teng Xiao Wei, Fu Xing, Meadows Gary G, Davies Neal M
Pharmacology and Toxicology Graduate Program, College of Pharmacy, Washington State University Pullman, WA 99164-6534, USA.
Biomed Chromatogr. 2004 Oct;18(8):486-91. doi: 10.1002/bmc.342.
A method of analysis of piceatannol in biological fluids is necessary to study the kinetics of in vitro and in vivo metabolism and determine its concentration in foodstuffs. A novel and simple high-performance liquid chromatographic method was developed for simultaneous determination of piceatannol and products of its metabolism in rat serum and liver microsomes. Serum, or microsomes (0.1 mL), were precipitated with acetonitrile after addition of the internal standard, 4-methylumbelliferone. Separation was achieved on a phenomenex C(18) column (250 x 4.6 mm i.d., 5 microm) equipped with a phenomenex C(18) (4 x 3.0 mm i.d., 5 microm) guardcolumn with fluorescence excitation at 320 nm and emission at 420 nm. Separation was also possible with UV detection at 310 nm. The fluorescent calibration curves were linear ranging from 0.05 to 100 microg/mL. The mean extraction efficiency was >95%. Precision of the assay was <10% (coefficient of variation), and was within 10% at the limit of quantitation (0.05 ng/mL). Bias of the assay was lower than 7%. The limit of detection was 50 ng/mL for a 0.1 mL sample. The assay was applied successfully to the in vitro kinetic study of metabolism of piceatannol in rat liver microsomes and pharmacokinetics in rats. Three metabolites of piceatannol have been identified. .
为研究体外和体内代谢动力学并确定其在食品中的浓度,需要一种分析生物体液中白皮杉醇的方法。开发了一种新颖且简单的高效液相色谱法,用于同时测定大鼠血清和肝微粒体中白皮杉醇及其代谢产物。加入内标4-甲基伞形酮后,用乙腈沉淀血清或微粒体(0.1 mL)。在配备phenomenex C(18) 保护柱(4 x 3.0 mm内径,5 µm)的phenomenex C(18) 柱(250 x 4.6 mm内径,5 µm)上进行分离,荧光激发波长为320 nm,发射波长为420 nm。也可以在310 nm处进行紫外检测。荧光校准曲线在0.05至100 µg/mL范围内呈线性。平均提取效率>95%。该测定的精密度<10%(变异系数),在定量限(0.05 ng/mL)时在10%以内。该测定的偏差低于7%。对于0.1 mL样品,检测限为50 ng/mL。该方法成功应用于大鼠肝微粒体中白皮杉醇代谢的体外动力学研究和大鼠体内的药代动力学研究。已鉴定出白皮杉醇的三种代谢产物。