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采用高压液相色谱-二极管阵列检测器法测定人血浆中吉西他滨及其代谢产物。

Determination of gemcitabine and its metabolite in human plasma using high-pressure liquid chromatography coupled with a diode array detector.

作者信息

Lin Neng-ming, Zeng Su, Ma Sheng-lin, Fan Yun, Zhong Hai-jun, Fang Luo

机构信息

College of Pharmaceutical Sciences, Zhejiang University, Hangzhou 310031, China.

出版信息

Acta Pharmacol Sin. 2004 Dec;25(12):1584-9.

Abstract

AIM

To establish a high-pressure liquid chromatography (HPLC) method for determination of the concentration of gemcitabine (dFdC) and its metabolite (dFdU) in human plasma.

METHODS

Plasma 1.0 mL spiked with floxuridine as an internal standard was extracted with 3.0 mL of methanol-acetonitrile (v/v, 1:9). The supernatant was evaporated at 60 centigrade and the residue was reconstituted with 0.5 mL of the solution used as the mobile phase. After centrifugation, 50 microL of the supernatant was injected into the HPLC system. Separation was achieved on a C18 (4.6 mm multiply 50 mm, 5 microm) column at 25 centigrade with the flow rate of the mobile phase set to 0.8 mL/min. The compounds were detected at 268 nm. The mobile phase consisted of 40.0 mmol/L acetate ammonium buffer solution (pH 5.5) and acetonitrile (v/v, 97.5:2.5).

RESULTS

The linear range was 0.20-10.0 mg/L (r=0.9999) for dFdC and 0.50-50.0 mg/L (r=0.9999) for dFdU. The limit of detection (LOD) was 0.10 mg/L for dFdC and 0.25 mg/L for dFdU, while the limit of quantification (LOQ) was 0.20 mg/L (RSD<10 %) for dFdC and 0.50 mg/L (RSD<3 %) for dFdU. The average recovery of dFdC and dFdU by this method were 103.3 % and 98.7 %, respectively. For intra-day and inter-day, the corresponding standard deviations of the measurements of dFdC and dFdU were both less than 5.5 %.

CONCLUSION

An analytical method was established to measure the concentrations of dFdC and dFdU in human plasma and was effectively applied to the dFdC and dFdU pharmacokinetic studies of 8 Chinese patients with malignant tumors.

摘要

目的

建立一种高压液相色谱(HPLC)法,用于测定人血浆中吉西他滨(dFdC)及其代谢产物(dFdU)的浓度。

方法

向1.0 mL血浆中加入氟尿苷作为内标,用3.0 mL甲醇-乙腈(体积比,1:9)萃取。上清液在60℃蒸发,残渣用0.5 mL用作流动相的溶液复溶。离心后,取50 μL上清液注入HPLC系统。在C18柱(4.6 mm×50 mm,5 μm)上于25℃进行分离,流动相流速设定为0.8 mL/min。在268 nm处检测化合物。流动相由40.0 mmol/L醋酸铵缓冲溶液(pH 5.5)和乙腈(体积比,97.5:2.5)组成。

结果

dFdC的线性范围为0.20 - 10.0 mg/L(r = 0.9999),dFdU的线性范围为0.50 - 50.0 mg/L(r = 0.9999)。dFdC的检测限(LOD)为0.10 mg/L,dFdU的检测限为0.25 mg/L,而dFdC的定量限(LOQ)为0.20 mg/L(RSD<10%),dFdU的定量限为0.50 mg/L(RSD<3%)。该方法对dFdC和dFdU的平均回收率分别为103.3%和98.7%。日内和日间,dFdC和dFdU测量的相应标准差均小于5.5%。

结论

建立了一种测定人血浆中dFdC和dFdU浓度的分析方法,并有效地应用于8例中国恶性肿瘤患者的dFdC和dFdU药代动力学研究。

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