南方医科大学学报 ›› 2014, Vol. 34 ›› Issue (10): 1431-.

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基于RAM-HPLC在线富集技术检测大鼠血浆及尿液中的呋塞米

张晓惠,王荣,谢华,尹强,李文斌,贾正平,张娟红   

  • 出版日期:2014-10-20 发布日期:2014-10-20

Detection of plasma and urine furosemide based on online enrichment and restrictedaccess
media coupled with high-performance liquid chromatography

  • Online:2014-10-20 Published:2014-10-20

摘要: 目的通过柱切换技术建立限进性填料柱-高效液相色谱法,实现在线直接进样并检测大鼠血浆及尿液中的呋塞米。方法
以自制限进填料柱为预处理柱,Luna C18柱为分析柱,预处理流动相为水-甲醇(95∶5,V/V),含体积百分数为0.1%的甲酸,流速
为1 ml/min;分析流动相为血浆:甲醇- 水(65∶35,V/V),尿液:甲醇-水(55∶45,V/V),均含体积百分数为0.1%的甲酸,流速均为
1 ml/min,柱温为25 ℃;检测波长为274 nm。结果呋塞米血浆样品在进样100 μl时,富集效果良好,在0.1~3.2 μg/ml的浓度范
围内具有良好的线性关系(r=0.9995),尿液进样20 μl,呋塞米浓度在0.5~32 μg/ml范围内具有良好的线性关系(r=0.9991),血样
及尿样的三个加标水平下的平均回收率分别为101.82%~113.36%,98.75%~112.27%,日内日间精密度均小于5%。结论药代
动力学参数AUC0→24为6.265 μg/(ml·h),t1/2为2.447 h,Cmax为1.414 μg/ml;24 h内呋塞米的累积排泄率为32.50%~39.08%。本
方法简单快速,适用于血浆及尿液中呋塞米的直接进样检测。

Abstract: Objective To establish a method based on restricted access media-high performance liquid chromatography for
direct online sample injection and detection of plasma and urine furosemide in rats. Methods The column of restricted access
media was used as the pre-treatment column and a C18 column as the analytical column. The mobile phase of the pretreatment
column was water-methanol (95∶5, V/V) with a volume percentage of formic acid of 0.1%. The mobile phase of the
analytical column was methanol-water (65∶35, V/V) for plasma and methanol-water (55∶45, V/V) for urine samples, all
containing a volume percentage of formic acid of 0.1% with a flow rate of 1 ml/min. The detection wavelength was 274 nm and
the column temperature was maintained at 25 ℃. Results The calibration curve showed an excellent linear relationship in rat
plasma furosemide concentration range of 0.1-3.2 μg/ml (r=0.9995) and in urine concentration range of 0.5-32 μg/ml (r=0.9991).
The average recoveries of furosemide at 3 spiked levels ranged from 101.82% to 113.36% for plasma and from 98.75% to
112.27% for urine samples. The detection showed good intra- and inter-day assay precisions and accuracies with the relative
standard deviations all below 5%. The pharmacokinetic parameters AUC0→24 was 6.265 g/(ml·h) with a t1/2 of 2.447 h and a CMax
of 1.414 g/ml. The mean cumulative excretory rate of furosemide in the urine of rats over 24 h was 32.50%-39.08%. Conclusion
Detection of furosemide in plasma and urine samples using restricted access media-high performance liquid chromatography
is simple and efficient and allows direct online injection of the samples.