Charehsaz Mohammad, Gürbay Aylin, Aydin Ahmet, Sahin Gönül
Yeditepe University, Faculty of Pharmacy, Department of Toxicology, Istanbul, Turkey.
Hacettepe University, Faculty of Pharmacy, Department of Toxicology, Ankara, Turkey.
Iran J Pharm Res. 2014 Spring;13(2):431-9.
In this study, a high-performance liquid chromatographic method (HPLC) and UV spectrophotometric method were developed, validated and applied for the determination of theophylline in biological fluids. Liquid- liquid extraction is performed for isolation of the drug and elimination of plasma and saliva interferences. Urine samples were applied without any extraction. The chromatographic separation was achieved on a C18 column by using 60:40 methanol:water as mobile phase under isocratic conditions at a flow rate of 0.75 mL/min with UV detection at 280 nm in HPLC method. UV spectrophotometric analysis was performed at 275 nm.
the limit of quantification: 1.1 µg/mL for urine, 1.9 µg/mL for saliva, 3.1 µg/mL for plasma; recovery: 94.85% for plasma, 100.45% for saliva, 101.39% for urine; intra-day precision: 0.22-2.33%, inter-day precision: 3.17-13.12%. Spectrophotometric analysis results were as follows: the limit of quantitation: 5.23 µg/mL for plasma, 8.7 µg/mL for urine; recovery: 98.27% for plasma, 95.25% for urine; intra-day precision: 2.37 - 3.00%, inter-day precision: 5.43-7.91%. It can be concluded that this validated HPLC method is easy, precise, accurate, sensitive and selective for determination of theophylline in biological samples. Also spectrophotometric analysis can be used where it can be applicable.
在本研究中,开发、验证了一种高效液相色谱法(HPLC)和紫外分光光度法,并将其应用于生物流体中茶碱的测定。采用液-液萃取法分离药物并消除血浆和唾液干扰。尿液样本无需萃取即可直接测定。在HPLC法中,使用C18柱,以60:40甲醇:水作为流动相,在等度条件下,流速为0.75 mL/min,于280 nm处进行紫外检测,实现色谱分离。紫外分光光度法在275 nm处进行分析。
HPLC分析结果如下:定量限:尿液为1.1 µg/mL,唾液为1.9 µg/mL,血浆为3.1 µg/mL;回收率:血浆为94.85%,唾液为100.45%,尿液为101.39%;日内精密度:0.22 - 2.33%,日间精密度:3.17 - 13.12%。分光光度法分析结果如下:定量限:血浆为5.23 µg/mL,尿液为8.7 µg/mL;回收率:血浆为98.27%,尿液为95.25%;日内精密度:2.37 - 3.00%,日间精密度:5.43 - 7.91%。可以得出结论,这种经过验证的HPLC方法简便、精确、准确、灵敏且具有选择性,可用于生物样品中茶碱的测定。在适用的情况下,也可使用分光光度法分析。