Rapid and simultaneous determination of ten anti-tuberculosis drugs in human plasma by UPLC-MS/MS with applications in therapeutic drug monitoring

Rapid and simultaneous determination of ten anti-tuberculosis drugs in human plasma by UPLC-MS/MS with applications in therapeutic drug monitoring
复制标题

UPLC-MS/MS 快速同时测定人血浆中的 10 种抗结核药物及其在治疗药物监测中的应用

DOI:
10.1016/j.jchromb.2020.122246
复制
发表时间:
2020-09-01
影响因子:
3
通讯作者:
Ai, Lianfeng
Ai, Lianfeng
中科院分区:
医学3区
文献类型:
--
作者:
Wang, Xiangji;Zhang, Haichao;Ai, Lianfeng

文献摘要

被引文献

相似文献

Tuberculosis remains a global challenge, particularly with a growing number of resistant cases, which may become an obstacle to eliminating this disease. Standardized short-course therapy composed of first-line anti-tuberculosis drugs isoniazid (INH), rifampicin (RIF), ethambutol (EMB), and pyrazinamide (PZA) is playing vital roles for curbing the rapid spread of tuberculosis. However, some patients have poor responses to standardized short-course therapy. As the number of drug-resistant tuberculosis increase, some other anti-tuberculous drugs are needed to achieve better treatment outcomes. In this study, we established a UPLC-MS/MS method for simultaneous detection of ten anti-tuberculosis drugs in human plasma including INH, EMB, PZA, RIF, rifampin, rifapentine as well as four second-line antituberculosis drugs, i.e. ethionamide, protionamide, thiosemicarbazone and clofazimine. This study contains almost all the commonly used anti-tuberculosis drugs. The plasma samples were treated with acetonitrile to precipitate proteins, and doped with the isotope internal standard. A Shiseido CAPCELL RAK-ADME (2.1 mm x 50 mm, 3 mu m) column was used for chromatographic separation, and acetonitrile-water (containing 0.1% formic acid) was the mobile phase. The separation used gradient elution with a flow rate of 0.4 mL/min. The column temperature was 40 degrees C, and the sample volume was 1 mu L. The electrospray ionization source (ESI) and the positive ion multiple reaction monitoring (MRM) mode were used for the detection. The analysis time was as short as 7 min. The results show a good linear relationship under optimized conditions in the range of 5.00-7.50 x 10(3), 1.00-1.50 x 10(3), 5.00-5.00 x 10(4), 5.00-7.50 x 10(3), 1.00-3.00 x 10(3), 1.00 x 10(1)-1.00 x 10(4), 1.00-3.00 x 10(3), 1.00-3.00 x 10(3), 2.00-4.00 x 10(3), and 1.00 x 10(-1)-2.00 x 10(2) ng/mL for INH, EMB PZA, RIF, rifabutin, rifapentine, ethionamide, protionamide, thiosemicarbazone, and clofazimine, respectively, with a linear correlation coefficient of R > 0.99. Finally, 34 patients with pulmonary TB were tested for therapeutic drug monitoring. The results showed that the presented method have significant advances in sensitivity, separation efficiency and simplicity.