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超高效液相色谱-电喷雾串联高分辨质谱法测定人血浆中黏菌素 A 和黏菌素 B:在药代动力学研究中的应用。

Determination of colistin A and colistin B in human plasma by UPLC-ESI high resolution tandem MS: application to a pharmacokinetic study.

机构信息

GAIA Research Center, Bioanalytical Department, The Goulandris Natural History Museum, 13 Levidou Street, Kifissia 145 62, Greece.

出版信息

J Pharm Biomed Anal. 2013 Sep;83:228-36. doi: 10.1016/j.jpba.2013.05.008. Epub 2013 May 16.

Abstract

The resistance of gram-negative bacteria to most available antibiotics and the lack of new antimicrobial agents have prompted the re-emergence of colistin (CS) as potent treatment against most gram-negative microorganisms. Optimal dosing with CS suffers from poor pharmacokinetic characterization mainly due to the analytical challenge of assaying CS in biological fluids and the limited information on quantitative analysis of CS in plasma using high resolution mass spectrometry (MS). Hence, a rapid, simple and accurate analytical method based on ultra performance liquid chromatography (UPLC) combined with electrospray ionization (ESI) tandem mass spectrometry (MS/MS) on a hybrid quadrupole time of flight (QTOF) instrument has been developed and fully validated for the quantification of CS in human plasma. After the pretreatment of plasma samples by solid phase extraction (SPE) and the addition of the internal standard (reserpine, RSP) the analytes were chromatographed on an Acquity BEH C8 column (100 mm × 2.1 mm, 1.7 μm) using gradient elution with 0.5% aqueous acetic acid (AcOH) and acetonitrile with 0.5% AcOH (with CSA and CSB eluting at 1.39 and 1.31 min, respectively). Accurate mass measurement correction was performed on line using the leukine-enkephaline standard. The method presented good fit (regression coefficient≥0.998) over the quantitation range of 0.2-300 and 0.03-4.5 μg mL(-1) with the lower limit of quantitation (LLOQ) being 0.02 and 0.03 μg mL(-1) for CSA and CSB in human plasma, respectively. The intra- and inter-day precision, measured as %relative standard deviation, was better than 10%, whereas the accuracy expressed as %relative error was also better than 10%. The short term, freeze-thaw (three cycles) and in process stability showed non-significant degradation of CS under these conditions. The validation results showed that the developed method demonstrated adequate selectivity and sensitivity. The method has been successfully applied to plasma samples from patients suffering from cystic fibrosis and treated with CS, and the pharmacokinetic profile has been calculated.

摘要

革兰氏阴性菌对大多数现有抗生素的耐药性以及新抗菌药物的缺乏,促使多黏菌素(CS)重新成为对抗大多数革兰氏阴性微生物的有效治疗药物。CS 的最佳给药剂量受到药代动力学特征描述不佳的影响,主要是因为在生物体液中检测 CS 具有分析挑战,并且使用高分辨率质谱(MS)对 CS 进行定量分析的信息有限。因此,开发了一种基于超高效液相色谱(UPLC)结合电喷雾电离(ESI)串联质谱(MS/MS)在混合四极杆飞行时间(QTOF)仪器上的快速、简单和准确的分析方法,并对人血浆中的 CS 进行了充分验证。经过固相萃取(SPE)预处理血浆样品并加入内标(利血平,RSP)后,采用梯度洗脱法,以 0.5%水乙酸(AcOH)和含 0.5%AcOH 的乙腈(CSA 和 CSB 分别在 1.39 和 1.31 分钟洗脱)在 Acquity BEH C8 柱(100mm×2.1mm,1.7μm)上进行色谱分离。在线使用亮氨酸脑啡肽标准品进行准确质量测量校正。该方法在 0.2-300 和 0.03-4.5μgmL(-1)的定量范围内具有良好的拟合度(回归系数≥0.998),CSA 和 CSB 在人血浆中的定量下限(LLOQ)分别为 0.02 和 0.03μgmL(-1)。日内和日间精密度(以相对标准偏差表示)优于 10%,而准确度(以相对误差表示)也优于 10%。短期、冻融(三个循环)和过程稳定性表明,在这些条件下 CS 没有明显降解。验证结果表明,所开发的方法表现出足够的选择性和灵敏度。该方法已成功应用于患有囊性纤维化并接受 CS 治疗的患者的血浆样本,并计算了药代动力学特征。

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