Development and Validation of HPLC-MS/MS Method for Quantitative Determination of Metoprolol in Blood Plasma of Patients

P. Myl’nikov, Yu. S. Tranova, A. V. Shchul’kin, S. Seleznev, S. Yakushin, E. Yakusheva
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引用次数: 1

Abstract

INTRODUCTION: Metoprolol is a selective β1-adrenoblocker without intrinsic sympathomimetic activity. The effectiveness of metoprolol has been proven in numerous clinical studies in the treatment of arterial hypertension, stable angina, myocardial infarction, chronic heart failure. To improve the efficiency and safety of the therapy, it is advisable to carry out therapeutic drug monitoring of metoprolol, which requires a sensitive method for its quantitative determination. AIM: To develop, validate and test a method for the determination of metoprolol in human plasma using high performance liquid chromatography (HPLC) with tandem mass spectrometric detection (MS/MS). MATERIALS AND METHODS: The work was performed on Ultimate 3000 TSQ Fortis HPLC-MS/MS (Thermo Fisher, USA). For sample preparation, acetonitrile was used with fexofenadine hydrochloride at a concentration of 10 ng/ml as an internal standard, which was added to plasma samples in 3:1 ratio. The volume of the injected sample was 5 μl. Separation was performed on UCT Selectra C18 4.6 mm × 100 mm, 3 um, 100 A column with a similar pre-column at 35°C, in gradient elution mode in proportion of 0.1% formic acid solution/acetonitrile: 0 min — 80%/20%, 0.1 min — 45%/55%, 5 min — 10%/90%, 10 min — 80%/20%, at flow rate of 300 µl/min. Detection was performed in positive electrospray ionization mode, electrospray voltage 4000 V, sheath gas 50 arb, auxiliary gas 10 arb, purge gas 1 arb, evaporator temperature 350°C, ion transport tube temperature 300°C, using the multiple reaction monitoring mode (MRM) at argon flow rate 2 mTorr, 268 m/z → 115.5 m/z, Collision Energy 18 V, Tube lens 95 V, 268 m/z → 191 m/z, Collision Energy 17 V, Tube lens 95 V. The blood plasma of healthy volunteers served as matrix. RESULTS: The analytical range of the technique was 2–1000 ng/ml. The developed technique was tested on a patient with arterial hypertension. During the analysis, an equilibrium concentration of metoprolol of 12.0 ng/ml was detected in the patient's blood plasma (previously, the patient took metoprolol tartrate at a dose of 12.5 mg twice a day for a week), and in 2 hours after taking the drug — 31.0 ng/ml. CONCLUSION: A method for the quantitative determination of metoprolol in human blood plasma using HPLC-MS/MS has been developed, validated and tested.
HPLC-MS/MS定量测定患者血浆中美托洛尔的方法建立及验证
美托洛尔是一种选择性β1-肾上腺素阻滞剂,没有内在的拟交感神经活性。美托洛尔在治疗动脉性高血压、稳定型心绞痛、心肌梗死、慢性心力衰竭等方面的疗效已在众多临床研究中得到证实。为提高治疗的效率和安全性,宜对美托洛尔进行治疗药物监测,需采用灵敏的方法定量测定。目的:建立高效液相色谱-串联质谱检测(MS/MS)测定人血浆中美托洛尔的方法,并进行验证和试验。材料和方法:采用Ultimate 3000 TSQ Fortis HPLC-MS/MS (Thermo Fisher, USA)进行。样品制备时,乙腈与浓度为10 ng/ml的盐酸非索非那定为内标,以3:1的比例加入血浆样品中。进样体积为5 μl。在UCT Selectra C18 4.6 mm × 100 mm, 3 um, 100 A柱上进行分离,与类似的预柱在35℃下,以0.1%甲酸溶液/乙腈的比例梯度洗脱:0 min - 80%/20%, 0.1 min - 45%/55%, 5 min - 10%/90%, 10 min - 80%/20%,流速为300 μ l/min。检测在正电喷雾电离模式下进行,电喷雾电压4000 V,护套气50 arb,辅助气10 arb,吹扫气1 arb,蒸馏器温度350℃,离子输输管温度300℃,采用多重反应监测模式(MRM),氩气流速2 mTorr, 268 m/z→115.5 m/z,碰撞能量18 V,管镜95 V, 268 m/z→191 m/z,碰撞能量17 V,管镜95 V。以健康志愿者的血浆为基质。结果:该方法的分析范围为2 ~ 1000 ng/ml。该技术已在一位高血压患者身上进行了试验。在分析过程中,在患者血浆中检测到美托洛尔的平衡浓度为12.0 ng/ml(之前,患者服用酒石酸美托洛尔,剂量为12.5 mg,每天两次,持续一周),服药后2小时- 31.0 ng/ml。结论:建立了HPLC-MS/MS定量测定人血浆中美托洛尔的方法,并进行了验证和试验。
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