Mifsud Buhagiar Luana, Sammut Carmel, Chircop Yana, Axisa Kersty, Sammut Bartolo Nicolette, Vella Szijj Janis, Serracino Inglott Anthony, LaFerla Godfrey
Department of Pharmacy, Faculty of Medicine and Surgery, University of Malta, Msida, Malta.
Malta Medicines Authority, Life Sciences Park, San Ġwann, Malta.
Biomed Chromatogr. 2019 Dec;33(12):e4679. doi: 10.1002/bmc.4679. Epub 2019 Sep 8.
Amitriptyline (AMI) has been in use for decades in treating depression and more recently for the management of neuropathic pain. A highly sensitive and specific LC-tandem mass spectrometry method was developed for simultaneous determination of AMI, its active metabolite nortriptyline (NOR) and their hydroxy-metabolites in human serum, using deuterated AMI and NOR as internal standards. The isobaric E-10-hydroxyamitriptyline (E-OH AMI), Z-10-hydroxyamitriptyline (Z-OH AMI), E-10-hydroxynortriptyline (E-OH NOR) and Z-10-hydroxynortriptyline (Z-OH NOR), together with their parent compounds, were separated on an ACE C column using a simple protein precipitation method, followed by dilution and analysis using positive electrospray ionisation with multiple reaction monitoring. The total run time was 6 min with elution of E-OH AMI, E-OH NOR, Z-OH AMI, Z-OH NOR, AMI (+ deuterated AMI) and NOR (+ deuterated NOR) at 1.21, 1.28, 1.66, 1.71, 2.50 and 2.59 min, respectively. The method was validated in human serum with a lower limit of quantitation of 0.5 ng/mL for all analytes. A linear response function was established for the range of concentrations 0.5-400 ng/mL (r > .999). The practical assay was applied on samples from patients on AMI, genotyped for CYP2C19 and CYP2D6, to understand the influence of metaboliser status and concomitant medication on therapeutic drug monitoring.
阿米替林(AMI)已用于治疗抑郁症数十年,最近也用于治疗神经性疼痛。开发了一种高灵敏度和特异性的液相色谱-串联质谱法,以氘代AMI和NOR作为内标,同时测定人血清中的AMI、其活性代谢物去甲替林(NOR)及其羟基代谢物。采用简单的蛋白沉淀法在ACE C柱上分离了等压的E-10-羟基阿米替林(E-OH AMI)、Z-10-羟基阿米替林(Z-OH AMI)、E-10-羟基去甲替林(E-OH NOR)和Z-10-羟基去甲替林(Z-OH NOR)及其母体化合物,然后进行稀释,并使用正电喷雾电离和多反应监测进行分析。总运行时间为6分钟,E-OH AMI、E-OH NOR、Z-OH AMI、Z-OH NOR、AMI(+氘代AMI)和NOR(+氘代NOR)的洗脱时间分别为1.21、1.28、1.66、1.71、2.50和2.59分钟。该方法在人血清中得到验证,所有分析物的定量下限为0.5 ng/mL。建立了浓度范围为0.5-400 ng/mL(r>0.999)的线性响应函数。将该实际检测方法应用于服用AMI的患者样本,对其进行CYP2C19和CYP2D6基因分型,以了解代谢状态和联合用药对治疗药物监测的影响。