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通过非靶向液相色谱-高分辨质谱分析发现新型含硫伊马替尼代谢物。

Novel sulphur-containing imatinib metabolites found by untargeted LC-HRMS analysis.

作者信息

Vrobel Ivo, Friedecký David, Faber Edgar, Najdekr Lukáš, Mičová Kateřina, Karlíková Radana, Adam Tomáš

机构信息

Institute of Molecular and Translational Medicine, Faculty of Medicine and Dentistry, Palacký University Olomouc, Hněvotínská 5, 779 00 Olomouc, Czech Republic; Department of Clinical Biochemistry, University Hospital Olomouc, I. P. Pavlova 6, 775 20 Olomouc, Czech Republic.

Institute of Molecular and Translational Medicine, Faculty of Medicine and Dentistry, Palacký University Olomouc, Hněvotínská 5, 779 00 Olomouc, Czech Republic; Laboratory for Inherited Metabolic Disorders, Faculty of Medicine and Dentistry, Palacký University Olomouc, I. P. Pavlova 6, 775 20 Olomouc, Czech Republic; Department of Clinical Biochemistry, University Hospital Olomouc, I. P. Pavlova 6, 775 20 Olomouc, Czech Republic.

出版信息

Eur J Pharm Sci. 2017 Jun 15;104:335-343. doi: 10.1016/j.ejps.2017.04.014. Epub 2017 Apr 20.

Abstract

Untargeted metabolite profiling using high-resolution mass spectrometry coupled with liquid chromatography (LC-HRMS), followed by data analysis with the Compound Discoverer 2.0™ software, was used to study the metabolism of imatinib in humans with chronic myeloid leukemia. Plasma samples from control (drug-free) and patient (treated with imatinib) groups were analyzed in full-scan mode and the unknown ions occurring only in the patient group were then, as potential imatinib metabolites, subjected to multi-stage fragmentation in order to elucidate their structure. The application of an untargeted approach, as described in this study, enabled the detection of 24 novel structurally unexpected metabolites. Several sulphur-containing compounds, probably originating after the reaction of reactive intermediates of imatinib with endogenous glutathione, were found and annotated as cysteine and cystine adducts. In the proposed mechanism, the cysteine adducts were formed after the rearrangement of piperazine moiety to imidazoline. On the contrary, in vivo S-N exchange occurred in the case of the cystine adducts. In addition, N-O exchange was observed in the collision cell in the course of the fragmentation of the cystine adducts. The presence of sulphur in the cysteine and cystine conjugates was proved by means of ultra-high resolution measurements using Orbitrap Elite. The detection of metabolites derived from glutathione might improve knowledge about the disposition of imatinib towards bioactivation and help to improve understanding of the mechanism of its hepatotoxicity or nephrotoxicity in humans.

摘要

使用高分辨率质谱联用液相色谱(LC-HRMS)进行非靶向代谢物谱分析,随后用Compound Discoverer 2.0™软件进行数据分析,以研究伊马替尼在慢性髓性白血病患者体内的代谢情况。对来自对照组(未用药)和患者组(接受伊马替尼治疗)的血浆样本进行全扫描模式分析,然后将仅在患者组中出现的未知离子作为潜在的伊马替尼代谢物进行多级碎裂,以阐明其结构。如本研究中所述,采用非靶向方法能够检测到24种结构上意外的新型代谢物。发现了几种可能源自伊马替尼活性中间体与内源性谷胱甘肽反应后的含硫化合物,并将其注释为半胱氨酸和胱氨酸加合物。在所提出的机制中,半胱氨酸加合物是在哌嗪部分重排为咪唑啉后形成的。相反,胱氨酸加合物的情况下发生了体内S-N交换。此外,在胱氨酸加合物碎裂过程中在碰撞池中观察到了N-O交换。使用Orbitrap Elite通过超高分辨率测量证明了半胱氨酸和胱氨酸缀合物中硫的存在。对源自谷胱甘肽的代谢物的检测可能会增进对伊马替尼生物活化倾向的了解,并有助于更好地理解其在人体内肝毒性或肾毒性的机制。

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