Enantiomeric profile of promethazine in metabolic studies in liver microsomes

Maria Miguel Coelho , Bárbara Silva , Carla Fernandes , Fernando Remião , Maria Elizabeth Tiritan
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Abstract

Promethazine (PMZ) is metabolized in the liver giving rise to chiral metabolites, including promethazine sulfoxide (PMZSO) and desmonomethyl promethazine (DMPMZ). Other metabolites, such as dioxopromethazine (DOPMZ), hydroxy promethazine (PMZOH), N-desmethyl-promethazine sulfoxide, and promethazine N-oxide (PMZNO) can also be formed, but information about them is limited. In this work, the enantiomeric metabolic profile of PMZ in ultra-pool human liver microsomes (HLM) was evaluated. For that, a novel enantioselective analytical method, by liquid chromatography coupled with high-resolution mass spectrometry was established and employed to monitor the enantiomers of PMZ and the formation of its main metabolites PMZSO and DMPMZ in two-hours assay with HLM. The enantioseparation optimized conditions were achieved with two immobilized carbamate amylose-based (3‑chloro-5-methylphenylcarbamate) columns: Lux® 3 µm i-Amylose-3 and Chiralpak® IG-U 1.6 µm. The optimized mobile phase for enantioseparation used buffer and ethanol, a green organic solvent, in a low flow rate. The sample preparation was based only in liquid-liquid extraction. (R)-PMZ consistently exhibited higher concentrations than (S)-PMZ, indicating less extension in metabolization. Regarding the metabolites, PMZSO exhibited higher concentrations compared to DMPMZ. A higher concentration for (S)-PMZSO was found when compared to the (R)-PMZSO and (R)-DMPMZ showing higher concentration compared to (S)-DMPMZ, indicating enantioselectivity in the metabolization process. The metabolites, PMZOH or PMZNO and DOPMZ were also identified. The second enantiomer of DOPMZ also showed a higher proportion than the first eluted enantiomer. These results demonstrated enantioselectivity of liver metabolism of PMZ, as well as confirmed PMZOH, PMZNO, and DOPMZ metabolites formation.

Abstract Image

肝脏微粒体代谢研究中的异丙嗪对映体概况
异丙嗪(PMZ)在肝脏中代谢产生手性代谢物,包括异丙嗪亚砜(PMZSO)和去甲基异丙嗪(DMPMZ)。其他代谢物,如二氧异丙嗪(DOPMZ)、羟基异丙嗪(PMZOH)、N-去甲基异丙嗪亚砜和异丙嗪 N-氧化物(PMZNO)也可能形成,但相关信息有限。在这项工作中,研究人员评估了超池型人肝微粒体(HLM)中异丙嗪对映体的代谢情况。为此,研究人员建立了一种新型的对映体选择性分析方法,即液相色谱-高分辨质谱联用法,用于监测 PMZ 的对映体及其主要代谢物 PMZSO 和 DMPMZ 在 HLM 两小时检测中的生成情况。对映体分离的优化条件是使用两种固定化氨基甲酸酯淀粉基(3-氯-5-甲基苯基氨基甲酸酯)色谱柱实现的:Lux® 3 µm i-Amylose-3 和 Chiralpak® IG-U 1.6 µm。用于对映体分离的优化流动相使用缓冲液和乙醇(一种绿色有机溶剂),流速较低。样品制备仅采用液液萃取法。(R)-PMZ的浓度始终高于(S)-PMZ,这表明代谢过程的延伸较少。在代谢物方面,PMZSO 的浓度高于 DMPMZ。与(R)-PMZSO相比,(S)-PMZSO的浓度更高;与(S)-DMPMZ相比,(R)-DMPMZ的浓度更高,这表明代谢过程中存在对映选择性。此外,还鉴定出了代谢物 PMZOH 或 PMZNO 和 DOPMZ。DOPMZ 的第二对映体的比例也高于第一对映体。这些结果表明了 PMZ 在肝脏代谢过程中的对映体选择性,并证实了 PMZOH、PMZNO 和 DOPMZ 代谢物的形成。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of chromatography open
Journal of chromatography open Analytical Chemistry
CiteScore
2.50
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0.00%
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50 days
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