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用于阐明药物体外代谢模式的稳定同位素-(氘)标记与放射性-((14)C)标记的系统比较实验。

Experiments for a systematic comparison between stable-isotope-(deuterium) labeling and radio-((14)C) labeling for the elucidation of the in vitro metabolic pattern of pharmaceutical drugs.

机构信息

Basilea Pharmaceutica International AG, Basel, Switzerland.

出版信息

J Pharm Biomed Anal. 2013 Nov;85:138-44. doi: 10.1016/j.jpba.2013.07.004. Epub 2013 Jul 19.

Abstract

A systematic comparison between two labeling approaches for the investigation of the in vitro metabolic pattern of pharmaceutical drugs was performed by examining the use of (i) radiolabeled drugs analyzed with LC-MS-offline radiodetection and (ii) stable-isotope labeled drugs, used in a defined mixture with the unlabeled drug and analyzed by LC-MS with recognition of the specific isotopic pattern. (14)C was used for the radioisotope-approach and deuterium for the stable-isotope approach. Olanzapine, diclofenac and ketoconazole were chosen as model drugs, as they are commercially available in their non-, radio- and stable-isotope labeled forms. For all three model drugs, liver microsome- and hepatocyte-incubations (both from rat) were performed with various concentrations and incubation times for both, the radio- and the stable-isotope approaches. The metabolic pattern, including structure elucidation of all detected metabolites, was performed independently for all individual compounds and incubations. Subsequently, the metabolic patterns of the radio-, and the stable-isotope approaches were compared. In conclusion, all metabolites found with the radioisotope approach could also be found with the stable-isotope approach. Although the stable-isotope approach does not provide a quantitative result, it can be considered to be a highly suited analytical alternative for early in vitro metabolism investigations, especially when radiolabeled drug analogues are not yet available and quantitative results are not yet necessary.

摘要

本研究采用液相色谱-质谱联用离线放射性检测方法对放射性标记药物和稳定同位素标记药物进行了体外代谢模式的系统比较,以评估这两种标记方法在药物代谢研究中的应用。选择奥氮平、双氯芬酸和酮康唑作为模型药物,因为它们有市售的非放射性、放射性和稳定同位素标记形式。对这三种模型药物,采用放射性和稳定同位素标记方法,分别在不同浓度和孵育时间下进行大鼠肝微粒体和肝细胞孵育。对所有单个化合物和孵育条件下的代谢产物进行了结构鉴定。随后,对放射性和稳定同位素标记方法的代谢产物进行了比较。结论是,放射性同位素方法检测到的所有代谢产物也可以用稳定同位素方法检测到。虽然稳定同位素方法不能提供定量结果,但它可以被认为是一种非常适合的早期体外代谢研究的分析替代方法,特别是当放射性标记药物类似物尚不可用时,并且不需要定量结果时。

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