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鉴定模拟阳光条件下西地那非(伟哥)及其 N-去甲基人体代谢物的光转化产物。

Identification of phototransformation products of sildenafil (Viagra) and its N-demethylated human metabolite under simulated sunlight.

机构信息

IDAEA-CSIC, Department of Environmental Chemistry, Barcelona, 08034, Spain.

出版信息

J Mass Spectrom. 2012 Jun;47(6):701-11. doi: 10.1002/jms.2998.

Abstract

Recent publications on pharmaceutical monitoring are increasingly covering the field of illicit drugs and lately the forensic evaluation of designing illegal analogs of lifestyle drugs like the phosphodiesterase type 5 (PDE-5) inhibitors Viagra (sildenafil), Levitra (vardenafil) and Cialis (tadalafil). Recently, the presence of all three erectile dysfunction treatment drugs has been reported in wastewaters at very low concentrations. In the environment, contaminants undergo various physical or chemical processes classified into abiotic (photolysis, hydrolysis) and biotic (biodegradation) reactions. Thus, changes in the chemical structure lead to the formation of new transformation products, which may persist in the environment or be further degraded. This study describes the photolysis of sildenafil (SDF) and its human metabolite N-demethylsildenafil (DM-SDF) under simulated solar radiation (Xenon lamp). Following chromatographic separation of the irradiated samples, eight photoproducts in the SDF samples and six photoproducts for DM-SDF were detected and characterized. The combination of ultra performance liquid chromatography-electrospray ionization-quadrupole time-of-flight-mass spectrometry (UPLC-ESI-QToF-MS), liquid chromatography-atmospheric pressure chemical ionization-triple quadrupole mass spectrometry (LC-APCI-QqQ-MS) and hydrogen/deuterium-exchange experiments allowed to propose plausible chemical structures for the photoproducts, taking into account the characteristic fragmentation patterns and the accurate mass measurements. These mass spectral data provided sound evidence for the susceptibility of the piperazine ring toward photodegradation. A gradual breakdown of this heterocyclic structure gave rise to a series of products, which in part were identical for SDF and DM-SDF. The sulfonic acid, as the formal product of sulfonamide hydrolysis, was identified as key intermediate in the photolysis pathway. In both drug/metabolite molecules, phototransformation processes taking place beyond the sulfonamide group were deemed to be of minor relevance.

摘要

最近发表的关于药物监测的出版物越来越多地涵盖了非法药物领域,最近还对生活方式药物(如磷酸二酯酶 5 型 (PDE-5) 抑制剂伟哥(西地那非)、利维坦(伐地那非)和 Cialis(他达拉非)的非法类似物的法医评估进行了研究。最近,在废水中以非常低的浓度报道了所有这三种治疗勃起功能障碍的药物。在环境中,污染物经历各种物理或化学过程,分为非生物(光解、水解)和生物(生物降解)反应。因此,化学结构的变化导致形成新的转化产物,这些产物可能在环境中持续存在或进一步降解。本研究描述了在模拟太阳辐射(氙灯)下西地那非(SDF)及其人体代谢物 N-去甲基西地那非(DM-SDF)的光解。在辐照样品的色谱分离后,在 SDF 样品中检测到并表征了 8 种光产物,在 DM-SDF 中检测到 6 种光产物。超高效液相色谱-电喷雾电离-四极杆飞行时间质谱联用(UPLC-ESI-QToF-MS)、液相色谱-大气压化学电离-三重四极杆质谱联用(LC-APCI-QqQ-MS)和氢/氘交换实验的结合,考虑到特征碎片模式和准确的质量测量,为光产物提出了合理的化学结构。这些质谱数据为哌嗪环对光降解的敏感性提供了可靠证据。这种杂环结构的逐渐分解产生了一系列产物,其中部分产物在 SDF 和 DM-SDF 中是相同的。磺酸盐作为磺酰胺水解的正式产物,被确定为光解途径中的关键中间体。在这两种药物/代谢物分子中,磺酰胺基团以外的光转化过程被认为相关性较小。

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