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Structural analysis of photo-degradation in thiazole-containing compounds by LC-MS/MS and NMR.

机译:通过LC-MS / MS和NMR分析含噻​​唑化合物中的光降解结构。

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摘要

The photo-degradation behavior of a pharmaceutical compound previously under development for treatment of overactive bladder was studied. Samples of {4-(4-chloro-3-fluorophenyl)-2-[4-(methyloxy)phenyl]-1,3-thiazol-5-yl} acetic acid were stressed with visible light and were observed to degrade into a single primary photo-degradation product. This unknown product was analyzed by liquid chromatography tandem mass spectrometry (LC-MS/MS) with accurate mass measurement and hydrogen/deuterium exchange to determine its molecular weight and formula, isotope distribution patterns and exchangeable protons, and product ion structures. By comparison of the fragmentation pathways of the protonated and sodiated species, the charge was found to locate in the electron-rich part of the molecule after fragmentation. MS-derived structural information combined with stopped-flow 1H LC-nuclear magnetic resonance (NMR) analysis suggested that the degradation product was 4-chloro-N-(4-methoxybenzoyl)-3-fluorobenzamide. This unique photo-degradation product was subsequently isolated using preparative-scale chromatography, and its structure was confirmed using 1D and 2D NMR techniques involving the 1H, 13C, 15N and 19F nuclei. The structure of this product suggests that {4-(4-chloro-3-fluorophenyl)-2-[4-(methyloxy)phenyl]-1,3-thiazol-5-yl} acetic acid has reacted with singlet oxygen (1Deltag) via a [4+2] Diels-Alder cycloaddition upon photo-irradiation to cause photo-oxygenation in the solid-state (as is common in solution phase), resulting in an unstable endoperoxide that rearranges to the final degradation product structure. Photo-degradation of a structurally related thiazole, 4-(4-Chlorophenyl)thiazol-2-amine, proceeded via a similar process but in a less reactive manner. However, when exposed to the same conditions, sulfathiazole did not degrade, indicating that this photo-degradation process may only occur for thiazole-containing compounds with specific substituents, such as aryl rings.
机译:研究了先前正在开发的用于治疗膀胱过度活动症的药物化合物的光降解行为。用可见光对{4-(4-氯-3-氟苯基)-2- [4-(甲氧基)苯基] -1,3-噻唑-5-基}乙酸样品加压并观察到其降解为单一的主要光降解产物。通过液相色谱串联质谱法(LC-MS / MS)对这种未知产物进行分析,并进行精确的质量测量和氢/氘交换,以确定其分子量和分子式,同位素分布模式和可交换质子以及产物离子结构。通过比较质子化和固溶物种的断裂途径,发现电荷在断裂后位于分子的富电子部分。 MS衍生的结构信息与停止流动的1H LC-核磁共振(NMR)分析相结合,表明降解产物为4-氯-N-(4-甲氧基苯甲酰基)-3-氟苯甲酰胺。随后使用制备级色谱法分离出这种独特的光降解产物,并使用涉及1H,13C,15N和19F核的1D和2D NMR技术确认了其结构。该产物的结构表明{4-(4-氯-3-氟苯基)-2- [4-(甲氧基)苯基] -1,3-噻唑-5-基}乙酸已经与单线态氧反应(1Deltag )在光辐照后通过[4 + 2] Diels-Alder环加成反应导致固态光氧合(在溶液相中很常见),导致不稳定的过氧化物过氧化物重新排列成最终的降解产物结构。结构相似的噻唑4-(4-氯苯基)噻唑-2-胺的光降解通过相似的过程进行,但反应性较低。但是,当在相同条件下暴露时,磺胺噻唑并没有降解,表明该光降解过程仅可能发生在具有特定取代基(例如芳基环)的含噻唑化合物上。

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