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Density functional theory and liquid chromatography-multistage mass spectrometry to characterize raltitrexed photo-degradation mechanisms

机译:密度函数理论和液相色谱 - 多级质谱,以表征Raltitrexed光降解机制

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Used in cancer chemotherapy, raltitrexed (RALTI) is an antimetabolite drug acting as thymidylate synthase inhibitor. A photostability study of the antineoplastic drug in aqueous solution and under aerobic conditions is presented. The investigation involved its decomposition under homogenous photolysis making use of the simulated sunlight as exposition source and the identification of the photoproducts formed by high performance liquid chromatography-high-resolution multistage mass spectrometry (LC-HR-MS ~( n ) ). Structural information, combined to density functional theory calculations, has enabled elucidating the main photodegradation pathways of aqueous RALTI. One-electron oxidation was shown mainly responsible for the initiation of RALTI photodegradation in pure water involving specifically the amino thiophenate moiety. In the absence of photocatalysts, electron-transfer seems to mainly proceed through RALTI autoionization, responsible for the formation of RALTI α-amino radicals and RALTI iminium ions, intermediates able to perfectly substantiate the origin formation of most of the photoproducts generated under solar irradiation.
机译:用于癌症化疗,Raltitroxed(Rolti)是一种抗粘土药物作为胸苷酯合酶抑制剂的抗体药物。介绍了抗肿瘤药物在水溶液中的光稳定性,并在有氧态条件下进行了稳定性研究。该研究涉及其在均匀光解之下的分解,利用模拟的阳光作为曝光源和通过高效液相色谱 - 高分辨率多级质谱法(LC-HR-MS〜(n)形成的光调节的鉴定。组合到密度官能理论计算的结构信息使能阐明氢气水溶液的主要光降解途径。显示一种电子氧化主要是负责在涉及氨基硫代苯酯部分的纯水中的Rolti光降解的起始。在没有光催化剂的情况下,电子转移似乎主要通过Rolti自身化,负责形成Roltiα-氨基基团和Rolti亚胺离子的中间体,所述中间体能够完全证实在太阳照射下产生的大部分光调节的原始形成。

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