首页> 外文期刊>Journal of Molecular Liquids >Potential of 4-thiothymidine as a molecular probe for H2O2 in systems related to PhotoDynamic therapy: A structuristic and mechanistic insight by UV-visible and FTIR-ATR spectroscopies and by ElectroSpray ionization mass spectrometry
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Potential of 4-thiothymidine as a molecular probe for H2O2 in systems related to PhotoDynamic therapy: A structuristic and mechanistic insight by UV-visible and FTIR-ATR spectroscopies and by ElectroSpray ionization mass spectrometry

机译:4-硫氰胺的电位作为与光动力疗法有关的系统中H2O2的分子探针:UV可见和FTIR-ATR光谱和电喷雾电离质谱法的结构性和机械洞察力

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An investigation, based on the synergy between UV-Vis and FTIR-ATR spectroscopies and ElectroSpray Ionization Mass Spectrometry (ESI-MS), on the reactivity of 4-thiothymidine (S-4-TdR) with H2O2 , selected as a Reactive Oxygen Species (ROS) potentially related to Photo Dynamic Therapy (PDT), was performed. The nucleoside main absorption band in the UV-Vis range, centered at 337 nm, was monitored at several reaction times, confirming the S-4-TdR reactivity with a process leading to thymidine (TdR), as the main reaction product, detected through its absorption at 270 nm. Actually, the generation of at least another by-product, absorbing at slightly higher wavelengths compared to S-4-TdR, was inferred from UV-Vis spectra. FTIR-ATR and ESI-MS, MS/MS and MS3 measurements were then performed to unveil the nature of these reaction products, evidencing the presence of a hydroxylated S-4-TdR as important intermediate reaction product. In particular, ESI-MS analyses suggested that the latter was generated as a couple of isomeric compounds, with the OH linked either to the SH group arising from C-4=S tautomerization or to the methyl carbon (C-7) of S-4-TdR. Interestingly, the generation of a covalent dimer of S-4-TdR, characterized by the presence of a disulfide (S-S) bond, was also clearly inferred. The evolution of the cited products with reaction time was also be monitored using ESI-MS, confirming the role of hydroxylated S-4-TdR as an intermediate towards the generation of the ultimate product, TdR. The described processes make S-4-TdR a promising candidate as a molecular probe for the detection of H2O2 in PDT-related systems. (C) 2018 Elsevier B.V. All rights reserved.
机译:一种研究,基于UV-VIS和FTIR-ATR光谱和电喷雾电离质谱(ESI-MS)的协同作用,在4-硫氰胺(S-4-TDR)与H 2 O 2的反应性上,选择为活性氧物质(ROS)潜在于与照片动态疗法(PDT)进行的。在几种反应时间内监测UV-VIS范围内的核苷主吸收带,在几次反应时间内监测,确认S-4-TDR反应性与导致胸苷(TDR)的过程,作为主要反应产物,通过它在270nm处吸收。实际上,从UV-VIS光谱推断出与S-4-TDR相比,至少另一个副产物的产生以稍高的波长吸收。然后进行FTIR-ATR和ESI-MS,然后进行MS / MS和MS3测量以推出这些反应产物的性质,证明存在羟基化的S-4-TDR作为重要的中间反应产物。特别地,ESI-MS分析表明后者被产生为几个异构化合物,其中OH连接到由C-4次跳跃或S-的甲基碳(C-7)引起的SH基团连接。 4-TDR。有趣的是,S-4-TDR的共价二聚体的产生还清楚地推断出了二硫化物(S-S)键的存在。还使用ESI-MS监测所引用的产品的进化,并使用ESI-MS监测,证实羟基化的S-4-TDR作为中间体朝向最终产品TDR的中间体的作用。所述方法使S-4-TDR成为用于检测PDT相关系统中H2O2的分子探针的候选候选者。 (c)2018年elestvier b.v.保留所有权利。

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