首页> 美国卫生研究院文献>Springer Open Choice >Spectroscopic Studies of Fluorescence Effects in Bioactive 4-(5-Heptyl-134-Thiadiazol-2-yl)Benzene-13-Diol and 4-(5-Methyl-134-Thiadiazol-2-yl)Benzene-13-Diol Molecules Induced by pH Changes in Aqueous Solutions
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Spectroscopic Studies of Fluorescence Effects in Bioactive 4-(5-Heptyl-134-Thiadiazol-2-yl)Benzene-13-Diol and 4-(5-Methyl-134-Thiadiazol-2-yl)Benzene-13-Diol Molecules Induced by pH Changes in Aqueous Solutions

机译:生物活性4-(5-庚基-134-噻二唑-2-基)苯-13-二醇和4-(5-甲基-134-噻二唑-2)中荧光效应的光谱研究水溶液中pH值变化引起的1-yl)苯-13-二醇分子

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摘要

This paper presents the results of stationary fluorescence spectroscopy and time-resolved spectroscopy analyses of two 1,3,4-thiadiazole analogues, i.e. 4-(5-methyl-1,3,4-thiadiazol-2-yl)benzene-1,3-diol (C1) and 4-(5-heptyl-1,3,4-thiadiazol-2-yl)benzene-1,3-diol (C7) in an aqueous medium containing different concentrations of hydrogen ions. An interesting dual florescence effect was observed when both compounds were dissolved in aqueous solutions at pH below 7 for C1 and 7.5 for C7. In turn, for C1 and C7 dissolved in water at pH higher than the physiological value (mentioned above), single fluorescence was only noted. Based on previous results of investigations of the selected 1,3,4-thiadiazole compounds, it was noted that the presented effects were associated with both conformational changes in the analysed molecules and charge transfer (CT) effects, which were influenced by the aggregation factor. However, in the case of C1 and C7, the dual fluorescence effects were visible in a higher energetic region (different than that observed in the 1,3,4-thiadiazoles studied previously). Measurements of the fluorescence lifetimes in a medium characterised by different concentrations of hydrogen ions revealed clear lengthening of the excited-state lifetime in a pH range at which dual fluorescence effects can be observed. An important finding of the investigations presented in this article is the fact that the spectroscopic effects observed not only are interesting from the cognitive point of view but also can help in development of an appropriate theoretical model of molecular interactions responsible for the dual fluorescence effects in the analysed 1,3,4-thiadiazoles. Furthermore, the study will clarify a broad range of biological and pharmaceutical applications of these compounds, which are more frequently used in clinical therapies. >Graphical AbstractUpper left corner – C7 molecule at high pH, right upper corner - fluorescence emission spectrum for C7 dissolved in H2O at high pH (7–12) - single fluorescence. Bottom left corner – C7 molecule at low pH (1–7), lower right corner - fluorescence emission spectrum for C7 dissolved in water at low pH – two fluorescence emissions. The circles indicate the group related to dissociation of molecules at low and high pH and the additional long circles indicate C1 or a molecule with a shorter acyl chain.
机译:本文介绍了两种1,3,4-噻二唑类似物,即4-(5-甲基-1,3,4-噻二唑-2-基)苯-1,的固定荧光光谱和时间分辨光谱分析结果,在含有不同浓度氢离子的水性介质中的3-二醇(C1)和4-(5-庚基-1,3,4-噻二唑-2-基)苯-1,3-二醇(C7)。当两种化合物都溶解在pH值低于C1的C7和7.5低于C7的水溶液中时,观察到了有趣的双重荧光效应。反过来,对于溶解在pH值高于生理值(上述)的水中的C1和C7,仅观察到单个荧光。根据先前对选定的1,3,4-噻二唑化合物的研究结果,注意到所提出的效应与被分析分子的构象变化以及电荷转移(CT)效应有关,这受聚集因子的影响。但是,在C1和C7的情况下,在较高的能量区域(不同于先前研究的1,3,4-噻二唑中观察到的)可见双重荧光效应。在以不同浓度的氢离子为特征的介质中荧光寿命的测量表明,在可以观察到双重荧光效应的pH范围内,激发态寿命明显延长。本文研究的一个重要发现是,观察到的光谱效应不仅从认知的角度来看是有趣的,而且还可以帮助开发适当的分子相互作用的理论模型,该模型负责分子中的双重荧光效应。分析了1,3,4-噻二唑。此外,该研究将阐明这些化合物在生物学和药学上的广泛应用,这些化合物在临床治疗中更常使用。 <!-fig ft0-> <!-fig @ position =“ anchor” mode =文章f4-> <!-fig mode =“ anchred” f5-> >图形摘要<!-图/图形|无花果/替代品/图形模式=“锚定” m1-> <!-标题a7->左上角–高pH下的C7分子,右上角-溶解于H2O中的C7的荧光发射光谱高pH(7–12)-单荧光。左下角–低pH(1–7)下的C7分子,右下角-低pH溶解在水中的C7的荧光发射光谱–两次荧光发射。圆圈表示与在低和高pH下分子解离有关的基团,另外的长圆圈表示C1或具有较短酰基链的分子。

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