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快速和超快光谱研究四环素衍生物在有机和水相介质中的情况。

Fast and ultrafast spectroscopic investigation of tetracycline derivatives in organic and aqueous media.

机构信息

Chemistry Department, and Centro di Eccellenza sui Materiali Innovativi Nanostrutturati (CEMIN), University of Perugia, via Elce di Sotto 8, 06123 Perugia, Italy.

出版信息

Phys Chem Chem Phys. 2010 Dec 28;12(48):15580-91. doi: 10.1039/c0cp00044b. Epub 2010 Jul 26.

Abstract

The photophysical properties of seven tetracycline derivatives (tetracycline, oxytetracycline, demeclocycline, chlortetracycline, doxycycline, minocycline and meclocycline) in organic solvents and aqueous solution were studied using steady-state absorption and fluorescence techniques and transient absorption spectroscopies with nanosecond and femtosecond time resolution. The molecular structure, solvent and pH effects on the optical properties of this class of pharmaceutically interesting compounds were investigated in detail. The investigation furnished a complete description of the nature, the spectral and kinetic properties of the excited states formed upon irradiation. All the tetracycline derivatives exhibited a similar behaviour, and the photophysics of these molecules is different in organic solvents and in aqueous medium, where they exhibit a significant pH dependence. In water, compared to organic solvents, these compounds showed a blue-shifted bathochromic absorption band, a red-shifted emission spectrum, an increased Stokes shift and a decreased fluorescence quantum yield. These findings, together with the overall investigated solvent effect, suggested that in aqueous solvent additional fast and non-radiative deactivation processes, responsible for the large Stokes Shift and for the reduced fluorescence efficiency, are present. In fact, in organic media just two transients were observed during the ultrafast time-resolved investigation: the vibrationally hot S(1) state which was quickly stabilized by solvent reorganization to the relaxed S(1) state. This state showed lifetimes of tens of picoseconds and relaxed by fluorescence and internal conversion. No longer-lived transients were detected. In aqueous solution the excited-state deactivation of tetracyclines was found to be more complicated. Different protonated and tautomeric forms of the S(1) state were detected: a component which showed decay times of tens of picoseconds and a component which was longer-lived. A significant pH effect on the nature and number of these components was found. In fact, a remarkable change in the Stokes shift and in the fluorescence efficiency was also observed on going from acidic to basic aqueous solutions. The most important variations in the absorption properties were found in the pH range in which the second acid-base equilibrium takes place. The tetracycline lowest excited triplet state was observed as a 'rest absorption' during the femtosecond-resolved measurements in aqueous solution; through the nanosecond-resolved laser flash photolysis study, lower-energy radical species were detected, characterized by lifetimes of tens of microseconds. The formation of these species may be involved in the observed phototoxicity of the tetracycline drugs.

摘要

七种四环素衍生物(四环素、土霉素、去甲金霉素、金霉素、强力霉素、米诺环素和甲氯环素)在有机溶剂和水溶液中的光物理性质采用稳态吸收和荧光技术以及纳秒和飞秒时间分辨的瞬态吸收光谱进行了研究。详细研究了分子结构、溶剂和 pH 值对这一类具有药用价值的化合物光学性质的影响。研究提供了关于辐照后形成的激发态的性质、光谱和动力学性质的完整描述。所有四环素衍生物都表现出相似的行为,并且这些分子的光物理性质在有机溶剂和水介质中不同,在水介质中它们表现出显著的 pH 依赖性。在水中,与有机溶剂相比,这些化合物表现出蓝移的增色吸收带、红移的发射光谱、增加的斯托克斯位移和降低的荧光量子产率。这些发现以及整体研究的溶剂效应表明,在水溶剂中存在额外的快速和非辐射失活过程,这些过程导致大的斯托克斯位移和降低的荧光效率。事实上,在有机介质中,在超快时间分辨研究期间仅观察到两个瞬态:振动热 S(1)态,该态通过溶剂重排迅速稳定到松弛的 S(1)态。该状态显示出数十皮秒的寿命,并通过荧光和内部转换来松弛。未检测到寿命更长的瞬态。在水溶液中,发现四环素的激发态失活更为复杂。检测到 S(1)态的不同质子化和互变异构形式:一个显示数十皮秒衰减时间的组分和一个寿命更长的组分。发现这些组分的性质和数量对 pH 值有显著影响。事实上,从酸性到碱性水溶液,还观察到斯托克斯位移和荧光效率的显著变化。在发生第二个酸碱平衡的 pH 范围内,观察到吸收性质的最重要变化。在水溶液中通过飞秒分辨测量观察到四环素最低激发三重态作为“休息吸收”;通过纳秒分辨激光闪光光解研究,检测到寿命为数十微秒的低能自由基物种。这些物种的形成可能涉及到四环素药物的观察到的光毒性。

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