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Excited state dynamics of bis-dehydroxycurcumin tert-butyl ester a diketo-shifted derivative of the photosensitizer curcumin

机译:双去羟基姜黄素叔丁酯(光敏剂姜黄素的二酮位移衍生物)的激发态动力学

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摘要

Bis-dehydroxycurcumin tert-butyl ester (K2T23) is a derivative of the natural spice curcumin. Curcumin is widely studied for its multiple therapeutic properties, including photosensitized cytotoxicity. However, the full exploitation of curcumin phototoxic potential is hindered by the extreme instability of its excited state, caused by very efficient non radiative decay by means of transfer of the enolic proton to the nearby keto oxygen. K2T23 is designed to exhibit a tautomeric equilibrium shifted toward the diketo conformers with respect to natural curcumin. This property should endow K2T23 with superior excited-state stability when excited in the UVB band, i.e., in correspondence of the diketo conformers absorption peaks, making this compound an interesting candidate for topical photodynamic therapy of, e.g., skin tumors or oral infections. In this work, the tautomeric equilibrium of K2T23 between the keto-enolic and diketo conformers is assessed in the ground state in several organic solvents by UV-visible absorption and by nuclear magnetic resonance. The same tautomeric equilibrium is also probed in the excited-state in the same environments by means of steady-state fluorescence and time-correlated single-photon counting measurements. These techniques are also exploited to elucidate the excited state dynamics and excited-state deactivation pathways of K2T23, which are compared to those determined for several other curcuminoids characterized in previous works of ours. The ability of K2T23 in photosensitizing the production of singlet oxygen is compared with that of curcumin.
机译:双脱羟基姜黄素叔丁酯(K2T23)是天然香料姜黄素的衍生物。姜黄素因其多种治疗特性而被广泛研究,包括光敏细胞毒性。但是,姜黄素光毒性潜能的充分利用受到其激发态的极度不稳定的阻碍,这是由于烯醇式质子转移到附近的酮氧上而引起的非常有效的非辐射衰减所致。 K2T23设计为相对于天然姜黄素表现出向二酮构象异构体偏移的互变异构平衡。当在UVB谱带中激发时,即与二酮构象异构体吸收峰相对应时,该特性应赋予K2T23优异的激发态稳定性,这使得该化合物成为局部光动力疗法(例如皮肤肿瘤或口腔感染)的有趣候选者。在这项工作中,通过紫外可见吸收和核磁共振,在几种有机溶剂的基态下评估了酮-烯醇和二酮构象异构体之间K2T23的互变异构平衡。通过稳态荧光和与时间相关的单光子计数测量,还可以在相同环境中的激发态下探索相同的互变异构平衡。还利用这些技术来阐明K2T23的激发态动力学和激发态失活途径,并将其与针对我们以前工作中表征的其他几种姜黄素确定的那些进行比较。将K2T23在光敏性产生单线态氧中的能力与姜黄素进行了比较。

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