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不对称苯基取代:增强姜黄素类化合物光敏潜力的有效策略。

Asymmetric Phenyl Substitution: An Effective Strategy to Enhance the Photosensitizing Potential of Curcuminoids.

作者信息

Vesco Guglielmo, Brambati Martino, Scapinello Luca, Penoni Andrea, Mella Massimo, Masson Màr, Gaware Vivek, Maspero Angelo, Nardo Luca

机构信息

Department of Science and High Technology, Università degli Studi dell'Insubria, Via Valleggio 11, 22100 Como, Italy.

School of Health Sciences, University of Iceland, Saemundargata 2, 102 Reykjavìk, Iceland.

出版信息

Pharmaceuticals (Basel). 2022 Jul 9;15(7):843. doi: 10.3390/ph15070843.

Abstract

Curcumin has been demonstrated to exhibit photosensitized bactericidal activity. However, the full exploitation of curcumin as a photo-pharmaceutical active principle is hindered by fast deactivation of the excited state through the transfer of the enol proton to the keto oxygen. Introducing an asymmetry in the molecular structure through acting on the phenyl substituents is expected to be a valuable strategy to impair this undesired de-excitation mechanism competing with the therapeutically relevant ones. In this study, two asymmetric curcumin analogs were synthesized and characterized as to their electronic-state transition spectroscopic properties. Fluorescence decay distributions were also reconstructed. Their analysis confirmed the substantial stabilization of the fluorescent state with respect to the parent compound. Nuclear magnetic resonance experiments were performed with the aim of determining the structural features of the keto-enol ring and the strength of the keto-enol hydrogen bond. Electronic structure calculations were also undertaken to elucidate the effects of substitution on the features of the keto-enol semi-aromatic system and the proneness to proton transfer. Finally, their singlet oxygen-generation efficiency was compared to that of curcumin through the 9,10-dimethylanthracene fluorescent assay.

摘要

姜黄素已被证明具有光敏杀菌活性。然而,由于烯醇质子转移至酮氧导致激发态快速失活,阻碍了姜黄素作为光药活性成分的充分利用。通过作用于苯基取代基在分子结构中引入不对称性,有望成为一种有价值的策略,以削弱这种与治疗相关机制相竞争的不良去激发机制。在本研究中,合成了两种不对称姜黄素类似物,并对其电子态跃迁光谱性质进行了表征。还重建了荧光衰减分布。它们的分析证实了相对于母体化合物,荧光态有显著的稳定性。进行核磁共振实验以确定酮 - 烯醇环的结构特征和酮 - 烯醇氢键的强度。还进行了电子结构计算,以阐明取代对酮 - 烯醇半芳香体系特征和质子转移倾向的影响。最后,通过9,10 - 二甲基蒽荧光测定法将它们的单线态氧生成效率与姜黄素的进行了比较。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c9b9/9321223/1019cdc6dd06/pharmaceuticals-15-00843-g010.jpg

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