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- 反式白藜芦醇的光致异构化途径。

Photoisomerization pathways of -resveratrol.

机构信息

Laboratório de Estudos Computacionais em Sistemas Moleculares, eCsMo, Departamento de Química, ICEx, Universidade Federal de Minas Gerais, Belo Horizonte, Minas Gerais, Brazil.

Aix Marseille University, CNRS, ICR, Marseille, France.

出版信息

Phys Chem Chem Phys. 2024 Sep 18;26(36):24179-24188. doi: 10.1039/d4cp02373k.

Abstract

Resveratrol is well-known for promoting health benefits due to its antioxidant, anti-aging, anti-carcinogenic, and other beneficial activities. Understanding the photophysics of resveratrol is essential for determining its applicability to pharmaceutical innovations. In the present work, we used an explore-then-assess strategy to map the internal conversion pathways of -resveratrol. This strategy consists of exploring the multidimensional configurational space with nonadiabatic dynamics simulations based on a semiempirical multireference method, followed by a feasibility assessment of reduced-dimensionality pathways at a high theoretical level. The exploration step revealed that internal conversion to the ground state may occur near five distinct conical intersections. The assessment step showed that the main photoisomerization pathway involves a twisted-pyramidalized S/S conical intersection, yielding either or isomers. However, a secondary path was identified, where isomerization happens in the excited state and internal conversion occurs at a cyclic conical intersection, yielding a closed-ring resveratrol derivative. This derivative, which can be formed through this direct path or an indirect photoexcitation, may be connected to the production of oxygen-reactive species previously reported and have implications in photodynamic therapy.

摘要

白藜芦醇由于其抗氧化、抗衰老、抗癌等有益活性,而被广泛认为对健康有益。了解白藜芦醇的光物理性质对于确定其在药物创新中的适用性至关重要。在本工作中,我们采用了一种探索-评估策略来绘制 -resveratrol 的内转换途径。该策略包括使用非绝热动力学模拟基于半经验多参考方法探索多维构象空间,然后在高理论水平上对降维途径进行可行性评估。探索步骤表明,内转换为基态可能发生在五个不同的锥形交叉附近。评估步骤表明,主要光异构化途径涉及扭曲的金字塔 S/S 锥形交叉,生成 或 异构体。然而,确定了一条次要途径,其中在激发态发生 异构化,内部转换发生在循环锥形交叉处,生成闭环白藜芦醇衍生物。这种衍生物可以通过直接途径或间接光激发形成,可能与先前报道的产生氧反应性物质有关,并对光动力疗法有影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fa44/11385707/e86ffea8e997/d4cp02373k-f1.jpg

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