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Two-photon-absorption DNA sensitization via solvated electron production: unraveling photochemical pathways by molecular modeling and simulation

机译:通过溶剂化电子产生的双光子吸收DNA敏化:通过分子建模和模拟揭示光化学途径

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摘要

DNA photosensitization is one of the physical processes behind photodynamic therapy techniques, i.e. the combined use of photoactive drugs and visible radiation for therapeutical purposes. In this contribution we report the analysis of the photophysical properties of a two-photon absorption dye together with its interaction with DNA. The linear and non-linear optical properties are modeled taking into account the complex environment including dynamic and vibrational effects. It is also clearly demonstrated that the excited state manifold may evolve toward spontaneous photoionization with the production of a solvated electron. In turn both the radical cation and the solvated electron may react with the DNA backbone to produce a strand break; hence we have characterized a phototherapeutic dye that absorbs in the infrared region and is able to work under hypoxidic conditions, i.e. a prodrug of great interest for the potential treatment of solid tumors.
机译:DNA光敏化是光动力疗法技术背后的物理过程之一,即将光敏药物和可见光辐射联合用于治疗目的。在这项贡献中,我们报告了对双光子吸收染料的光物理性质及其与DNA相互作用的分析。考虑到复杂的环境(包括动态和振动效应),对线性和非线性光学特性进行建模。还清楚地表明,激发态流形可以随着溶剂化电子的产生而朝着自发光电离发展。反过来,自由基阳离子和溶剂化电子都可以与DNA主链反应产生链断裂。因此,我们已经表征了一种光治疗染料,该染料在红外区域吸收并能够在缺氧条件下工作,即,对于潜在治疗实体瘤具有极大兴趣的前药。

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