Malcomson Thomas
Department of Chemistry, School of Natural Sciences, University of Manchester, Oxford Road, Manchester, M13 9PL, UK.
Photochem Photobiol Sci. 2022 Apr;21(4):529-543. doi: 10.1007/s43630-022-00182-7. Epub 2022 Feb 18.
With the prevalence of fluorescence spectroscopy in biological systems, and the benefits of two-photon absorption techniques, presented here is an assessment of the two-photon accessibility of modern fluorescent nucleobase analogues utilising quadratic response DFT. Due to the complex environment experienced by these nucleobases, the two-photon spectra of each analogue has been assessed in the presence of both [Formula: see text]-stacked and hydrogen-bonding interactions involving the canonical nucleobases. Findings suggest that the [Formula: see text]-stacking environment provides a more significant effect on the spectra of the analogues studies than a hydrogen-bonding environment; analogue structures presenting high two-photon cross-section values for one or more states coincide with polycyclic extensions to preserved canonical base structure, as observed in the qA family of analogues, while analogue structures more closely resembling the structure of the base in question present a much more muted spectra in comparison. Results from this investigation have also allowed for the derivation of a number of design rules for the development of potential, two-photon specific, analogues for future use in both imaging and potential photochemical activation.
随着荧光光谱在生物系统中的广泛应用以及双光子吸收技术的优势,本文利用二次响应密度泛函理论对现代荧光核碱基类似物的双光子可及性进行了评估。由于这些核碱基所处环境复杂,每种类似物的双光子光谱均在存在与标准核碱基的π-堆积和氢键相互作用的情况下进行了评估。研究结果表明,与氢键环境相比,π-堆积环境对所研究类似物的光谱影响更为显著;对于一种或多种状态呈现高双光子截面值的类似物结构,与保留标准碱基结构的多环延伸结构一致,如在qA类似物家族中观察到的那样,而与所讨论碱基结构更相似的类似物结构相比之下光谱则要暗淡得多。本次研究结果还推导出了一些设计规则,用于开发潜在的、双光子特异性的类似物,以便未来用于成像和潜在的光化学激活。