荧光
光敏剂
核糖苷
化学
DNA
生物物理学
核糖核酸
生物化学
光化学
生物
物理
光学
基因
作者
Naishka E. Caldero‐Rodríguez,Enrique M. Arpa,Diego J. Cárdenas,Lara Martínez‐Fernández,Steffen Jockusch,Sourav Kanti Seth,Inés Corral,Carlos E. Crespo‐Hernández
标识
DOI:10.1021/acs.jpcb.2c01113
摘要
There is significant interest in developing suitable nucleoside analogs exhibiting high fluorescence and triplet yields to investigate the structure, dynamics, and binding properties of nucleic acids and promote selective photosensitized damage to DNA/RNA, respectively. In this study, steady-state, laser flash photolysis, time-resolved IR luminescence, and femtosecond broad-band transient absorption spectroscopies are combined with quantum chemical calculations to elucidate the excited-state dynamics of 2-oxopurine riboside in aqueous solution and to investigate its prospective use as a fluorescent or photosensitizer analog. The Franck–Condon population in the S1 (ππ*) state decays through a combination of solvent and conformational relaxation to its minimum in 1.9 ps. The population trapped in the 1ππ* minimum bifurcates to either fluoresce or intersystem cross to the triplet manifold within ca. 5 ns, while another fraction of the population decays nonradiatively to the ground state. It is demonstrated that 2-oxopurine riboside exhibits both high fluorescent (48%) and significant triplet (between 10% and 52%) yields, leading to a yield of singlet oxygen generation of 10%, making this nucleoside analog a dual fluorescent and photosensitizer analog for DNA and RNA research.
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