Quinones Michael, Zhang Yazhou, Riascos Penelope, Hwang Huey-Min, Aker Winfred G, He Xiaojia, Gao Ruomei
Chemistry and Physics Department, SUNY College at Old Westbury, Old Westbury, NY.
Photochem Photobiol. 2014 Mar-Apr;90(2):374-9. doi: 10.1111/php.12206. Epub 2013 Dec 2.
Many biomolecules contain photoactive reducing agents, such as reduced nicotinamide adenine dinucleotide (NADH) and 6-thioguanine (6-TG) incorporated into DNA through drug metabolism. These reducing agents may produce reactive oxygen species under UVA irradiation or act as electron donors in various media. The interactions of C60 fullerenes with biological reductants and light energy, especially via the Type-I electron-transfer mechanism, are not fully understood although these factors are often involved in toxicity assessments. The two reductants employed in this work were NADH for aqueous solutions and 6-TG for organic solvents. Using steady-state photolysis and electrochemical techniques, we showed that under visible light irradiation, the presence of reducing agents enhanced C60 -mediated Type-I reactions that generate superoxide anion (O2(.-)) at the expense of singlet oxygen ((1)O2) production. The quantum yield of O2(.-) production upon visible light irradiation of C60 is estimated below 0.2 in dipolar aprotic media, indicating that the majority of triplet C60 deactivate via Type-II pathway. Upon UVA irradiation, however, both C60 and NADH undergo photochemical reactions to produce O2(.-), which could lead to a possible synergistic toxicity effects. C60 photosensitization via Type-I pathway is not observed in the absence of reducing agents.
许多生物分子含有光活性还原剂,如还原型烟酰胺腺嘌呤二核苷酸(NADH)以及通过药物代谢掺入DNA中的6-硫鸟嘌呤(6-TG)。这些还原剂在紫外线A照射下可能产生活性氧,或在各种介质中充当电子供体。尽管毒性评估中常常涉及这些因素,但C60富勒烯与生物还原剂和光能的相互作用,尤其是通过I型电子转移机制的相互作用,尚未完全明确。本研究中使用的两种还原剂,在水溶液中为NADH,在有机溶剂中为6-TG。通过稳态光解和电化学技术,我们发现,在可见光照射下,还原剂的存在增强了C60介导的I型反应,该反应以牺牲单线态氧((1)O2)的产生为代价生成超氧阴离子(O2(.-))。在偶极非质子介质中,C60可见光照射下产生O2(.-)的量子产率估计低于0.2,这表明大多数三线态C60通过II型途径失活。然而,在紫外线A照射下,C60和NADH都会发生光化学反应生成O2(.-),这可能导致协同毒性效应。在没有还原剂的情况下,未观察到通过I型途径的C60光敏化现象。