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首页> 外文期刊>Photochemistry and Photobiology >Stability of Flavonoids in the Presence of Riboflavin-photogenerated Reactive Oxygen Species: A Kinetic and Mechanistic Study on Quercetin, Morin and Rutin
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Stability of Flavonoids in the Presence of Riboflavin-photogenerated Reactive Oxygen Species: A Kinetic and Mechanistic Study on Quercetin, Morin and Rutin

机译:核黄素光生活性氧存在下类黄酮的稳定性:槲皮素,桑色素和芦丁的动力学和机理研究

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摘要

Kinetic and mechanistic aspects on the stability of the flavones (FL) quercetin (Que), morin (Mor) and rutin (Rut), in methanolic solution and in the presence of reactive oxygen species (ROS) generated by visible light-promoted riboflavin (Rf, vitamin B2) photoirradiation were studied. The system was chosen as a model for the evaluation of the in vivo protective effect of biological targets by the flavones. The overall picture includes the vitamin as an endogenous natural photosensitizer. A systematic study on the effect of ROS on FL photostability shows that under work conditions Que is oxidized by singlet molecular oxygen (O2(^sup 1^Δ^sub g^)), superoxide radical anion (O^sub 2^^sup .-^ ) and hydrogen peroxide; Mor is degraded by O2(^sup 1^Δ^sub g^) and O^sub 2^^sup .-^ whereas Rut only reacts with O2(^sup 1^Δ^sub g^). Que and Rut, with an extremely poor overall rate constant, are mainly physical quenchers of O2(^sup 1^Δ^sub g^). Mor, with O2(^sup 1^Δ^sub g^)-interception ability slightly lower than the recognized synthetic antioxidant trolox (Tx), behaves as a typical sacrificial scavenger provided that ca 80% of the collisions with O2(^sup 1^Δ^sub g^) cause its own degradation, whereas this parameter reaches around 50% in the case of Tx. [PUBLICATION ABSTRACT]
机译:黄酮(FL)槲皮素(Que),茉莉(Mor)和芦丁(Rut)在甲醇溶液中以及在可见光促进的核黄素(ROS)产生的活性氧(ROS)存在下的稳定性的动力学和力学方面研究了Rf,维生素B2)的光辐射。选择该系统作为评估黄酮对生物靶标体内保护作用的模型。整体情况包括维生素作为内源性天然光敏剂。对ROS对FL光稳定性的影响的系统研究表明,在工作条件下,Que被单态分子氧(O2(^ sup 1 ^Δ^ sub g ^)),超氧自由基阴离子(O ^ sub 2 ^ sup)氧化。 -^)和过氧化氢; Mor被O2(^ sup 1 ^Δ^ sub g ^)和O ^ sub 2 ^^ sup .- ^降解,而Rut仅与O2(^ sup 1 ^Δ^ sub g ^)反应。总体速率常数极差的Que和Rut主要是O2的物理猝灭剂。 Mor,其O2(^ sup 1 ^Δ^ sub g ^)的拦截能力略低于公认的合成抗氧化剂Trolox(Tx),其行为是典型的牺牲性清除剂,只要与O2(^ sup 1 ^Δ^ sub g ^)导致其自身退化,而在Tx的情况下,此参数达到约50%。 [出版物摘要]

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    《Photochemistry and Photobiology》 |2010年第4期|p.827-834|共8页
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    María P. Montaña*1, Walter A. Massad2, Susana Criado2, Alicia Biasutti2 and Norman A. García*21 Área de Química Física-INQUISAL, Universidad Nacional de San Luis, San Luis, Argentina2 Departamento de Química, Universidad Nacional de Río Cuarto, Campus Universitario,Río Cuarto, ArgentinaReceived 9 February 2010, accepted 21 April 2010, DOI: 10.1111/j.1751-1097.2010.00754.x* Corresponding authors' email: mpaulina@unsl.edu.ar (María P. Montaña), ngarcía@exa.unrc.edu.ar (Norman A. García)© 2010 The Authors. Journal Compilation. The American Society of Photobiology 0031-8655/10,;

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