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对半胱胺取代竹红菌素B辐照产生的自由基(超氧阴离子自由基、半胱氨酸硫醇阴离子自由基)和单线态氧的电子顺磁共振及分光光度研究

EPR and spectrophotometric studies on free radicals (O2.-, Cysa-HB.-) and singlet oxygen (1O2) generated by irradiation of cysteamine substituted hypocrellin B.

作者信息

He Y Y, An J Y, Jiang L J

机构信息

Institute of Photographic Chemistry, Academia Sinica, Beijing, PR China.

出版信息

Int J Radiat Biol. 1998 Nov;74(5):647-54. doi: 10.1080/095530098141230.

Abstract

PURPOSE

The aim of this work was to investigate the photodynamic action of cysteamine substituted hypocrellin B (Cysa-HB) photochemically and survey the effect of oxygen on its reaction mechanism.

MATERIALS AND METHODS

The EPR method is used to detect the generation of the semiquinone anion radical of Cysa-HB (Cysa-HB.-), and active oxygen species using DMPO and TEMP as spin traps. DPA-bleaching method is used to determine the quantum yield of 1O2 generated from Cysa-HB photosensitization.

RESULTS

In anaerobic solution, Cysa-HB.- was predominantly photoproduced via the self-electron transfer between the excited and ground state species. The presence of electron donors significantly promotes the reduced form of Cysa-HB. When oxygen-saturated solutions of Cysa-HB were illuminated with visible light, superoxide anion radical (O2.-) and singlet oxygen (1O2) were formed. The superoxide anion radical was generated by Cysa-HB.- via electron transfer to oxygen, and this process was significantly enhanced by the presence of electron donors. The 1O2 quantum yield is estimated to be 0.71. Moreover, the accumulation of 1O2 will be replaced by that of Cysa-HB.- with the depletion of oxygen.

CONCLUSIONS

These observations suggest that the photodynamic action of Cysa-HB may proceed via both a Type I and Type II mechanism, and that a Type II mechanism will transform into a Type I mechanism as oxygen gets depleted.

摘要

目的

本研究旨在对半胱胺取代竹红菌素B(Cysa-HB)的光动力作用进行光化学研究,并考察氧对其反应机制的影响。

材料与方法

采用电子顺磁共振(EPR)方法,以DMPO和TEMP为自旋捕获剂,检测Cysa-HB半醌阴离子自由基(Cysa-HB·-)和活性氧的生成。采用DPA漂白法测定Cysa-HB光敏化产生单线态氧(1O2)的量子产率。

结果

在厌氧溶液中,Cysa-HB·-主要通过激发态与基态物种之间的自电子转移光生。电子供体的存在显著促进了Cysa-HB还原形式的生成。当用可见光照射Cysa-HB的氧饱和溶液时,会形成超氧阴离子自由基(O2·-)和单线态氧(1O2)。超氧阴离子自由基由Cysa-HB·-通过电子转移给氧生成,电子供体的存在显著增强了这一过程。1O2的量子产率估计为0.71。此外,随着氧的消耗,1O2的积累将被Cysa-HB·-的积累所取代。

结论

这些观察结果表明,Cysa-HB的光动力作用可能通过I型和II型机制进行,并且随着氧的消耗,II型机制将转变为I型机制。

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