首页> 外文期刊>Journal of Photochemistry and Photobiology, B. Biology: Official Journal of the European Society for Photobiology >Electron paramagnetic resonance and spectrophotometric evidence on the photodynamic activity of a new perylenequinonoid pigment
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Electron paramagnetic resonance and spectrophotometric evidence on the photodynamic activity of a new perylenequinonoid pigment

机译:电子顺磁共振和分光光度法证明新型per醌类色素的光动力学活性

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摘要

Di-cysteine substituted hypocrellin B (DCHB) is a new water-soluble photosensitizer with significantly enhanced red absorption at wavelengths longer than 600 nm over the parent compound hyporellin B (HB). The photosensitizing properties (Type I and/or Type II mechanisms) of DCHB have been investigated in dimethylsulfoxide (DMSO) and aqueous solution (pH 7.4) using electron paramagnetic resonance (EPR) and spectrophotometric methods. In anaerobic DMSO solution, the semiquinone anion radical of DCHB (DCHB~(.-) is predominantly photoproduced via self-electron transfer between excited- and ground-state DCHB species. The presence of an electron donor significantly promotes the formation of the reduced form of DCHB. When a deoxygenated aqueous solution of DCHB and an electron donor are irradiated with 532 nm light, the hydroquinone of DCHB (DCHBH_2) is formed via the disproportionation of the first-formed DCHB~(.-) and second wlectron transfer to DCHB~(.-) from the electron nor. When oxygen is present, singlet oxygen (~1O_2), superoxide anion radical (O_2~(.-) and hydroxyl radical (~.OH) are produced. The quantum yield of ~1O_2 generation by DCHB photosensitization is estimated to be 0.54 using Rose Bengal as a reference, a little lower than that of HB (0.76). The superoxide anion radical is also significantly enhanced by the presence of electron donors. Moreover, O_2~(.-) upon disproportionation generated H_2O_2 and ultimately the highly reactive ~.OH via the Haber-Weiss reaction pathway. The efficiency of O_2~(.-) generation by DCHB is obviously enhanced over that of HB. These findings suggest that the photodynamic actions of DCHB may proceed via Type I and Type II mechanisms and that this new photosensitizer retains photosensitizing activity after photodynamic therapy-oriented chemical modification.
机译:双半胱氨酸取代的hypercrellin B(DCHB)是一种新型水溶性光敏剂,在波长大于600 nm的波长下,其母体化合物hyperrellin B(HB)的红色吸收显着增强。使用电子顺磁共振(EPR)和分光光度法研究了DCHB在二甲亚砜(DMSO)和水溶液(pH 7.4)中的光敏特性(I型和/或II型机理)。在厌氧DMSO溶液中,DCHB(DCHB〜(.-)的半醌阴离子自由基主要通过激发态和基态DCHB物种之间的自电子转移而光生,电子供体的存在显着促进了还原形式的形成当用532 nm的光照射DCHB的脱氧水溶液和电子供体时,DCHB的对苯二酚(DCHBH_2)通过第一个形成的DCHB〜(.-)的歧化和第二个电子转移到DCHB而形成。由电子或〜(.-)组成,当存在氧时,会产生单线态氧(〜1O_2),超氧阴离子自由基(O_2〜(.-)和羟基自由基(〜.OH),产生〜1O_2的量子产率通过DCHB光敏性,以玫瑰红为参考,估计为0.54,比HB(0.76)略低,而且电子给体的存在也显着增强了超氧阴离子自由基,此外,O_2〜(.-)歧化产生H_2O_2和ul最好通过Haber-Weiss反应途径获得高反应性〜.OH。 DCHB产生O_2〜(.-)的效率明显高于HB。这些发现表明DCHB的光动力作用可能通过I型和II型机制进行,并且这种新的光敏剂在面向光动力疗法的化学修饰后仍保持光敏活性。

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