首页> 外文期刊>Free radical research >Photogeneration of free radicals (*OH and HB*-) and singlet oxygen (1O2) by hypocrellin B in TX-100 micelles microsurroundings.
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Photogeneration of free radicals (*OH and HB*-) and singlet oxygen (1O2) by hypocrellin B in TX-100 micelles microsurroundings.

机译:在TX-100胶束微环境中,hypercrerinin B对自由基(* OH和HB *-)和单线态氧(1O2)的光生作用。

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摘要

To solve the problems faced in clinical use of hypocrellins, a water-soluble preparation of Hypocrellin B (HB), HB-Triton X-100 (TX-100) micelles, was prepared. To evaluate the photodynamic activity, the free radicals (*OH and HB*-) and singlet oxygen (1O2) generated via photosensitization of the preparation in aqueous solution were detected by using electron paramagnetic resonance (EPR) and spectrophotometric methods. It was observed that 1O2 was formed with a quantum yield of 0.72, similar to that for HB in organic solvents, further, hydroxyl radicals (*OH) could also be efficiently produced by the new preparation, which have never before been detected following HB photoactivities. In addition, the semiquinone anion radicals (HB*-) could also be generated via the self-electron transfer between an excited triplet state and a ground state molecule. The accumulation of HB*- would replace that of *OH or 1O2 with the depletion of oxygen in the system. All these findings suggested that the HB-TX-100 micelles could play the photodynamic action through not only the type I mechanism by free radicals (*OH, O2*- and HB*-) but also the type II mechanism by singlet oxygen (1O2). It can be concluded further that the new preparation basically maintains the inherent photodynamic activity of HB, or even higher.
机译:为了解决在临床上使用降钙素所面临的问题,制备了降钙素B(HB),HB-Triton X-100(TX-100)胶束的水溶性制剂。为了评估光动力活性,使用电子顺磁共振(EPR)和分光光度法检测了通过在水溶液中光敏化制剂而产生的自由基(* OH和HB *-)和单线态氧(1O2)。观察到形成1O2的量子产率为0.72,与有机溶剂中的HB相似,此外,新制剂还可以有效地产生羟基自由基(* OH),这在HB光敏性之后从未发现过。此外,还可以通过激发三重态与基态分子之间的自电子转移生成半醌阴离子自由基(HB *-)。 HB *-的积累将用系统中的氧气消耗代替* OH或1O2的积累。所有这些发现表明,HB-TX-100胶束不仅可以通过自由基(* OH,O2 *-和HB *-)的I型机制,而且可以通过单线态氧(1O2)的II型机制发挥光动力作用。 )。可以进一步得出结论,新制剂基本上保持了HB固有的光动力学活性,甚至更高。

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