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首页> 外文期刊>Journal of Photochemistry and Photobiology, A. Chemistry >Chemical determination of singlet oxygen from photosensitizers illuminated with LED: New calculation methodology considering the influence of photobleaching
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Chemical determination of singlet oxygen from photosensitizers illuminated with LED: New calculation methodology considering the influence of photobleaching

机译:化学发光法测定由LED照射的光敏剂中的单重态氧:考虑光漂白影响的新计算方法

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摘要

The singlet oxygen (~1O2) is one of the reactive species responsible for the destruction of target cells in Photodynamic Therapy (PDT). However, the quantification of ~1O2 yields (Φ_Δ ) involves lifetime measurements with very expensive equipment. An alternative methodology is the use of a chemical trap, in the present case uric acid (UA), which promptly reacts with ~1O2 providing the evaluation of Φ_Δ. On the other hand, in the quantification of the photons absorbed by the PS employing LED as irradiation sources in this kind of experiments, it is important to evaluate the overlap of the light source in the PS spectrum. Additionally, while some PS are photostable, others may undergo photobleaching leading the amount of absorbed photons to vary with the illumination time due to PS degradation. The proposed methodology corrects this problem. The proposed dosimetry method employing UA and the absorbed photon calculations taking into account chlorophyll and xanthene dyes photobleaching resulted in Φ_Δ values that agree with the literature.
机译:单线态氧(〜1O2)是在光动力疗法(PDT)中负责破坏靶细胞的反应性物质之一。但是,〜1O2产量(Φ_Δ)的量化涉及使用非常昂贵的设备进行寿命测量。另一种方法是使用化学捕集阱(在当前情况下为尿酸(UA)),它可以迅速与〜1O2反应,从而提供Φ_Δ的评估值。另一方面,在这种实验中,在量化采用LED作为照射源的PS吸收的光子时,重要的是评估PS光谱中的光源的重叠。另外,尽管某些PS耐光,但其他PS可能会发生光漂白,导致吸收的光子数量因PS降解而随照明时间而变化。所提出的方法纠正了这个问题。拟议的使用UA的剂量学方法以及考虑到叶绿素和x吨染料光漂白的吸收光子计算得出的Φ_Δ值与文献一致。

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