首页> 外文期刊>Photochemistry and Photobiology: An International Journal >Protoporphyrin IX Fluorescence Photobleaching during ALA-Mediated Photodynamic Therapy of UVB-Induced Tumors in Hairless Mouse Skin
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Protoporphyrin IX Fluorescence Photobleaching during ALA-Mediated Photodynamic Therapy of UVB-Induced Tumors in Hairless Mouse Skin

机译:ALA介导的无毛小鼠皮肤中UVB诱导肿瘤的光动力疗法中的原卟啉IX荧光光漂白

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Fluorescence photobleaching of protoporphyrin IX (PpIX) during superficial photodynamic therapy (PDT), using 514 nm excitation, was studied in UVB-induced tumor tissue in the SKH-HR1 hairless mouse. The effects of different irradiance and light fractionation regimes upon the kinetics of photobleaching and the PDT-induced damage were examined. Results show that the rate of PpIX photobleaching (i.e. fluorescence intensity vs fluence) and the PDT damage both increase with decreasing irradiance. We have also detected the formation of fluorescent PpIX photoproducts in the tumor during PDT, although the quantity recorded is not significantly greater than generated in normal mouse skin, using the same light regime. The subsequent photobleaching of the photoproducts also occurs at a rate (vs fluence) that increases with decreasing irradiance. In the case of light fractionation, the rate of photobleaching increases upon renewed exposure after the dark period, and there is a corresponding increase in PDT damage although this increase is smaller than that observed with decreasing irradiance. The effect of fractionation is greater in UVB-induced tumor tissue than in normal tissue and the damage is enhanced when fractionation occurs at earlier time points. We observed a variation in the distribution of PDT damage over the irradiated area of the tumor: at high irradiance a ring of damage was observed around the periphery. The distribution of PDT damage became more homogeneous with both lower irradiance and the use of light fractionation. The therapeutic dose delivered during PDT, calculated from an analysis of the fluorescence photobleaching rate, shows a strong correlation with the damage induced in normal skin, with and without fractionation. The same correlation could be made with the data obtained from UVB-induced tumor tissue using a single light exposure. However, there was no such correlation when fractionation schemes were employed upon the tumor tissue.
机译:在UVH诱导的SKH-HR1无毛小鼠的肿瘤组织中,研究了原卟啉IX(PpIX)在浅层光动力疗法(PDT)期间使用514 nm激发的荧光光漂白。考察了不同的辐照度和光分级制度对光漂白动力学和PDT诱导的损伤的影响。结果表明,随着辐照度的降低,PpIX光漂白的速率(即荧光强度与能量密度)和PDT损伤均增加。我们还检测了PDT期间肿瘤中荧光PpIX光产物的形成,尽管使用相同的光照方案记录的数量并不明显大于正常小鼠皮肤中产​​生的数量。光产物的后续光漂白也以随着辐照度降低而增加的速率(相对于注量)发生。在光分级的情况下,在黑暗期后重新曝光后,光漂白的速率会增加,并且PDT损伤会相应增加,尽管这种增加小于辐照度降低时观察到的增加。在UVB诱导的肿瘤组织中,分级分离的作用要比正常组织大,当在较早的时间点进行分级分离时,损害会增强。我们观察到PDT损伤在肿瘤照射区域上的分布变化:在高辐照度下,在周围周围观察到了损伤环。随着较低的辐照度和使用光分级,PDT损伤的分布变得更加均匀。根据对荧光光漂白速率的分析计算得出,PDT期间递送的治疗剂量与正常皮肤在有或没有分馏的情况下所引起的损伤密切相关。使用单次曝光从UVB诱导的肿瘤组织获得的数据可以得出相同的相关性。然而,当在肿瘤组织上采用分级方案时,没有这种相关性。

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