Robinson D J, de Bruijn H S, van der Veen N, Stringer M R, Brown S B, Star W M
Centre for Photobiology and Photodynamic Therapy, Research School of Medicine, University of Leeds, UK.
Photochem Photobiol. 1998 Jan;67(1):140-9.
The photobleaching of 5-aminolaevulinic acid (ALA)-induced protoporphyrin IX (PpIX) was investigated during superficial photodynamic therapy (PDT) in normal skin of the SKH HR1 hairless mouse. The effects of light dose and fluence rate on the dynamics and magnitude of photobleaching and on the corresponding PDT-induced damage were examined. The results show that the PDT damage cannot be predicted by the total light dose. Photobleaching was monitored over a wide range of initial PpIX fluorescence intensities. The rate of PpIX photobleaching is not a simple function of fluence rate but is dependent on the initial concentration of sensitizer. Also, at high fluence rates (50-150 mW/cm2, 514 nm) oxygen depletion is shown to have a significant effect. The rate of photobleaching with respect to light dose and the corresponding PDT damage both increase with decreasing fluence rate. We therefore suggest that the definition of a bleaching dose as the light dose that causes a 1/e reduction in fluorescence signal is insufficient to describe the dynamics of photobleaching and PDT-induced damage. We have detected the formation of PpIX photoproducts during the initial period of irradiation that were themselves subsequently photobleached. In the absence of oxygen, PpIX and its photoproducts are not photobleached. We present a method of calculating a therapeutic dose delivered during superficial PDT that demonstrates a strong correlation with PDT damage.
在SKH HR1无毛小鼠的正常皮肤进行浅表光动力疗法(PDT)期间,研究了5-氨基乙酰丙酸(ALA)诱导的原卟啉IX(PpIX)的光漂白。研究了光剂量和光通量率对光漂白的动力学和幅度以及相应的PDT诱导损伤的影响。结果表明,PDT损伤无法通过总光剂量预测。在广泛的初始PpIX荧光强度范围内监测光漂白。PpIX光漂白速率不是光通量率的简单函数,而是取决于敏化剂的初始浓度。此外,在高光通量率(50-150 mW/cm2,514 nm)下,氧消耗显示出显著影响。相对于光剂量的光漂白速率和相应的PDT损伤均随着光通量率的降低而增加。因此,我们认为将漂白剂量定义为导致荧光信号降低1/e的光剂量不足以描述光漂白和PDT诱导损伤的动力学。我们在照射初期检测到了PpIX光产物的形成,这些光产物随后自身被光漂白。在无氧条件下,PpIX及其光产物不会被光漂白。我们提出了一种计算浅表PDT期间递送的治疗剂量的方法,该方法与PDT损伤显示出很强的相关性。