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Porphyrin bleaching and PDT-induced spectral changes are irradiance dependent in ALA-sensitized normal rat skin in vivo

机译:卟啉漂白和PDT引起的光谱变化在体内对ALA致敏的正常大鼠皮肤具有辐照度依赖性

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Photobleaching kinetics of aminolevulinic acid-induced protoporphyrin IX (PpIX) were measured in the normal skin of rats in vivo using a technique in which fluorescence spectra were corrected for the effects of tissue optical properties in the emission spectral window through division by reflectance spectra acquired in the same geometry and wavelength interval and for changes in excitation wavelength optical properties using diffuse reflectance measured at the excitation wavelength, Loss of PpIX fluorescence was monitored during photodynamic therapy (PDT) performed using 514 nm irradiation. Bleaching in response to irradiances of 1, 5 and 100 mW cm(-2) was evaluated, The results demonstrate an irradiance dependence to the rate of photobleaching vs Irradiation fluence, with the lowest irradiance leading to the most efficient loss of fluorescence, The kinetics for the accumulation of the primary fluorescent photoproduct of PpIX also exhibit an irradiance dependence, with greater peak accumulation at higher irradiance. These findings are consistent with a predominantly oxygen-dependent photobleaching reaction mechanism in vivo, and they provide spectroscopic evidence that PDT delivered at low irradiance deposits greater photodynamic dose for a given irradiation fluence, We also observed an irradiance dependence to the appearance of a fluorescence emission peak near 620 nm, consistent with accumulation of uroporphyrin/coproporphyrin in response to mitochondrial damage. [References: 39]
机译:在大鼠的正常皮肤中,使用一种技术对氨基乙酰丙酸诱导的原卟啉IX(PpIX)的光致漂白动力学进行了测量,该技术通过将荧光光谱校正为发射光谱窗中的组织光学特性,通过除以获得的反射光谱进行校正。在相同的几何形状和波长间隔下,并使用在激发波长下测得的漫反射来改变激发波长的光学特性,在使用514 nm照射进行光动力疗法(PDT)期间监测了PpIX荧光的损失。评估了响应于1、5和100 mW cm(-2)的辐射的漂白,结果表明辐照度对光漂白速率与辐照通量的依赖关系,最低的辐照度导致最有效的荧光损失,动力学PpIX的初级荧光光产物的积聚也表现出辐照度依赖性,在较高的辐照度下具有更大的峰积聚。这些发现与体内主要依赖氧的光漂白反应机制相一致,并且它们提供了光谱学证据,表明在给定辐照通量下,低辐照度下递送的PDT沉积了更大的光动力剂量。我们还观察到辐照度与荧光发射的外观有关620 nm附近的峰,与响应线粒体损伤的尿卟啉/卟啉的积累一致。 [参考:39]

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