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Photostability of different chlorine photosensitizers

机译:不同氯光敏剂的光稳定性

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In this paper, we report the photodegradation of three different chlorine photosensitizers (Photoditazine (R), Radachlorin (R), and Foscan (R)). The photosensitizer degradation was analyzed by changes in the fluorescence spectrum during illumination. The rate of fluorescence variation was normalized to the solution absorption and the photon energy resulting in the determination of the necessary number of photons to be absorbed to induce photosensitizer photodegradation. The parameter for rate of the molecules decay, the photon fluence rate and optical properties of the solution allow us to determine the photosensitizer stability in solution during illumination. The results show that the order of susceptibility for photodegradation rate is: Radachlorin (R) < Photoditazine (R) < Foscan (R). This difference in the photodegradation rate for Foscan can be explained by the high proportion of aggregates in solution that inhibit the photo-oxidative process that impede the singlet oxygen formation. We hypothesize that there is a correlation between photodegradation rate and photodynamic efficacy witch is governed by the singlet oxygen formation responsible for the most relevant reaction of the cell death photodynamic induction. Then its is important to know the photostability of different types of drugs since the photodegradation rate, the photodegradation as well as the photodynamic efficacy are strong correlated to the oxygen concentration in the tissue.
机译:在本文中,我们报告了三种不同的氯光敏剂(Photoditazine(R),Radachlorin(R)和Foscan(R))的光降解作用。通过照射过程中荧光光谱的变化来分析光敏剂的降解。将荧光变化的速率归一化为溶液吸收和光子能量,从而确定要吸收以诱导光敏剂光降解的必要光子数。分子衰减速率,光子通量速率和溶液的光学性质的参数使我们能够确定照射过程中溶液中的光敏剂稳定性。结果表明,光降解速率的敏感性顺序为:Radachlorin(R)

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