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Spectroscopic studies of photosensitization in solutions and in cells

机译:溶液和细胞中光敏的光谱研究

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We employ classical porphyrins, as well as second-generation sensitizers, such as tetrabenzo- porphyrins, naphthaloporphyrins, texaphyrins, and sapphyrins for biological photosensitization. We studied the extent of sensitizer binding to biological membranes and bacterial cells; the singlet oxygen production yield in homogeneous solutions and in membranes; and the efficiency of the photo-cytotoxic effect of the sensitizers. In carrying out these studies, absorption and fluorescence spectra were used as monitoring techniques. We demonstrate a spectroscopic probing procedure, based on the well established chemical quencher of singlet oxygen, DPIBF, which at appropriate concentration allows a simple mathematical evaluation of the absolute quantum yield of singlet oxygen production. The method does not rely on any predetermined kinetic values and provides a result with high accuracy. The relative efficiency of competing photochemical processes in cells was established, so that the likely mechanism which is responsible for the death of the cell could be pointed out. A unique and exceptional wavelength dependence of photophysical properties is described.
机译:我们使用经典的卟啉,以及二代敏化剂,例如四苯并卟啉,萘卟啉,Texaphyrins和Saphhyrins,用于生物热敏。我们研究了与生物膜和细菌细胞结合的敏化剂的程度;均匀溶液和膜中的单线氧产量产率;以及敏感剂的光 - 细胞毒性作用的效率。在进行这些研究时,使用吸收和荧光光谱作为监测技术。我们证明了一种基于单次氧的良好的化学猝灭剂DPIBF的光谱探测程序,其在适当的浓度下,允许简单的数学评估单线氧生产的绝对量子产率。该方法不依赖于任何预定的动力值,并提供高精度的结果。建立了竞争光化学过程的相对效率,使得能够指出负责细胞死亡的可能机制。描述了光物理性质的独特和异常的波长依赖性。

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