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The Determination of Quantum Yield in the Fluoresence Spectra of Porphyrins

机译:卟啉荧光光谱中量子产率的测定

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The porphyrins, natural macromolecules, and especially the lycosylated ones, are recently used in the photodynamic therapy of different kinds of tumor cells. The porphyrins are injected through intravenous way in the human body. Under appropriate radiation of tumor zone with light in UV region, oxidation processes of the porphyrins occur through different mechanizms. As a result, inside the tumor, is producing oxygen in singlet state which is lethal for the tumor cells. The spectroscopic study of the porphyrins, both the absorbtion and the fluoresence spectroscopy, reveals some properties of the porphyrins which are ralated with their eventual application in the photodynamic therapy. So, from the value of the quantum yield, which is an important quantity that derives from the measurement of fluoresence of porphyrins, one can judge, through which mechanizm, the oxidation process does occurs. This suggest how the porphyrin should be used in the therapy, as monomers or as aggregates. The porphyrins are sinthetised in the Laboratory of Chemistry of Natural Compaunds, in the University of Limoges. The spectra has been taken by means of a photospectrometer, in the University of Tirana. The fluoresence spectra of the "protected"and "unprotected" porphyrins are studied. The determination of the quantum yield has been done through the comparison of porphyrins spectra, with them of Rhodamine B, which has a large fluoresence, in the same region of spectrum where. does occurr the fluoresence of porphyrins. In order to do that, the calculations of the surface under the fluoresence spectra and under the Rhodamine one, is necessary. Also, the extintion of the fluoresence of some "protected" porphyrins, in polar solution, has been detected. These extintion of fluoresence has to do with the formation of agregates, of dimers, which can be confirmed from the absorbtion spectra.
机译:卟啉,天然大分子,尤其是氯糖基化的,最近用于不同种类的肿瘤细胞的光动力学治疗。卟啉通过人体中的静脉注射。在用紫外线区域的光的适当辐射,卟啉的氧化方法通过不同的施力。结果,在肿瘤内部,在致命肿瘤细胞的单态状态下生产氧气。卟啉的光谱研究,吸收性和荧光光谱,揭示了卟啉的一些性质,其在光动力治疗中具有它们的最终应用。因此,从量子产率的值,这是源于卟啉荧光荧光测量的重要量,可以通过哪个判断氧化过程进行判断。这表明卟啉应该如何用于治疗,作为单体或聚集体。在利润高大学的自然普华州的化学实验室中,卟啉在自然康普斯化学的实验室内进行了嫌疑。 Spectra通过在地拉那大学的光谱仪采取的。研究了“受保护”和“未受保护”卟啉的荧光光谱。通过比较卟啉光谱,用罗丹明B的比较来确定量子产率的测定,其具有大荧光的氟胺B,在相同的光谱区域中。是否发生卟啉的荧光味。为了做到这一点,需要在荧光谱和罗丹明之下的表面下的计算。此外,已经检测到已经检测到极性溶液中一些“受保护的”卟啉的荧光荧光液。这些氟化荧光液与二聚体的形成有关,可以从吸收光谱中确认。

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