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A Comprehensive Tutorial onIn VitroCharacterization of New Photosensitizers for Photodynamic Antitumor Therapy and Photodynamic Inactivation of Microorganisms

机译:关于新型光敏剂的体外特性化的综合教程,用于光动力抗肿瘤治疗和微生物光动力灭活

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In vitroresearch performed on eukaryotic or prokaryotic cell cultures usually represents the initial step for characterization of a novel photosensitizer (PS) intended for application in photodynamic therapy (PDT) of cancer or photodynamic inactivation (PDI) of microorganisms. Although many experimental steps of PS testing make use of the wide spectrum of methods readily employed in cell biology, special aspects of working with photoactive substances, such as the autofluorescence of the PS molecule or the requirement of light protection, need to be considered when performingin vitroexperiments in PDT/PDI. This tutorial represents a comprehensive collection of operative instructions, by which, based on photochemical and photophysical properties of a PS, its uptake into cells, the intracellular localization and photodynamic action in both tumor cells and microorganisms novel photoactive molecules may be characterized for their suitability for PDT/PDI. Furthermore, it shall stimulate the efforts to expand the convincing benefits of photodynamic therapy and photodynamic inactivation within both established and new fields of applications and motivate scientists of all disciplines to get involved in photodynamic research.
机译:对真核或原核细胞培养物进行的体外研究通常代表了表征新型光敏剂(PS)的第一步,该光敏剂旨在用于癌症的光动力疗法(PDT)或微生物的光动力失活(PDI)。尽管PS测试的许多实验步骤都利用了细胞生物学中容易采用的多种方法,但是在进行光敏物质检测时,仍需要考虑使用光敏物质的特殊方面,例如PS分子的自发荧光或需要遮光的要求。 PDT / PDI中的体外实验。本教程代表了一套完整的操作说明,根据这些说明,根据PS的光化学和光物理特性,其对细胞的摄取,肿瘤细胞和微生物中的细胞内定位和光动力作用,可以对新型光敏分子的适用性进行表征。 PDT / PDI。此外,它将刺激努力在既定的和新的应用领域中扩大光动力疗法和光动力灭活的令人信服的益处,并激发所有学科的科学家参与光动力研究。

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