Department of Biophysics, Faculty of Medicine and Dentistry, Palacky University, Olomouc, Czech Republic.
Med Res Rev. 2023 Jul;43(4):717-774. doi: 10.1002/med.21935. Epub 2023 Feb 9.
Photodynamic therapy is an alternative treatment mainly for cancer but also for bacterial infections. This treatment dates back to 1900 when a German medical school graduate Oscar Raab found a photodynamic effect while doing research for his doctoral dissertation with Professor Hermann von Tappeiner. Unexpectedly, Raab revealed that the toxicity of acridine on paramecium depends on the intensity of light in his laboratory. Photodynamic therapy is therefore based on the administration of a photosensitizer with subsequent light irradiation within the absorption maxima of this substance followed by reactive oxygen species formation and finally cell death. Although this treatment is not a novelty, there is an endeavor for various modifications to the therapy. For example, selectivity and efficiency of the photosensitizer, as well as irradiation with various types of light sources are still being modified to improve final results of the photodynamic therapy. The main aim of this review is to summarize anticancer and antibacterial modifications, namely various compounds, approaches, and techniques, to enhance the effectiveness of photodynamic therapy.
光动力疗法是一种主要用于癌症治疗的替代疗法,但也可用于细菌感染的治疗。这种治疗方法可以追溯到 1900 年,当时德国医学院毕业生奥斯卡·拉布(Oscar Raab)在与赫尔曼·冯·塔皮纳(Hermann von Tappeiner)教授一起做博士论文研究时发现了光动力效应。出人意料的是,拉布(Raab)在实验室中揭示了吖啶对草履虫的毒性取决于光的强度。因此,光动力疗法是基于在吸收物质的最大值后给予光敏剂,随后进行光照射,从而形成活性氧物质,最终导致细胞死亡。尽管这种治疗方法并不是新的,但仍在努力对其进行各种修改。例如,正在对光敏剂的选择性和效率以及使用各种类型的光源进行照射进行修改,以提高光动力疗法的最终效果。本文综述的主要目的是总结抗癌和抗菌的修饰方法,即各种化合物、方法和技术,以提高光动力疗法的有效性。