G. Meerovich, I. Romanishkin, E. Akhlyustina, M. Strakhovskaya, E. Kogan, I. Angelov, V. Loschenov, E. Borisova
{"title":"Photodynamic Action in Thin Sensitized Layers: Estimating the Utilization of Light Energy","authors":"G. Meerovich, I. Romanishkin, E. Akhlyustina, M. Strakhovskaya, E. Kogan, I. Angelov, V. Loschenov, E. Borisova","doi":"10.18287/jbpe21.07.040301","DOIUrl":null,"url":null,"abstract":". The result of photodynamic action significantly depends on the density of the light dose absorbed by the photosensitizer. The efficiency of using light to excite photosensitizer molecules and minimization of its loss plays an important role in ensuring the overall success of the process. When carrying out photodynamic treatment of thin sensitized layers (such as inactivation of surface pathogens or in vitro screening studies of photosensitizers), only a part of the light dose is absorbed in the layer, while a significant part is lost, especially at low concentrations of the photosensitizer. In this work, we evaluate the decrease in absorbed light dose depending on the extinction and concentration of the photosensitizer in a thin sensitized layer, the shape of its absorption spectrum, and the shape of the excitation light source spectrum. It was found out that a significant loss of the absorbed dose occurs upon excitation of photosensitizers, especially with low extinction, when using light sources with a broad emission spectrum. This loss must be taken into consideration when predicting the results of photodynamic exposure and optimizing its tactics. © 2021 Journal of Biomedical Photonics & Engineering.","PeriodicalId":52398,"journal":{"name":"Journal of Biomedical Photonics and Engineering","volume":" ","pages":""},"PeriodicalIF":0.0000,"publicationDate":"2021-07-28","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"5","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Journal of Biomedical Photonics and Engineering","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.18287/jbpe21.07.040301","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"Q3","JCRName":"Physics and Astronomy","Score":null,"Total":0}
引用次数: 5
薄感光层的光动力学作用:估计光能的利用
. 光动力作用的结果在很大程度上取决于光敏剂吸收的光剂量的密度。利用光激发光敏剂分子的效率及其损失的最小化在确保整个过程的成功中起着重要的作用。在对薄的敏化层进行光动力处理时(如表面病原体灭活或光敏剂的体外筛选研究),层中只有一部分光剂量被吸收,而相当一部分光剂量丢失,特别是在低浓度的光敏剂下。在这项工作中,我们评估了吸收光剂量的减少取决于光敏剂在薄敏化层中的消光和浓度,其吸收光谱的形状和激发光源光谱的形状。研究发现,当使用发射光谱较宽的光源时,光敏剂的激发,特别是低消光时,吸收剂量的损失很大。在预测光动力曝光的结果和优化其策略时,必须考虑到这种损失。©2021生物医学光子学与工程杂志。
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