Long-term fluorescence of erythrosine in alive mammalian cells

Investigation of triplet states of probes molecules located in cells and tissues is used for research of pathological processes included cancer development due to high sensitivity of triplet states lifetime to surround medium. In the work the long-term fluorescence of erythrosine located in alive ma...

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Main Author: Valeriya S. Maryakhina
Format: Article
Language:English
Published: Samara National Research University 2016-09-01
Series:Journal of Biomedical Photonics & Engineering
Subjects:
Online Access:http://jbpe.ssau.ru/index.php/JBPE/article/view/3078
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spelling doaj-bfcd9c2445034525a5d95d2d09c61cf92020-11-25T02:51:58ZengSamara National Research UniversityJournal of Biomedical Photonics & Engineering2411-28442016-09-012310.18287/JBPE16.02.0303032898Long-term fluorescence of erythrosine in alive mammalian cellsValeriya S. Maryakhina0Orenburg State University, RussiaInvestigation of triplet states of probes molecules located in cells and tissues is used for research of pathological processes included cancer development due to high sensitivity of triplet states lifetime to surround medium. In the work the long-term fluorescence of erythrosine located in alive mammalian cells has been analyzed by mathematical simulation. The model considers all basic processes of relaxation of probe triplet states in biological media. It is obtained that signal intensity and its form depends on oxygen concentration and viscosity of cells cytoplasm in which the dye diffuses. Interaction of erythrosine with the variety of extinguishers (included immobilization process into peptides molecules) does not impact on signal of the delayed fluorescence. Their concentration impact on cell viscosity mean only. The most important extinguisher is molecular oxygen impacting on signal. The correlation between theoretical and experimental results let to consider that the model is adequate.http://jbpe.ssau.ru/index.php/JBPE/article/view/3078long-term fluorescenceerythrosinesinglet oxygenmammalian cellsfluorescent diagnostics.
collection DOAJ
language English
format Article
sources DOAJ
author Valeriya S. Maryakhina
spellingShingle Valeriya S. Maryakhina
Long-term fluorescence of erythrosine in alive mammalian cells
Journal of Biomedical Photonics & Engineering
long-term fluorescence
erythrosine
singlet oxygen
mammalian cells
fluorescent diagnostics.
author_facet Valeriya S. Maryakhina
author_sort Valeriya S. Maryakhina
title Long-term fluorescence of erythrosine in alive mammalian cells
title_short Long-term fluorescence of erythrosine in alive mammalian cells
title_full Long-term fluorescence of erythrosine in alive mammalian cells
title_fullStr Long-term fluorescence of erythrosine in alive mammalian cells
title_full_unstemmed Long-term fluorescence of erythrosine in alive mammalian cells
title_sort long-term fluorescence of erythrosine in alive mammalian cells
publisher Samara National Research University
series Journal of Biomedical Photonics & Engineering
issn 2411-2844
publishDate 2016-09-01
description Investigation of triplet states of probes molecules located in cells and tissues is used for research of pathological processes included cancer development due to high sensitivity of triplet states lifetime to surround medium. In the work the long-term fluorescence of erythrosine located in alive mammalian cells has been analyzed by mathematical simulation. The model considers all basic processes of relaxation of probe triplet states in biological media. It is obtained that signal intensity and its form depends on oxygen concentration and viscosity of cells cytoplasm in which the dye diffuses. Interaction of erythrosine with the variety of extinguishers (included immobilization process into peptides molecules) does not impact on signal of the delayed fluorescence. Their concentration impact on cell viscosity mean only. The most important extinguisher is molecular oxygen impacting on signal. The correlation between theoretical and experimental results let to consider that the model is adequate.
topic long-term fluorescence
erythrosine
singlet oxygen
mammalian cells
fluorescent diagnostics.
url http://jbpe.ssau.ru/index.php/JBPE/article/view/3078
work_keys_str_mv AT valeriyasmaryakhina longtermfluorescenceoferythrosineinalivemammaliancells
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