Events7th International Electronic Conference on Medicinal Chemistry
Published
This submission belongs to the session S4. Fighting cancers of the event 7th International Electronic Conference on Medicinal Chemistry
Published date
03 Nov, 2021
Academic Editor
author-avatarJean Jacques Vanden Eynde
Citation
Irina V. Balalaeva, Anastasia A. Gorokhova, Nina N. Peskova, Svetlana A. Lermontova, Larisa G. Klapshina, Vladimir I. Plekhanov, Cyanoarylporphyrazines with high viscosity sensitivity in dosimetry-assisted photodynamic cancer treatment, in Proceedings of 7th International Electronic Conference on Medicinal Chemistry, 1 November–30 November 2021, MDPI: Basel, Switzerland, doi: 10.3390/ECMC2021-11530
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Cyanoarylporphyrazines with high viscosity sensitivity in dosimetry-assisted photodynamic cancer treatment

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Anastasia A. Gorokhova 2
Svetlana A. Lermontova 3
1. Lobachevsky University, Nizhny Novgorod, Russian Federation, Russia
2. Lobachevsky University, Nizhny Novgorod, Russian Federation
3. Institute of Organometallic Chemistry of the Russian Academy of Sciences, Nizhny Novgorod, Russian Federation
4. Institute of Applied Physics of the Russian Academy of Sciences, Nizhny Novgorod, Russian Federation
Abstract

Despite the significant relevance of photodynamic therapy (PDT) as an efficient strategy for anticancer treatment, several challenges compromise its efficiency. Here we report the novel group of tetracyanotetra(aryl)porphyrazine dyes that enable real-time assessment of tissue response and thus predict treatment efficacy. The most remarkable and promising feature of the studied compounds is their belonging to the group of fluorescent molecular rotors. The quantum yield and fluorescence lifetime of the cyanoarylporphyrazines are strongly depend on the local viscosity, so they can be used as intracellular viscosity sensors. The cyanoarylporphyrazines demonstrate high photo-induced toxicity both in vitro and in vivo. Of note, complete recovery from cancer was observed for more than half of the treated animals without any signs of dark toxicity. It was shown that photoinduced cell damage is accompanied by a significant dose-dependent increase in cell viscosity. The viscosity changes under PDT treatment may result from denaturation of macromolecules, inter- and intramolecular crosslinking, membrane disorganization, etc., and reflect the severity of PDT-induced changes in cell physiology. We have proposed the approach for noninvasively measuring the tissue viscosity during the PDT procedure by registering the fluorescence lifetime of the cyanoarylporphyrazines. We believe that the unique properties of the compounds provide a tool for PDT dosimetry and tailoring the PDT treatment regimen to the individual characteristics of each patient.

The work is supported by the Ministry of Science and Higher Education of the Russian Federation (project No. 075-15-2020-927).

Keywords
Photodynamic therapy
cancer treatment
cyanoarylporphyrazines
viscosity sensing
fluorescent molecular rotors
Poster
Balalaeva_ECMC2021.pdf
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