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Unraveling of Functional Activity of Primary Hippocampal Neuron-Glial Networks in Photodynamic Therapy Based on Tetracyanotetra(aryl)porphyrazines

The current efforts in photodynamic therapy (PDT) of brain cancer are focused on the development of novel photosensitizers with improved photodynamic properties, targeted specific localization, and sensitivity to the irradiation dose, ensuring the effectiveness of PDT with fewer side effects for nor...

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Autores principales: Savyuk, Maria O., Turubanova, Victoria D., Mishchenko, Tatiana A., Lermontova, Svetlana A., Klapshina, Larisa G., Krysko, Dmitri V., Vedunova, Maria V.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8997601/
https://www.ncbi.nlm.nih.gov/pubmed/35406776
http://dx.doi.org/10.3390/cells11071212
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author Savyuk, Maria O.
Turubanova, Victoria D.
Mishchenko, Tatiana A.
Lermontova, Svetlana A.
Klapshina, Larisa G.
Krysko, Dmitri V.
Vedunova, Maria V.
author_facet Savyuk, Maria O.
Turubanova, Victoria D.
Mishchenko, Tatiana A.
Lermontova, Svetlana A.
Klapshina, Larisa G.
Krysko, Dmitri V.
Vedunova, Maria V.
author_sort Savyuk, Maria O.
collection PubMed
description The current efforts in photodynamic therapy (PDT) of brain cancer are focused on the development of novel photosensitizers with improved photodynamic properties, targeted specific localization, and sensitivity to the irradiation dose, ensuring the effectiveness of PDT with fewer side effects for normal nerve tissue. Here, we characterize the effects of four photosensitizers of the tetracyanotetra(aryl)porphyrazine group (pz I–IV) on the functional activity of neuron-glial networks in primary hippocampal cultures in their application in normal conditions and under PDT. The data revealed that the application of pz I–IV leads to a significant decrease in the main parameters of the functional calcium activity of neuron-glial networks and pronounced changes in the network characteristics. The observed negative effects of pz I–IV were aggravated under PDT. Considering the significant restructuring of the functional architectonics of neuron-glial networks that can lead to severe impairments in synaptic transmission and loss of brain functions, and the feasibility of direct application of PDT based on pz I–IV in the therapy of brain tumors is highly controversial. Nevertheless, the unique properties of pz I–IV retain a great prospect of their use in the therapy of tumors of another origin and cellular metabolism.
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spelling pubmed-89976012022-04-12 Unraveling of Functional Activity of Primary Hippocampal Neuron-Glial Networks in Photodynamic Therapy Based on Tetracyanotetra(aryl)porphyrazines Savyuk, Maria O. Turubanova, Victoria D. Mishchenko, Tatiana A. Lermontova, Svetlana A. Klapshina, Larisa G. Krysko, Dmitri V. Vedunova, Maria V. Cells Article The current efforts in photodynamic therapy (PDT) of brain cancer are focused on the development of novel photosensitizers with improved photodynamic properties, targeted specific localization, and sensitivity to the irradiation dose, ensuring the effectiveness of PDT with fewer side effects for normal nerve tissue. Here, we characterize the effects of four photosensitizers of the tetracyanotetra(aryl)porphyrazine group (pz I–IV) on the functional activity of neuron-glial networks in primary hippocampal cultures in their application in normal conditions and under PDT. The data revealed that the application of pz I–IV leads to a significant decrease in the main parameters of the functional calcium activity of neuron-glial networks and pronounced changes in the network characteristics. The observed negative effects of pz I–IV were aggravated under PDT. Considering the significant restructuring of the functional architectonics of neuron-glial networks that can lead to severe impairments in synaptic transmission and loss of brain functions, and the feasibility of direct application of PDT based on pz I–IV in the therapy of brain tumors is highly controversial. Nevertheless, the unique properties of pz I–IV retain a great prospect of their use in the therapy of tumors of another origin and cellular metabolism. MDPI 2022-04-04 /pmc/articles/PMC8997601/ /pubmed/35406776 http://dx.doi.org/10.3390/cells11071212 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Savyuk, Maria O.
Turubanova, Victoria D.
Mishchenko, Tatiana A.
Lermontova, Svetlana A.
Klapshina, Larisa G.
Krysko, Dmitri V.
Vedunova, Maria V.
Unraveling of Functional Activity of Primary Hippocampal Neuron-Glial Networks in Photodynamic Therapy Based on Tetracyanotetra(aryl)porphyrazines
title Unraveling of Functional Activity of Primary Hippocampal Neuron-Glial Networks in Photodynamic Therapy Based on Tetracyanotetra(aryl)porphyrazines
title_full Unraveling of Functional Activity of Primary Hippocampal Neuron-Glial Networks in Photodynamic Therapy Based on Tetracyanotetra(aryl)porphyrazines
title_fullStr Unraveling of Functional Activity of Primary Hippocampal Neuron-Glial Networks in Photodynamic Therapy Based on Tetracyanotetra(aryl)porphyrazines
title_full_unstemmed Unraveling of Functional Activity of Primary Hippocampal Neuron-Glial Networks in Photodynamic Therapy Based on Tetracyanotetra(aryl)porphyrazines
title_short Unraveling of Functional Activity of Primary Hippocampal Neuron-Glial Networks in Photodynamic Therapy Based on Tetracyanotetra(aryl)porphyrazines
title_sort unraveling of functional activity of primary hippocampal neuron-glial networks in photodynamic therapy based on tetracyanotetra(aryl)porphyrazines
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8997601/
https://www.ncbi.nlm.nih.gov/pubmed/35406776
http://dx.doi.org/10.3390/cells11071212
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