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Thermoresponsive Zinc TetraPhenylPorphyrin Photosensitizer/Dextran Graft Poly(N-IsoPropylAcrylAmide) Copolymer/Au Nanoparticles Hybrid Nanosystem: Potential for Photodynamic Therapy Applications

The thermoresponsive Zinc TetraPhenylPorphyrin photosensitizer/Dextran poly (N-isopropylacrylamide) graft copolymer/Au Nanoparticles (ZnTPP/D-g-PNIPAM/AuNPs) triple hybrid nanosystem was synthesized in aqueous solution as a nanodrug for potential use in thermally driven and controlled photodynamic t...

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Autores principales: Yeshchenko, Oleg A., Kutsevol, Nataliya V., Tomchuk, Anastasiya V., Khort, Pavlo S., Virych, Pavlo A., Chumachenko, Vasyl A., Kuziv, Yulia I., Marinin, Andrey I., Cheng, Lili, Nie, Guochao
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9370275/
https://www.ncbi.nlm.nih.gov/pubmed/35957085
http://dx.doi.org/10.3390/nano12152655
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author Yeshchenko, Oleg A.
Kutsevol, Nataliya V.
Tomchuk, Anastasiya V.
Khort, Pavlo S.
Virych, Pavlo A.
Chumachenko, Vasyl A.
Kuziv, Yulia I.
Marinin, Andrey I.
Cheng, Lili
Nie, Guochao
author_facet Yeshchenko, Oleg A.
Kutsevol, Nataliya V.
Tomchuk, Anastasiya V.
Khort, Pavlo S.
Virych, Pavlo A.
Chumachenko, Vasyl A.
Kuziv, Yulia I.
Marinin, Andrey I.
Cheng, Lili
Nie, Guochao
author_sort Yeshchenko, Oleg A.
collection PubMed
description The thermoresponsive Zinc TetraPhenylPorphyrin photosensitizer/Dextran poly (N-isopropylacrylamide) graft copolymer/Au Nanoparticles (ZnTPP/D-g-PNIPAM/AuNPs) triple hybrid nanosystem was synthesized in aqueous solution as a nanodrug for potential use in thermally driven and controlled photodynamic therapy applications. The aqueous solution of the nanosystem has demonstrated excellent stability in terms of aggregation and sedimentation several days after preparation. Optimal concentrations of the components of hybrid nanosystem providing the lowest level of aggregation and the highest plasmonic enhancement of electronic processes in the photosensitizer molecules have been determined. It has been revealed that the shrinking of D-g-PNIPAM macromolecule during a thermally induced phase transition leads to the release of both ZnTPP molecules and Au NPs from the ZnTPP/D-g-PNIPAM/AuNPs macromolecule and the strengthening of plasmonic enhancement of the electronic processes in ZnTPP molecules bound with the polymer macromolecule. The 2.7-fold enhancement of singlet oxygen photogeneration under resonant with surface plasmon resonance has been observed for ZnTPP/D-g-PNIPAM/AuNPs proving the plasmon nature of such effect. The data obtained in vitro on wild strains of Staphylococcus aureus have proved the high potential of such nanosystem for rapid photodynamic inactivation of microorganisms particular in wounds or ulcers on the body surface.
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spelling pubmed-93702752022-08-12 Thermoresponsive Zinc TetraPhenylPorphyrin Photosensitizer/Dextran Graft Poly(N-IsoPropylAcrylAmide) Copolymer/Au Nanoparticles Hybrid Nanosystem: Potential for Photodynamic Therapy Applications Yeshchenko, Oleg A. Kutsevol, Nataliya V. Tomchuk, Anastasiya V. Khort, Pavlo S. Virych, Pavlo A. Chumachenko, Vasyl A. Kuziv, Yulia I. Marinin, Andrey I. Cheng, Lili Nie, Guochao Nanomaterials (Basel) Article The thermoresponsive Zinc TetraPhenylPorphyrin photosensitizer/Dextran poly (N-isopropylacrylamide) graft copolymer/Au Nanoparticles (ZnTPP/D-g-PNIPAM/AuNPs) triple hybrid nanosystem was synthesized in aqueous solution as a nanodrug for potential use in thermally driven and controlled photodynamic therapy applications. The aqueous solution of the nanosystem has demonstrated excellent stability in terms of aggregation and sedimentation several days after preparation. Optimal concentrations of the components of hybrid nanosystem providing the lowest level of aggregation and the highest plasmonic enhancement of electronic processes in the photosensitizer molecules have been determined. It has been revealed that the shrinking of D-g-PNIPAM macromolecule during a thermally induced phase transition leads to the release of both ZnTPP molecules and Au NPs from the ZnTPP/D-g-PNIPAM/AuNPs macromolecule and the strengthening of plasmonic enhancement of the electronic processes in ZnTPP molecules bound with the polymer macromolecule. The 2.7-fold enhancement of singlet oxygen photogeneration under resonant with surface plasmon resonance has been observed for ZnTPP/D-g-PNIPAM/AuNPs proving the plasmon nature of such effect. The data obtained in vitro on wild strains of Staphylococcus aureus have proved the high potential of such nanosystem for rapid photodynamic inactivation of microorganisms particular in wounds or ulcers on the body surface. MDPI 2022-08-02 /pmc/articles/PMC9370275/ /pubmed/35957085 http://dx.doi.org/10.3390/nano12152655 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
Yeshchenko, Oleg A.
Kutsevol, Nataliya V.
Tomchuk, Anastasiya V.
Khort, Pavlo S.
Virych, Pavlo A.
Chumachenko, Vasyl A.
Kuziv, Yulia I.
Marinin, Andrey I.
Cheng, Lili
Nie, Guochao
Thermoresponsive Zinc TetraPhenylPorphyrin Photosensitizer/Dextran Graft Poly(N-IsoPropylAcrylAmide) Copolymer/Au Nanoparticles Hybrid Nanosystem: Potential for Photodynamic Therapy Applications
title Thermoresponsive Zinc TetraPhenylPorphyrin Photosensitizer/Dextran Graft Poly(N-IsoPropylAcrylAmide) Copolymer/Au Nanoparticles Hybrid Nanosystem: Potential for Photodynamic Therapy Applications
title_full Thermoresponsive Zinc TetraPhenylPorphyrin Photosensitizer/Dextran Graft Poly(N-IsoPropylAcrylAmide) Copolymer/Au Nanoparticles Hybrid Nanosystem: Potential for Photodynamic Therapy Applications
title_fullStr Thermoresponsive Zinc TetraPhenylPorphyrin Photosensitizer/Dextran Graft Poly(N-IsoPropylAcrylAmide) Copolymer/Au Nanoparticles Hybrid Nanosystem: Potential for Photodynamic Therapy Applications
title_full_unstemmed Thermoresponsive Zinc TetraPhenylPorphyrin Photosensitizer/Dextran Graft Poly(N-IsoPropylAcrylAmide) Copolymer/Au Nanoparticles Hybrid Nanosystem: Potential for Photodynamic Therapy Applications
title_short Thermoresponsive Zinc TetraPhenylPorphyrin Photosensitizer/Dextran Graft Poly(N-IsoPropylAcrylAmide) Copolymer/Au Nanoparticles Hybrid Nanosystem: Potential for Photodynamic Therapy Applications
title_sort thermoresponsive zinc tetraphenylporphyrin photosensitizer/dextran graft poly(n-isopropylacrylamide) copolymer/au nanoparticles hybrid nanosystem: potential for photodynamic therapy applications
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9370275/
https://www.ncbi.nlm.nih.gov/pubmed/35957085
http://dx.doi.org/10.3390/nano12152655
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