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A generator of peroxynitrite activatable with red light

The generation of reactive oxygen species (ROS) and reactive nitrogen species (RNS) as “unconventional” therapeutics with precise spatiotemporal control by using light stimuli may open entirely new horizons for innovative therapeutic modalities. Among ROS and RNS, peroxynitrite (ONOO(−)) plays a dom...

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Autores principales: Parisi, Cristina, Failla, Mariacristina, Fraix, Aurore, Menilli, Luca, Moret, Francesca, Reddi, Elena, Rolando, Barbara, Spyrakis, Francesca, Lazzarato, Loretta, Fruttero, Roberta, Gasco, Alberto, Sortino, Salvatore
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8179535/
https://www.ncbi.nlm.nih.gov/pubmed/34163730
http://dx.doi.org/10.1039/d0sc06970a
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author Parisi, Cristina
Failla, Mariacristina
Fraix, Aurore
Menilli, Luca
Moret, Francesca
Reddi, Elena
Rolando, Barbara
Spyrakis, Francesca
Lazzarato, Loretta
Fruttero, Roberta
Gasco, Alberto
Sortino, Salvatore
author_facet Parisi, Cristina
Failla, Mariacristina
Fraix, Aurore
Menilli, Luca
Moret, Francesca
Reddi, Elena
Rolando, Barbara
Spyrakis, Francesca
Lazzarato, Loretta
Fruttero, Roberta
Gasco, Alberto
Sortino, Salvatore
author_sort Parisi, Cristina
collection PubMed
description The generation of reactive oxygen species (ROS) and reactive nitrogen species (RNS) as “unconventional” therapeutics with precise spatiotemporal control by using light stimuli may open entirely new horizons for innovative therapeutic modalities. Among ROS and RNS, peroxynitrite (ONOO(−)) plays a dominant role in chemistry and biology in view of its potent oxidizing power and cytotoxic action. We have designed and synthesized a molecular hybrid based on benzophenothiazine as a red light-harvesting antenna joined to an N-nitroso appendage through a flexible spacer. Single photon red light excitation of this molecular construct triggers the release of nitric oxide (˙NO) and simultaneously produces superoxide anions (O(2)˙(−)). The diffusion-controlled reaction between these two radical species generates ONOO(−), as confirmed by the use of fluorescein-boronate as a highly selective chemical probe. Besides, the red fluorescence of the hybrid allows its tracking in different types of cancer cells where it is well-tolerated in the dark but induces remarkable cell mortality under irradiation with red light in a very low concentration range, with very low light doses (ca. 1 J cm(−2)). This ONOO(−) generator activatable by highly biocompatible and tissue penetrating single photon red light can open up intriguing prospects in biomedical research, where precise and spatiotemporally controlled concentrations of ONOO(−) are required.
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spelling pubmed-81795352021-06-22 A generator of peroxynitrite activatable with red light Parisi, Cristina Failla, Mariacristina Fraix, Aurore Menilli, Luca Moret, Francesca Reddi, Elena Rolando, Barbara Spyrakis, Francesca Lazzarato, Loretta Fruttero, Roberta Gasco, Alberto Sortino, Salvatore Chem Sci Chemistry The generation of reactive oxygen species (ROS) and reactive nitrogen species (RNS) as “unconventional” therapeutics with precise spatiotemporal control by using light stimuli may open entirely new horizons for innovative therapeutic modalities. Among ROS and RNS, peroxynitrite (ONOO(−)) plays a dominant role in chemistry and biology in view of its potent oxidizing power and cytotoxic action. We have designed and synthesized a molecular hybrid based on benzophenothiazine as a red light-harvesting antenna joined to an N-nitroso appendage through a flexible spacer. Single photon red light excitation of this molecular construct triggers the release of nitric oxide (˙NO) and simultaneously produces superoxide anions (O(2)˙(−)). The diffusion-controlled reaction between these two radical species generates ONOO(−), as confirmed by the use of fluorescein-boronate as a highly selective chemical probe. Besides, the red fluorescence of the hybrid allows its tracking in different types of cancer cells where it is well-tolerated in the dark but induces remarkable cell mortality under irradiation with red light in a very low concentration range, with very low light doses (ca. 1 J cm(−2)). This ONOO(−) generator activatable by highly biocompatible and tissue penetrating single photon red light can open up intriguing prospects in biomedical research, where precise and spatiotemporally controlled concentrations of ONOO(−) are required. The Royal Society of Chemistry 2021-03-04 /pmc/articles/PMC8179535/ /pubmed/34163730 http://dx.doi.org/10.1039/d0sc06970a Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Parisi, Cristina
Failla, Mariacristina
Fraix, Aurore
Menilli, Luca
Moret, Francesca
Reddi, Elena
Rolando, Barbara
Spyrakis, Francesca
Lazzarato, Loretta
Fruttero, Roberta
Gasco, Alberto
Sortino, Salvatore
A generator of peroxynitrite activatable with red light
title A generator of peroxynitrite activatable with red light
title_full A generator of peroxynitrite activatable with red light
title_fullStr A generator of peroxynitrite activatable with red light
title_full_unstemmed A generator of peroxynitrite activatable with red light
title_short A generator of peroxynitrite activatable with red light
title_sort generator of peroxynitrite activatable with red light
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8179535/
https://www.ncbi.nlm.nih.gov/pubmed/34163730
http://dx.doi.org/10.1039/d0sc06970a
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