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A pH-Sensitive Fluorescent Chemosensor Turn-On Based in a Salen Iron (III) Complex: Synthesis, Photophysical Properties, and Live-Cell Imaging Application

pH regulation is essential to allow normal cell function, and their imbalance is associated with different pathologic situations, including cancer. In this study, we present the synthesis of 2-(((2-aminoethyl)imino)methyl)phenol (HL1) and the iron (III) complex (Fe(L1)(2)Br, (C1)), confirmed by X-ra...

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Autores principales: Nilo, Nicole, Reyna-Jeldes, Mauricio, Covarrubias, Alejandra A., Coddou, Claudio, Artigas, Vania, Fuentealba, Mauricio, Aguilar, Luis F., Saldías, Marianela, Mellado, Marco
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10647502/
https://www.ncbi.nlm.nih.gov/pubmed/37959657
http://dx.doi.org/10.3390/molecules28217237
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author Nilo, Nicole
Reyna-Jeldes, Mauricio
Covarrubias, Alejandra A.
Coddou, Claudio
Artigas, Vania
Fuentealba, Mauricio
Aguilar, Luis F.
Saldías, Marianela
Mellado, Marco
author_facet Nilo, Nicole
Reyna-Jeldes, Mauricio
Covarrubias, Alejandra A.
Coddou, Claudio
Artigas, Vania
Fuentealba, Mauricio
Aguilar, Luis F.
Saldías, Marianela
Mellado, Marco
author_sort Nilo, Nicole
collection PubMed
description pH regulation is essential to allow normal cell function, and their imbalance is associated with different pathologic situations, including cancer. In this study, we present the synthesis of 2-(((2-aminoethyl)imino)methyl)phenol (HL1) and the iron (III) complex (Fe(L1)(2)Br, (C1)), confirmed by X-ray diffraction analysis. The absorption and emission properties of complex C1 were assessed in the presence and absence of different physiologically relevant analytes, finding a fluorescent turn-on when OH(−) was added. So, we determined the limit of detection (LOD = 3.97 × 10(−9) M), stoichiometry (1:1), and association constant (K(as) = 5.86 × 10(3) M(−1)). Using DFT calculations, we proposed a spontaneous decomposition mechanism for C1. After characterization, complex C1 was evaluated as an intracellular pH chemosensor on the human primary gastric adenocarcinoma (AGS) and non-tumoral gastric epithelia (GES-1) cell lines, finding fluorescent signal activation in the latter when compared to AGS cells due to the lower intracellular pH of AGS cells caused by the increased metabolic rate. However, when complex C1 was used on metastatic cancer cell lines (MKN-45 and MKN-74), a fluorescent turn-on was observed in both cell lines because the intracellular lactate amount increased. Our results could provide insights about the application of complex C1 as a metabolic probe to be used in cancer cell imaging.
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spelling pubmed-106475022023-10-24 A pH-Sensitive Fluorescent Chemosensor Turn-On Based in a Salen Iron (III) Complex: Synthesis, Photophysical Properties, and Live-Cell Imaging Application Nilo, Nicole Reyna-Jeldes, Mauricio Covarrubias, Alejandra A. Coddou, Claudio Artigas, Vania Fuentealba, Mauricio Aguilar, Luis F. Saldías, Marianela Mellado, Marco Molecules Article pH regulation is essential to allow normal cell function, and their imbalance is associated with different pathologic situations, including cancer. In this study, we present the synthesis of 2-(((2-aminoethyl)imino)methyl)phenol (HL1) and the iron (III) complex (Fe(L1)(2)Br, (C1)), confirmed by X-ray diffraction analysis. The absorption and emission properties of complex C1 were assessed in the presence and absence of different physiologically relevant analytes, finding a fluorescent turn-on when OH(−) was added. So, we determined the limit of detection (LOD = 3.97 × 10(−9) M), stoichiometry (1:1), and association constant (K(as) = 5.86 × 10(3) M(−1)). Using DFT calculations, we proposed a spontaneous decomposition mechanism for C1. After characterization, complex C1 was evaluated as an intracellular pH chemosensor on the human primary gastric adenocarcinoma (AGS) and non-tumoral gastric epithelia (GES-1) cell lines, finding fluorescent signal activation in the latter when compared to AGS cells due to the lower intracellular pH of AGS cells caused by the increased metabolic rate. However, when complex C1 was used on metastatic cancer cell lines (MKN-45 and MKN-74), a fluorescent turn-on was observed in both cell lines because the intracellular lactate amount increased. Our results could provide insights about the application of complex C1 as a metabolic probe to be used in cancer cell imaging. MDPI 2023-10-24 /pmc/articles/PMC10647502/ /pubmed/37959657 http://dx.doi.org/10.3390/molecules28217237 Text en © 2023 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
Nilo, Nicole
Reyna-Jeldes, Mauricio
Covarrubias, Alejandra A.
Coddou, Claudio
Artigas, Vania
Fuentealba, Mauricio
Aguilar, Luis F.
Saldías, Marianela
Mellado, Marco
A pH-Sensitive Fluorescent Chemosensor Turn-On Based in a Salen Iron (III) Complex: Synthesis, Photophysical Properties, and Live-Cell Imaging Application
title A pH-Sensitive Fluorescent Chemosensor Turn-On Based in a Salen Iron (III) Complex: Synthesis, Photophysical Properties, and Live-Cell Imaging Application
title_full A pH-Sensitive Fluorescent Chemosensor Turn-On Based in a Salen Iron (III) Complex: Synthesis, Photophysical Properties, and Live-Cell Imaging Application
title_fullStr A pH-Sensitive Fluorescent Chemosensor Turn-On Based in a Salen Iron (III) Complex: Synthesis, Photophysical Properties, and Live-Cell Imaging Application
title_full_unstemmed A pH-Sensitive Fluorescent Chemosensor Turn-On Based in a Salen Iron (III) Complex: Synthesis, Photophysical Properties, and Live-Cell Imaging Application
title_short A pH-Sensitive Fluorescent Chemosensor Turn-On Based in a Salen Iron (III) Complex: Synthesis, Photophysical Properties, and Live-Cell Imaging Application
title_sort ph-sensitive fluorescent chemosensor turn-on based in a salen iron (iii) complex: synthesis, photophysical properties, and live-cell imaging application
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10647502/
https://www.ncbi.nlm.nih.gov/pubmed/37959657
http://dx.doi.org/10.3390/molecules28217237
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