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Investigating Effects of IR-780 in Animal Models of B16-F10 Melanoma: New Approach in Lung Metastasis

IR-780 is a fluorescent marker, photostable and non-toxic, and is widely used in tumor targeting; however, studies on the impact of IR-780 in animal models of B16-F10 melanoma are scarce in the literature. Therefore, this study aims to analyze behavior of this marker in melanoma cells using in vitro...

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Autores principales: Salomão, Evelyn de Andrade, do Nascimento, Valter Aragão, de Oliveira, Caio Fernando Ramalho, Silva, Iandara Schettert, Guimarães, Rita de Cássia Avellaneda, Bogo, Danielle
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10574439/
https://www.ncbi.nlm.nih.gov/pubmed/37836787
http://dx.doi.org/10.3390/molecules28196942
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author Salomão, Evelyn de Andrade
do Nascimento, Valter Aragão
de Oliveira, Caio Fernando Ramalho
Silva, Iandara Schettert
Guimarães, Rita de Cássia Avellaneda
Bogo, Danielle
author_facet Salomão, Evelyn de Andrade
do Nascimento, Valter Aragão
de Oliveira, Caio Fernando Ramalho
Silva, Iandara Schettert
Guimarães, Rita de Cássia Avellaneda
Bogo, Danielle
author_sort Salomão, Evelyn de Andrade
collection PubMed
description IR-780 is a fluorescent marker, photostable and non-toxic, and is widely used in tumor targeting; however, studies on the impact of IR-780 in animal models of B16-F10 melanoma are scarce in the literature. Therefore, this study aims to analyze behavior of this marker in melanoma cells using in vitro and in vivo analyses with fluorescence microscopy to conduct an analysis of cell culture, and an in vivo imaging system for an analysis of cell culture, tumor targeting on animals, and organ examination. In vitro analysis showed that B16-F10 cells at a concentration of 2 × 10(5) cells.plate(−1) allowed a better visualization using 20 μM of IR-780. Furthermore, the location of IR-780 accumulation was confirmed by its fluorescence microscopy. Through in vivo studies, fluorescence was not observed in subcutaneous nodules, and it was found that animals that received intraperitoneal injection of B16-F10 cells presented ascites and did not absorb IR-780. Additionally, animals exhibiting lung metastasis showed fluorescence in ex vivo lung images. Therefore, use of the IR-780 marker for evaluating the progression of tumor growth did not demonstrate efficiency; however, it was effective in diagnosing pulmonary metastatic tumors. Although this marker presented limitations, results of evaluating pulmonary involvement through ex vivo fluorescence imaging were determined based on intensity of fluorescence.
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spelling pubmed-105744392023-10-14 Investigating Effects of IR-780 in Animal Models of B16-F10 Melanoma: New Approach in Lung Metastasis Salomão, Evelyn de Andrade do Nascimento, Valter Aragão de Oliveira, Caio Fernando Ramalho Silva, Iandara Schettert Guimarães, Rita de Cássia Avellaneda Bogo, Danielle Molecules Article IR-780 is a fluorescent marker, photostable and non-toxic, and is widely used in tumor targeting; however, studies on the impact of IR-780 in animal models of B16-F10 melanoma are scarce in the literature. Therefore, this study aims to analyze behavior of this marker in melanoma cells using in vitro and in vivo analyses with fluorescence microscopy to conduct an analysis of cell culture, and an in vivo imaging system for an analysis of cell culture, tumor targeting on animals, and organ examination. In vitro analysis showed that B16-F10 cells at a concentration of 2 × 10(5) cells.plate(−1) allowed a better visualization using 20 μM of IR-780. Furthermore, the location of IR-780 accumulation was confirmed by its fluorescence microscopy. Through in vivo studies, fluorescence was not observed in subcutaneous nodules, and it was found that animals that received intraperitoneal injection of B16-F10 cells presented ascites and did not absorb IR-780. Additionally, animals exhibiting lung metastasis showed fluorescence in ex vivo lung images. Therefore, use of the IR-780 marker for evaluating the progression of tumor growth did not demonstrate efficiency; however, it was effective in diagnosing pulmonary metastatic tumors. Although this marker presented limitations, results of evaluating pulmonary involvement through ex vivo fluorescence imaging were determined based on intensity of fluorescence. MDPI 2023-10-05 /pmc/articles/PMC10574439/ /pubmed/37836787 http://dx.doi.org/10.3390/molecules28196942 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
Salomão, Evelyn de Andrade
do Nascimento, Valter Aragão
de Oliveira, Caio Fernando Ramalho
Silva, Iandara Schettert
Guimarães, Rita de Cássia Avellaneda
Bogo, Danielle
Investigating Effects of IR-780 in Animal Models of B16-F10 Melanoma: New Approach in Lung Metastasis
title Investigating Effects of IR-780 in Animal Models of B16-F10 Melanoma: New Approach in Lung Metastasis
title_full Investigating Effects of IR-780 in Animal Models of B16-F10 Melanoma: New Approach in Lung Metastasis
title_fullStr Investigating Effects of IR-780 in Animal Models of B16-F10 Melanoma: New Approach in Lung Metastasis
title_full_unstemmed Investigating Effects of IR-780 in Animal Models of B16-F10 Melanoma: New Approach in Lung Metastasis
title_short Investigating Effects of IR-780 in Animal Models of B16-F10 Melanoma: New Approach in Lung Metastasis
title_sort investigating effects of ir-780 in animal models of b16-f10 melanoma: new approach in lung metastasis
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10574439/
https://www.ncbi.nlm.nih.gov/pubmed/37836787
http://dx.doi.org/10.3390/molecules28196942
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