Cargando…

Carbon Black CB-EDA Nanoparticles in Macrophages: Changes in the Oxidative Stress Pathway and in Apoptosis Signaling

The influence of black carbon nanoparticles on J774.A1 murine cells was investigated with the objective of exploring the cytotoxicity of black carbon functionalized with ethylenediamine CB-EDA. The results showed that CB-EDA has a cytotoxic profile for J774.A1 macrophages in a time- and dose-depende...

Descripción completa

Detalles Bibliográficos
Autores principales: Rodolpho, Joice Margareth de Almeida, de Godoy, Krissia Franco, Brassolatti, Patricia, Fragelli, Bruna Dias de Lima, Camillo, Luciana, de Castro, Cynthia Aparecida, Assis, Marcelo, Speglich, Carlos, Longo, Elson, Anibal, Fernanda de Freitas
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10296316/
https://www.ncbi.nlm.nih.gov/pubmed/37371738
http://dx.doi.org/10.3390/biomedicines11061643
_version_ 1785063629333200896
author Rodolpho, Joice Margareth de Almeida
de Godoy, Krissia Franco
Brassolatti, Patricia
Fragelli, Bruna Dias de Lima
Camillo, Luciana
de Castro, Cynthia Aparecida
Assis, Marcelo
Speglich, Carlos
Longo, Elson
Anibal, Fernanda de Freitas
author_facet Rodolpho, Joice Margareth de Almeida
de Godoy, Krissia Franco
Brassolatti, Patricia
Fragelli, Bruna Dias de Lima
Camillo, Luciana
de Castro, Cynthia Aparecida
Assis, Marcelo
Speglich, Carlos
Longo, Elson
Anibal, Fernanda de Freitas
author_sort Rodolpho, Joice Margareth de Almeida
collection PubMed
description The influence of black carbon nanoparticles on J774.A1 murine cells was investigated with the objective of exploring the cytotoxicity of black carbon functionalized with ethylenediamine CB-EDA. The results showed that CB-EDA has a cytotoxic profile for J774.A1 macrophages in a time- and dose-dependent manner. When phagocytosed by the macrophage, CB-EDA triggers a mechanism that leads to apoptosis. In this process, there is an increase in oxidative stress pathways due to the activation of nitric oxide and then ROS. This causes an imbalance in redox function and a disruption of membrane integrity that occurs due to high levels of LDH, in addition to favoring the release of the pro-inflammatory cytokines IL-6, IL-12, and tumor necrosis factor (TNF) in an attempt to modulate the cell. However, these stimuli are not sufficient to repair the cell and the level of mitochondrial integrity is affected, causing a decrease in cell viability. This mechanism may be correlated with the activation of the caspasse-3 pathway, which, when compromised, cleaves and induces cells death via apoptosis, either through early or late apoptosis. In view of this, the potential for cell damage was investigated by analyzing the oxidative and inflammatory profile in the macrophage lineage J774.A1 and identifying potential mechanisms and metabolic pathways connected to these processes when cells were exposed to NP CB-EDA for both 24 h and 48 h.
format Online
Article
Text
id pubmed-10296316
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-102963162023-06-28 Carbon Black CB-EDA Nanoparticles in Macrophages: Changes in the Oxidative Stress Pathway and in Apoptosis Signaling Rodolpho, Joice Margareth de Almeida de Godoy, Krissia Franco Brassolatti, Patricia Fragelli, Bruna Dias de Lima Camillo, Luciana de Castro, Cynthia Aparecida Assis, Marcelo Speglich, Carlos Longo, Elson Anibal, Fernanda de Freitas Biomedicines Article The influence of black carbon nanoparticles on J774.A1 murine cells was investigated with the objective of exploring the cytotoxicity of black carbon functionalized with ethylenediamine CB-EDA. The results showed that CB-EDA has a cytotoxic profile for J774.A1 macrophages in a time- and dose-dependent manner. When phagocytosed by the macrophage, CB-EDA triggers a mechanism that leads to apoptosis. In this process, there is an increase in oxidative stress pathways due to the activation of nitric oxide and then ROS. This causes an imbalance in redox function and a disruption of membrane integrity that occurs due to high levels of LDH, in addition to favoring the release of the pro-inflammatory cytokines IL-6, IL-12, and tumor necrosis factor (TNF) in an attempt to modulate the cell. However, these stimuli are not sufficient to repair the cell and the level of mitochondrial integrity is affected, causing a decrease in cell viability. This mechanism may be correlated with the activation of the caspasse-3 pathway, which, when compromised, cleaves and induces cells death via apoptosis, either through early or late apoptosis. In view of this, the potential for cell damage was investigated by analyzing the oxidative and inflammatory profile in the macrophage lineage J774.A1 and identifying potential mechanisms and metabolic pathways connected to these processes when cells were exposed to NP CB-EDA for both 24 h and 48 h. MDPI 2023-06-06 /pmc/articles/PMC10296316/ /pubmed/37371738 http://dx.doi.org/10.3390/biomedicines11061643 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
Rodolpho, Joice Margareth de Almeida
de Godoy, Krissia Franco
Brassolatti, Patricia
Fragelli, Bruna Dias de Lima
Camillo, Luciana
de Castro, Cynthia Aparecida
Assis, Marcelo
Speglich, Carlos
Longo, Elson
Anibal, Fernanda de Freitas
Carbon Black CB-EDA Nanoparticles in Macrophages: Changes in the Oxidative Stress Pathway and in Apoptosis Signaling
title Carbon Black CB-EDA Nanoparticles in Macrophages: Changes in the Oxidative Stress Pathway and in Apoptosis Signaling
title_full Carbon Black CB-EDA Nanoparticles in Macrophages: Changes in the Oxidative Stress Pathway and in Apoptosis Signaling
title_fullStr Carbon Black CB-EDA Nanoparticles in Macrophages: Changes in the Oxidative Stress Pathway and in Apoptosis Signaling
title_full_unstemmed Carbon Black CB-EDA Nanoparticles in Macrophages: Changes in the Oxidative Stress Pathway and in Apoptosis Signaling
title_short Carbon Black CB-EDA Nanoparticles in Macrophages: Changes in the Oxidative Stress Pathway and in Apoptosis Signaling
title_sort carbon black cb-eda nanoparticles in macrophages: changes in the oxidative stress pathway and in apoptosis signaling
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10296316/
https://www.ncbi.nlm.nih.gov/pubmed/37371738
http://dx.doi.org/10.3390/biomedicines11061643
work_keys_str_mv AT rodolphojoicemargarethdealmeida carbonblackcbedananoparticlesinmacrophageschangesintheoxidativestresspathwayandinapoptosissignaling
AT degodoykrissiafranco carbonblackcbedananoparticlesinmacrophageschangesintheoxidativestresspathwayandinapoptosissignaling
AT brassolattipatricia carbonblackcbedananoparticlesinmacrophageschangesintheoxidativestresspathwayandinapoptosissignaling
AT fragellibrunadiasdelima carbonblackcbedananoparticlesinmacrophageschangesintheoxidativestresspathwayandinapoptosissignaling
AT camilloluciana carbonblackcbedananoparticlesinmacrophageschangesintheoxidativestresspathwayandinapoptosissignaling
AT decastrocynthiaaparecida carbonblackcbedananoparticlesinmacrophageschangesintheoxidativestresspathwayandinapoptosissignaling
AT assismarcelo carbonblackcbedananoparticlesinmacrophageschangesintheoxidativestresspathwayandinapoptosissignaling
AT speglichcarlos carbonblackcbedananoparticlesinmacrophageschangesintheoxidativestresspathwayandinapoptosissignaling
AT longoelson carbonblackcbedananoparticlesinmacrophageschangesintheoxidativestresspathwayandinapoptosissignaling
AT anibalfernandadefreitas carbonblackcbedananoparticlesinmacrophageschangesintheoxidativestresspathwayandinapoptosissignaling