Cargando…

The Novel Mechanisms Concerning the Inhibitions of Palmitate-Induced Proinflammatory Factor Releases and Endogenous Cellular Stress with Astaxanthin on MIN6 β-Cells

Astaxanthin, an antioxidant agent, can protect pancreatic β-cells of db/db mice from glucotoxicity and resolve chronic inflammation in adipose tissue. Nonetheless, the effects of astaxanthin on free-fatty-acid-induced inflammation and cellular stress in β-cells remain to be demonstrated. Meanwhile,...

Descripción completa

Detalles Bibliográficos
Autores principales: Kitahara, Atsuko, Takahashi, Kazuto, Morita, Naru, Murashima, Toshitaka, Onuma, Hirohisa, Sumitani, Yoshikazu, Tanaka, Toshiaki, Kondo, Takuma, Hosaka, Toshio, Ishida, Hitoshi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5484135/
https://www.ncbi.nlm.nih.gov/pubmed/28632169
http://dx.doi.org/10.3390/md15060185
_version_ 1783245826057830400
author Kitahara, Atsuko
Takahashi, Kazuto
Morita, Naru
Murashima, Toshitaka
Onuma, Hirohisa
Sumitani, Yoshikazu
Tanaka, Toshiaki
Kondo, Takuma
Hosaka, Toshio
Ishida, Hitoshi
author_facet Kitahara, Atsuko
Takahashi, Kazuto
Morita, Naru
Murashima, Toshitaka
Onuma, Hirohisa
Sumitani, Yoshikazu
Tanaka, Toshiaki
Kondo, Takuma
Hosaka, Toshio
Ishida, Hitoshi
author_sort Kitahara, Atsuko
collection PubMed
description Astaxanthin, an antioxidant agent, can protect pancreatic β-cells of db/db mice from glucotoxicity and resolve chronic inflammation in adipose tissue. Nonetheless, the effects of astaxanthin on free-fatty-acid-induced inflammation and cellular stress in β-cells remain to be demonstrated. Meanwhile, palmitate enhances the secretion of pro-inflammatory adipokines monocyte chemoattractant protein-1 (MCP-1) and vascular endothelial growth factor (VEGF(120)). We therefore investigated the influence of astaxanthin on palmitate-stimulated MCP-1 and VEGF(120) secretion in mouse insulinoma (MIN6) pancreatic β-cells. Furthermore, whether astaxanthin prevents cellular stress in MIN6 cells was also assessed. Pre-treatment with astaxanthin or with N-acetyl-cysteine (NAC) which is an antioxidant drug, significantly attenuated the palmitate-induced MCP-1 release through downregulation of phosphorylated c-Jun NH(2)-terminal protein kinase (JNK) pathways, and suppressed VEGF(120) through the PI3K/Akt pathways relative to the cells stimulated with palmitate alone. In addition, palmitate significantly upregulated homologous protein (CHOP) and anti-glucose-regulated protein (GRP78), which are endoplasmic reticulum (ER) stress markers, in MIN6 cells. On the other hand, astaxanthin attenuated the increased CHOP content, but further up-regulated palmitate-stimulated GRP78 protein expression. By contrast, NAC had no effects on either CHOP or GRP78 enhancement induced by palmitate in MIN6 cells. In conclusion, astaxanthin diminishes the palmitate-stimulated increase in MCP-1 secretion via the downregulation of JNK pathways in MIN6 cells, and affects VEGF(120) secretion through PI3K/Akt pathways. Moreover, astaxanthin can prevent not only oxidative stress caused endogenously by palmitate but also ER stress, which NAC fails to attenuate, via upregulation of GRP78, an ER chaperon.
format Online
Article
Text
id pubmed-5484135
institution National Center for Biotechnology Information
language English
publishDate 2017
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-54841352017-06-29 The Novel Mechanisms Concerning the Inhibitions of Palmitate-Induced Proinflammatory Factor Releases and Endogenous Cellular Stress with Astaxanthin on MIN6 β-Cells Kitahara, Atsuko Takahashi, Kazuto Morita, Naru Murashima, Toshitaka Onuma, Hirohisa Sumitani, Yoshikazu Tanaka, Toshiaki Kondo, Takuma Hosaka, Toshio Ishida, Hitoshi Mar Drugs Article Astaxanthin, an antioxidant agent, can protect pancreatic β-cells of db/db mice from glucotoxicity and resolve chronic inflammation in adipose tissue. Nonetheless, the effects of astaxanthin on free-fatty-acid-induced inflammation and cellular stress in β-cells remain to be demonstrated. Meanwhile, palmitate enhances the secretion of pro-inflammatory adipokines monocyte chemoattractant protein-1 (MCP-1) and vascular endothelial growth factor (VEGF(120)). We therefore investigated the influence of astaxanthin on palmitate-stimulated MCP-1 and VEGF(120) secretion in mouse insulinoma (MIN6) pancreatic β-cells. Furthermore, whether astaxanthin prevents cellular stress in MIN6 cells was also assessed. Pre-treatment with astaxanthin or with N-acetyl-cysteine (NAC) which is an antioxidant drug, significantly attenuated the palmitate-induced MCP-1 release through downregulation of phosphorylated c-Jun NH(2)-terminal protein kinase (JNK) pathways, and suppressed VEGF(120) through the PI3K/Akt pathways relative to the cells stimulated with palmitate alone. In addition, palmitate significantly upregulated homologous protein (CHOP) and anti-glucose-regulated protein (GRP78), which are endoplasmic reticulum (ER) stress markers, in MIN6 cells. On the other hand, astaxanthin attenuated the increased CHOP content, but further up-regulated palmitate-stimulated GRP78 protein expression. By contrast, NAC had no effects on either CHOP or GRP78 enhancement induced by palmitate in MIN6 cells. In conclusion, astaxanthin diminishes the palmitate-stimulated increase in MCP-1 secretion via the downregulation of JNK pathways in MIN6 cells, and affects VEGF(120) secretion through PI3K/Akt pathways. Moreover, astaxanthin can prevent not only oxidative stress caused endogenously by palmitate but also ER stress, which NAC fails to attenuate, via upregulation of GRP78, an ER chaperon. MDPI 2017-06-20 /pmc/articles/PMC5484135/ /pubmed/28632169 http://dx.doi.org/10.3390/md15060185 Text en © 2017 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Kitahara, Atsuko
Takahashi, Kazuto
Morita, Naru
Murashima, Toshitaka
Onuma, Hirohisa
Sumitani, Yoshikazu
Tanaka, Toshiaki
Kondo, Takuma
Hosaka, Toshio
Ishida, Hitoshi
The Novel Mechanisms Concerning the Inhibitions of Palmitate-Induced Proinflammatory Factor Releases and Endogenous Cellular Stress with Astaxanthin on MIN6 β-Cells
title The Novel Mechanisms Concerning the Inhibitions of Palmitate-Induced Proinflammatory Factor Releases and Endogenous Cellular Stress with Astaxanthin on MIN6 β-Cells
title_full The Novel Mechanisms Concerning the Inhibitions of Palmitate-Induced Proinflammatory Factor Releases and Endogenous Cellular Stress with Astaxanthin on MIN6 β-Cells
title_fullStr The Novel Mechanisms Concerning the Inhibitions of Palmitate-Induced Proinflammatory Factor Releases and Endogenous Cellular Stress with Astaxanthin on MIN6 β-Cells
title_full_unstemmed The Novel Mechanisms Concerning the Inhibitions of Palmitate-Induced Proinflammatory Factor Releases and Endogenous Cellular Stress with Astaxanthin on MIN6 β-Cells
title_short The Novel Mechanisms Concerning the Inhibitions of Palmitate-Induced Proinflammatory Factor Releases and Endogenous Cellular Stress with Astaxanthin on MIN6 β-Cells
title_sort novel mechanisms concerning the inhibitions of palmitate-induced proinflammatory factor releases and endogenous cellular stress with astaxanthin on min6 β-cells
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5484135/
https://www.ncbi.nlm.nih.gov/pubmed/28632169
http://dx.doi.org/10.3390/md15060185
work_keys_str_mv AT kitaharaatsuko thenovelmechanismsconcerningtheinhibitionsofpalmitateinducedproinflammatoryfactorreleasesandendogenouscellularstresswithastaxanthinonmin6bcells
AT takahashikazuto thenovelmechanismsconcerningtheinhibitionsofpalmitateinducedproinflammatoryfactorreleasesandendogenouscellularstresswithastaxanthinonmin6bcells
AT moritanaru thenovelmechanismsconcerningtheinhibitionsofpalmitateinducedproinflammatoryfactorreleasesandendogenouscellularstresswithastaxanthinonmin6bcells
AT murashimatoshitaka thenovelmechanismsconcerningtheinhibitionsofpalmitateinducedproinflammatoryfactorreleasesandendogenouscellularstresswithastaxanthinonmin6bcells
AT onumahirohisa thenovelmechanismsconcerningtheinhibitionsofpalmitateinducedproinflammatoryfactorreleasesandendogenouscellularstresswithastaxanthinonmin6bcells
AT sumitaniyoshikazu thenovelmechanismsconcerningtheinhibitionsofpalmitateinducedproinflammatoryfactorreleasesandendogenouscellularstresswithastaxanthinonmin6bcells
AT tanakatoshiaki thenovelmechanismsconcerningtheinhibitionsofpalmitateinducedproinflammatoryfactorreleasesandendogenouscellularstresswithastaxanthinonmin6bcells
AT kondotakuma thenovelmechanismsconcerningtheinhibitionsofpalmitateinducedproinflammatoryfactorreleasesandendogenouscellularstresswithastaxanthinonmin6bcells
AT hosakatoshio thenovelmechanismsconcerningtheinhibitionsofpalmitateinducedproinflammatoryfactorreleasesandendogenouscellularstresswithastaxanthinonmin6bcells
AT ishidahitoshi thenovelmechanismsconcerningtheinhibitionsofpalmitateinducedproinflammatoryfactorreleasesandendogenouscellularstresswithastaxanthinonmin6bcells
AT kitaharaatsuko novelmechanismsconcerningtheinhibitionsofpalmitateinducedproinflammatoryfactorreleasesandendogenouscellularstresswithastaxanthinonmin6bcells
AT takahashikazuto novelmechanismsconcerningtheinhibitionsofpalmitateinducedproinflammatoryfactorreleasesandendogenouscellularstresswithastaxanthinonmin6bcells
AT moritanaru novelmechanismsconcerningtheinhibitionsofpalmitateinducedproinflammatoryfactorreleasesandendogenouscellularstresswithastaxanthinonmin6bcells
AT murashimatoshitaka novelmechanismsconcerningtheinhibitionsofpalmitateinducedproinflammatoryfactorreleasesandendogenouscellularstresswithastaxanthinonmin6bcells
AT onumahirohisa novelmechanismsconcerningtheinhibitionsofpalmitateinducedproinflammatoryfactorreleasesandendogenouscellularstresswithastaxanthinonmin6bcells
AT sumitaniyoshikazu novelmechanismsconcerningtheinhibitionsofpalmitateinducedproinflammatoryfactorreleasesandendogenouscellularstresswithastaxanthinonmin6bcells
AT tanakatoshiaki novelmechanismsconcerningtheinhibitionsofpalmitateinducedproinflammatoryfactorreleasesandendogenouscellularstresswithastaxanthinonmin6bcells
AT kondotakuma novelmechanismsconcerningtheinhibitionsofpalmitateinducedproinflammatoryfactorreleasesandendogenouscellularstresswithastaxanthinonmin6bcells
AT hosakatoshio novelmechanismsconcerningtheinhibitionsofpalmitateinducedproinflammatoryfactorreleasesandendogenouscellularstresswithastaxanthinonmin6bcells
AT ishidahitoshi novelmechanismsconcerningtheinhibitionsofpalmitateinducedproinflammatoryfactorreleasesandendogenouscellularstresswithastaxanthinonmin6bcells