Pro-inflammatory hepatic macrophages generate ROS through NADPH oxidase 2 via endocytosis of monomeric TLR4–MD2 complex

Reactive species of oxygen promote the development of hepatic steatosis. Here, Kim et al. demonstrate that palmitate stimulates macrophage infiltration and increases oxidative stress during steatosis by binding to the TLR4–MD2 complex, which results in the activation of NOX2.

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Autores principales: So Yeon Kim, Jong-Min Jeong, Soo Jin Kim, Wonhyo Seo, Myung-Ho Kim, Won-Mook Choi, Wonbeak Yoo, Jun-Hee Lee, Young-Ri Shim, Hyon-Seung Yi, Young-Sun Lee, Hyuk Soo Eun, Byung Seok Lee, Kwangsik Chun, Suk-Jo Kang, Sun Chang Kim, Bin Gao, George Kunos, Ho Min Kim, Won-Il Jeong
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Lenguaje:EN
Publicado: Nature Portfolio 2017
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Acceso en línea:https://doaj.org/article/8bb1e950316b49bfbfc161b1e107780f
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spelling oai:doaj.org-article:8bb1e950316b49bfbfc161b1e107780f2021-12-02T14:40:48ZPro-inflammatory hepatic macrophages generate ROS through NADPH oxidase 2 via endocytosis of monomeric TLR4–MD2 complex10.1038/s41467-017-02325-22041-1723https://doaj.org/article/8bb1e950316b49bfbfc161b1e107780f2017-12-01T00:00:00Zhttps://doi.org/10.1038/s41467-017-02325-2https://doaj.org/toc/2041-1723Reactive species of oxygen promote the development of hepatic steatosis. Here, Kim et al. demonstrate that palmitate stimulates macrophage infiltration and increases oxidative stress during steatosis by binding to the TLR4–MD2 complex, which results in the activation of NOX2.So Yeon KimJong-Min JeongSoo Jin KimWonhyo SeoMyung-Ho KimWon-Mook ChoiWonbeak YooJun-Hee LeeYoung-Ri ShimHyon-Seung YiYoung-Sun LeeHyuk Soo EunByung Seok LeeKwangsik ChunSuk-Jo KangSun Chang KimBin GaoGeorge KunosHo Min KimWon-Il JeongNature PortfolioarticleScienceQENNature Communications, Vol 8, Iss 1, Pp 1-15 (2017)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
So Yeon Kim
Jong-Min Jeong
Soo Jin Kim
Wonhyo Seo
Myung-Ho Kim
Won-Mook Choi
Wonbeak Yoo
Jun-Hee Lee
Young-Ri Shim
Hyon-Seung Yi
Young-Sun Lee
Hyuk Soo Eun
Byung Seok Lee
Kwangsik Chun
Suk-Jo Kang
Sun Chang Kim
Bin Gao
George Kunos
Ho Min Kim
Won-Il Jeong
Pro-inflammatory hepatic macrophages generate ROS through NADPH oxidase 2 via endocytosis of monomeric TLR4–MD2 complex
description Reactive species of oxygen promote the development of hepatic steatosis. Here, Kim et al. demonstrate that palmitate stimulates macrophage infiltration and increases oxidative stress during steatosis by binding to the TLR4–MD2 complex, which results in the activation of NOX2.
format article
author So Yeon Kim
Jong-Min Jeong
Soo Jin Kim
Wonhyo Seo
Myung-Ho Kim
Won-Mook Choi
Wonbeak Yoo
Jun-Hee Lee
Young-Ri Shim
Hyon-Seung Yi
Young-Sun Lee
Hyuk Soo Eun
Byung Seok Lee
Kwangsik Chun
Suk-Jo Kang
Sun Chang Kim
Bin Gao
George Kunos
Ho Min Kim
Won-Il Jeong
author_facet So Yeon Kim
Jong-Min Jeong
Soo Jin Kim
Wonhyo Seo
Myung-Ho Kim
Won-Mook Choi
Wonbeak Yoo
Jun-Hee Lee
Young-Ri Shim
Hyon-Seung Yi
Young-Sun Lee
Hyuk Soo Eun
Byung Seok Lee
Kwangsik Chun
Suk-Jo Kang
Sun Chang Kim
Bin Gao
George Kunos
Ho Min Kim
Won-Il Jeong
author_sort So Yeon Kim
title Pro-inflammatory hepatic macrophages generate ROS through NADPH oxidase 2 via endocytosis of monomeric TLR4–MD2 complex
title_short Pro-inflammatory hepatic macrophages generate ROS through NADPH oxidase 2 via endocytosis of monomeric TLR4–MD2 complex
title_full Pro-inflammatory hepatic macrophages generate ROS through NADPH oxidase 2 via endocytosis of monomeric TLR4–MD2 complex
title_fullStr Pro-inflammatory hepatic macrophages generate ROS through NADPH oxidase 2 via endocytosis of monomeric TLR4–MD2 complex
title_full_unstemmed Pro-inflammatory hepatic macrophages generate ROS through NADPH oxidase 2 via endocytosis of monomeric TLR4–MD2 complex
title_sort pro-inflammatory hepatic macrophages generate ros through nadph oxidase 2 via endocytosis of monomeric tlr4–md2 complex
publisher Nature Portfolio
publishDate 2017
url https://doaj.org/article/8bb1e950316b49bfbfc161b1e107780f
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