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LTB4 causes macrophage–mediated inflammation and directly induces insulin resistance in obesity

Chronic inflammation is a key component of obesity–induced insulin resistance and plays a central role in metabolic disease. In this study, we found that the major insulin target tissues, liver, muscle and adipose tissue exhibit increased levels of the chemotactic eicosanoid LTB4 in obese high fat d...

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Autores principales: Li, Pingping, Oh, Da Young, Bandyopadhyay, Gautam, Lagakos, William S., Talukdar, Saswata, Osborn, Olivia, Johnson, Andrew, Chung, Heekyung, Maris, Michael, Ofrecio, Jachelle M., Taguchi, Sayaka, Lu, Min, Olefsky, Jerrold M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4429798/
https://www.ncbi.nlm.nih.gov/pubmed/25706874
http://dx.doi.org/10.1038/nm.3800
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author Li, Pingping
Oh, Da Young
Bandyopadhyay, Gautam
Lagakos, William S.
Talukdar, Saswata
Osborn, Olivia
Johnson, Andrew
Chung, Heekyung
Maris, Michael
Ofrecio, Jachelle M.
Taguchi, Sayaka
Lu, Min
Olefsky, Jerrold M.
author_facet Li, Pingping
Oh, Da Young
Bandyopadhyay, Gautam
Lagakos, William S.
Talukdar, Saswata
Osborn, Olivia
Johnson, Andrew
Chung, Heekyung
Maris, Michael
Ofrecio, Jachelle M.
Taguchi, Sayaka
Lu, Min
Olefsky, Jerrold M.
author_sort Li, Pingping
collection PubMed
description Chronic inflammation is a key component of obesity–induced insulin resistance and plays a central role in metabolic disease. In this study, we found that the major insulin target tissues, liver, muscle and adipose tissue exhibit increased levels of the chemotactic eicosanoid LTB4 in obese high fat diet (HFD) mice compared to lean chow fed mice. Inhibition of the LTB4 receptor, Ltb4r1, through either genetic or pharmacologic loss of function results in an anti–inflammatory phenotype with protection from systemic insulin resistance and hepatic steatosis in the setting of both HFD–induced and genetic obesity. Importantly, in vitro treatment with LTB4 directly enhanced macrophage chemotaxis, stimulated inflammatory pathways in macrophages, promoted de novo hepatic lipogenesis, decreased insulin stimulated glucose uptake in L6 myocytes, increased gluconeogenesis, and impaired insulin–mediated suppression of hepatic glucose output (HGO) in primary mouse hepatocytes. This was accompanied by decreased insulin stimulated Akt phosphorylation and increased Irs1 and Irs2 serine phosphorylation and all of these events were Gαi and Jnk dependent. Taken together, these observations elucidate a novel role of LTB4/Ltb4r1 in the etiology of insulin resistance in hepatocytes and myocytes, and shows that in vivo inhibition of Ltb4r1 leads to robust insulin sensitizing effects.
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spelling pubmed-44297982015-09-01 LTB4 causes macrophage–mediated inflammation and directly induces insulin resistance in obesity Li, Pingping Oh, Da Young Bandyopadhyay, Gautam Lagakos, William S. Talukdar, Saswata Osborn, Olivia Johnson, Andrew Chung, Heekyung Maris, Michael Ofrecio, Jachelle M. Taguchi, Sayaka Lu, Min Olefsky, Jerrold M. Nat Med Article Chronic inflammation is a key component of obesity–induced insulin resistance and plays a central role in metabolic disease. In this study, we found that the major insulin target tissues, liver, muscle and adipose tissue exhibit increased levels of the chemotactic eicosanoid LTB4 in obese high fat diet (HFD) mice compared to lean chow fed mice. Inhibition of the LTB4 receptor, Ltb4r1, through either genetic or pharmacologic loss of function results in an anti–inflammatory phenotype with protection from systemic insulin resistance and hepatic steatosis in the setting of both HFD–induced and genetic obesity. Importantly, in vitro treatment with LTB4 directly enhanced macrophage chemotaxis, stimulated inflammatory pathways in macrophages, promoted de novo hepatic lipogenesis, decreased insulin stimulated glucose uptake in L6 myocytes, increased gluconeogenesis, and impaired insulin–mediated suppression of hepatic glucose output (HGO) in primary mouse hepatocytes. This was accompanied by decreased insulin stimulated Akt phosphorylation and increased Irs1 and Irs2 serine phosphorylation and all of these events were Gαi and Jnk dependent. Taken together, these observations elucidate a novel role of LTB4/Ltb4r1 in the etiology of insulin resistance in hepatocytes and myocytes, and shows that in vivo inhibition of Ltb4r1 leads to robust insulin sensitizing effects. 2015-02-23 2015-03 /pmc/articles/PMC4429798/ /pubmed/25706874 http://dx.doi.org/10.1038/nm.3800 Text en http://www.nature.com/authors/editorial_policies/license.html#terms Users may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use:http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Li, Pingping
Oh, Da Young
Bandyopadhyay, Gautam
Lagakos, William S.
Talukdar, Saswata
Osborn, Olivia
Johnson, Andrew
Chung, Heekyung
Maris, Michael
Ofrecio, Jachelle M.
Taguchi, Sayaka
Lu, Min
Olefsky, Jerrold M.
LTB4 causes macrophage–mediated inflammation and directly induces insulin resistance in obesity
title LTB4 causes macrophage–mediated inflammation and directly induces insulin resistance in obesity
title_full LTB4 causes macrophage–mediated inflammation and directly induces insulin resistance in obesity
title_fullStr LTB4 causes macrophage–mediated inflammation and directly induces insulin resistance in obesity
title_full_unstemmed LTB4 causes macrophage–mediated inflammation and directly induces insulin resistance in obesity
title_short LTB4 causes macrophage–mediated inflammation and directly induces insulin resistance in obesity
title_sort ltb4 causes macrophage–mediated inflammation and directly induces insulin resistance in obesity
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4429798/
https://www.ncbi.nlm.nih.gov/pubmed/25706874
http://dx.doi.org/10.1038/nm.3800
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