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Astrocyte IKKβ/NF-κB signaling is required for diet-induced obesity and hypothalamic inflammation

OBJECTIVE: Obesity and high fat diet (HFD) consumption in rodents is associated with hypothalamic inflammation and reactive gliosis. While neuronal inflammation promotes HFD-induced metabolic dysfunction, the role of astrocyte activation in susceptibility to hypothalamic inflammation and diet-induce...

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Autores principales: Douglass, J.D., Dorfman, M.D., Fasnacht, R., Shaffer, L.D., Thaler, J.P.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5369266/
https://www.ncbi.nlm.nih.gov/pubmed/28377875
http://dx.doi.org/10.1016/j.molmet.2017.01.010
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author Douglass, J.D.
Dorfman, M.D.
Fasnacht, R.
Shaffer, L.D.
Thaler, J.P.
author_facet Douglass, J.D.
Dorfman, M.D.
Fasnacht, R.
Shaffer, L.D.
Thaler, J.P.
author_sort Douglass, J.D.
collection PubMed
description OBJECTIVE: Obesity and high fat diet (HFD) consumption in rodents is associated with hypothalamic inflammation and reactive gliosis. While neuronal inflammation promotes HFD-induced metabolic dysfunction, the role of astrocyte activation in susceptibility to hypothalamic inflammation and diet-induced obesity (DIO) remains uncertain. METHODS: Metabolic phenotyping, immunohistochemical analyses, and biochemical analyses were performed on HFD-fed mice with a tamoxifen-inducible astrocyte-specific knockout of IKKβ (Gfap(CreER)Ikbkb(fl/fl), IKKβ-AKO), an essential cofactor of NF-κB-mediated inflammation. RESULTS: IKKβ-AKO mice with tamoxifen-induced IKKβ deletion prior to HFD exposure showed equivalent HFD-induced weight gain and glucose intolerance as Ikbkb(fl/fl) littermate controls. In Gfap(CreER)TdTomato marker mice treated using the same protocol, minimal Cre-mediated recombination was observed in the mediobasal hypothalamus (MBH). By contrast, mice pretreated with 6 weeks of HFD exposure prior to tamoxifen administration showed substantially increased recombination throughout the MBH. Remarkably, this treatment approach protected IKKβ-AKO mice from further weight gain through an immediate reduction of food intake and increase of energy expenditure. Astrocyte IKKβ deletion after HFD exposure—but not before—also reduced glucose intolerance and insulin resistance, likely as a consequence of lower adiposity. Finally, both hypothalamic inflammation and astrocytosis were reduced in HFD-fed IKKβ-AKO mice. CONCLUSIONS: These data support a requirement for astrocytic inflammatory signaling in HFD-induced hyperphagia and DIO susceptibility that may provide a novel target for obesity therapeutics.
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spelling pubmed-53692662017-04-04 Astrocyte IKKβ/NF-κB signaling is required for diet-induced obesity and hypothalamic inflammation Douglass, J.D. Dorfman, M.D. Fasnacht, R. Shaffer, L.D. Thaler, J.P. Mol Metab Brief Communication OBJECTIVE: Obesity and high fat diet (HFD) consumption in rodents is associated with hypothalamic inflammation and reactive gliosis. While neuronal inflammation promotes HFD-induced metabolic dysfunction, the role of astrocyte activation in susceptibility to hypothalamic inflammation and diet-induced obesity (DIO) remains uncertain. METHODS: Metabolic phenotyping, immunohistochemical analyses, and biochemical analyses were performed on HFD-fed mice with a tamoxifen-inducible astrocyte-specific knockout of IKKβ (Gfap(CreER)Ikbkb(fl/fl), IKKβ-AKO), an essential cofactor of NF-κB-mediated inflammation. RESULTS: IKKβ-AKO mice with tamoxifen-induced IKKβ deletion prior to HFD exposure showed equivalent HFD-induced weight gain and glucose intolerance as Ikbkb(fl/fl) littermate controls. In Gfap(CreER)TdTomato marker mice treated using the same protocol, minimal Cre-mediated recombination was observed in the mediobasal hypothalamus (MBH). By contrast, mice pretreated with 6 weeks of HFD exposure prior to tamoxifen administration showed substantially increased recombination throughout the MBH. Remarkably, this treatment approach protected IKKβ-AKO mice from further weight gain through an immediate reduction of food intake and increase of energy expenditure. Astrocyte IKKβ deletion after HFD exposure—but not before—also reduced glucose intolerance and insulin resistance, likely as a consequence of lower adiposity. Finally, both hypothalamic inflammation and astrocytosis were reduced in HFD-fed IKKβ-AKO mice. CONCLUSIONS: These data support a requirement for astrocytic inflammatory signaling in HFD-induced hyperphagia and DIO susceptibility that may provide a novel target for obesity therapeutics. Elsevier 2017-01-28 /pmc/articles/PMC5369266/ /pubmed/28377875 http://dx.doi.org/10.1016/j.molmet.2017.01.010 Text en © 2017 The Authors http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Brief Communication
Douglass, J.D.
Dorfman, M.D.
Fasnacht, R.
Shaffer, L.D.
Thaler, J.P.
Astrocyte IKKβ/NF-κB signaling is required for diet-induced obesity and hypothalamic inflammation
title Astrocyte IKKβ/NF-κB signaling is required for diet-induced obesity and hypothalamic inflammation
title_full Astrocyte IKKβ/NF-κB signaling is required for diet-induced obesity and hypothalamic inflammation
title_fullStr Astrocyte IKKβ/NF-κB signaling is required for diet-induced obesity and hypothalamic inflammation
title_full_unstemmed Astrocyte IKKβ/NF-κB signaling is required for diet-induced obesity and hypothalamic inflammation
title_short Astrocyte IKKβ/NF-κB signaling is required for diet-induced obesity and hypothalamic inflammation
title_sort astrocyte ikkβ/nf-κb signaling is required for diet-induced obesity and hypothalamic inflammation
topic Brief Communication
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5369266/
https://www.ncbi.nlm.nih.gov/pubmed/28377875
http://dx.doi.org/10.1016/j.molmet.2017.01.010
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