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Astrocyte IKKβ/NF-κB signaling is required for diet-induced obesity and hypothalamic inflammation.
Citation | “Astrocyte Ikkβ/Nf-Κb Signaling Is Required For Diet-Induced Obesity And Hypothalamic Inflammation.”. Molecular Metabolism, pp. 366-373. . |
Center | University of Washington |
Author | J D Douglass, M D Dorfman, R Fasnacht, L D Shaffer, J P Thaler |
Keywords | ARC, arcuate nucleus, Agrp, Agouti-related peptide, astrocytes, Bdnf, brain-derived neurotrophic factor, Cart, cocaine- and amphetamine-regulated transcript, Ccl2, C–C motif chemokine ligand 2, DIO, diet-induced obesity, DMH, dorsomedial hypothalamus, Energy homeostasis, GFAP, glial fibrillary acidic protein, GSIS, glucose-stimulated insulin secretion, GTT, glucose tolerance test, HFD, high-fat diet, hypothalamus, IHC, immunohistochemistry, IKKβ, inhibitor of kappa B kinase beta, ITT, insulin tolerance test, Iba1, ionized calcium binding adaptor molecule 1, IL, interleukin, inflammation, LPS, lipopolysaccharide, MBH, mediobasal hypothalamus, Metabolism, NF-κB, nuclear factor kappa B, Npy, neuropeptide Y, obesity, POMC, proopiomelanocortin, RER, respiratory exchange ratio, TMX, tamoxifen, Tnfa, tumor necrosis factor α, VMN, ventromedial nucleus, ir, immunoreactivity |
Abstract |
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 (, 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 littermate controls. In 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. |
Year of Publication |
2017
|
Journal |
Molecular metabolism
|
Volume |
6
|
Issue |
4
|
Number of Pages |
366-373
|
Date Published |
12/2017
|
ISSN Number |
2212-8778
|
DOI |
10.1016/j.molmet.2017.01.010
|
Alternate Journal |
Mol Metab
|
PMID |
28377875
|
PMCID |
PMC5369266
|
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