Cargando…

Early-onset obesity dysregulates pulmonary adipocytokine/insulin signaling and induces asthma-like disease in mice

Childhood obesity is a risk factor for asthma, but the molecular mechanisms linking both remain elusive. Since obesity leads to chronic low-grade inflammation and affects metabolic signaling we hypothesized that postnatal hyperalimentation (pHA) induced by maternal high-fat-diet during lactation lea...

Descripción completa

Detalles Bibliográficos
Autores principales: Dinger, Katharina, Kasper, Philipp, Hucklenbruch-Rother, Eva, Vohlen, Christina, Jobst, Eva, Janoschek, Ruth, Bae-Gartz, Inga, van Koningsbruggen-Rietschel, Silke, Plank, Christian, Dötsch, Jörg, Alejandre Alcázar, Miguel Angel
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4834579/
https://www.ncbi.nlm.nih.gov/pubmed/27087690
http://dx.doi.org/10.1038/srep24168
_version_ 1782427512276516864
author Dinger, Katharina
Kasper, Philipp
Hucklenbruch-Rother, Eva
Vohlen, Christina
Jobst, Eva
Janoschek, Ruth
Bae-Gartz, Inga
van Koningsbruggen-Rietschel, Silke
Plank, Christian
Dötsch, Jörg
Alejandre Alcázar, Miguel Angel
author_facet Dinger, Katharina
Kasper, Philipp
Hucklenbruch-Rother, Eva
Vohlen, Christina
Jobst, Eva
Janoschek, Ruth
Bae-Gartz, Inga
van Koningsbruggen-Rietschel, Silke
Plank, Christian
Dötsch, Jörg
Alejandre Alcázar, Miguel Angel
author_sort Dinger, Katharina
collection PubMed
description Childhood obesity is a risk factor for asthma, but the molecular mechanisms linking both remain elusive. Since obesity leads to chronic low-grade inflammation and affects metabolic signaling we hypothesized that postnatal hyperalimentation (pHA) induced by maternal high-fat-diet during lactation leads to early-onset obesity and dysregulates pulmonary adipocytokine/insulin signaling, resulting in metabolic programming of asthma-like disease in adult mice. Offspring with pHA showed at postnatal day 21 (P21): (1) early-onset obesity, greater fat-mass, increased expression of IL-1β, IL-23, and Tnf-α, greater serum leptin and reduced glucose tolerance than Control (Ctrl); (2) less STAT3/AMPKα-activation, greater SOCS3 expression and reduced AKT/GSK3β-activation in the lung, indicative of leptin resistance and insulin signaling, respectively; (3) increased lung mRNA of IL-6, IL-13, IL-17A and Tnf-α. At P70 body weight, fat-mass, and cytokine mRNA expression were similar in the pHA and Ctrl, but serum leptin and IL-6 were greater, and insulin signaling and glucose tolerance impaired. Peribronchial elastic fiber content, bronchial smooth muscle layer, and deposition of connective tissue were not different after pHA. Despite unaltered bronchial structure mice after pHA exhibited significantly increased airway reactivity. Our study does not only demonstrate that early-onset obesity transiently activates pulmonary adipocytokine/insulin signaling and induces airway hyperreactivity in mice, but also provides new insights into metabolic programming of childhood obesity-related asthma.
format Online
Article
Text
id pubmed-4834579
institution National Center for Biotechnology Information
language English
publishDate 2016
publisher Nature Publishing Group
record_format MEDLINE/PubMed
spelling pubmed-48345792016-04-27 Early-onset obesity dysregulates pulmonary adipocytokine/insulin signaling and induces asthma-like disease in mice Dinger, Katharina Kasper, Philipp Hucklenbruch-Rother, Eva Vohlen, Christina Jobst, Eva Janoschek, Ruth Bae-Gartz, Inga van Koningsbruggen-Rietschel, Silke Plank, Christian Dötsch, Jörg Alejandre Alcázar, Miguel Angel Sci Rep Article Childhood obesity is a risk factor for asthma, but the molecular mechanisms linking both remain elusive. Since obesity leads to chronic low-grade inflammation and affects metabolic signaling we hypothesized that postnatal hyperalimentation (pHA) induced by maternal high-fat-diet during lactation leads to early-onset obesity and dysregulates pulmonary adipocytokine/insulin signaling, resulting in metabolic programming of asthma-like disease in adult mice. Offspring with pHA showed at postnatal day 21 (P21): (1) early-onset obesity, greater fat-mass, increased expression of IL-1β, IL-23, and Tnf-α, greater serum leptin and reduced glucose tolerance than Control (Ctrl); (2) less STAT3/AMPKα-activation, greater SOCS3 expression and reduced AKT/GSK3β-activation in the lung, indicative of leptin resistance and insulin signaling, respectively; (3) increased lung mRNA of IL-6, IL-13, IL-17A and Tnf-α. At P70 body weight, fat-mass, and cytokine mRNA expression were similar in the pHA and Ctrl, but serum leptin and IL-6 were greater, and insulin signaling and glucose tolerance impaired. Peribronchial elastic fiber content, bronchial smooth muscle layer, and deposition of connective tissue were not different after pHA. Despite unaltered bronchial structure mice after pHA exhibited significantly increased airway reactivity. Our study does not only demonstrate that early-onset obesity transiently activates pulmonary adipocytokine/insulin signaling and induces airway hyperreactivity in mice, but also provides new insights into metabolic programming of childhood obesity-related asthma. Nature Publishing Group 2016-04-18 /pmc/articles/PMC4834579/ /pubmed/27087690 http://dx.doi.org/10.1038/srep24168 Text en Copyright © 2016, Macmillan Publishers Limited http://creativecommons.org/licenses/by/4.0/ This work is licensed under a Creative Commons Attribution 4.0 International License. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/
spellingShingle Article
Dinger, Katharina
Kasper, Philipp
Hucklenbruch-Rother, Eva
Vohlen, Christina
Jobst, Eva
Janoschek, Ruth
Bae-Gartz, Inga
van Koningsbruggen-Rietschel, Silke
Plank, Christian
Dötsch, Jörg
Alejandre Alcázar, Miguel Angel
Early-onset obesity dysregulates pulmonary adipocytokine/insulin signaling and induces asthma-like disease in mice
title Early-onset obesity dysregulates pulmonary adipocytokine/insulin signaling and induces asthma-like disease in mice
title_full Early-onset obesity dysregulates pulmonary adipocytokine/insulin signaling and induces asthma-like disease in mice
title_fullStr Early-onset obesity dysregulates pulmonary adipocytokine/insulin signaling and induces asthma-like disease in mice
title_full_unstemmed Early-onset obesity dysregulates pulmonary adipocytokine/insulin signaling and induces asthma-like disease in mice
title_short Early-onset obesity dysregulates pulmonary adipocytokine/insulin signaling and induces asthma-like disease in mice
title_sort early-onset obesity dysregulates pulmonary adipocytokine/insulin signaling and induces asthma-like disease in mice
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4834579/
https://www.ncbi.nlm.nih.gov/pubmed/27087690
http://dx.doi.org/10.1038/srep24168
work_keys_str_mv AT dingerkatharina earlyonsetobesitydysregulatespulmonaryadipocytokineinsulinsignalingandinducesasthmalikediseaseinmice
AT kasperphilipp earlyonsetobesitydysregulatespulmonaryadipocytokineinsulinsignalingandinducesasthmalikediseaseinmice
AT hucklenbruchrothereva earlyonsetobesitydysregulatespulmonaryadipocytokineinsulinsignalingandinducesasthmalikediseaseinmice
AT vohlenchristina earlyonsetobesitydysregulatespulmonaryadipocytokineinsulinsignalingandinducesasthmalikediseaseinmice
AT jobsteva earlyonsetobesitydysregulatespulmonaryadipocytokineinsulinsignalingandinducesasthmalikediseaseinmice
AT janoschekruth earlyonsetobesitydysregulatespulmonaryadipocytokineinsulinsignalingandinducesasthmalikediseaseinmice
AT baegartzinga earlyonsetobesitydysregulatespulmonaryadipocytokineinsulinsignalingandinducesasthmalikediseaseinmice
AT vankoningsbruggenrietschelsilke earlyonsetobesitydysregulatespulmonaryadipocytokineinsulinsignalingandinducesasthmalikediseaseinmice
AT plankchristian earlyonsetobesitydysregulatespulmonaryadipocytokineinsulinsignalingandinducesasthmalikediseaseinmice
AT dotschjorg earlyonsetobesitydysregulatespulmonaryadipocytokineinsulinsignalingandinducesasthmalikediseaseinmice
AT alejandrealcazarmiguelangel earlyonsetobesitydysregulatespulmonaryadipocytokineinsulinsignalingandinducesasthmalikediseaseinmice