Cargando…

Oxytocin/Osteocalcin/IL-6 and NGF/BDNF mRNA Levels in Response to Cold Stress Challenge in Mice: Possible Oxytonic Brain-Bone-Muscle-Interaction

Oxytocin (Oxt), osteocalcin (Ost), and NGF/BDNF have a role in bone homeostasis, reproduction, and cognition. Oxt/Ost is required for muscle repair. We investigated gene response of muscle and the inter-organ communication following cold stress (CS). The mRNA quantity of Ngf, Ost, Oxt, Bdnf, p75ntr,...

Descripción completa

Detalles Bibliográficos
Autores principales: Camerino, Claudia, Conte, Elena, Carratù, Maria Rosaria, Fonzino, Adriano, Lograno, Marcello Diego, Tricarico, Domenico
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6890828/
https://www.ncbi.nlm.nih.gov/pubmed/31827442
http://dx.doi.org/10.3389/fphys.2019.01437
_version_ 1783475696789618688
author Camerino, Claudia
Conte, Elena
Carratù, Maria Rosaria
Fonzino, Adriano
Lograno, Marcello Diego
Tricarico, Domenico
author_facet Camerino, Claudia
Conte, Elena
Carratù, Maria Rosaria
Fonzino, Adriano
Lograno, Marcello Diego
Tricarico, Domenico
author_sort Camerino, Claudia
collection PubMed
description Oxytocin (Oxt), osteocalcin (Ost), and NGF/BDNF have a role in bone homeostasis, reproduction, and cognition. Oxt/Ost is required for muscle repair. We investigated gene response of muscle and the inter-organ communication following cold stress (CS). The mRNA quantity of Ngf, Ost, Oxt, Bdnf, p75ntr, Ntrk1, Gprc6a, Oxtr, Ntrk2, UCP1, and Il-6 genes in bone, brain, soleus (SOL), and tibialis anterior (TA) muscles from adult mice following CS were investigated. The myosin heavy-chain Mhc2b, Mhc1, Mhc2x, and Mhc2a gene expression were investigated. Mice were maintained at T = 23°C or 4°C for 6 h and 5-days (5d). CS mice did not show signs of muscle degeneration. An upregulation of Ucp1 and Ngf genes by 2 and 1.5 folds, respectively, in TA after 6 h CS and Ntrk1 by 4 and 22 folds in SOL muscle after 6 h and 5d CS, respectively, was observed; while after 6 h CS p75Ntr was downregulated in either muscle. Bdnf was unaffected, while after 5d CS Ntrk2 was upregulated in TA. Ost was downregulated in SOL by 0.9-folds at 5d. Following 5d CS, Oxtr and Il-6 genes were upregulated, respectively, by 1 and 1.5 folds in SOL. A downregulation of Mhc2b, respectively, by 0.96 and 0.88-folds after 6 h and 5d CS in SOL and Mhc2a was also downregulated by 0.88-fold after 5d CS in TA. Mhc1 and Mhc2x were not affected. Changes in the expression levels of genes in TA and SOL muscles, bone, and brain following CS were regulated by IL6 and Oxt. CS potentiates the slow-twitch phenotype of SOL which is in line with the metabolic need of this muscle, and the potentiation of the slow-twitch phenotype in TA. Oxt and IL6 coordinate a phenotype-dependent tonic effect of slow-twitch muscle and Oxt regulates the inter-organ interaction between brain and SOL muscle. Muscle tropism is maintained by NGF signaling following CS.
format Online
Article
Text
id pubmed-6890828
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher Frontiers Media S.A.
record_format MEDLINE/PubMed
spelling pubmed-68908282019-12-11 Oxytocin/Osteocalcin/IL-6 and NGF/BDNF mRNA Levels in Response to Cold Stress Challenge in Mice: Possible Oxytonic Brain-Bone-Muscle-Interaction Camerino, Claudia Conte, Elena Carratù, Maria Rosaria Fonzino, Adriano Lograno, Marcello Diego Tricarico, Domenico Front Physiol Physiology Oxytocin (Oxt), osteocalcin (Ost), and NGF/BDNF have a role in bone homeostasis, reproduction, and cognition. Oxt/Ost is required for muscle repair. We investigated gene response of muscle and the inter-organ communication following cold stress (CS). The mRNA quantity of Ngf, Ost, Oxt, Bdnf, p75ntr, Ntrk1, Gprc6a, Oxtr, Ntrk2, UCP1, and Il-6 genes in bone, brain, soleus (SOL), and tibialis anterior (TA) muscles from adult mice following CS were investigated. The myosin heavy-chain Mhc2b, Mhc1, Mhc2x, and Mhc2a gene expression were investigated. Mice were maintained at T = 23°C or 4°C for 6 h and 5-days (5d). CS mice did not show signs of muscle degeneration. An upregulation of Ucp1 and Ngf genes by 2 and 1.5 folds, respectively, in TA after 6 h CS and Ntrk1 by 4 and 22 folds in SOL muscle after 6 h and 5d CS, respectively, was observed; while after 6 h CS p75Ntr was downregulated in either muscle. Bdnf was unaffected, while after 5d CS Ntrk2 was upregulated in TA. Ost was downregulated in SOL by 0.9-folds at 5d. Following 5d CS, Oxtr and Il-6 genes were upregulated, respectively, by 1 and 1.5 folds in SOL. A downregulation of Mhc2b, respectively, by 0.96 and 0.88-folds after 6 h and 5d CS in SOL and Mhc2a was also downregulated by 0.88-fold after 5d CS in TA. Mhc1 and Mhc2x were not affected. Changes in the expression levels of genes in TA and SOL muscles, bone, and brain following CS were regulated by IL6 and Oxt. CS potentiates the slow-twitch phenotype of SOL which is in line with the metabolic need of this muscle, and the potentiation of the slow-twitch phenotype in TA. Oxt and IL6 coordinate a phenotype-dependent tonic effect of slow-twitch muscle and Oxt regulates the inter-organ interaction between brain and SOL muscle. Muscle tropism is maintained by NGF signaling following CS. Frontiers Media S.A. 2019-11-27 /pmc/articles/PMC6890828/ /pubmed/31827442 http://dx.doi.org/10.3389/fphys.2019.01437 Text en Copyright © 2019 Camerino, Conte, Carratù, Fonzino, Lograno and Tricarico. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Physiology
Camerino, Claudia
Conte, Elena
Carratù, Maria Rosaria
Fonzino, Adriano
Lograno, Marcello Diego
Tricarico, Domenico
Oxytocin/Osteocalcin/IL-6 and NGF/BDNF mRNA Levels in Response to Cold Stress Challenge in Mice: Possible Oxytonic Brain-Bone-Muscle-Interaction
title Oxytocin/Osteocalcin/IL-6 and NGF/BDNF mRNA Levels in Response to Cold Stress Challenge in Mice: Possible Oxytonic Brain-Bone-Muscle-Interaction
title_full Oxytocin/Osteocalcin/IL-6 and NGF/BDNF mRNA Levels in Response to Cold Stress Challenge in Mice: Possible Oxytonic Brain-Bone-Muscle-Interaction
title_fullStr Oxytocin/Osteocalcin/IL-6 and NGF/BDNF mRNA Levels in Response to Cold Stress Challenge in Mice: Possible Oxytonic Brain-Bone-Muscle-Interaction
title_full_unstemmed Oxytocin/Osteocalcin/IL-6 and NGF/BDNF mRNA Levels in Response to Cold Stress Challenge in Mice: Possible Oxytonic Brain-Bone-Muscle-Interaction
title_short Oxytocin/Osteocalcin/IL-6 and NGF/BDNF mRNA Levels in Response to Cold Stress Challenge in Mice: Possible Oxytonic Brain-Bone-Muscle-Interaction
title_sort oxytocin/osteocalcin/il-6 and ngf/bdnf mrna levels in response to cold stress challenge in mice: possible oxytonic brain-bone-muscle-interaction
topic Physiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6890828/
https://www.ncbi.nlm.nih.gov/pubmed/31827442
http://dx.doi.org/10.3389/fphys.2019.01437
work_keys_str_mv AT camerinoclaudia oxytocinosteocalcinil6andngfbdnfmrnalevelsinresponsetocoldstresschallengeinmicepossibleoxytonicbrainbonemuscleinteraction
AT conteelena oxytocinosteocalcinil6andngfbdnfmrnalevelsinresponsetocoldstresschallengeinmicepossibleoxytonicbrainbonemuscleinteraction
AT carratumariarosaria oxytocinosteocalcinil6andngfbdnfmrnalevelsinresponsetocoldstresschallengeinmicepossibleoxytonicbrainbonemuscleinteraction
AT fonzinoadriano oxytocinosteocalcinil6andngfbdnfmrnalevelsinresponsetocoldstresschallengeinmicepossibleoxytonicbrainbonemuscleinteraction
AT logranomarcellodiego oxytocinosteocalcinil6andngfbdnfmrnalevelsinresponsetocoldstresschallengeinmicepossibleoxytonicbrainbonemuscleinteraction
AT tricaricodomenico oxytocinosteocalcinil6andngfbdnfmrnalevelsinresponsetocoldstresschallengeinmicepossibleoxytonicbrainbonemuscleinteraction