Literature DB >> 25005498

Thyroid hormone interacts with the sympathetic nervous system to modulate bone mass and structure in young adult mice.

Tatiana L Fonseca1, Marilia B C G Teixeira1, Manuela Miranda-Rodrigues, Manuela Rodrigues-Miranda1, Marcos V Silva1, Gisele M Martins1, Cristiane C Costa1, Danielle Y Arita2, Juliana D Perez2, Dulce E Casarini2, Patricia C Brum3, Cecilia H A Gouveia4.   

Abstract

To investigate whether thyroid hormone (TH) interacts with the sympathetic nervous system (SNS) to modulate bone mass and structure, we studied the effects of daily T3 treatment in a supraphysiological dose for 12 wk on the bone of young adult mice with chronic sympathetic hyperactivity owing to double-gene disruption of adrenoceptors that negatively regulate norepinephrine release, α(2A)-AR, and α(2C)-AR (α(2A/2C)-AR(-/-) mice). As expected, T3 treatment caused a generalized decrease in the areal bone mineral density (aBMD) of WT mice (determined by DEXA), followed by deleterious effects on the trabecular and cortical bone microstructural parameters (determined by μCT) of the femur and vertebra and on the biomechanical properties (maximum load, ultimate load, and stiffness) of the femur. Surprisingly, α(2A/2C)-AR(-/-) mice were resistant to most of these T3-induced negative effects. Interestingly, the mRNA expression of osteoprotegerin, a protein that limits osteoclast activity, was upregulated and downregulated by T3 in the bone of α(2A/2C)-AR(-/-) and WT mice, respectively. β1-AR mRNA expression and IGF-I serum levels, which exert bone anabolic effects, were increased by T3 treatment only in α(2A/2C)-AR(-/-) mice. As expected, T3 inhibited the cell growth of calvaria-derived osteoblasts isolated from WT mice, but this effect was abolished or reverted in cells isolated from KO mice. Collectively, these findings support the hypothesis of a TH-SNS interaction to control bone mass and structure of young adult mice and suggests that this interaction may involve α2-AR signaling. Finally, the present findings offer new insights into the mechanisms through which TH regulates bone mass, structure, and physiology.
Copyright © 2014 the American Physiological Society.

Entities:  

Keywords:  bone; sympathetic nervous system; thyroid hormone; α-adrenoceptors; β-adrenoceptors

Mesh:

Substances:

Year:  2014        PMID: 25005498     DOI: 10.1152/ajpendo.00643.2013

Source DB:  PubMed          Journal:  Am J Physiol Endocrinol Metab        ISSN: 0193-1849            Impact factor:   4.310


  6 in total

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3.  Global Disruption of α2A Adrenoceptor Barely Affects Bone Tissue but Minimizes the Detrimental Effects of Thyrotoxicosis on Cortical Bone.

Authors:  Gisele M Martins; Marília B C G Teixeira; Marcos V Silva; Bianca Neofiti-Papi; Manuela Miranda-Rodrigues; Patricia C Brum; Cecilia H A Gouveia
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6.  Lack of α2C-Adrenoceptor Results in Contrasting Phenotypes of Long Bones and Vertebra and Prevents the Thyrotoxicosis-Induced Osteopenia.

Authors:  Marilia Bianca Cruz Grecco Teixeira; Gisele Miyamura Martins; Manuela Miranda-Rodrigues; Iasmin Ferreira De Araújo; Ricardo Oliveira; Patrícia Chakur Brum; Cecilia Helena Azevedo Gouveia
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  6 in total

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