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The 17β-oestradiol treatment minimizes the adverse effects of protein restriction on bone parameters in ovariectomized Wistar rats: Relevance to osteoporosis and the menopause

OBJECTIVES: Insufficient protein ingestion may affect muscle and bone mass, increasing the risk of osteoporotic fractures in the elderly, and especially in postmenopausal women. We evaluated how a low-protein diet affects bone parameters under gonadal hormone deficiency and the improvement led by ho...

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Autores principales: de Quadros, Victoria P., Tobar, Natalia, Viana, Lais R., dos Santos, Rogerio W., Kiyataka, Paulo H. M., Gomes-Marcondes, Maria C. C.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6946913/
https://www.ncbi.nlm.nih.gov/pubmed/31934328
http://dx.doi.org/10.1302/2046-3758.812.BJR-2018-0259.R2
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author de Quadros, Victoria P.
Tobar, Natalia
Viana, Lais R.
dos Santos, Rogerio W.
Kiyataka, Paulo H. M.
Gomes-Marcondes, Maria C. C.
author_facet de Quadros, Victoria P.
Tobar, Natalia
Viana, Lais R.
dos Santos, Rogerio W.
Kiyataka, Paulo H. M.
Gomes-Marcondes, Maria C. C.
author_sort de Quadros, Victoria P.
collection PubMed
description OBJECTIVES: Insufficient protein ingestion may affect muscle and bone mass, increasing the risk of osteoporotic fractures in the elderly, and especially in postmenopausal women. We evaluated how a low-protein diet affects bone parameters under gonadal hormone deficiency and the improvement led by hormone replacement therapy (HRT) with 17β-oestradiol. METHODS: Female Wistar rats were divided into control (C), ovariectomized (OVX), and 17β-oestradiol-treated ovariectomized (OVX-HRT) groups, which were fed a control or an isocaloric low-protein diet (LP; 6.6% protein; seven animals per group). Morphometric, serum, and body composition parameters were assessed, as well as bone parameters, mechanical resistance, and mineralogy. RESULTS: The results showed that protein restriction negatively affected body chemical composition and bone metabolism by the sex hormone deficiency condition in the OVX group. The association between undernutrition and hormone deficiency led to bone and muscle mass loss and increased the fragility of the bone (as well as decreasing relative femoral weight, bone mineral density, femoral elasticity, peak stress, and stress at offset yield). Although protein restriction induced more severe adverse effects compared with the controls, the combination with HRT showed an improvement in minimizing these damaging effects, as it was seen that HRT had some efficacy in maintaining muscle and bone mass, preserving the bone resistance and minimizing some deleterious processes during the menopause. CONCLUSION: Protein restriction has adverse effects on metabolism, leading to more severe menopausal symptoms, and HRT could minimize these effects. Therefore, special attention should be given to a balanced diet during menopause and HRT. Cite this article: Bone Joint Res 2019;8:573–581.
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spelling pubmed-69469132020-01-13 The 17β-oestradiol treatment minimizes the adverse effects of protein restriction on bone parameters in ovariectomized Wistar rats: Relevance to osteoporosis and the menopause de Quadros, Victoria P. Tobar, Natalia Viana, Lais R. dos Santos, Rogerio W. Kiyataka, Paulo H. M. Gomes-Marcondes, Maria C. C. Bone Joint Res Biomechanics OBJECTIVES: Insufficient protein ingestion may affect muscle and bone mass, increasing the risk of osteoporotic fractures in the elderly, and especially in postmenopausal women. We evaluated how a low-protein diet affects bone parameters under gonadal hormone deficiency and the improvement led by hormone replacement therapy (HRT) with 17β-oestradiol. METHODS: Female Wistar rats were divided into control (C), ovariectomized (OVX), and 17β-oestradiol-treated ovariectomized (OVX-HRT) groups, which were fed a control or an isocaloric low-protein diet (LP; 6.6% protein; seven animals per group). Morphometric, serum, and body composition parameters were assessed, as well as bone parameters, mechanical resistance, and mineralogy. RESULTS: The results showed that protein restriction negatively affected body chemical composition and bone metabolism by the sex hormone deficiency condition in the OVX group. The association between undernutrition and hormone deficiency led to bone and muscle mass loss and increased the fragility of the bone (as well as decreasing relative femoral weight, bone mineral density, femoral elasticity, peak stress, and stress at offset yield). Although protein restriction induced more severe adverse effects compared with the controls, the combination with HRT showed an improvement in minimizing these damaging effects, as it was seen that HRT had some efficacy in maintaining muscle and bone mass, preserving the bone resistance and minimizing some deleterious processes during the menopause. CONCLUSION: Protein restriction has adverse effects on metabolism, leading to more severe menopausal symptoms, and HRT could minimize these effects. Therefore, special attention should be given to a balanced diet during menopause and HRT. Cite this article: Bone Joint Res 2019;8:573–581. 2020-01-08 /pmc/articles/PMC6946913/ /pubmed/31934328 http://dx.doi.org/10.1302/2046-3758.812.BJR-2018-0259.R2 Text en © 2019 Author(s) et al Open Access This is an open-access article distributed under the terms of the Creative Commons Attribution Non-Commercial No Derivatives (CC BY-NC-ND 4.0) licence, which permits the copying and redistribution of the work only, and provided the original author and source are credted. See https://creativecommons.org/licenses/by-nc-nd/4.0/.
spellingShingle Biomechanics
de Quadros, Victoria P.
Tobar, Natalia
Viana, Lais R.
dos Santos, Rogerio W.
Kiyataka, Paulo H. M.
Gomes-Marcondes, Maria C. C.
The 17β-oestradiol treatment minimizes the adverse effects of protein restriction on bone parameters in ovariectomized Wistar rats: Relevance to osteoporosis and the menopause
title The 17β-oestradiol treatment minimizes the adverse effects of protein restriction on bone parameters in ovariectomized Wistar rats: Relevance to osteoporosis and the menopause
title_full The 17β-oestradiol treatment minimizes the adverse effects of protein restriction on bone parameters in ovariectomized Wistar rats: Relevance to osteoporosis and the menopause
title_fullStr The 17β-oestradiol treatment minimizes the adverse effects of protein restriction on bone parameters in ovariectomized Wistar rats: Relevance to osteoporosis and the menopause
title_full_unstemmed The 17β-oestradiol treatment minimizes the adverse effects of protein restriction on bone parameters in ovariectomized Wistar rats: Relevance to osteoporosis and the menopause
title_short The 17β-oestradiol treatment minimizes the adverse effects of protein restriction on bone parameters in ovariectomized Wistar rats: Relevance to osteoporosis and the menopause
title_sort 17β-oestradiol treatment minimizes the adverse effects of protein restriction on bone parameters in ovariectomized wistar rats: relevance to osteoporosis and the menopause
topic Biomechanics
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6946913/
https://www.ncbi.nlm.nih.gov/pubmed/31934328
http://dx.doi.org/10.1302/2046-3758.812.BJR-2018-0259.R2
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