Cargando…

Bovine Colostrum Supplementation Improves Bone Metabolism in an Osteoporosis-Induced Animal Model

Osteoporosis is characterized by bone loss. The present study aims to investigate the effects of bovine colostrum (BC) on bone metabolism using ovariectomized (OVX) and orchidectomized (ORX) rat models. Twenty-seven-week-old Wistar Han rats were randomly assigned as: (1) placebo control, (2) BC supp...

Descripción completa

Detalles Bibliográficos
Autores principales: Kydonaki, Eirini K., Freitas, Laura, Fonseca, Bruno M., Reguengo, Henrique, Raposo Simón, Carlos, Bastos, Ana R., Fernandes, Emanuel M., Canadas, Raphaël F., Oliveira, Joaquim Miguel, Correlo, Vitor M., Reis, Rui L., Vliora, Maria, Gkiata, Parakevi, Koutedakis, Yiannis, Ntina, Georgia, Pinto, Rui, Carrillo, Andres E., Marques, Franklim, Amorim, Tânia
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8471956/
https://www.ncbi.nlm.nih.gov/pubmed/34578859
http://dx.doi.org/10.3390/nu13092981
_version_ 1784574600740339712
author Kydonaki, Eirini K.
Freitas, Laura
Fonseca, Bruno M.
Reguengo, Henrique
Raposo Simón, Carlos
Bastos, Ana R.
Fernandes, Emanuel M.
Canadas, Raphaël F.
Oliveira, Joaquim Miguel
Correlo, Vitor M.
Reis, Rui L.
Vliora, Maria
Gkiata, Parakevi
Koutedakis, Yiannis
Ntina, Georgia
Pinto, Rui
Carrillo, Andres E.
Marques, Franklim
Amorim, Tânia
author_facet Kydonaki, Eirini K.
Freitas, Laura
Fonseca, Bruno M.
Reguengo, Henrique
Raposo Simón, Carlos
Bastos, Ana R.
Fernandes, Emanuel M.
Canadas, Raphaël F.
Oliveira, Joaquim Miguel
Correlo, Vitor M.
Reis, Rui L.
Vliora, Maria
Gkiata, Parakevi
Koutedakis, Yiannis
Ntina, Georgia
Pinto, Rui
Carrillo, Andres E.
Marques, Franklim
Amorim, Tânia
author_sort Kydonaki, Eirini K.
collection PubMed
description Osteoporosis is characterized by bone loss. The present study aims to investigate the effects of bovine colostrum (BC) on bone metabolism using ovariectomized (OVX) and orchidectomized (ORX) rat models. Twenty-seven-week-old Wistar Han rats were randomly assigned as: (1) placebo control, (2) BC supplementation dose 1 (BC1: 0.5 g/day/OVX, 1 g/day/ORX), (3) BC supplementation dose 2 (BC2: 1 g/day/OVX, 1.5 g/day/ORX) and (4) BC supplementation dose 3 (BC3: 1.5 g/day/OVX, 2 g/day/ORX). Bone microarchitecture, strength, gene expression of VEGFA, FGF2, RANKL, RANK and OPG, and bone resorption/formation markers were assessed after four months of BC supplementation. Compared to the placebo, OVX rats in the BC1 group exhibited significantly higher cortical bone mineral content and trabecular bone mineral content (p < 0.01), while OVX rats in the BC3 group showed significantly higher trabecular bone mineral content (p < 0.05). ORX rats receiving BC dose 2 demonstrated significantly higher levels of trabecular bone mineral content (p < 0.05). Serum osteocalcin in the ORX was pointedly higher in all BC supplementation groups than the placebo (BC1: p < 0.05; BC2, BC3: p < 0.001). Higher doses of BC induced significantly higher relative mRNA expression of OPG, VEGFA, FGF2 and RANKL (p < 0.05). BC supplementation improves bone metabolism of OVX and ORX rats, which might be associated with the activation of the VEGFA, FGF2 and RANKL/RANK/OPG pathways.
format Online
Article
Text
id pubmed-8471956
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-84719562021-09-28 Bovine Colostrum Supplementation Improves Bone Metabolism in an Osteoporosis-Induced Animal Model Kydonaki, Eirini K. Freitas, Laura Fonseca, Bruno M. Reguengo, Henrique Raposo Simón, Carlos Bastos, Ana R. Fernandes, Emanuel M. Canadas, Raphaël F. Oliveira, Joaquim Miguel Correlo, Vitor M. Reis, Rui L. Vliora, Maria Gkiata, Parakevi Koutedakis, Yiannis Ntina, Georgia Pinto, Rui Carrillo, Andres E. Marques, Franklim Amorim, Tânia Nutrients Article Osteoporosis is characterized by bone loss. The present study aims to investigate the effects of bovine colostrum (BC) on bone metabolism using ovariectomized (OVX) and orchidectomized (ORX) rat models. Twenty-seven-week-old Wistar Han rats were randomly assigned as: (1) placebo control, (2) BC supplementation dose 1 (BC1: 0.5 g/day/OVX, 1 g/day/ORX), (3) BC supplementation dose 2 (BC2: 1 g/day/OVX, 1.5 g/day/ORX) and (4) BC supplementation dose 3 (BC3: 1.5 g/day/OVX, 2 g/day/ORX). Bone microarchitecture, strength, gene expression of VEGFA, FGF2, RANKL, RANK and OPG, and bone resorption/formation markers were assessed after four months of BC supplementation. Compared to the placebo, OVX rats in the BC1 group exhibited significantly higher cortical bone mineral content and trabecular bone mineral content (p < 0.01), while OVX rats in the BC3 group showed significantly higher trabecular bone mineral content (p < 0.05). ORX rats receiving BC dose 2 demonstrated significantly higher levels of trabecular bone mineral content (p < 0.05). Serum osteocalcin in the ORX was pointedly higher in all BC supplementation groups than the placebo (BC1: p < 0.05; BC2, BC3: p < 0.001). Higher doses of BC induced significantly higher relative mRNA expression of OPG, VEGFA, FGF2 and RANKL (p < 0.05). BC supplementation improves bone metabolism of OVX and ORX rats, which might be associated with the activation of the VEGFA, FGF2 and RANKL/RANK/OPG pathways. MDPI 2021-08-27 /pmc/articles/PMC8471956/ /pubmed/34578859 http://dx.doi.org/10.3390/nu13092981 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Kydonaki, Eirini K.
Freitas, Laura
Fonseca, Bruno M.
Reguengo, Henrique
Raposo Simón, Carlos
Bastos, Ana R.
Fernandes, Emanuel M.
Canadas, Raphaël F.
Oliveira, Joaquim Miguel
Correlo, Vitor M.
Reis, Rui L.
Vliora, Maria
Gkiata, Parakevi
Koutedakis, Yiannis
Ntina, Georgia
Pinto, Rui
Carrillo, Andres E.
Marques, Franklim
Amorim, Tânia
Bovine Colostrum Supplementation Improves Bone Metabolism in an Osteoporosis-Induced Animal Model
title Bovine Colostrum Supplementation Improves Bone Metabolism in an Osteoporosis-Induced Animal Model
title_full Bovine Colostrum Supplementation Improves Bone Metabolism in an Osteoporosis-Induced Animal Model
title_fullStr Bovine Colostrum Supplementation Improves Bone Metabolism in an Osteoporosis-Induced Animal Model
title_full_unstemmed Bovine Colostrum Supplementation Improves Bone Metabolism in an Osteoporosis-Induced Animal Model
title_short Bovine Colostrum Supplementation Improves Bone Metabolism in an Osteoporosis-Induced Animal Model
title_sort bovine colostrum supplementation improves bone metabolism in an osteoporosis-induced animal model
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8471956/
https://www.ncbi.nlm.nih.gov/pubmed/34578859
http://dx.doi.org/10.3390/nu13092981
work_keys_str_mv AT kydonakieirinik bovinecolostrumsupplementationimprovesbonemetabolisminanosteoporosisinducedanimalmodel
AT freitaslaura bovinecolostrumsupplementationimprovesbonemetabolisminanosteoporosisinducedanimalmodel
AT fonsecabrunom bovinecolostrumsupplementationimprovesbonemetabolisminanosteoporosisinducedanimalmodel
AT reguengohenrique bovinecolostrumsupplementationimprovesbonemetabolisminanosteoporosisinducedanimalmodel
AT rapososimoncarlos bovinecolostrumsupplementationimprovesbonemetabolisminanosteoporosisinducedanimalmodel
AT bastosanar bovinecolostrumsupplementationimprovesbonemetabolisminanosteoporosisinducedanimalmodel
AT fernandesemanuelm bovinecolostrumsupplementationimprovesbonemetabolisminanosteoporosisinducedanimalmodel
AT canadasraphaelf bovinecolostrumsupplementationimprovesbonemetabolisminanosteoporosisinducedanimalmodel
AT oliveirajoaquimmiguel bovinecolostrumsupplementationimprovesbonemetabolisminanosteoporosisinducedanimalmodel
AT correlovitorm bovinecolostrumsupplementationimprovesbonemetabolisminanosteoporosisinducedanimalmodel
AT reisruil bovinecolostrumsupplementationimprovesbonemetabolisminanosteoporosisinducedanimalmodel
AT vlioramaria bovinecolostrumsupplementationimprovesbonemetabolisminanosteoporosisinducedanimalmodel
AT gkiataparakevi bovinecolostrumsupplementationimprovesbonemetabolisminanosteoporosisinducedanimalmodel
AT koutedakisyiannis bovinecolostrumsupplementationimprovesbonemetabolisminanosteoporosisinducedanimalmodel
AT ntinageorgia bovinecolostrumsupplementationimprovesbonemetabolisminanosteoporosisinducedanimalmodel
AT pintorui bovinecolostrumsupplementationimprovesbonemetabolisminanosteoporosisinducedanimalmodel
AT carrilloandrese bovinecolostrumsupplementationimprovesbonemetabolisminanosteoporosisinducedanimalmodel
AT marquesfranklim bovinecolostrumsupplementationimprovesbonemetabolisminanosteoporosisinducedanimalmodel
AT amorimtania bovinecolostrumsupplementationimprovesbonemetabolisminanosteoporosisinducedanimalmodel