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Omega-9 Modifies Viscoelasticity and Augments Bone Strength and Architecture in a High-Fat Diet-Fed Murine Model

The influence of diet on the development of osteoporosis is significant and not fully understood. This study investigated the effect of diets of varying lipid profiles and ω-3, ω-6 and ω-9 composition on the structural and mechanical properties of bone. The hypothesis studied was that a diet high in...

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Autores principales: Omer, Mahmoud, Ali, Hessein, Orlovskaya, Nina, Ballesteros, Amelia, Cheong, Vee San, Martyniak, Kari, Wei, Fei, Collins, Boyce E., Yarmolenko, Sergey N., Asiatico, Jackson, Kinzel, Michael, Ngo, Christopher, Sankar, Jagannathan, Calder, Ashley, Gilbertson, Timothy, Meckmongkol, Teerin, Ghosh, Ranajay, Coathup, Melanie
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9370223/
https://www.ncbi.nlm.nih.gov/pubmed/35956341
http://dx.doi.org/10.3390/nu14153165
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author Omer, Mahmoud
Ali, Hessein
Orlovskaya, Nina
Ballesteros, Amelia
Cheong, Vee San
Martyniak, Kari
Wei, Fei
Collins, Boyce E.
Yarmolenko, Sergey N.
Asiatico, Jackson
Kinzel, Michael
Ngo, Christopher
Sankar, Jagannathan
Calder, Ashley
Gilbertson, Timothy
Meckmongkol, Teerin
Ghosh, Ranajay
Coathup, Melanie
author_facet Omer, Mahmoud
Ali, Hessein
Orlovskaya, Nina
Ballesteros, Amelia
Cheong, Vee San
Martyniak, Kari
Wei, Fei
Collins, Boyce E.
Yarmolenko, Sergey N.
Asiatico, Jackson
Kinzel, Michael
Ngo, Christopher
Sankar, Jagannathan
Calder, Ashley
Gilbertson, Timothy
Meckmongkol, Teerin
Ghosh, Ranajay
Coathup, Melanie
author_sort Omer, Mahmoud
collection PubMed
description The influence of diet on the development of osteoporosis is significant and not fully understood. This study investigated the effect of diets of varying lipid profiles and ω-3, ω-6 and ω-9 composition on the structural and mechanical properties of bone. The hypothesis studied was that a diet high in saturated fat would induce osteoporosis and produce an overall increased detrimental bony response when compared with a diet high in unsaturated ω-6, or ω-9. Male C57BL/6J mice were fed either a control diet, 50:50 mix (saturated:unsaturated) high in ω-9 (HFD(50:50)), a diet high in saturated fat (HSF) or a polyunsaturated fat diet high in ω-6 (PUFA) over an 8-week duration. Tibiae were retrieved and evaluated using DMA, 3-point-bending, histomorphometry, and microCT. Mice fed a HSF diet displayed key features characteristic of osteoporosis. The loss tangent was significantly increased in the HFD(50:50) diet group compared with control (p = 0.016) and PUFA-fed animals (p = 0.049). HFD(50:50)-fed mice presented with an increased viscous component, longer tibiae, increased loss modulus (p = 0.009), and ultimate stress, smaller microcracks (p < 0.001), and increased trabecular width (p = 0.002) compared with control animals. A diet high in ω-9 resulted in an overall superior bone response and further analysis of its role in bone health is warranted.
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spelling pubmed-93702232022-08-12 Omega-9 Modifies Viscoelasticity and Augments Bone Strength and Architecture in a High-Fat Diet-Fed Murine Model Omer, Mahmoud Ali, Hessein Orlovskaya, Nina Ballesteros, Amelia Cheong, Vee San Martyniak, Kari Wei, Fei Collins, Boyce E. Yarmolenko, Sergey N. Asiatico, Jackson Kinzel, Michael Ngo, Christopher Sankar, Jagannathan Calder, Ashley Gilbertson, Timothy Meckmongkol, Teerin Ghosh, Ranajay Coathup, Melanie Nutrients Article The influence of diet on the development of osteoporosis is significant and not fully understood. This study investigated the effect of diets of varying lipid profiles and ω-3, ω-6 and ω-9 composition on the structural and mechanical properties of bone. The hypothesis studied was that a diet high in saturated fat would induce osteoporosis and produce an overall increased detrimental bony response when compared with a diet high in unsaturated ω-6, or ω-9. Male C57BL/6J mice were fed either a control diet, 50:50 mix (saturated:unsaturated) high in ω-9 (HFD(50:50)), a diet high in saturated fat (HSF) or a polyunsaturated fat diet high in ω-6 (PUFA) over an 8-week duration. Tibiae were retrieved and evaluated using DMA, 3-point-bending, histomorphometry, and microCT. Mice fed a HSF diet displayed key features characteristic of osteoporosis. The loss tangent was significantly increased in the HFD(50:50) diet group compared with control (p = 0.016) and PUFA-fed animals (p = 0.049). HFD(50:50)-fed mice presented with an increased viscous component, longer tibiae, increased loss modulus (p = 0.009), and ultimate stress, smaller microcracks (p < 0.001), and increased trabecular width (p = 0.002) compared with control animals. A diet high in ω-9 resulted in an overall superior bone response and further analysis of its role in bone health is warranted. MDPI 2022-07-31 /pmc/articles/PMC9370223/ /pubmed/35956341 http://dx.doi.org/10.3390/nu14153165 Text en © 2022 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
Omer, Mahmoud
Ali, Hessein
Orlovskaya, Nina
Ballesteros, Amelia
Cheong, Vee San
Martyniak, Kari
Wei, Fei
Collins, Boyce E.
Yarmolenko, Sergey N.
Asiatico, Jackson
Kinzel, Michael
Ngo, Christopher
Sankar, Jagannathan
Calder, Ashley
Gilbertson, Timothy
Meckmongkol, Teerin
Ghosh, Ranajay
Coathup, Melanie
Omega-9 Modifies Viscoelasticity and Augments Bone Strength and Architecture in a High-Fat Diet-Fed Murine Model
title Omega-9 Modifies Viscoelasticity and Augments Bone Strength and Architecture in a High-Fat Diet-Fed Murine Model
title_full Omega-9 Modifies Viscoelasticity and Augments Bone Strength and Architecture in a High-Fat Diet-Fed Murine Model
title_fullStr Omega-9 Modifies Viscoelasticity and Augments Bone Strength and Architecture in a High-Fat Diet-Fed Murine Model
title_full_unstemmed Omega-9 Modifies Viscoelasticity and Augments Bone Strength and Architecture in a High-Fat Diet-Fed Murine Model
title_short Omega-9 Modifies Viscoelasticity and Augments Bone Strength and Architecture in a High-Fat Diet-Fed Murine Model
title_sort omega-9 modifies viscoelasticity and augments bone strength and architecture in a high-fat diet-fed murine model
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9370223/
https://www.ncbi.nlm.nih.gov/pubmed/35956341
http://dx.doi.org/10.3390/nu14153165
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