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Fructus Ligustri Lucidi preserves bone quality through the regulation of gut microbiota diversity, oxidative stress, TMAO and Sirt6 levels in aging mice

Gut dysbiosis and oxidative stress may trigger senile osteoporosis. Fructus Ligustri Lucidi (FLL) has bone-preserving properties and affects the intestinal microecology. However, the mechanism of the anti-osteoporotic effect of FLL and its link to the gut microbiota remains to be elucidated. Here, w...

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Autores principales: Li, Lin, Chen, Beibei, Zhu, Ruyuan, Li, Rui, Tian, Yimiao, Liu, Chenyue, Jia, Qiangqiang, Wang, Lili, Tang, Jinfa, Zhao, Dandan, Mo, Fangfang, Liu, Yan, Li, Yu, Orekhov, Alexander N., Brömme, Dieter, Zhang, Dongwei, Gao, Sihua
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6874471/
https://www.ncbi.nlm.nih.gov/pubmed/31715585
http://dx.doi.org/10.18632/aging.102376
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author Li, Lin
Chen, Beibei
Zhu, Ruyuan
Li, Rui
Tian, Yimiao
Liu, Chenyue
Jia, Qiangqiang
Wang, Lili
Tang, Jinfa
Zhao, Dandan
Mo, Fangfang
Liu, Yan
Li, Yu
Orekhov, Alexander N.
Brömme, Dieter
Zhang, Dongwei
Gao, Sihua
author_facet Li, Lin
Chen, Beibei
Zhu, Ruyuan
Li, Rui
Tian, Yimiao
Liu, Chenyue
Jia, Qiangqiang
Wang, Lili
Tang, Jinfa
Zhao, Dandan
Mo, Fangfang
Liu, Yan
Li, Yu
Orekhov, Alexander N.
Brömme, Dieter
Zhang, Dongwei
Gao, Sihua
author_sort Li, Lin
collection PubMed
description Gut dysbiosis and oxidative stress may trigger senile osteoporosis. Fructus Ligustri Lucidi (FLL) has bone-preserving properties and affects the intestinal microecology. However, the mechanism of the anti-osteoporotic effect of FLL and its link to the gut microbiota remains to be elucidated. Here, we demonstrated that sustained exposure of ICR mice to D-galactose / sodium nitrite for 90 days causes aging-related osteoporosis and reduced cognitive performance. The aging phenotype is also characterized by increased oxidative stress in serum. This is likely triggered by abnormal changes in the gut microbiota population of Bifidobacterium and the ratio of Firmicutes/ Bacteroidetes that resulted in increased levels of flavin-containing monooxygenase-3 and trimethylamine-N-oxide (TMAO). Moreover, the increased oxidative stress further accelerated aging by increasing tumor necrosis factor-α levels in serum and reducing Sirtuin 6 (Sirt6) expression in long bones, which prompted nuclear factor kappa-B acetylation as well as over-expression and activation of cathepsin K. FLL-treated aging mice revealed a non-osteoporotic bone phenotype and an improvement on the cognitive function. The mechanism underlying these effects may be linked to the regulation of gut microbiota diversity, antioxidant activity, and the levels of TMAO and Sirt6. FLL may represent a potential source for identifying anti-senile osteoporotic drug candidates.
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spelling pubmed-68744712019-12-03 Fructus Ligustri Lucidi preserves bone quality through the regulation of gut microbiota diversity, oxidative stress, TMAO and Sirt6 levels in aging mice Li, Lin Chen, Beibei Zhu, Ruyuan Li, Rui Tian, Yimiao Liu, Chenyue Jia, Qiangqiang Wang, Lili Tang, Jinfa Zhao, Dandan Mo, Fangfang Liu, Yan Li, Yu Orekhov, Alexander N. Brömme, Dieter Zhang, Dongwei Gao, Sihua Aging (Albany NY) Research Paper Gut dysbiosis and oxidative stress may trigger senile osteoporosis. Fructus Ligustri Lucidi (FLL) has bone-preserving properties and affects the intestinal microecology. However, the mechanism of the anti-osteoporotic effect of FLL and its link to the gut microbiota remains to be elucidated. Here, we demonstrated that sustained exposure of ICR mice to D-galactose / sodium nitrite for 90 days causes aging-related osteoporosis and reduced cognitive performance. The aging phenotype is also characterized by increased oxidative stress in serum. This is likely triggered by abnormal changes in the gut microbiota population of Bifidobacterium and the ratio of Firmicutes/ Bacteroidetes that resulted in increased levels of flavin-containing monooxygenase-3 and trimethylamine-N-oxide (TMAO). Moreover, the increased oxidative stress further accelerated aging by increasing tumor necrosis factor-α levels in serum and reducing Sirtuin 6 (Sirt6) expression in long bones, which prompted nuclear factor kappa-B acetylation as well as over-expression and activation of cathepsin K. FLL-treated aging mice revealed a non-osteoporotic bone phenotype and an improvement on the cognitive function. The mechanism underlying these effects may be linked to the regulation of gut microbiota diversity, antioxidant activity, and the levels of TMAO and Sirt6. FLL may represent a potential source for identifying anti-senile osteoporotic drug candidates. Impact Journals 2019-11-12 /pmc/articles/PMC6874471/ /pubmed/31715585 http://dx.doi.org/10.18632/aging.102376 Text en Copyright © 2019 Li et al. http://creativecommons.org/licenses/by/3.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY 3.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Paper
Li, Lin
Chen, Beibei
Zhu, Ruyuan
Li, Rui
Tian, Yimiao
Liu, Chenyue
Jia, Qiangqiang
Wang, Lili
Tang, Jinfa
Zhao, Dandan
Mo, Fangfang
Liu, Yan
Li, Yu
Orekhov, Alexander N.
Brömme, Dieter
Zhang, Dongwei
Gao, Sihua
Fructus Ligustri Lucidi preserves bone quality through the regulation of gut microbiota diversity, oxidative stress, TMAO and Sirt6 levels in aging mice
title Fructus Ligustri Lucidi preserves bone quality through the regulation of gut microbiota diversity, oxidative stress, TMAO and Sirt6 levels in aging mice
title_full Fructus Ligustri Lucidi preserves bone quality through the regulation of gut microbiota diversity, oxidative stress, TMAO and Sirt6 levels in aging mice
title_fullStr Fructus Ligustri Lucidi preserves bone quality through the regulation of gut microbiota diversity, oxidative stress, TMAO and Sirt6 levels in aging mice
title_full_unstemmed Fructus Ligustri Lucidi preserves bone quality through the regulation of gut microbiota diversity, oxidative stress, TMAO and Sirt6 levels in aging mice
title_short Fructus Ligustri Lucidi preserves bone quality through the regulation of gut microbiota diversity, oxidative stress, TMAO and Sirt6 levels in aging mice
title_sort fructus ligustri lucidi preserves bone quality through the regulation of gut microbiota diversity, oxidative stress, tmao and sirt6 levels in aging mice
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6874471/
https://www.ncbi.nlm.nih.gov/pubmed/31715585
http://dx.doi.org/10.18632/aging.102376
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