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Comprehensive multiomics analysis of the effect of ginsenoside Rb1 on hyperlipidemia

We analyzed the effects of ginsenoside Rb1 on hyperlipidemic in model mice. Using stool, plasma and hepatic tissue samples, we observed that the genera Blautia and Allobaculum were increased and Turicibacter was decrease in Rb1-treated mice as compared to untreated model mice. Ether lipid metabolism...

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Autores principales: Lianqun, Jia, Xing, Ju, Yixin, Ma, Si, Chen, Xiaoming, Lv, Nan, Song, Guoyuan, Sui, Yuan, Cao, Ning, Yu, Yao, Wu, Na, Zhao, Kaixuan, Zhan, Guanlin, Yang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8064217/
https://www.ncbi.nlm.nih.gov/pubmed/33744860
http://dx.doi.org/10.18632/aging.202728
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author Lianqun, Jia
Xing, Ju
Yixin, Ma
Si, Chen
Xiaoming, Lv
Nan, Song
Guoyuan, Sui
Yuan, Cao
Ning, Yu
Yao, Wu
Na, Zhao
Kaixuan, Zhan
Guanlin, Yang
author_facet Lianqun, Jia
Xing, Ju
Yixin, Ma
Si, Chen
Xiaoming, Lv
Nan, Song
Guoyuan, Sui
Yuan, Cao
Ning, Yu
Yao, Wu
Na, Zhao
Kaixuan, Zhan
Guanlin, Yang
author_sort Lianqun, Jia
collection PubMed
description We analyzed the effects of ginsenoside Rb1 on hyperlipidemic in model mice. Using stool, plasma and hepatic tissue samples, we observed that the genera Blautia and Allobaculum were increased and Turicibacter was decrease in Rb1-treated mice as compared to untreated model mice. Ether lipid metabolism, glycerolipid metabolism, and glyoxylate and dicarboxylate metabolism were differentially enriched between the Rb1 and model groups. Lipidomics revealed 169 metabolites differentially expressed between the model and Rb1 groups in a positive ion model and 58 in a negative ion model. These metabolites mainly participate in glycerophospholipid, linoleic acid, and alpha-linolenic acid metabolism. The main metabolites enriched in these three pathways were phosphatidylcholine, diacylglycerol and ceramide, respectively. In a transcriptome analysis, 766 transcripts were differentially expressed between the Rb1 and model groups. KEGG analysis revealed lysine degradation, inositol phosphate metabolism, and glycerophospholipid metabolism to be the main enriched pathways. Multiomics analysis revealed glycerophospholipid metabolism to be a common pathway and phosphatidylcholine the main metabolite differentially enriched between the Rb1 and model groups. Results from fecal transplanted germ-free mice suggest that to suppress hyperlipidemia, Rb1 regulates gut microbiota by regulating the synthesis and decomposition of phosphatidylcholine in glycerophospholipid metabolism, which in turn decreases serum total cholesterol.
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spelling pubmed-80642172021-04-26 Comprehensive multiomics analysis of the effect of ginsenoside Rb1 on hyperlipidemia Lianqun, Jia Xing, Ju Yixin, Ma Si, Chen Xiaoming, Lv Nan, Song Guoyuan, Sui Yuan, Cao Ning, Yu Yao, Wu Na, Zhao Kaixuan, Zhan Guanlin, Yang Aging (Albany NY) Research Paper We analyzed the effects of ginsenoside Rb1 on hyperlipidemic in model mice. Using stool, plasma and hepatic tissue samples, we observed that the genera Blautia and Allobaculum were increased and Turicibacter was decrease in Rb1-treated mice as compared to untreated model mice. Ether lipid metabolism, glycerolipid metabolism, and glyoxylate and dicarboxylate metabolism were differentially enriched between the Rb1 and model groups. Lipidomics revealed 169 metabolites differentially expressed between the model and Rb1 groups in a positive ion model and 58 in a negative ion model. These metabolites mainly participate in glycerophospholipid, linoleic acid, and alpha-linolenic acid metabolism. The main metabolites enriched in these three pathways were phosphatidylcholine, diacylglycerol and ceramide, respectively. In a transcriptome analysis, 766 transcripts were differentially expressed between the Rb1 and model groups. KEGG analysis revealed lysine degradation, inositol phosphate metabolism, and glycerophospholipid metabolism to be the main enriched pathways. Multiomics analysis revealed glycerophospholipid metabolism to be a common pathway and phosphatidylcholine the main metabolite differentially enriched between the Rb1 and model groups. Results from fecal transplanted germ-free mice suggest that to suppress hyperlipidemia, Rb1 regulates gut microbiota by regulating the synthesis and decomposition of phosphatidylcholine in glycerophospholipid metabolism, which in turn decreases serum total cholesterol. Impact Journals 2021-03-19 /pmc/articles/PMC8064217/ /pubmed/33744860 http://dx.doi.org/10.18632/aging.202728 Text en Copyright: © 2021 Lianqun et al. https://creativecommons.org/licenses/by/3.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/3.0/) (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
Lianqun, Jia
Xing, Ju
Yixin, Ma
Si, Chen
Xiaoming, Lv
Nan, Song
Guoyuan, Sui
Yuan, Cao
Ning, Yu
Yao, Wu
Na, Zhao
Kaixuan, Zhan
Guanlin, Yang
Comprehensive multiomics analysis of the effect of ginsenoside Rb1 on hyperlipidemia
title Comprehensive multiomics analysis of the effect of ginsenoside Rb1 on hyperlipidemia
title_full Comprehensive multiomics analysis of the effect of ginsenoside Rb1 on hyperlipidemia
title_fullStr Comprehensive multiomics analysis of the effect of ginsenoside Rb1 on hyperlipidemia
title_full_unstemmed Comprehensive multiomics analysis of the effect of ginsenoside Rb1 on hyperlipidemia
title_short Comprehensive multiomics analysis of the effect of ginsenoside Rb1 on hyperlipidemia
title_sort comprehensive multiomics analysis of the effect of ginsenoside rb1 on hyperlipidemia
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8064217/
https://www.ncbi.nlm.nih.gov/pubmed/33744860
http://dx.doi.org/10.18632/aging.202728
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