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Supplementation with Natto and Red Yeast Rice Alters Gene Expressions in Cholesterol Metabolism Pathways in ApoE(-/-) Mice with Concurrent Changes in Gut Microbiota

We aimed to examine the effect of natto and red yeast rice (NR) supplementation on lipid and lipoprotein profiles, gene expressions of cholesterol metabolism, and the composition of gut microbiota in ApoE(-/-) mice. Forty-one male ApoE(-/-) mice aged 7–8 wks old were randomly fed a control diet (CD)...

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Autores principales: Zhou, Haiyan, Liu, Wenjing, Lv, Yiqian, Liu, Ke, Wang, Yin, Meng, Shuangli, Kang, Tong, Bao, Yuechao, Meng, Huicui
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9961320/
https://www.ncbi.nlm.nih.gov/pubmed/36839329
http://dx.doi.org/10.3390/nu15040973
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author Zhou, Haiyan
Liu, Wenjing
Lv, Yiqian
Liu, Ke
Wang, Yin
Meng, Shuangli
Kang, Tong
Bao, Yuechao
Meng, Huicui
author_facet Zhou, Haiyan
Liu, Wenjing
Lv, Yiqian
Liu, Ke
Wang, Yin
Meng, Shuangli
Kang, Tong
Bao, Yuechao
Meng, Huicui
author_sort Zhou, Haiyan
collection PubMed
description We aimed to examine the effect of natto and red yeast rice (NR) supplementation on lipid and lipoprotein profiles, gene expressions of cholesterol metabolism, and the composition of gut microbiota in ApoE(-/-) mice. Forty-one male ApoE(-/-) mice aged 7–8 wks old were randomly fed a control diet (CD), CD + NR (oral gavage at 0.3 g/kg BW/day), high-fat and high-cholesterol diet (HFD), or HFD + NR for 12 wks. Fasting blood samples, liver and intestine tissues and fecal samples were collected at week 12. Biochemical parameters, gene expressions in cholesterol metabolism and gut microbiota composition and diversity were measured using standard methods. NR supplementation had no significant effect on lipid and lipoprotein profiles. Compared with the HFD group, HFD + NR resulted in higher mRNA expressions of HMGCR and CYP7A1 (both P-NR < 0.05) and ABCA1 (P-diet*NR = 0.0134, P-NR = 0.0407), lower mRNA expression of PCSK9 (P-diet*NR = 0.0002), lower fasting glucose concentrations (P-diet*NR = 0.0011), and lower relative abundance of genera Bacteroides and Lactococcus (both P-NR < 0.01) and Coriobacteriaceae_UCG-002 (P-diet*NR = 0.0007). The relative abundance of Lactococcus was inversely correlated with HMGCR and CYP7A1, and the relative abundance of Coriobacteriaceae_UCG-002 was positively correlated with PCSK9 and inversely correlated with ABCA1 (all P < 0.05). These findings suggest that NR supplementation may regulate gene expressions in cholesterol metabolism via changes in the gut microbiota in HFD-fed ApoE(-/-) mice.
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spelling pubmed-99613202023-02-26 Supplementation with Natto and Red Yeast Rice Alters Gene Expressions in Cholesterol Metabolism Pathways in ApoE(-/-) Mice with Concurrent Changes in Gut Microbiota Zhou, Haiyan Liu, Wenjing Lv, Yiqian Liu, Ke Wang, Yin Meng, Shuangli Kang, Tong Bao, Yuechao Meng, Huicui Nutrients Article We aimed to examine the effect of natto and red yeast rice (NR) supplementation on lipid and lipoprotein profiles, gene expressions of cholesterol metabolism, and the composition of gut microbiota in ApoE(-/-) mice. Forty-one male ApoE(-/-) mice aged 7–8 wks old were randomly fed a control diet (CD), CD + NR (oral gavage at 0.3 g/kg BW/day), high-fat and high-cholesterol diet (HFD), or HFD + NR for 12 wks. Fasting blood samples, liver and intestine tissues and fecal samples were collected at week 12. Biochemical parameters, gene expressions in cholesterol metabolism and gut microbiota composition and diversity were measured using standard methods. NR supplementation had no significant effect on lipid and lipoprotein profiles. Compared with the HFD group, HFD + NR resulted in higher mRNA expressions of HMGCR and CYP7A1 (both P-NR < 0.05) and ABCA1 (P-diet*NR = 0.0134, P-NR = 0.0407), lower mRNA expression of PCSK9 (P-diet*NR = 0.0002), lower fasting glucose concentrations (P-diet*NR = 0.0011), and lower relative abundance of genera Bacteroides and Lactococcus (both P-NR < 0.01) and Coriobacteriaceae_UCG-002 (P-diet*NR = 0.0007). The relative abundance of Lactococcus was inversely correlated with HMGCR and CYP7A1, and the relative abundance of Coriobacteriaceae_UCG-002 was positively correlated with PCSK9 and inversely correlated with ABCA1 (all P < 0.05). These findings suggest that NR supplementation may regulate gene expressions in cholesterol metabolism via changes in the gut microbiota in HFD-fed ApoE(-/-) mice. MDPI 2023-02-15 /pmc/articles/PMC9961320/ /pubmed/36839329 http://dx.doi.org/10.3390/nu15040973 Text en © 2023 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
Zhou, Haiyan
Liu, Wenjing
Lv, Yiqian
Liu, Ke
Wang, Yin
Meng, Shuangli
Kang, Tong
Bao, Yuechao
Meng, Huicui
Supplementation with Natto and Red Yeast Rice Alters Gene Expressions in Cholesterol Metabolism Pathways in ApoE(-/-) Mice with Concurrent Changes in Gut Microbiota
title Supplementation with Natto and Red Yeast Rice Alters Gene Expressions in Cholesterol Metabolism Pathways in ApoE(-/-) Mice with Concurrent Changes in Gut Microbiota
title_full Supplementation with Natto and Red Yeast Rice Alters Gene Expressions in Cholesterol Metabolism Pathways in ApoE(-/-) Mice with Concurrent Changes in Gut Microbiota
title_fullStr Supplementation with Natto and Red Yeast Rice Alters Gene Expressions in Cholesterol Metabolism Pathways in ApoE(-/-) Mice with Concurrent Changes in Gut Microbiota
title_full_unstemmed Supplementation with Natto and Red Yeast Rice Alters Gene Expressions in Cholesterol Metabolism Pathways in ApoE(-/-) Mice with Concurrent Changes in Gut Microbiota
title_short Supplementation with Natto and Red Yeast Rice Alters Gene Expressions in Cholesterol Metabolism Pathways in ApoE(-/-) Mice with Concurrent Changes in Gut Microbiota
title_sort supplementation with natto and red yeast rice alters gene expressions in cholesterol metabolism pathways in apoe(-/-) mice with concurrent changes in gut microbiota
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9961320/
https://www.ncbi.nlm.nih.gov/pubmed/36839329
http://dx.doi.org/10.3390/nu15040973
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