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A Pectic Polysaccharide from Codonopsis pilosula Alleviates Inflammatory Response and Oxidative Stress of Aging Mice via Modulating Intestinal Microbiota-Related Gut–Liver Axis

Aging is a biological process that leads to the progressive deterioration and loss of physiological functions in the human body and results in an increase in morbidity and mortality, and aging-related disease is a major global problem that poses a serious threat to public health. Polysaccharides hav...

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Autores principales: Zou, Yuanfeng, Yan, Hong, Li, Cenyu, Wen, Fang, Jize, Xiaoping, Zhang, Chaowen, Liu, Siqi, Zhao, Yuzhe, Fu, Yuping, Li, Lixia, Liu, Fan, Chen, Ji, Li, Rui, Chen, Xingfu, Tian, Mengliang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10525188/
https://www.ncbi.nlm.nih.gov/pubmed/37760084
http://dx.doi.org/10.3390/antiox12091781
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author Zou, Yuanfeng
Yan, Hong
Li, Cenyu
Wen, Fang
Jize, Xiaoping
Zhang, Chaowen
Liu, Siqi
Zhao, Yuzhe
Fu, Yuping
Li, Lixia
Liu, Fan
Chen, Ji
Li, Rui
Chen, Xingfu
Tian, Mengliang
author_facet Zou, Yuanfeng
Yan, Hong
Li, Cenyu
Wen, Fang
Jize, Xiaoping
Zhang, Chaowen
Liu, Siqi
Zhao, Yuzhe
Fu, Yuping
Li, Lixia
Liu, Fan
Chen, Ji
Li, Rui
Chen, Xingfu
Tian, Mengliang
author_sort Zou, Yuanfeng
collection PubMed
description Aging is a biological process that leads to the progressive deterioration and loss of physiological functions in the human body and results in an increase in morbidity and mortality, and aging-related disease is a major global problem that poses a serious threat to public health. Polysaccharides have been shown to delay aging by reducing oxidative damage, suppressing inflammatory responses, and modulating intestinal microbiota. Our previous studies have shown that polysaccharide CPP-1 extracted from the root of Codonopsis pilosula possesses noticeable anti-oxidant activity in vitro. Thus, in our study, we tested the anti-aging effect of CPP-1 in naturally aging mice (in vivo). Eighteen C57/BL mice (48-week-old, male) were divided into a control group, high-dose CPP-1 group (20 mg/mL), and low-dose CPP-1 group (10 mg/mL). We discovered that CPP-1 can exert a reparative effect on aging stress in the intestine and liver, including alleviating inflammation and oxidative damage. We revealed that CPP-1 supplementation improved the intestinal microbiota composition and repaired the intestinal barrier in the gut. Furthermore, CPP-1 was proved to modulate lipid metabolism and repair hepatocyte injury in the liver by influencing the enterohepatic axis associated with the intestinal microbiota. Therefore, we concluded that CPP-1 prevents and alleviates oxidative stress and inflammatory responses in the intestine and liver of aging mice by modulating the intestinal microbiota-related gut–liver axis to delay aging.
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spelling pubmed-105251882023-09-28 A Pectic Polysaccharide from Codonopsis pilosula Alleviates Inflammatory Response and Oxidative Stress of Aging Mice via Modulating Intestinal Microbiota-Related Gut–Liver Axis Zou, Yuanfeng Yan, Hong Li, Cenyu Wen, Fang Jize, Xiaoping Zhang, Chaowen Liu, Siqi Zhao, Yuzhe Fu, Yuping Li, Lixia Liu, Fan Chen, Ji Li, Rui Chen, Xingfu Tian, Mengliang Antioxidants (Basel) Article Aging is a biological process that leads to the progressive deterioration and loss of physiological functions in the human body and results in an increase in morbidity and mortality, and aging-related disease is a major global problem that poses a serious threat to public health. Polysaccharides have been shown to delay aging by reducing oxidative damage, suppressing inflammatory responses, and modulating intestinal microbiota. Our previous studies have shown that polysaccharide CPP-1 extracted from the root of Codonopsis pilosula possesses noticeable anti-oxidant activity in vitro. Thus, in our study, we tested the anti-aging effect of CPP-1 in naturally aging mice (in vivo). Eighteen C57/BL mice (48-week-old, male) were divided into a control group, high-dose CPP-1 group (20 mg/mL), and low-dose CPP-1 group (10 mg/mL). We discovered that CPP-1 can exert a reparative effect on aging stress in the intestine and liver, including alleviating inflammation and oxidative damage. We revealed that CPP-1 supplementation improved the intestinal microbiota composition and repaired the intestinal barrier in the gut. Furthermore, CPP-1 was proved to modulate lipid metabolism and repair hepatocyte injury in the liver by influencing the enterohepatic axis associated with the intestinal microbiota. Therefore, we concluded that CPP-1 prevents and alleviates oxidative stress and inflammatory responses in the intestine and liver of aging mice by modulating the intestinal microbiota-related gut–liver axis to delay aging. MDPI 2023-09-19 /pmc/articles/PMC10525188/ /pubmed/37760084 http://dx.doi.org/10.3390/antiox12091781 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
Zou, Yuanfeng
Yan, Hong
Li, Cenyu
Wen, Fang
Jize, Xiaoping
Zhang, Chaowen
Liu, Siqi
Zhao, Yuzhe
Fu, Yuping
Li, Lixia
Liu, Fan
Chen, Ji
Li, Rui
Chen, Xingfu
Tian, Mengliang
A Pectic Polysaccharide from Codonopsis pilosula Alleviates Inflammatory Response and Oxidative Stress of Aging Mice via Modulating Intestinal Microbiota-Related Gut–Liver Axis
title A Pectic Polysaccharide from Codonopsis pilosula Alleviates Inflammatory Response and Oxidative Stress of Aging Mice via Modulating Intestinal Microbiota-Related Gut–Liver Axis
title_full A Pectic Polysaccharide from Codonopsis pilosula Alleviates Inflammatory Response and Oxidative Stress of Aging Mice via Modulating Intestinal Microbiota-Related Gut–Liver Axis
title_fullStr A Pectic Polysaccharide from Codonopsis pilosula Alleviates Inflammatory Response and Oxidative Stress of Aging Mice via Modulating Intestinal Microbiota-Related Gut–Liver Axis
title_full_unstemmed A Pectic Polysaccharide from Codonopsis pilosula Alleviates Inflammatory Response and Oxidative Stress of Aging Mice via Modulating Intestinal Microbiota-Related Gut–Liver Axis
title_short A Pectic Polysaccharide from Codonopsis pilosula Alleviates Inflammatory Response and Oxidative Stress of Aging Mice via Modulating Intestinal Microbiota-Related Gut–Liver Axis
title_sort pectic polysaccharide from codonopsis pilosula alleviates inflammatory response and oxidative stress of aging mice via modulating intestinal microbiota-related gut–liver axis
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10525188/
https://www.ncbi.nlm.nih.gov/pubmed/37760084
http://dx.doi.org/10.3390/antiox12091781
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