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Age-dependent changes in the gut microbiota and serum metabolome correlate with renal function and human aging

Authors :
Sun, Liang
Li, Zhiming
Hu, Caiyou
Ding, Jiahong
Zhou, Qi
Pang, Guofang
Wu, Zhu
Yang, Ruiyue
Li, Shenghui
Li, Jian
Cai, Jianping
Sun, Yuzhe
Li, Rui
Zhen, Hefu
Sun, Shuqin
Zhang, Jianmin
Fang, Mingyan
Chen, Zhihua
Lv, Yuan
Cao, Qizhi
Sun, Yanan
Gong, Ranhui
Huang, Zezhi
Duan, Yong
Liu, Hengshuo
Dong, Jun
Li, Junchun
Ruan, Jie
Lu, Haorong
He, Benjin
Li, Ninghu
Li, Tao
Xue, Wenbin
Li, Yan
Shen, Juan
Yang, Fan
Zhao, Cheng
Liang, Qinghua
Zhang, Mingrong
Chen, Chen
Gong, Huan
Hou, Yong
Wang, Jian
Zhang, Ying
Yang, Huanming
Zhu, Shida
Xiao, Liang
Jin, Zhen
Guo, Haiyun
Zhao, Peng
Brix, Susanne
Xu, Xun
Jia, Huijue
Kristiansen, Karsten
Yang, Ze
Nie, Chao
Sun, Liang
Li, Zhiming
Hu, Caiyou
Ding, Jiahong
Zhou, Qi
Pang, Guofang
Wu, Zhu
Yang, Ruiyue
Li, Shenghui
Li, Jian
Cai, Jianping
Sun, Yuzhe
Li, Rui
Zhen, Hefu
Sun, Shuqin
Zhang, Jianmin
Fang, Mingyan
Chen, Zhihua
Lv, Yuan
Cao, Qizhi
Sun, Yanan
Gong, Ranhui
Huang, Zezhi
Duan, Yong
Liu, Hengshuo
Dong, Jun
Li, Junchun
Ruan, Jie
Lu, Haorong
He, Benjin
Li, Ninghu
Li, Tao
Xue, Wenbin
Li, Yan
Shen, Juan
Yang, Fan
Zhao, Cheng
Liang, Qinghua
Zhang, Mingrong
Chen, Chen
Gong, Huan
Hou, Yong
Wang, Jian
Zhang, Ying
Yang, Huanming
Zhu, Shida
Xiao, Liang
Jin, Zhen
Guo, Haiyun
Zhao, Peng
Brix, Susanne
Xu, Xun
Jia, Huijue
Kristiansen, Karsten
Yang, Ze
Nie, Chao
Source :
Sun , L , Li , Z , Hu , C , Ding , J , Zhou , Q , Pang , G , Wu , Z , Yang , R , Li , S , Li , J , Cai , J , Sun , Y , Li , R , Zhen , H , Sun , S , Zhang , J , Fang , M , Chen , Z , Lv , Y , Cao , Q , Sun , Y , Gong , R , Huang , Z , Duan , Y , Liu , H , Dong , J , Li , J , Ruan , J , Lu , H , He , B , Li , N , Li , T , Xue , W , Li , Y , Shen , J , Yang , F , Zhao , C , Liang , Q , Zhang , M , Chen , C , Gong , H , Hou , Y , Wang , J , Zhang , Y , Yang , H , Zhu , S , Xiao , L , Jin , Z , Guo , H , Zhao , P , Brix , S , Xu , X , Jia , H , Kristiansen , K , Yang , Z & Nie , C 2023 , ' Age-dependent changes in the gut microbiota and serum metabolome correlate with renal function and human aging ' , Aging Cell , vol. 22 , no. 12 , e14028 .
Publication Year :
2023

Abstract

Human aging is invariably accompanied by a decline in renal function, a process potentially exacerbated by uremic toxins originating from gut microbes. Based on a registered household Chinese Guangxi longevity cohort (n = 151), we conducted comprehensive profiling of the gut microbiota and serum metabolome of individuals from 22 to 111 years of age and validated the findings in two independent East Asian aging cohorts (Japan aging cohort n = 330, Yunnan aging cohort n = 80), identifying unique age-dependent differences in the microbiota and serum metabolome. We discovered that the influence of the gut microbiota on serum metabolites intensifies with advancing age. Furthermore, mediation analyses unveiled putative causal relationships between the gut microbiota (Escherichia coli, Odoribacter splanchnicus, and Desulfovibrio piger) and serum metabolite markers related to impaired renal function (p-cresol, N-phenylacetylglutamine, 2-oxindole, and 4-aminohippuric acid) and aging. The fecal microbiota transplantation experiment demonstrated that the feces of elderly individuals could influence markers related to impaired renal function in the serum. Our findings reveal novel links between age-dependent alterations in the gut microbiota and serum metabolite markers of impaired renal function, providing novel insights into the effects of microbiota-metabolite interplay on renal function and healthy aging.<br />Human aging is invariably accompanied by a decline in renal function, a process potentially exacerbated by uremic toxins originating from gut microbes. Based on a registered household Chinese Guangxi longevity cohort (n = 151), we conducted comprehensive profiling of the gut microbiota and serum metabolome of individuals from 22 to 111 years of age and validated the findings in two independent East Asian aging cohorts (Japan aging cohort n = 330, Yunnan aging cohort n = 80), identifying unique age-dependent differences in the microbiota and serum metabolome. We discovered that the influence of the gut microbiota on serum metabolites intensifies with advancing age. Furthermore, mediation analyses unveiled putative causal relationships between the gut microbiota (Escherichia coli, Odoribacter splanchnicus, and Desulfovibrio piger) and serum metabolite markers related to impaired renal function (p-cresol, N-phenylacetylglutamine, 2-oxindole, and 4-aminohippuric acid) and aging. The fecal microbiota transplantation experiment demonstrated that the feces of elderly individuals could influence markers related to impaired renal function in the serum. Our findings reveal novel links between age-dependent alterations in the gut microbiota and serum metabolite markers of impaired renal function, providing novel insights into the effects of microbiota-metabolite interplay on renal function and healthy aging.

Details

Database :
OAIster
Journal :
Sun , L , Li , Z , Hu , C , Ding , J , Zhou , Q , Pang , G , Wu , Z , Yang , R , Li , S , Li , J , Cai , J , Sun , Y , Li , R , Zhen , H , Sun , S , Zhang , J , Fang , M , Chen , Z , Lv , Y , Cao , Q , Sun , Y , Gong , R , Huang , Z , Duan , Y , Liu , H , Dong , J , Li , J , Ruan , J , Lu , H , He , B , Li , N , Li , T , Xue , W , Li , Y , Shen , J , Yang , F , Zhao , C , Liang , Q , Zhang , M , Chen , C , Gong , H , Hou , Y , Wang , J , Zhang , Y , Yang , H , Zhu , S , Xiao , L , Jin , Z , Guo , H , Zhao , P , Brix , S , Xu , X , Jia , H , Kristiansen , K , Yang , Z & Nie , C 2023 , ' Age-dependent changes in the gut microbiota and serum metabolome correlate with renal function and human aging ' , Aging Cell , vol. 22 , no. 12 , e14028 .
Notes :
application/pdf, English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1439093498
Document Type :
Electronic Resource