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

Liang SunZhiming LiCaiyou HuJiahong DingQi ZhouGuofang PangZhu WuRuiyue YangShenghui LiJian LiJianping CaiYuzhe SunRui LiHefu ZhenShuqin SunJianmin ZhangMingyan FangZhihua ChenYuan LvQizhi CaoYanan SunRanhui GongZezhi HuangYong DuanHengshuo LiuJun DongJunchun LiJie RuanHaorong LuBenjin HeNinghu LiTao LiWenbin XueYan LiJuan ShenFan YangCheng ZhaoQinghua LiangMingrong ZhangChen ChenHuan GongYong HouJian WangYing ZhangHuanming YangShida ZhuLiang XiaoZhen JinHaiyun GuoPeng ZhaoSusanne BrixXun XuHuijue JiaKarsten KristiansenZe YangChao Nie
Published in: Aging cell (2023)
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.
Keyphrases
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