TY - JOUR
T1 - Bacteroides species differentially modulate depression-like behavior via gut-brain metabolic signaling
AU - Zhang, Youying
AU - Fan, Qilin
AU - Hou, Yuanlong
AU - Zhang, Xuanshuang
AU - Yin, Zhe
AU - Cai, Xiaoying
AU - Wei, Wei
AU - Wang, Jiaying
AU - He, Dandan
AU - Wang, Guangji
AU - Yuan, Yonggui
AU - Hao, Haiping
AU - Zheng, Xiao
N1 - Publisher Copyright:
© 2022 Elsevier Inc.
PY - 2022/5
Y1 - 2022/5
N2 - Gut microbiome disturbances have been widely implicated in major depressive disorder (MDD), although the identity of causal microbial species and the underlying mechanisms are yet to be fully elucidated. Here we show that Bacteroides species enriched in the gut microbiome from MDD patients differentially impact the susceptibility to depressive behaviors. Transplantation of fecal microbiome from MDD patients into antibiotic-treated mice induced anxiety and despair-like behavior and impaired hippocampal neurogenesis. Colonization of Bacteroides fragilis, Bacteroides uniformis, and, to a lesser extent, Bacteroides caccae, but not Bacteroides ovatus, recapitulated the negative effects of MDD microbiome on behavior and neurogenesis. The varying impacts of Bacteroides species were partially explained by differential alternations of tryptophan pathway metabolites and neurotransmitters along the gut-brain axis. Notably, an intensified depletion of cerebral serotonin concurred with the enhanced susceptibility to depression. Together, these findings identify select Bacteroidetes species that contribute to depression susceptibility in mice by metabolic regulation along the gut-brain axis.
AB - Gut microbiome disturbances have been widely implicated in major depressive disorder (MDD), although the identity of causal microbial species and the underlying mechanisms are yet to be fully elucidated. Here we show that Bacteroides species enriched in the gut microbiome from MDD patients differentially impact the susceptibility to depressive behaviors. Transplantation of fecal microbiome from MDD patients into antibiotic-treated mice induced anxiety and despair-like behavior and impaired hippocampal neurogenesis. Colonization of Bacteroides fragilis, Bacteroides uniformis, and, to a lesser extent, Bacteroides caccae, but not Bacteroides ovatus, recapitulated the negative effects of MDD microbiome on behavior and neurogenesis. The varying impacts of Bacteroides species were partially explained by differential alternations of tryptophan pathway metabolites and neurotransmitters along the gut-brain axis. Notably, an intensified depletion of cerebral serotonin concurred with the enhanced susceptibility to depression. Together, these findings identify select Bacteroidetes species that contribute to depression susceptibility in mice by metabolic regulation along the gut-brain axis.
KW - Bacteroides
KW - Fecal microbiota transplantation
KW - Gut microbiome
KW - Gut-brain axis
KW - Major depressive disorder
KW - Metabolic regulation
UR - https://www.scopus.com/pages/publications/85124244599
U2 - 10.1016/j.bbi.2022.02.007
DO - 10.1016/j.bbi.2022.02.007
M3 - 文章
C2 - 35143877
AN - SCOPUS:85124244599
SN - 0889-1591
VL - 102
SP - 11
EP - 22
JO - Brain, Behavior, and Immunity
JF - Brain, Behavior, and Immunity
ER -