While modulatory effects of gut microbes on neurological phenotypes have been reported, the mechanisms remain largely unknown. Here, we demonstrate that indole, a tryptophan metabolite produced by tryptophanase-expressing gut microbes, elicits neurogenic effects in the adult mouse hippocampus. Neurogenesis is reduced in germ-free (GF) mice and in GF mice monocolonized with a single-gene tnaA knockout (KO) mutant Escherichia coli unable to produce indole. External administration of systemic indole increases adult neurogenesis in the dentate gyrus in these mouse models and in specific pathogen-free (SPF) control mice. Indole-treated mice display elevated synaptic markers postsynaptic density protein 95 and synaptophysin, suggesting synaptic m...
It has long been speculated that metabolites, produced by gut microbiota, influence host metabolism ...
The gut microbiota influences the health of the host, especially with regard to gut immune homeostas...
The gut microbiota regulates key hepatic functions, notably through the production of bacterial meta...
While modulatory effects of gut microbes on neurological phenotypes have been reported, the mechanis...
Gut microbiota produces a wide and diverse array of metabolites that are an integral part of the hos...
The discovery that gut microbes modulate mammalian behaviour has prompted a paradigm shift in modern...
Gut microbiota produces a wide and diverse array of metabolites that are an integral part of the hos...
It has become increasingly clear that the gut microbiota influences not only gastrointestinal physio...
Sporadic late-onset Alzheimer's disease (AD) is the most frequent cause of dementia associated with ...
SummaryIt has long been speculated that metabolites, produced by gut microbiota, influence host meta...
The metabolism of dietary tryptophan occurs locally in the gut primarily via host enzymes, with simi...
The gut-brain axis is a bidirectional communication system between the central nervous system and th...
L-tryptophan (Trp) contributes to regulating bilateral communication of the gut–brain axis. It under...
Tryptophan (Trp) is an essential amino acid that can be metabolized via endogenous and exogenous pat...
SummarySeveral recent studies describe the influence of the gut microbiota on host brain and behavio...
It has long been speculated that metabolites, produced by gut microbiota, influence host metabolism ...
The gut microbiota influences the health of the host, especially with regard to gut immune homeostas...
The gut microbiota regulates key hepatic functions, notably through the production of bacterial meta...
While modulatory effects of gut microbes on neurological phenotypes have been reported, the mechanis...
Gut microbiota produces a wide and diverse array of metabolites that are an integral part of the hos...
The discovery that gut microbes modulate mammalian behaviour has prompted a paradigm shift in modern...
Gut microbiota produces a wide and diverse array of metabolites that are an integral part of the hos...
It has become increasingly clear that the gut microbiota influences not only gastrointestinal physio...
Sporadic late-onset Alzheimer's disease (AD) is the most frequent cause of dementia associated with ...
SummaryIt has long been speculated that metabolites, produced by gut microbiota, influence host meta...
The metabolism of dietary tryptophan occurs locally in the gut primarily via host enzymes, with simi...
The gut-brain axis is a bidirectional communication system between the central nervous system and th...
L-tryptophan (Trp) contributes to regulating bilateral communication of the gut–brain axis. It under...
Tryptophan (Trp) is an essential amino acid that can be metabolized via endogenous and exogenous pat...
SummarySeveral recent studies describe the influence of the gut microbiota on host brain and behavio...
It has long been speculated that metabolites, produced by gut microbiota, influence host metabolism ...
The gut microbiota influences the health of the host, especially with regard to gut immune homeostas...
The gut microbiota regulates key hepatic functions, notably through the production of bacterial meta...