The influence of the gut microbiota on the nervous system, brain development and behaviour, in particular during microbial colonisation of the host, has recently been receiving profound interest. Our time-resolved mining of combined data analyses of the ex-germfree mouse intestine during a 30-day course of colonisation with conventional mouse faecal microbiota (conventionalisation), shed light on temporal altered expression of genes of which the products influenced functions of the nervous system. Plasma tryptophan and kynurenine levels reflected high indoleamine dioxygenase activity, which was supported by significant temporal induction of the encoding gene in all gut tissues. However, the majority of genes associated with neuronal develop...
Enteric neuronal circuitries display a considerable ability to adapt to a changing microenvironment,...
The gut microbiota is increasingly recognised as a key-player in defining the health status of the g...
The gastro-intestinal tract hosts a complex microbial ecosystem, the gut microbiota, whose collectiv...
The influence of the gut microbiota on the nervous system, brain development and behaviour, in parti...
The influence of the gut microbiota on the nervous system, brain development and behaviour, in parti...
The influence of the gut microbiota on the nervous system, brain development and behaviour, in parti...
The discovery that gut microbes modulate mammalian behaviour has prompted a paradigm shift in modern...
The interplay between dietary nutrients, gut microbiota and mammalian host tissues of the gastrointe...
The intimate interplay between gut microbiota, host, and nutrient flow is crucial in defining the he...
Microbial colonization of mammals is an evolution-driven process that modulate host physiology, many...
The side effects of antibiotic treatment directly correlate with intestinal dysbiosis. However, a ba...
Background: There is growing appreciation for the importance of bacteria in shaping brain developmen...
To date, there is rapidly growing evidence that the intestinal microbiota interacts with the host at...
Tremendous progress has been made in characterizing the bidirectional interactions between the centr...
The gut microbiome has been implicated as a key regulator of brain function in health and disease. B...
Enteric neuronal circuitries display a considerable ability to adapt to a changing microenvironment,...
The gut microbiota is increasingly recognised as a key-player in defining the health status of the g...
The gastro-intestinal tract hosts a complex microbial ecosystem, the gut microbiota, whose collectiv...
The influence of the gut microbiota on the nervous system, brain development and behaviour, in parti...
The influence of the gut microbiota on the nervous system, brain development and behaviour, in parti...
The influence of the gut microbiota on the nervous system, brain development and behaviour, in parti...
The discovery that gut microbes modulate mammalian behaviour has prompted a paradigm shift in modern...
The interplay between dietary nutrients, gut microbiota and mammalian host tissues of the gastrointe...
The intimate interplay between gut microbiota, host, and nutrient flow is crucial in defining the he...
Microbial colonization of mammals is an evolution-driven process that modulate host physiology, many...
The side effects of antibiotic treatment directly correlate with intestinal dysbiosis. However, a ba...
Background: There is growing appreciation for the importance of bacteria in shaping brain developmen...
To date, there is rapidly growing evidence that the intestinal microbiota interacts with the host at...
Tremendous progress has been made in characterizing the bidirectional interactions between the centr...
The gut microbiome has been implicated as a key regulator of brain function in health and disease. B...
Enteric neuronal circuitries display a considerable ability to adapt to a changing microenvironment,...
The gut microbiota is increasingly recognised as a key-player in defining the health status of the g...
The gastro-intestinal tract hosts a complex microbial ecosystem, the gut microbiota, whose collectiv...