In recent years, a substantial amount of data have supported an active role of gut microbiota in mediating mammalian brain function and health. Mining gut microbiota and their metabolites for neuroprotection is enticing but requires that the fundamental biochemical details underlying such microbiota-brain crosstalk be deciphered. While a neuronal gut-brain axis (through the vagus nerve) is not disputable, accumulating studies also point to a humoral route (via blood/lymphatic circulation) by which innumerable microbial molecular cues translocate from local gut epithelia to circulation with potentials to further cross the blood-brain barrier and reach the brain. In this Perspective, we review a realm of gut microbial molecules to evaluate th...
The importance of the gut-brain axis in maintaining homeostasis has long been appreciated. However, ...
This review highlights the microbiota gut-brain axis and neurodegenerative diseases excluding studie...
Alterations in the gut microbiota composition have been associated with a range of neurodevelopmenta...
In a striking display of trans-kingdom symbiosis, gut bacteria cooperate with their animal hosts to ...
The gut microbiota (GM) plays an important role in the physiology and pathology of the host. Microbi...
Over the past decades, microbiome research has evolved rapidly and became a hot topic in basic, prec...
The gut microbiota is highly capable of biotransformation, exposing the host to a wide variety of ph...
Alterations in the gut microbiota composition have been associated with a range of neurodevelopmenta...
The gut and brain link via various metabolic and signalling pathways, each with the potential to inf...
The gut and brain link via various metabolic and signalling pathways, each with the potential to inf...
The gut and brain link via various metabolic and signalling pathways, each with the potential to inf...
The gut microbiome — the largest reservoir of microorganisms of the human body — is emerging as an i...
The human microbiota has a fundamental role in host physiology and pathology. Gut microbial alterati...
In humans, the gut microbiota (GM) are known to play a significant role in the metabolism of nutrien...
The gut-brain axis (GBA) is a complex interactive network linking the gut to the brain. It involves ...
The importance of the gut-brain axis in maintaining homeostasis has long been appreciated. However, ...
This review highlights the microbiota gut-brain axis and neurodegenerative diseases excluding studie...
Alterations in the gut microbiota composition have been associated with a range of neurodevelopmenta...
In a striking display of trans-kingdom symbiosis, gut bacteria cooperate with their animal hosts to ...
The gut microbiota (GM) plays an important role in the physiology and pathology of the host. Microbi...
Over the past decades, microbiome research has evolved rapidly and became a hot topic in basic, prec...
The gut microbiota is highly capable of biotransformation, exposing the host to a wide variety of ph...
Alterations in the gut microbiota composition have been associated with a range of neurodevelopmenta...
The gut and brain link via various metabolic and signalling pathways, each with the potential to inf...
The gut and brain link via various metabolic and signalling pathways, each with the potential to inf...
The gut and brain link via various metabolic and signalling pathways, each with the potential to inf...
The gut microbiome — the largest reservoir of microorganisms of the human body — is emerging as an i...
The human microbiota has a fundamental role in host physiology and pathology. Gut microbial alterati...
In humans, the gut microbiota (GM) are known to play a significant role in the metabolism of nutrien...
The gut-brain axis (GBA) is a complex interactive network linking the gut to the brain. It involves ...
The importance of the gut-brain axis in maintaining homeostasis has long been appreciated. However, ...
This review highlights the microbiota gut-brain axis and neurodegenerative diseases excluding studie...
Alterations in the gut microbiota composition have been associated with a range of neurodevelopmenta...