Mary Wilson
New member
Scientists trace the neurons in the throat that detect signs of infection and relay this information to the brain.
08 March 2023
Liam Drew
... scientists have identified neurons in mice that notify the brain of a flu infection, triggering decreases in movement, hunger and thirst[SUP]1[/SUP].
Similar neurons connecting to other parts of the body might notify the brain of other infections, too, the authors say. The work was published on 8 March in Nature.
... Before this research, “it was not clear how the brain becomes aware that there’s an infection in the body”, says study co-author Stephen Liberles, a neuroscientist at Harvard Medical School in Boston, Massachusetts. Scientists generally thought that messenger molecules from the site of infection move through the bloodstream to the brain, diffusing into it to directly activate the regions that kickstart the sickness-behaviour program.
... the authors found that the key agents are a specific EP3-containing population of neurons located in the mouse’s neck. These neurons have branches that stretch from the mouse equivalent of the tonsils to the brainstem. This geography makes sense: the tonsil area “serves as the interface between the outside air and what goes in the airway”, says study co-author Na-Ryum Bin, a neurobiologist also at Harvard. The area is rich in immune cells that churn out prostaglandins when they encounter pathogens.
https://www.nature.com/articles/d41586-023-00675-0
08 March 2023
Liam Drew
... scientists have identified neurons in mice that notify the brain of a flu infection, triggering decreases in movement, hunger and thirst[SUP]1[/SUP].
Similar neurons connecting to other parts of the body might notify the brain of other infections, too, the authors say. The work was published on 8 March in Nature.
... Before this research, “it was not clear how the brain becomes aware that there’s an infection in the body”, says study co-author Stephen Liberles, a neuroscientist at Harvard Medical School in Boston, Massachusetts. Scientists generally thought that messenger molecules from the site of infection move through the bloodstream to the brain, diffusing into it to directly activate the regions that kickstart the sickness-behaviour program.
... the authors found that the key agents are a specific EP3-containing population of neurons located in the mouse’s neck. These neurons have branches that stretch from the mouse equivalent of the tonsils to the brainstem. This geography makes sense: the tonsil area “serves as the interface between the outside air and what goes in the airway”, says study co-author Na-Ryum Bin, a neurobiologist also at Harvard. The area is rich in immune cells that churn out prostaglandins when they encounter pathogens.
https://www.nature.com/articles/d41586-023-00675-0