Neuroinflammation in inflammatory bowel disease
Нейровоспаление при воспалительных заболеваниях кишечника
2010-01-01
SCID: 54.1/bjq7w9fw
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enteric nervous systementeric neuronsinflammatory bowel diseaseneuroinflammationoxidative stress
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Abstract (AI)
Inflammatory bowel disease is a chronic intestinal inflammatory condition, the pathology of which is incompletely understood. Gut inflammation causes significant changes in neurally controlled gut functions including cramping, abdominal pain, fecal urgency, and explosive diarrhea. These symptoms are caused, at least in part, by prolonged hyperexcitability of enteric neurons that can occur following the resolution of colitis. Mast, enterochromaffin and other immune cells are increased in the colonic mucosa in inflammatory bowel disease and signal the presence of inflammation to the enteric nervous system. Inflammatory mediators include 5-hydroxytryptamine and cytokines, as well as reactive oxygen species and the production of oxidative stress. This review will discuss the effects of inflammation on enteric neural activity and potential therapeutic strategies that target neuroinflammation in the enteric nervous system.
Key Findings
1
Inflammatory bowel disease causes substantial disruptions in neurally controlled gut functions, including cramping, abdominal pain, fecal urgency, and explosive diarrhea.
2
Mast cells, enterochromaffin cells, and other immune cells increase in the colonic mucosa and transmit inflammatory signals to the enteric nervous system.
3
Neuroinflammatory signaling involves 5-hydroxytryptamine, cytokines, reactive oxygen species, and oxidative stress.
4
Prolonged hyperexcitability of enteric neurons can persist after colitis resolves and contributes to ongoing gastrointestinal symptoms.
5
Targeting neuroinflammation in the enteric nervous system is identified as a potential therapeutic strategy for inflammatory bowel disease symptoms.
Research Object
enteric nervous system in inflammatory bowel disease
Research Subject
effects of intestinal inflammation on enteric neural activity, including prolonged neuronal hyperexcitability and neuroinflammatory mechanisms
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2010-01-01
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