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Published on: February 27, 2014
Optogenetic Activation of Cholinergic Enteric Neurons Reduces Inflammation in Experimental Colitis
Ahmed A Rahman1, Rhian Stavely1, Weikang Pan1
1Department of Pediatric Surgery, Massachusetts General Hospital, Harvard Medical School, Boston, Massachusetts.
Background & Aims:
Intestinal inflammation is associated with loss of enteric cholinergic neurons. Given the systemic anti-inflammatory role of cholinergic innervation, we hypothesized that enteric cholinergic neurons similarly possess anti-inflammatory properties and may represent a novel target to treat inflammatory bowel disease.
Methods:
Mice were fed 2.5% dextran sodium sulfate (DSS) for 7 days to induce colitis. Cholinergic enteric neurons, which express choline acetyltransferase (ChAT), were focally ablated in the midcolon of ChAT::Cre;R26-iDTR mice by local injection of diphtheria toxin before colitis induction. Activation of enteric cholinergic neurons was achieved using ChAT::Cre;R26-ChR2 mice, in which ChAT+ neurons express channelrhodopsin-2, with daily blue light stimulation delivered via an intracolonic probe during the 7 days of DSS treatment. Colitis severity, ENS structure, and smooth muscle contractility were assessed by histology, immunohistochemistry, quantitative polymerase chain reaction, organ bath, and electromyography. In vitro studies assessed the anti-inflammatory role of enteric cholinergic neurons on cultured muscularis macrophages.
Results:
Ablation of ChAT+ neurons in DSS-treated mice exacerbated colitis, as measured by weight loss, colon shortening, histologic inflammation, and CD45+ cell infiltration, and led to colonic dysmotility. Conversely, optogenetic activation of enteric cholinergic neurons improved colitis, preserved smooth muscle contractility, protected against loss of cholinergic neurons, and reduced proinflammatory cytokine production. Both acetylcholine and optogenetic cholinergic neuron activation in vitro reduced proinflammatory cytokine expression in lipopolysaccharide-stimulated muscularis macrophages.
Conclusions:
These findings show that enteric cholinergic neurons have an anti-inflammatory role in the colon and should be explored as a potential inflammatory bowel disease treatment.
Insights
Enteric cholinergic neurons protect the colon from inflammation and may treat inflammatory bowel disease. Activating these neurons reduced colitis severity and improved gut function in mice.
Area of Science:
- Neurogastroenterology
- Inflammatory Bowel Disease Research
- Gut-Brain Axis
Background:
- Intestinal inflammation, a hallmark of inflammatory bowel disease (IBD), is linked to the loss of enteric cholinergic neurons.
- Cholinergic innervation plays a systemic anti-inflammatory role, suggesting a similar function within the gut.
Purpose of the Study:
- To investigate the anti-inflammatory properties of enteric cholinergic neurons.
- To explore enteric cholinergic neurons as a potential therapeutic target for IBD.
Main Methods:
- Dextran sodium sulfate (DSS)-induced colitis model in mice.
- Focal ablation of choline acetyltransferase (ChAT)+ enteric neurons using diphtheria toxin.
- Optogenetic activation of enteric cholinergic neurons via channelrhodopsin-2 and blue light stimulation.
- Assessment of colitis severity, enteric nervous system structure, smooth muscle contractility, and inflammatory markers.
- In vitro studies on cultured muscularis macrophages.
Main Results:
- Ablation of enteric cholinergic neurons exacerbated DSS-induced colitis and colonic dysmotility.
- Optogenetic activation of these neurons ameliorated colitis, preserved neuronal integrity, improved smooth muscle function, and reduced pro-inflammatory cytokine production.
- Both acetylcholine and optogenetic activation reduced pro-inflammatory cytokine expression in macrophages.
Conclusions:
- Enteric cholinergic neurons exert a protective anti-inflammatory effect in the colon.
- These neurons represent a promising novel therapeutic target for inflammatory bowel disease.
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