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FFA3 Activation Stimulates Duodenal Bicarbonate Secretion and Prevents NSAID-Induced Enteropathy via the GLP-2
Hyder Said1, Yasutada Akiba2,3,4, Kazuyuki Narimatsu3
1College of Arts and Sciences, University of California, Los Angeles, CA, USA.
Background:
Therapy with nonsteroidal anti-inflammatory drugs (NSAIDs) is associated with enteropathy in humans and experimental animals, a cause of considerable morbidity. Unlike foregut NSAID-associated mucosal lesions, most treatments for this condition are of little efficacy. We propose that the endogenously released intestinotrophic hormone glucagon-like peptide-2 (GLP-2) prevents the development of NSAID-induced enteropathy. Since the short-chain fatty acid receptor FFA3 is expressed on enteroendocrine L cells and on enteric nerves in the gastrointestinal tract, we further hypothesized that activation of FFA3 on L cells protects the mucosa from injury via GLP-2 release with enhanced duodenal HCO3- secretion. We thus investigated the effects of synthetic selective FFA3 agonists with consequent GLP-2 release on NSAID-induced enteropathy.
Methods:
We measured duodenal HCO3- secretion in isoflurane-anesthetized rats in a duodenal loop perfused with the selective FFA3 agonists MQC or AR420626 (AR) while measuring released GLP-2 in the portal vein (PV). Intestinal injury was produced by indomethacin (IND, 10 mg/kg, sc) with or without MQC (1-10 mg/kg, ig) or AR (0.01-0.1 mg/kg, ig or ip) treatment.
Results:
Luminal perfusion with MQC or AR (0.1-10 µM) dose-dependently augmented duodenal HCO3- secretion accompanied by increased GLP-2 concentrations in the PV. The effect of FFA3 agonists was inhibited by co-perfusion of the selective FFA3 antagonist CF3-MQC (30 µM). AR-induced augmented HCO3- secretion was reduced by iv injection of the GLP-2 receptor antagonist GLP-2(3-33) (3 nmol/kg), or by pretreatment with the cystic fibrosis transmembrane conductance regulator (CFTR) inhibitor CFTRinh-172 (1 mg/kg, ip). IND-induced small intestinal ulcers were dose-dependently inhibited by intragastric administration of MQC or AR. GLP-2(3-33) (1 mg/kg, ip) or CF3-MQC (1 mg/kg, ig) reversed AR-associated reduction in IND-induced enteropathy. In contrast, ip injection of AR had no effect on enteropathy.
Conclusion:
These results suggest that luminal FFA3 activation enhances mucosal defenses and prevents NSAID-induced enteropathy via the GLP-2 pathway. The selective FFA3 agonist may be a potential therapeutic candidate for NSAID-induced enteropathy.
Insights
Activation of the short-chain fatty acid receptor FFA3 with selective agonists enhances duodenal bicarbonate secretion and prevents NSAID-induced enteropathy by releasing glucagon-like peptide-2 (GLP-2). This suggests FFA3 agonists are potential therapeutics for NSAID enteropathy.
Area of Science:
- Gastroenterology
- Pharmacology
- Molecular Biology
Background:
- Nonsteroidal anti-inflammatory drugs (NSAIDs) cause enteropathy, a significant source of morbidity with limited treatment options.
- Endogenous glucagon-like peptide-2 (GLP-2) is proposed to prevent NSAID-induced enteropathy.
- The short-chain fatty acid receptor FFA3 is present on L cells and enteric nerves, suggesting a role in mucosal protection via GLP-2 release and bicarbonate secretion.
Purpose of the Study:
- To investigate the hypothesis that FFA3 activation on L cells protects the mucosa from NSAID-induced injury through GLP-2 release and enhanced duodenal bicarbonate secretion.
- To evaluate the therapeutic potential of selective FFA3 agonists in preventing NSAID-induced enteropathy.
Main Methods:
- Selective FFA3 agonists (MQC, AR420626) were used to stimulate duodenal bicarbonate secretion and measure portal vein GLP-2 levels in rats.
- NSAID-induced enteropathy was modeled using indomethacin (IND).
- The effects of FFA3 agonists, GLP-2 receptor antagonist (GLP-2(3-33)), and cystic fibrosis transmembrane conductance regulator (CFTR) inhibitor (CFTRinh-172) were assessed.
Main Results:
- Luminal FFA3 agonists dose-dependently increased duodenal bicarbonate secretion and GLP-2 release, an effect blocked by an FFA3 antagonist.
- FFA3 agonist-induced bicarbonate secretion was dependent on GLP-2 receptor and CFTR activity.
- Intragastric administration of FFA3 agonists significantly inhibited indomethacin-induced small intestinal ulcers, an effect reversed by GLP-2 receptor or FFA3 antagonism.
Conclusions:
- Luminal activation of FFA3 enhances mucosal defenses and prevents NSAID-induced enteropathy via the GLP-2 pathway.
- Selective FFA3 agonists represent a promising therapeutic strategy for managing NSAID-induced enteropathy.
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