General Research Model: pig

The effects of methane and hydrogen gases produced by enteric bacteria on ileal motility and colonic transit time

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How Gut Bacteria Affect Digestion: The Surprising Role of Methane and Hydrogen

A 2011 study explored how methane and hydrogen gases produced by gut bacteria affect digestion. The findings showed that methane slows down intestinal movement, while hydrogen speeds it up. This research can help us understand and treat conditions like irritable bowel syndrome and constipation. Learn more about the surprising role of gut bacteria in our health.

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Abstract

Publish Year 2011 Country South Korea Rank Positive Journal Neurogastroenterology and Motility Primary Topic Intestine Secondary TopicIrritable Bowel Syndrome Model Guinea Pig Tertiary TopicConstipation Vehicle Gas pH N/A Application In Vivo Biotic Production Comparison Methane Complement

Background

Methods: Guinea pig ileum was placed in the peristaltic bath with tension transducers attached to measure velocity and amplitude of peristaltic contraction before and after the infusion of control, hydrogen, and methane gases. Also, changes in the intraluminal pressures were monitored before and after the gas infusions. Key results: Methane decreased peristaltic velocity and increased contraction amplitude significantly of guinea pig ileum (P < 0.05). The AUC of intraluminal pressure was significantly increased with methane in guinea pig ileum (P < 0.05). In a second experiment, guinea pig colon was placed in the peristaltic bath to measure transit time before and after control, hydrogen, methane, and methane-hydrogen mixture gas infusions. Hydrogen shortened colonic transit time by 47% in the proximal colon, and by 10% in the distal colon, when compared with baselines (P < 0.05). Conclusions & inferences: Methane delayed ileal peristaltic conduction velocity by augmenting contractility. Hydrogen shortened colonic transit, and that effect was more prominent in the proximal colon than distal colon.