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Protective Effect of Oat Polysaccharides against Acute Gastric Mucosal Injury in Mice
Food Science 2022, 43(9): 150-157
Published: 15 May 2022
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Objective

The present study aimed to investigate the protective effect of oat polysaccharides on 70% ethanolinduced acute gastric mucosal injury in mice.

Methods

Sixty Kunming male mice were randomly divided into normal, model, cimetidine (positive control), and low-, medium- and high-dose oat polysaccharide groups. The positive control group was gavaged with 100 mg/kg mb of cimetidine, and the low-, medium- and high-dose oat polysaccharide groups were intragastrically administered with 100, 200, 400 mg/kg mb of oat polysaccharides, respectively. The administration lasted for 14 consecutive days. On the 15th day, acute gastric mucosal injury was successfully by oral administration of 70% ethanol to all animals except those in the normal group. Afterwards, visceral organ indexes and the degree of gastric mucosal injury were examined and gastric pH, serum nitric oxide (NO) levels, and the levels of interleukin (IL)-10, lipopolysaccharide (LPS), vascular endothelial growth factor (VEGF), malondialdehyde (MDA), glutathione (GSH), pepsin activity and superoxide dismutase (SOD) activity in gastric tissues were measured.

Results

Compared with the model group, gastric mucosal injury in the mice treated with oat polysaccharides was significantly reduced, and the most pronounced effect was observed at the high-dose level with an inhibition rate of 76.04%. Furthermore, oat polysaccharides increased the pH of gastric juice, serum NO levels, the activity of SOD and the contents of GSH and VEGF in gastric tissue, and reduced the activity of pepsin and the content of LPS in gastric tissue, especially at the high dose.

Conclusion

Oat polysaccharides significantly protect against ethanol-induced acute gastric mucosal injury in mice with the most pronounced effect being observed at the high dose. The mechanism may be related to the increase in the pH of gastric juice, serum NO levels and the content of VEGF in gastric tissue, the decrease in LPS content and pepsin activity, and the enhancement of antioxidant capacity in the gastric mucosa.

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