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Effects of 16, 16-dimethyl prostaglandin E2 on lysosomal membrane stability in rat stomach
O Saitoh1, K Nakagawa, S Asada
1Second Department of Internal Medicine, Osaka Medical College, Japan.
Abstract:
The lysosomal membrane encloses numerous hydrolytic enzymes and prevents the cytoplasm from being damaged by these enzymes. It is possible that the fragility of this membrane may be implicated in the pathogenesis of gastric mucosal damage. We investigated the effects of 16,16-dimethyl prostaglandin E2 (dmPGE2), which is known to protect the gastric mucosa from various noxious agents, on lysosomal membrane stability in the rat stomach. Sodium taurocholate (TC) was used as the damaging agent. To assess lysosomal membrane stability in the gastric mucosa, we assayed acid phosphatase released from lysosomes isolated from a gastric mucosal homogenate. To assess lysosomal membrane stability in gastric surface epithelial cells, we used laser scanning confocal microscopy to observe the fading of red fluorescence in living cells vitally stained with acridine orange. Exogenous dmPGE2 enhanced lysosomal membrane stability in the gastric mucosa, whereas TC decreased it. In gastric surface epithelial cells, exogenous dmPGE2 protected the cells against TC-induced damage and prevented TC-induced decreased lysosomal membrane stability. It was concluded that a decrease in lysosomal membrane stability seemed to be closely involved in the pathogenesis of gastric mucosal damage. Moreover, it appears that stabilization of the lysosomal membrane by exogenous dmPGE2 may contribute to its protective effect in the gastric mucosa, both at the level of gastric surface epithelial cells and in regard to the entire gastric mucosa.
Insights
Prostaglandin E2 stabilizes lysosomal membranes in rat stomachs, protecting gastric mucosa from damage. This stabilization is key to its protective effects against noxious agents.
Area of Science:
- Gastroenterology
- Cell Biology
- Biochemistry
Background:
- Lysosomal membranes contain hydrolytic enzymes, protecting the cytoplasm.
- Lysosomal membrane fragility may contribute to gastric mucosal damage.
- 16,16-dimethyl prostaglandin E2 (dmPGE2) is known to protect the gastric mucosa.
Purpose of the Study:
- To investigate the effect of dmPGE2 on lysosomal membrane stability in the rat stomach.
- To determine if dmPGE2 protects gastric surface epithelial cells from damage.
- To elucidate the role of lysosomal membrane stability in gastric mucosal injury.
Main Methods:
- Assay of acid phosphatase release from isolated gastric mucosal lysosomes.
- Laser scanning confocal microscopy of acridine orange-stained gastric surface epithelial cells.
- Assessment of lysosomal membrane stability following exposure to sodium taurocholate (TC) and dmPGE2.
Main Results:
- Exogenous dmPGE2 enhanced lysosomal membrane stability in the gastric mucosa.
- Sodium taurocholate decreased lysosomal membrane stability.
- dmPGE2 protected gastric surface epithelial cells against TC-induced damage and preserved lysosomal membrane stability.
Conclusions:
- Decreased lysosomal membrane stability is implicated in gastric mucosal damage pathogenesis.
- dmPGE2 stabilization of lysosomal membranes contributes to its protective effects.
- Protection occurs at both the cellular and mucosal levels.