胃腺细胞的不寻常的透性特性
S J Waisbren1, J P Geibel, I M Modlin
1Department of Cellular and Molecular Physiology, Yale University School of Medicine, New Haven, Connecticut 06510.
Nature
|March 24, 1994
概括
胃内膜保护自己免受消化. 较深的胃腺细胞缺乏粘液屏障,由一个排除氨和二氧化碳的顶端屏障保护它们免受酸的影响.
科学领域:
- 生理学 生理学 生理学
- 细胞生物学 细胞生物学
- 胃肠病学 胃肠病学
背景情况:
- 胃分泌消化液,这引发了关于其自我消化的问题.
- 一个粘液-二碳酸盐屏障保护胃膜和表面腺体.
- 更深层的胃腺细胞,如表层和头部细胞,缺乏这种粘液屏障,构成保护挑战.
研究的目的:
- 研究更深的胃腺细胞对自消化的保护机制.
- 要确定胃腺的顶端屏障是否排除了氨 (NH3) 和二氧化碳 (CO2).
主要方法:
- 使用了从子中透的单个胃腺.
- 评估了细胞内pH对极端光酸化的抗性.
- 研究了细胞膜对氨和二氧化碳的透性.
主要成果:
- 细胞内pH值表现出对严重光酸化的独特抵抗力.
- 胃腺的顶端屏障被发现排除了氨和二氧化碳.
- 细胞膜通常对氨和二氧化碳具有很高的透性,与顶峰屏障不同.
结论:
- 胃腺的顶端屏障为更深层的细胞提供保护,包括顶部和头部细胞.
- 这种屏障排除了氨和二氧化碳,可以防止细胞因分泌的胃酸和酶而受损.
相关概念视频
Stomach pH Regulation
The human body carefully regulates the internal pH of different organs to maintain homeostasis. For example, while the blood plasma maintains a neutral pH of 7, the stomach lumen has an acidic pH of 1.5 - 3.5. The low pH of stomach lumen helps kill pathogens in the food and break down complex food molecules.
The acid-secreting gastric mucosal epithelial cells (parietal cells) lining the stomach lumen maintain the low pH in the lumen. Numerous ion transporters and channels on these parietal...
The acid-secreting gastric mucosal epithelial cells (parietal cells) lining the stomach lumen maintain the low pH in the lumen. Numerous ion transporters and channels on these parietal...
Pathophysiology of Peptic Ulcer Disease: Injurious Factors
Peptic ulcers are sores on the stomach's inner lining and the upper small intestine, which are the result of disruptions in the mucosal layer that houses parietal cells which produce gastric acid, and chief cells which secrete pepsinogen.
In the antrum region, G cells secrete the gastrin hormone that binds to gastrin-cholecystokinin-B (CCK2) receptors on parietal and enterochromaffin-like (ECL) cells in the fundic glands. Simultaneously, the vagus nerve releases acetylcholine, which binds to M3...
In the antrum region, G cells secrete the gastrin hormone that binds to gastrin-cholecystokinin-B (CCK2) receptors on parietal and enterochromaffin-like (ECL) cells in the fundic glands. Simultaneously, the vagus nerve releases acetylcholine, which binds to M3...
Stomach Histology
The stomach comprises several layers that work together to facilitate digestion and protect the organ. The outermost layer is called the serosa, which provides support and protection to the stomach. The muscularis externa layer is responsible for the mechanical breakdown of food by contracting and moving the stomach. The submucosa layer, located beneath the muscularis externa, contains connective tissue, blood vessels, nerves, and glands that secrete mucus and other substances essential for...
Hormones Secreted by the Stomach
Enteroendocrine cells, accounting for only 1% of stomach epithelial cells, play a significant role in digestion and are classified by their digestive hormone secretions.
Each of these hormones secreted by different enteroendocrine cells plays a unique role in digestion. Here are a few examples:
Each of these hormones secreted by different enteroendocrine cells plays a unique role in digestion. Here are a few examples:
Mucosal Barrier of the Stomach
The gastric glands contain parietal cells that secrete hydrochloric acid (HCl) for digestion. The cells secrete HCl because it is highly corrosive and essential for breaking down food. To achieve this, they secrete hydrogen and chloride ions into the lumen of the gastric glands, which combine to form HCl.
Within parietal cells, carbonic acid is first formed through the reaction of water and carbon dioxide. The dissociation of carbonic acid releases bicarbonate and hydrogen ions. The bicarbonate...
Within parietal cells, carbonic acid is first formed through the reaction of water and carbon dioxide. The dissociation of carbonic acid releases bicarbonate and hydrogen ions. The bicarbonate...
Gastric Motility
Gastric motility is the coordinated contraction and relaxation of stomach muscles that convert ingested food into chyme, a semi-liquid substance ready for further digestion in the intestines. The process begins with the vagus nerve inducing the relaxation of the smooth muscles in the fundus and body of the stomach, allowing these regions to expand and accommodate up to approximately 1.5 liters of food and liquid.
Peristaltic Waves and Chyme Formation
Upon food entry, the stomach initiates...
Peristaltic Waves and Chyme Formation
Upon food entry, the stomach initiates...


