Suppr超能文献

前列腺素对乙醇诱导的胃损伤的保护作用:对黏液糖蛋白代谢的调节作用

Prostaglandin protection against ethanol-induced gastric injury: regulatory effect on the mucus glycoprotein metabolism.

作者信息

Tsukada H, Zielenski J, Mizuta K, Slomiany B L, Slomiany A

出版信息

Digestion. 1987;36(4):201-12. doi: 10.1159/000199420.

Abstract

Effects of ethanol and prostaglandin on the metabolic processes of gastric mucosal cells have been evaluated by studying the biosynthesis and intra- and extracellular distribution of mucus glycoprotein. The rat gastric mucosal cell suspensions were subjected to a short-term tissue culture in the presence of 0-1.5 M ethanol and 0-100 ng/ml 16,16-dimethyl prostaglandin E2 (DMPGE2), using [3H]proline and [3H]palmitic acid as markers of mucin apoprotein synthesis and modification. Ethanol at concentrations of 0.02-0.1 M stimulated the glycoprotein synthesis, but the product was 2-3 times more extensively and rapidly degraded by pepsin than the glycoprotein synthesized in the absence of ethanol. Higher concentrations of ethanol (0.1-1.5 M) caused a marked reduction in the glycoprotein synthesis and a depletion of the intracellular mucus glycoprotein stores, and at 1.5 M ethanol the synthetic processes ceased to function. When the incubated tissue cultures were challenged with DMPGE2, the highest synthetic and secretory stimulation was achieved at 10 ng/ml. The peptic susceptibility of the glycoprotein synthesized in the prostaglandin-enriched culture was somewhat lower than that of controls, and the proportion of the undegraded glycoprotein remaining after 22 h of digestion was significantly higher. Furthermore, the intracellular compartments were not depleted of mucus glycoprotein and the amount of the mucin apoprotein precursor increased to about 30%. Addition of DMPGE2 prior to ethanol treatment resulted in the stabilization of cellular processes and the cells responded as if ethanol was not present in the medium. Moreover, the intracellular stores of mucus glycoprotein were not depleted and the secretory rate was moderately elevated. The regulatory effect of DMPGE2 on the glycoprotein synthesis and distribution was significant, but diminished with increasing amounts of ethanol in the medium. The results suggest that DMPGE2 imposes a stabilizing effect on the secretory processes and controls the mucus glycoprotein synthesis, but the extent of this protective action against ethanol is limited and depends upon the concentration of ethanol penetrating the mucosal cells.

摘要

通过研究黏液糖蛋白的生物合成以及细胞内和细胞外分布,评估了乙醇和前列腺素对胃黏膜细胞代谢过程的影响。以[³H]脯氨酸和[³H]棕榈酸作为黏蛋白载脂蛋白合成和修饰的标志物,将大鼠胃黏膜细胞悬液在含有0 - 1.5 M乙醇和0 - 100 ng/ml 16,16 - 二甲基前列腺素E2(DMPGE2)的条件下进行短期组织培养。浓度为0.02 - 0.1 M的乙醇刺激了糖蛋白的合成,但与在无乙醇条件下合成的糖蛋白相比,其产物被胃蛋白酶降解的程度要广泛和迅速2 - 3倍。更高浓度的乙醇(0.1 - 1.5 M)导致糖蛋白合成显著减少,细胞内黏液糖蛋白储备耗尽,在1.5 M乙醇时合成过程停止。当用DMPGE2刺激培养的组织时,在10 ng/ml时达到最高的合成和分泌刺激。在富含前列腺素的培养物中合成的糖蛋白对胃蛋白酶的敏感性略低于对照,消化22小时后未降解糖蛋白的比例显著更高。此外,细胞内区室的黏液糖蛋白没有耗尽,黏蛋白载脂蛋白前体的量增加到约30%。在乙醇处理前添加DMPGE2导致细胞过程稳定,细胞的反应就好像培养基中不存在乙醇一样。此外,细胞内黏液糖蛋白储备没有耗尽,分泌速率适度升高。DMPGE2对糖蛋白合成和分布的调节作用显著,但随着培养基中乙醇量的增加而减弱。结果表明,DMPGE2对分泌过程具有稳定作用,并控制黏液糖蛋白的合成,但这种对乙醇的保护作用程度有限,且取决于穿透黏膜细胞的乙醇浓度。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验