Suppr超能文献

循环性和/或脓毒性休克中的离子转运

Ion transport in circulatory and/or septic shock.

作者信息

Sayeed M M

出版信息

Am J Physiol. 1987 May;252(5 Pt 2):R809-21. doi: 10.1152/ajpregu.1987.252.5.R809.

Abstract

This review surveys investigations of membrane ion transport in animals in hemorrhagic, endotoxic, or bacteremic shock. The focus of the review is on ion transport studies in the skeletal muscle and liver. Skeletal muscle Na+-K+ transport alterations have been shown during the induction of shock via hemorrhage, endotoxin, or live Gram-negative bacteria in the rodent, canine, and primate species. These alterations include impairment of active cellular K+ accumulation, increased permeability to Na+ and Cl-, and membrane depolarization. The ion transport alterations in the skeletal muscle are compatible with movement of extracellular fluid into the intracellular compartment. Such fluid movements can potentially lead to decreases in circulating plasma volume and thus to circulatory deficits in shock. Studies in the liver of rats subjected to hemorrhagic or endotoxic shock indicated the failure of electrogenic Na+ pump. Although the hepatic cellular membrane permeability to Na+ relative to permeability to K+ appeared unaltered in hemorrhagic shock, endotoxic shock caused an increase in permeability to Na+. Hepatic cellular Ca+ regulation also appeared to be adversely affected during endotoxic shock. Alterations in hepatic Na+-K+ transport and Ca+ regulation could contribute to impairment in hepatic glucose production during shock. Although mechanisms of altered membrane ion transport during shock states remain unknown, such changes could occur prior to any substantial loss of cellular metabolic energy.

摘要

这篇综述调查了在出血性、内毒素性或菌血症性休克的动物中膜离子转运的研究。综述的重点是骨骼肌和肝脏中的离子转运研究。在啮齿动物、犬类和灵长类动物中,通过出血、内毒素或活的革兰氏阴性菌诱导休克期间,已显示骨骼肌的钠钾转运发生改变。这些改变包括细胞内活性钾积累受损、对钠和氯的通透性增加以及膜去极化。骨骼肌中的离子转运改变与细胞外液进入细胞内区室的运动一致。这种液体运动可能导致循环血浆量减少,从而导致休克时的循环不足。对出血性或内毒素性休克大鼠肝脏的研究表明,电致钠泵功能衰竭。尽管在出血性休克中,肝细胞膜对钠的通透性相对于对钾的通透性似乎未改变,但内毒素性休克导致对钠的通透性增加。内毒素性休克期间,肝细胞钙调节也似乎受到不利影响。肝脏钠钾转运和钙调节的改变可能导致休克期间肝葡萄糖生成受损。尽管休克状态下膜离子转运改变的机制尚不清楚,但这种变化可能在细胞代谢能量大量损失之前就已发生。

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