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Ion Gradients And Metabolic Energy In Animal Tissue

Ion Gradients And Metabolic Energy In Animal Tissue
动物组织中的离子梯度和代谢能
批准号:
6504645
负责人:
richard l veech
金额:
$0.0万
依托单位国家:
美国
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财政年份:
--
资助国家:
美国
项目状态:
未结题
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至

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中文摘要
翻译
工作灌注心脏中九种主要无机离子的梯度能量彼此接近平衡,胞外和胞内相之间的电势和ATP水解的DG接近平衡(增田T等,J Biol Chem 1990;265:20321-34)。乙醇的代谢将肝细胞的静息电位从28 mV增加到40 mV(Veech RL等人,Alcoholism Clin Exp Res 1994;18:1040-56)。先前,我们表明,仅仅改变可用的底物就改变了心脏中ATP水解的DG(Kashiwaya Y等人,Am J Cardiol 1997;80:50 A-64 A)。由于任何类型的损伤都会诱导细胞离子分布的定型变化,其中细胞获得Na+,失去K+并肿胀,因此这些损伤的定型变化可能通过简单地改变给予损伤或烧伤受害者的液体组成而逆转。由于这些研究和我们向医学院召集的专家组提出的建议,已经提出了一项建议,即开始研究制造新的复苏液体的可行性(见:液体复苏,治疗战斗伤亡和平民受伤的科学现状,国家学院出版社,1999年)。目标是改善出血和烧伤的标准治疗,这在过去50年中没有改变。我们正在与海军血液研究实验室合作进行这项工作。我们现在已经提交了关于ATP水解的Δ G与心脏、肝脏和红细胞的细胞外和细胞内相之间的所有9种常见无机离子的梯度能量的出版物。这些组织的电位从-86到-28到-6 mV不等。我们发现,Na+梯度的能量约为ATP水解能量的1/3,并且由KCl微电极测量的静息膜电位是电泳最渗透离子所需的功函数。因此,离子梯度系统似乎是一个吉布斯唐南近平衡系统依赖于ATP水解的能量。这导致了一种新的胃肠外液体家族的制备和测试,用于军事和民用环境中的出血、复苏和烧伤治疗。
英文摘要
The energy of the gradients of the nine major inorganic ions in working perfused heart are in near equilibrium with each other, the electrical potential between extra- and intracellular phase and the DG of ATP hydrolysis (Masuda T et al, J Biol Chem 1990;265:20321-34). The metabolism of ethanol increases the resting electrical potential of hepatocytes from 28 to 40 mV (Veech RL et al, Alcoholism Clin Exp Res 1994;18:1040-56). Previously, we showed that merely changing the substrate available altered the DG of ATP hydrolysis in heart (Kashiwaya Y et al, Am J Cardiol 1997;80:50A- 64A). Since injuries of any sort induce a stereotypic change in cellular ionic distributions wherein the cell gains Na+, loses K+ and swells, these stereotypic changes of injury can possibly be reversed by simple changes in the compositions of fluids administered to victims of injury or burns. As a result of these studies and our suggestions to a panel convened by the Academy of Medicine, a recommendation has been made that investigation of the feasibility of making new resuscitation fluids be initiated (see: Fluid Resuscitation, state of the science for treating combat casualties and civilian injuries, National Academy Press, 1999). The goal is to improve the standard treatment of hemorrhage and burns, which has not changed over the past 50 years. We are collaborating in this effort with the Naval Blood Research Lab. We have now submitted for publication relating the Delta G of ATP hydrolysis to the energy of the gradients of all 9 common inorganic ions between extra and intracellular phases of heart, liver and red blood cell. These tissues differ in electrical potential from -86 to -28 to -6 mV. We found that the energy of the Na+ gradient was about 1/3 of the energy of ATP hydrolysis and that the resting membrane potential as measured by KCl microelectrodes was a work function required to electrophoresis the most permeant ion. The system of ion gradients therefore appears to be a Gibbs Donnan near-equilibrium system dependent upon the energy of ATP hydrolysis. This has led to the preparation and testing of a new family of parenteral fluids for use in hemorrhage, resuscitation and the treatment of burns in both military and civilian settings.
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ION GRADIENTS AND METABOLIC ENERGY IN ANIMAL TISSUE
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