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糖尿病肥胖沙鼠的肾钠钾ATP酶活性亢进与肾小球高滤过有关,但不依赖胰岛素。

Renal Na-K-ATPase hyperactivity in diabetic Psammomys obesus is related to glomerular hyperfiltration but is insulin-independent.

作者信息

Scherzer P, Nachliel I, Bar-On H, Popovtzer M M, Ziv E

机构信息

Nephrology and Hypertension Services, Hadassah University Hospital, Jerusalem, Israel.

出版信息

J Endocrinol. 2000 Nov;167(2):347-54. doi: 10.1677/joe.0.1670347.

Abstract

Psammomys obesus, a desert rodent, develops diabetes when displaced from its natural environment and fed a high energy diet in the laboratory. This study was designed to examine variations in renal function in relation to the diabetic state with emphasis on changes in Na-K-ATPase activity. The following groups of Psammomys were studied: (1) Animals fed a saltbush diet; a low energy/high salt diet (natural). (2) Animals fed a low energy/low salt diet (laboratory). Both 1 and 2 were normoglycemic and normoinsulinemic and thus served as control. (3) Animals fed a high energy diet (group C) who were hyperglycemic and hyperinsulinemic; this group was divided into two subgroups: C1 presented with glomerular hyperfiltration rate and C2 with glomerular hypofiltration rate. (4) Animals fed a high energy diet presenting with hyperglycemia-hypoinsulinemia (group D). (5) Group D+I, similar to group D but treated with external insulin (2 U/24 h). Groups D and C1, whose glomerular filtration rose above normal by 30% and 70% respectively, exhibited metabolic similarity to Type I and Type II diabetes. In these groups, Na-K-ATPase activity in the cortex increased by 80-100% and in the medulla by 180% (P<0.001 vs control). In group C2 with reduced glomerular filtration rate (GFR), Na-K-ATPase activity did not differ from control. In group D+I, with normalized glomerular filtration rate, Na-K-ATPase activity was similar to control. There was a linear and significant correlation between GFR and Na-K-ATPase activity both in the cortex and in the medulla. These experiments present a well defined animal model of diabetes mellitus. Variations in glucose and in insulin did not correlate with Na-K-ATPase activity. These results clearly demonstrated that Na-K-ATPase activity in the diabetic Psammomys was determined by glomerular filtration but was independent of plasma glucose or insulin levels.

摘要

肥沙鼠是一种沙漠啮齿动物,当它从自然环境转移到实验室并喂食高能量饮食时会患上糖尿病。本研究旨在检查与糖尿病状态相关的肾功能变化,重点是钠钾ATP酶活性的变化。对以下几组肥沙鼠进行了研究:(1)喂食滨藜属植物饮食的动物;低能量/高盐饮食(自然饮食)。(2)喂食低能量/低盐饮食的动物(实验室饮食)。第1组和第2组血糖和胰岛素水平正常,因此作为对照。(3)喂食高能量饮食的动物(C组),血糖和胰岛素水平升高;该组分为两个亚组:C1组肾小球滤过率升高,C2组肾小球滤过率降低。(4)喂食高能量饮食且出现高血糖-低胰岛素血症的动物(D组)。(5)D+I组,与D组相似,但接受外源性胰岛素治疗(2 U/24 h)。D组和C1组的肾小球滤过率分别比正常水平升高了30%和70%,表现出与I型和II型糖尿病相似的代谢特征。在这些组中,皮质中的钠钾ATP酶活性增加了80%-100%,髓质中的增加了180%(与对照组相比,P<0.001)。在肾小球滤过率(GFR)降低的C2组中,钠钾ATP酶活性与对照组无差异。在肾小球滤过率恢复正常的D+I组中,钠钾ATP酶活性与对照组相似。皮质和髓质中的GFR与钠钾ATP酶活性之间存在线性且显著的相关性。这些实验提供了一个明确的糖尿病动物模型。血糖和胰岛素的变化与钠钾ATP酶活性无关。这些结果清楚地表明,糖尿病肥沙鼠中的钠钾ATP酶活性由肾小球滤过决定,但与血糖或胰岛素水平无关。

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