首页> 美国卫生研究院文献>The Journal of Clinical Investigation >Abnormal cation transport in uremia. Mechanisms in adipocytes and skeletal muscle from uremic rats.
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Abnormal cation transport in uremia. Mechanisms in adipocytes and skeletal muscle from uremic rats.

机译:尿毒症中阳离子运输异常。尿毒症大鼠脂肪细胞和骨骼肌的机制。

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摘要

The cause of the abnormal active cation transport in erythrocytes of some uremic patients is unknown. In isolated adipocytes and skeletal muscle from chronically uremic chronic renal failure rats, basal sodium pump activity was decreased by 36 and 30%, and intracellular sodium was increased by 90 and 50%, respectively, compared with pair-fed control rats; insulin-stimulated sodium pump activity was preserved in both tissues. Lower basal NaK-ATPase activity in adipocytes was due to a proportionate decline in [3H]ouabain binding, while in muscle, [3H]ouabain binding was not changed, indicating that the NaK-ATPase turnover rate was decreased. Normal muscle, but not normal adipocytes, acquired defective Na pump activity when incubated in uremic sera. Thus, the mechanism for defective active cation transport in CRF is multifactorial and tissue specific. Sodium-dependent amino acid transport in adipocytes closely paralleled diminished Na pump activity (r = 0.91), indicating the importance of this defect to abnormal cellular metabolism in uremia.
机译:一些尿毒症患者的红细胞中活性阳离子转运异常的原因尚不清楚。与成对喂养的对照大鼠相比,在慢性尿毒症慢性肾衰竭大鼠的分离的脂肪细胞和骨骼肌中,基础钠泵的活性分别降低了36%和30%,细胞内钠的升高了90%和50%。在两个组织中都保留了胰岛素刺激的钠泵活动。脂肪细胞中较低的基础NaK-ATPase活性是由于[3H] ouabain结合的比例下降,而在肌肉中,[3H] ouabain结合没有改变,这表明NaK-ATPase的转换率降低了。在尿毒症血清中孵育时,正常的肌肉而非正常的脂肪细胞获得了不良的Na泵活性。因此,CRF中活性阳离子转运缺陷的机制是多因素的和组织特异性的。脂肪细胞中钠依赖性氨基酸的运输与降低的Na泵活性密切相关(r = 0.91),表明该缺陷对尿毒症中异常细胞代谢的重要性。

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