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Citations to this article

Erythrocyte Na,K pump in uremia. Acute correction of a transport defect by hemodialysis.
H Izumo, … , M DeLuise, J S Flier
H Izumo, … , M DeLuise, J S Flier
Published August 1, 1984
Citation Information: J Clin Invest. 1984;74(2):581-588. https://doi.org/10.1172/JCI111455.
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Research Article

Erythrocyte Na,K pump in uremia. Acute correction of a transport defect by hemodialysis.

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Abstract

We studied the erythrocyte Na,K-pump in chronically hemodialyzed uremic patients, immediately before and after a 4-h period of hemodialysis. Using [3H]ouabain as a probe, the number of Na,K-pump units per erythrocyte did not differ in uremic and control subjects, and hemodialysis had no acute effect on this parameter. In contrast, in these same cells the mean level of Na,K-pump-mediated 86Rb transport was 30% lower in predialysis uremic patients than in controls, and this diminution in the rate of 86Rb transport per pump unit was improved after 4 h of hemodialysis in 17 of 18 subjects. The results of in vitro incubation of normal cells with pre- and post-dialysis sera from uremic patients suggested that a serum factor is responsible for the observed inhibition of Na,K-pump activity. Changes in cell Na concentration during dialysis did not appear to be responsible for the increased rate of Na,K-pump turnover after hemodialysis. However, there was a significant correlation between the extent of rise in pump-mediated 86Rb uptake and the weight loss that occurred during dialysis. We conclude that the ion transport turnover rate of the erythrocyte Na,K-pump is impaired in uremia by a nonouabain like circulating factor. This factor, whose activity is diminished acutely by hemodialysis, may play an important role in the systemic manifestations of the uremic syndrome, and could be an important endogenous regulator of the Na,K-ATPase.

Authors

H Izumo, S Izumo, M DeLuise, J S Flier

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Year: 2024 2022 2016 2015 2014 2013 2011 2010 2005 2003 2002 1999 1997 1996 1995 1994 1993 1992 1991 1990 1989 1988 1987 1986 1985 1981 1979 Total
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Citations to this article (52)

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Frontiers in pharmacology 2024
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Liu J, Chaudhry M, Bai F, Chuang J, Chaudhry H, Al-Astal AY, Nie Y, Sollars V, Sodhi K, Seligman P, Shapiro JI
American journal of physiology. Renal physiology 2022
Red blood cell abnormalities and the pathogenesis of anemia in end-stage renal disease
HT Georgatzakou, MH Antonelou, IS Papassideri, AG Kriebardis
PROTEOMICS – CLINICAL APPLICATIONS 2016
Chronic Renal Disease
P Delanaye, AD Rule
2015
Efficacy of levocarnitine for renal anemia in hemodialysis patients
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Seldin and Giebisch's The Kidney
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The effect of hemodialysis on erythrocyte osmotic fragility in chronic hemodialysis patients
S Ookawara, M Suzuki, S Fukase, K Tabei
Nihon Toseki Igakkai Zasshi 2011
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Clinica Chimica Acta 1991
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Erythrocyte sodium transport in dialyzed uremic patients
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1989
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Contemporary Nephrology
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Replacement of Renal Function by Dialysis
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