Urea and urine concentrating ability: new insights from studies in mice

被引:156
作者
Yang, BX
Bankir, L
机构
[1] Univ Calif San Francisco, Dept Med, San Francisco, CA 94143 USA
[2] INSERM, U652, Paris, France
关键词
urea transport; water transport; vasa recta; urea clearance; knockout mouse; renal medulla; protein intake;
D O I
10.1152/ajprenal.00367.2004
中图分类号
Q4 [生理学];
学科分类号
071003 ;
摘要
Urea is the most abundant solute in the urine in humans (on a Western-type diet) and laboratory rodents. It is far more concentrated in the urine than in plasma and extracellular fluids. This concentration depends on the accumulation of urea in the renal medulla, permitted by an intrarenal recycling of urea among collecting ducts, vasa recta and thin descending limbs, all equipped with specialized, facilitated urea transporters (UTs) (UT-A1 and 3, UT-B, and UT-A2, respectively). UT-B null mice have been recently generated by targeted gene deletion. This review describes 1) the renal handling of urea by the mammalian kidney; 2) the consequences of UT-B deletion on urinary concentrating ability; and 3) species differences among mice, rats, and humans related to their very different body size and metabolic rate, leading to considerably larger needs to excrete and to concentrate urea in smaller species (urea excretion per unit body weight in mice is 5 times that in rats and 23 times that in humans). UT-B null mice have a normal glomerular filtration rate but moderately reduced urea clearance. They exhibit a 30% reduction in urine concentrating ability with a more severe defect in the capacity to concentrate urea (50%) than other solutes, despite a twofold enhanced expression of UT-A2. The urea content of the medulla is reduced by half, whereas that of chloride is almost normal. When given an acute urea load, UT-B null mice are unable to raise their urinary osmolality, urine urea concentration (Uurea), and the concentration of non-urea solutes, as do wild-type mice. When fed diets with progressively increasing protein content (10, 20, and 40%), they cannot prevent a much larger increase in plasma urea than wild-type mice because they cannot raise Uurea. In both wild-type and UT-B null mice, urea clearance was higher than creatinine clearance, suggesting the possibility that urea could be secreted in the mouse kidney, thus allowing more efficient excretion of the disproportionately high urea load. On the whole, studies in UT-B null mice suggest that recycling of urea by countercurrent exchange in medullary vessels plays a more crucial role in the overall capacity to concentrate urine than its recycling in the loops of Henle.
引用
收藏
页码:F881 / F896
页数:16
相关论文
共 115 条
[11]   ACTIVE-TRANSPORT OF UREA BY MAMMALIAN KIDNEY [J].
BEYER, KH ;
GELARDEN, RT .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1988, 85 (11) :4030-4031
[12]  
Bouby N, 1996, J AM SOC NEPHROL, V7, P842
[13]   UREA PERMEABILITY OF HUMAN RED-CELLS [J].
BRAHM, J .
JOURNAL OF GENERAL PHYSIOLOGY, 1983, 82 (01) :1-23
[14]   SEPARATE PATHWAYS FOR UREA AND WATER, AND FOR CHLORIDE IN CHICKEN ERYTHROCYTES [J].
BRAHM, J ;
WIETH, JO .
JOURNAL OF PHYSIOLOGY-LONDON, 1977, 266 (03) :727-749
[15]  
BRAUN EJ, 1985, RENAL PHYSIOL BIOCH, V8, P249
[16]  
BRAY GA, 1970, UREA KIDNEY, P284
[17]   SCALING OF PHYSIOLOGICAL PROCESSES IN HOMEOTHERMIC ANIMALS [J].
CALDER, WA .
ANNUAL REVIEW OF PHYSIOLOGY, 1981, 43 :301-322
[18]   UREA REFLECTION COEFFICIENT FOR THE HUMAN RED-CELL MEMBRANE [J].
CHASAN, B ;
SOLOMON, AK .
BIOCHIMICA ET BIOPHYSICA ACTA, 1985, 821 (01) :56-62
[19]  
CLAPP JR, 1965, P SOC EXP BIOL MED, V120, P521
[20]   RENAL HANDLING OF UREA IN SUBJECTS WITH PERSISTENT AZOTEMIA AND NORMAL RENAL-FUNCTION [J].
CONTE, G ;
DALCANTON, A ;
TERRIBILE, M ;
CIANCIARUSO, B ;
DIMINNO, G ;
PANNAIN, M ;
RUSSO, D ;
ANDREUCCI, VE .
KIDNEY INTERNATIONAL, 1987, 32 (05) :721-727