ASSOCIATION BETWEEN THE NATRIURETIC ACTION OF ANGIOTENSIN-(1-7) AND SELECTIVE STIMULATION OF RENAL PROSTAGLANDIN I-2 RELEASE

被引:67
作者
HILCHEY, SD [1 ]
BELLQUILLEY, CP [1 ]
机构
[1] NEW YORK MED COLL, DEPT PHARMACOL, VALHALLA, NY 10595 USA
关键词
ANGIOTENSINS; NATRIURESIS; INDOMETHACIN; PROSTAGLANDINS; IMMUNOENZYME TECHNIQUES; KIDNEY; RATS;
D O I
10.1161/01.HYP.25.6.1238
中图分类号
R6 [外科学];
学科分类号
1002 ; 100210 ;
摘要
We previously reported that angiotensin-(1-7) [Ang-(1-7)], a heptapeptide derived from the metabolism of either Ang I or Ang II, was biologically active in the rat isolated kidney, producing a marked diuresis and natriuresis that could be dissociated from the modest increase in glomerular filtration rate. The natriuretic response was accompanied by an increase in sodium concentration and concomitant decrease in urinary potassium concentration. Ang-(1-7) has also been shown to stimulate arachidonic acid release from isolated proximal tubules and elicit prostaglandin release from a number of tissues. Therefore, in the present study we tested the hypothesis that prostaglandins participate in the renal actions of Ang-(1-7). Rat isolated kidneys were perfused at 37 degrees C with gassed (95% 0(2)/5% CO2) Krebs-Henseleit buffer containing oncotic agents and amino acids for six 10-minute clearance periods at a constant pressure of 90 mm Hg. Ang-(1-7) was infused at a rate that achieved a final concentration of 3 pmol/mL in the presence and absence of 10 mu mol/L indomethacin. Prostaglandin E(2) (PGE(2)) and PGI(2) released into ureteral and venous effluents were measured by enzyme-linked immunoassay. During Ang-(1-7) infusion there was a selective increase in 6-keto-PGF(1 alpha), an index of PGI(2), appearing in both urine and perfusate; PGE(2) levels were unchanged. Inhibition of stimulated 6-keto-PGF(1 alpha) release with indomethacin halved the fourfold increase in urine flow and sevenfold increase in sodium excretion rate without altering the increase in urinary sodium concentration produced by Ang-(1-7). In contrast, the increased potassium excretion rate was unchanged, despite the reduction in urine flow, as indomethacin abolished the fall in urinary potassium concentration caused by Ang-(1-7) infusion alone. Thus, Ang-(1-7) is a specific stimulus for renal PGI(2) versus PGE(2) release. This effect may mediate Ang-(1-7)-induced natriuresis and diuresis and fall in urinary potassium concentration but does not appear to be involved in the doubling of urinary sodium concentration. It is possible that these observations have relevance to the link between prostaglandins and converting enzyme inhibitors in view of earlier reports that these antihypertensive agents substantially increase Ang-(1-7).
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收藏
页码:1238 / 1244
页数:7
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[31]  
McGiff J.C., Cytochrome P450 metabolism of arachidonic acid, Annu Rev Pharmacol Toxicol, 31, pp. 339-369, (1991)
[32]  
Rainsford K.D., Challis D.R., Effects of aspirin and related drugs on the kidneys of rats exposed to various stress states, and in pigs, Adv Inflam Res, 6, pp. 159-164, (1984)
[33]  
Yin K., McGiff J.C., Bell-Quilley C.P., Role of chloride in the variable response of the kidney to cyclooxygenase inhibition, Am J Physiol, 268, (1995)
[34]  
Porsti I., Bara A.T., Busse R., Hecker M., Release of nitric oxide by angiotensin (1-7) from porcine coronary endothelium: Implications for a novel angiotensin receptor, Br J Pharmacol, 111, pp. 652-654, (1994)
[35]  
Radermacher J., Klanke B., Schurek H.J., Stolte H.F., Frolich J.C., Importance of NO/EDRF for glomerular and tubular function: Studies in the isolated perfused rat kidney, Kidney Int, 41, pp. 1549-1559, (1992)
[36]  
Gullner H.-G., Nicolaou K.C., Bartter F.C., Prostacyclin has effects on proximal and distal tubular function in the dog, Prostaglandins Med, 6, pp. 141-146, (1980)
[37]  
Stokes J.B., Tubular actions of arachidonic acid metabolites, Prostaglandins and the Kidney, pp. 133-149, (1983)
[38]  
Filep J., Foldes-Filep E., Effect of urinary pH and urine flow rate on prostaglandin E2 and kallikrein excretion by the conscious dog, J Physiol (Lond), 383, pp. 1-8, (1987)
[39]  
Kirschenbaum M.A., Serros E.R., Effects of alterations in urine flow rate on prostaglandin e excretion in conscious dogs, Am J Physiol, 238, (1980)
[40]  
Stahl R.A.K., Attallah A.A., Bloch D.L., Lee J.B., Stimulation of rabbit renal PGE<sub>2</sub> biosynthesis by dietary sodium restriction, Am J Physiol, 237, (1979)