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Journal Abstract Search


308 related items for PubMed ID: 6100614

  • 1. The angiotensin converting enzyme inhibitor enalapril and its effects on renal function.
    de Zeeuw D, Navis GJ, Donker AJ, de Jong PE.
    J Hypertens Suppl; 1983 Oct; 1(1):93-7. PubMed ID: 6100614
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  • 2. Enalapril and the kidney: renal vasodilation and natriuresis due to the inhibition of angiotensin II formation.
    Navis GJ, de Zeeuw D, de Jong PE.
    J Cardiovasc Pharmacol; 1986 Oct; 8 Suppl 1():S30-4. PubMed ID: 2422491
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  • 3. Effects of enalaprilic acid on sodium excretion and renal hemodynamics in essential hypertension.
    Navis G, de Jong PE, Donker AJ, van der Hem GK, de Zeeuw D.
    J Clin Hypertens; 1985 Sep; 1(3):228-38. PubMed ID: 3012004
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  • 5. Enalaprilat: an intravenous substitute for oral enalapril therapy. Humoral and pharmacokinetic effects.
    Reams GP, Lal SM, Whalen JJ, Bauer JH.
    J Clin Hypertens; 1986 Sep; 2(3):245-53. PubMed ID: 3023555
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  • 7. Long-term effects of enalapril monotherapy and enalapril/hydrochlorothiazide combination therapy on blood pressure, renal function, and body fluid composition.
    Reams GP, Bauer JH.
    J Clin Hypertens; 1986 Mar; 2(1):55-63. PubMed ID: 3014081
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  • 8. Total and split renal function in patients with renovascular hypertension: effects of angiotensin-converting enzyme inhibition.
    Reams GP, Singh A, Logan KW, Holmes RA, Bauer JH.
    J Clin Hypertens; 1987 Jun; 3(2):153-63. PubMed ID: 3039075
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  • 9. A randomized and double-blind comparison of isradipine and spirapril as monotherapy and in combination on the decline in renal function in patients with chronic renal failure and hypertension.
    Petersen LJ, Petersen JR, Talleruphuus U, Møller ML, Ladefoged SD, Mehlsen J, Jensen HA.
    Clin Nephrol; 2001 May; 55(5):375-83. PubMed ID: 11393383
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  • 10. Effects of the new angiotensin-converting enzyme inhibitor imidapril on renal hemodynamics and function in anesthetized dogs.
    Nishiyama S, Kanno K, Yoneda H, Yano K, Yamaguchi I.
    Arzneimittelforschung; 1992 Apr; 42(4):451-6. PubMed ID: 1322673
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  • 11. The effect of converting enzyme inhibition on the enhanced proximal sodium reabsorption induced by chronic diuretic treatment in patients with essential hypertension.
    van Schaik BA, Geyskes GG, Dorhout Mees EJ.
    Nephron; 1987 Apr; 47(3):167-72. PubMed ID: 2825050
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  • 12. Effect of dietary sodium on angiotensin-converting enzyme (ACE) inhibition and the acute hypotensive effect of enalapril (MK-421) in essential hypertension.
    Jackson B, Cubela R, Johnston CI.
    J Hypertens; 1984 Aug; 2(4):371-7. PubMed ID: 6099390
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  • 13. Relationship of antihypertensive effect of enalapril to serum MK-422 levels and angiotensin converting enzyme inhibition.
    Johnston CI, Jackson B, McGrath B, Matthews G, Arnolda L.
    J Hypertens Suppl; 1983 Oct; 1(1):71-5. PubMed ID: 6100611
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  • 14. Renal haemodynamics and function in weanling rats treated with enalapril from birth.
    Guron G.
    Clin Exp Pharmacol Physiol; 2005 Oct; 32(10):865-70. PubMed ID: 16173949
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  • 15. Systemic and renal effects of enalapril and its effects on cardiac mass.
    Dunn FG, Oigman W, Ventura HO, Messerli FH, Kobrin I, Frohlich ED.
    J Hypertens Suppl; 1984 Dec; 2(2):S57-61. PubMed ID: 6100878
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  • 17. Are the renal haemodynamic and natriuretic effects of calcium antagonists and angiotensin converting inhibitors additive?
    Natov S, Hannedouche T, Schmitt F, Ikeni A, Déchaux M, Kirkisseli S, Lacour B, Grünfeld JP.
    J Hypertens Suppl; 1991 Dec; 9(6):S392-3. PubMed ID: 1819003
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  • 18. Effects of enalapril on blood pressure and renal haemodynamics in essential hypertension.
    Navis GJ, de Jong PE, Donker AJ, de Zeeuw D.
    Proc Eur Dial Transplant Assoc; 1983 Dec; 20():577-81. PubMed ID: 6318224
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