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November 1, 1998Cardiovascular Research11 citationsOpen Access

Divergent effects of ACE-inhibition and calcium channel blockade on NO-activity in systemic and renal circulation in essential hypertension

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LDLioe-Ting Dijkhorst-Oei

Structured PICO

Do enalapril and nifedipine increase vascular nitric oxide activity in the systemic and renal circulation of patients with essential hypertension?

P
Population
10 essential hypertensive patients, aged 22-51 years
I
Intervention
Enalapril 20 mg twice a day for 3 weeks, and nifedipine 60 mg/day for 3 weeks
C
Comparator
Off medication for ≥ 4 weeks
O
Outcome
Systemic and renal vascular sensitivity to nitric oxide synthase inhibition (assessed via L-NMMA infusion effects on mean arterial pressure, systemic vascular resistance, cardiac output, and renal blood flow)surrogate

Enalapril and nifedipine increase the nitric oxide dependency of systemic vascular tone in essential hypertensives, but this effect is not observed in the renal circulation.

Abstract

OBJECTIVE: Nitric oxide is a vasodilating and blood pressure lowering substance. To investigate whether calcium antagonists or angiotensin-converting enzyme (ACE) inhibitors increase vascular nitric oxide activity, we assessed systemic and renal vascular sensitivity to nitric oxide synthase inhibition in hypertensives on and off medication. METHODS: Ten essential hypertensive patients, aged 22-51 years, were studied 3 times: > or = 4 weeks off medication, after 3 weeks treatment with enalapril 20 mg twice a day and after 3 weeks nifedipine 60 mg/day. Each time, 24-h blood pressure registration was performed, followed by a clearance study to obtain a 3-h dose-response curve for intravenously infused NG-monomethyl-L-arginine (L-NMMA, respectively 0.75, 1.5 and 3.0 mg/kg/h). RESULTS: L-NMMA dose-dependently increased mean arterial pressure with 5 +/- 2 mmHg and systemic vascular resistance with 24 +/- 5% at maximum dose, whereas cardiac output decreased (all P < 0.001). Enalapril and nifedipine treatment decreased blood pressure, while the L-NMMA-induced increase in systemic vascular resistance was potentiated (enalapril: 45 +/- 7% and nifedipine: 46 +/- 8%; both P < 0.01). L-NMMA also dose-dependently decreased renal blood flow by 58 +/- 8% at maximum dose (P < 0.001), but neither drug potentiated these effects. CONCLUSION: These results indicate that, in essential hypertensives, antihypertensive therapy with enalapril or nifedipine increases nitric oxide dependency of systemic vascular tone, which may play a role in the blood pressure lowering effect of these drugs. However, this phenomenon cannot be observed in the renal circulation, suggesting a different regulation of endothelium-dependent vasomotion in the hypertensive kidney.

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Lioe-Ting Dijkhorst-Oei (1998) studied this question.

synapsesocial.com/papers/6a127d71e407b266963501c1https://doi.org/10.1016/s0008-6363(98)00124-2
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