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February 1, 1980Circulation67 citationsOpen Access

Renal effects of nitroprusside and hydralazine in patients with congestive heart failure.

JCJ J CoganMHM. H. HumphreysCCC. J. Carlson

Key Result

Both nitroprusside and hydralazine significantly decreased total renal resistance and increased renal blood flow in patients with severe congestive heart failure, without significantly changing GFR.

Structured PICO

Does acute administration of intravenous nitroprusside or hydralazine improve systemic and renal hemodynamics in patients with severe congestive heart failure?

P
Population
9 male patients with severe, low cardiac output, congestive heart failure (CHF) of 6 months to 7 years duration, mean age 51.3 years. Key inclusion: NYHA class III-IV, serum creatinine ≤1.5 mg/dl.
I
Intervention
Intravenous sodium nitroprusside (starting at 5 µg/min, mean infusion rate 131 µg/min) followed by a washout period, then intravenous hydralazine (5 mg every 10-20 minutes, mean total dose 34 mg).
C
Comparator
Baseline measurements (Control 1 period before nitroprusside, and Control 2 period before hydralazine).
O
Outcome
Acute changes in renal hemodynamics and function (renal blood flow, glomerular filtration rate, total renal resistance, filtration fraction) and systemic hemodynamics (cardiac index, pulmonary capillary wedge pressure).surrogate

Acute afterload reduction with nitroprusside or hydralazine in severe heart failure improves systemic hemodynamics and increases renal blood flow without significantly altering glomerular filtration rate.

Limitations

  • Small sample size
  • Acute study without long-term follow-up
  • Potential underestimation of renal blood flow using CPAH without extraction correction
  • Inability to assess glomerular ultrafiltration coefficient (KF) in humans

Abstract

The acute effects of nitroprusside infusion and intravenous hydralazine on renal hemodynamics and function were evaluated in nine male patients with severe, low cardiac output, congestive heart failure (CHF). Both drugs resulted in marked systemic hemodynamic improvement. Nitroprusside had a more profound effect on pulmonary artery pressure, while hydralazine produced a greater elevation in cardiac output. Significant decreases in both systemic and pulmonary vascular resistance and pulmonary capillary wedge pressure with increases in stroke volume and stroke work index were noted with both drugs. Total renal resistance decreased and renal blood flow (RBF) significantly increased with both drugs, while the distribution of cardiac output to the kidney remained depressed. Glomerular filtration rate (GFR) did not change significantly with either drug, although increases in GFR were seen in selected patients in whom RBF increased by more than 10% from control. The fraction of plasma filtered decreased toward normal with both drugs and excretion of total cations was significantly increased. These changes all represent improvements in systemic and renal hemodynamic abnormalities occurring in patients with CHF; their maintenance during long-term therapy would facilitate patient management.

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Cite This Study

Cogan et al. (1980) studied severe, low cardiac output, congestive heart failure (CHF) (n=9). Nitroprusside and hydralazine vs. Baseline/Control was evaluated on Renal hemodynamics and function (including renal blood flow and glomerular filtration rate). Both nitroprusside and hydralazine significantly decreased total renal resistance and increased renal blood flow in patients with severe congestive heart failure, without significantly changing GFR.

synapsesocial.com/papers/6a051109fba2ba61ab55fa55https://doi.org/10.1161/01.cir.61.2.316
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Hemodynamic Improvement after Oral Hydralazine in Left Ventricular Failure1977 · 212 citations
  2. 2Circulatory response to vasodilator therapy in congestive cardiomyopathy.1976 · 20 citations
  3. 3Treatment of Refractory Heart Failure with Infusion of Nitroprusside1974 · 381 citations
  4. 4Chronic Vasodilator Therapy in the Management of Cardiogenic Shock and Intractable Left Ventricular Failure1974 · 102 citations
  5. 5Vasodilator Therapy of Cardiac Failure1977 · 485 citations