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N Medina

Publications and source records attributed to N Medina.

At least 37 records · Page 2Linked to original sources

Prevention and reversal of nitrate tolerance in patients with congestive heart failure.

To evaluate possible mechanisms underlying the development of nitrate tolerance, we treated 35 patients who had severe chronic heart failure with a prolonged (48-hour) intravenous infusion of nitroglycerin (6.4 micrograms per kilogram of body weight per minute) given either continuously or intermittently (12-hour infusions separated by intervals of 12 hours). Intravenous nitroglycerin produced immediate hemodynamic benefits in all patients, but the magnitude of this improvement was greatly diminished after 48 hours of continuous therapy with the drug. This attenuation was accompanied by cross-tolerance to oral isosorbide dinitrate and by an increase in heart rate, plasma renin activity, and body weight. In contrast, intermittent therapy with intravenous nitroglycerin was not associated with a loss of hemodynamic efficacy or cross-tolerance to oral nitrates and was not accompanied by changes in neurohormonal activity or body weight. In eight patients in whom nitrate tolerance developed during continuous intravenous therapy, the administration of the sulfhydryl-containing compound N-acetylcysteine (200 mg per kilogram orally) restored the hemodynamic state toward that observed at the start of the infusion of nitroglycerin (partial reversal of tolerance). In contrast, N-acetylcysteine had little hemodynamic effect in patients who were not receiving nitroglycerin. These data support the hypothesis that neurohormonal activation and depletion of sulfhydryl groups may interact to cause the loss of hemodynamic efficacy that occurs during prolonged treatment with intravenous nitroglycerin in patients with heart failure. Evaluation of the suggested role of sulfhydryl depletion in the development of tolerance will, however, require direct studies of vascular tissue.

Acetylcysteine↗

Influence of diabetes mellitus on changes in left ventricular performance and renal function produced by converting enzyme inhibition in patients with severe chronic heart failure.

Diabetes mellitus is frequently accompanied by specific abnormalities of the renin-angiotensin system, but it is not known whether these alterations modify the response to converting enzyme inhibition. To evaluate this possibility, 129 patients with severe chronic heart failure were treated with captopril or enalapril for one to three months, while doses of digoxin and diuretics were kept constant; 35 patients had diabetes mellitus. Prior to therapy, diabetic patients had lower plasma renin activity (3.4 +/- 0.5 versus 7.0 +/- 1.1 ng/ml/hour) than did nondiabetic control subjects (p less than 0.05); yet the initial hemodynamic response to captopril was similar in both groups. Plasma renin activity predicted the hypotensive response to the first dose of captopril in nondiabetic control subjects (r = 0.70, p less than 0.001) but not in diabetic patients (r = 0.29). During long-term treatment with captopril or enalapril, both diabetic and nondiabetic patients had similar increases in cardiac index and decreases in mean arterial pressure and systemic vascular resistance. Diabetic patients, however, showed larger reductions in left ventricular filling pressure (-13.8 versus -9.1 mm Hg, p less than 0.02) and mean right atrial pressure (-6.2 versus -3.9 mm Hg, p less than 0.05) than did nondiabetic subjects; this was accompanied by a notable decline in body weight in diabetic patients only. Renal function remained unaltered during converting enzyme inhibition in nondiabetic patients, but deteriorated significantly in diabetic patients, as reflected by a marked increase in serum creatinine concentration (1.7 +/- 0.1 to 2.1 +/- 0.1 mg/dl, p less than 0.001). In conclusion, despite lower pretreatment plasma renin activity, diabetic patients with severe chronic heart failure demonstrated improvement during long-term converting enzyme inhibition to a degree similar to (if not greater than) that seen in nondiabetic control subjects, but were more susceptible to the development of functional renal insufficiency than their nondiabetic counterparts. These differences are explicable by abnormalities of renin/aldosterone synthesis and angiotensin-mediated vasoregulation that are known to be present in the diabetic state.

Adult↗

Prognostic importance of the immediate hemodynamic response to nifedipine in patients with severe left ventricular dysfunction.

To determine the clinical significance of the occurrence of hemodynamic deterioration after the administration of calcium channel blocking drugs, nifedipine (20 mg orally) was administered to 29 patients with severe left ventricular dysfunction. Thirteen patients showed hemodynamic improvement with the drug (Group 1), as shown by a notable increase in cardiac index associated with a modest decrease in mean arterial pressure. The other 16 patients exhibited hemodynamic deterioration after nifedipine (Group 2), as reflected by a decline in right and left ventricular stroke work indexes accompanied by a marked hypotensive response. These differences were not related to differences in the peripheral vascular response to nifedipine, because both groups showed similar decreases in systemic and pulmonary vascular resistances. Groups 1 (hemodynamic improvement) and 2 (hemodynamic deterioration) were similar with respect to all demographic variables and pretreatment left ventricular performance (cardiac index, left ventricular filling pressure and systemic vascular resistance). Yet, the 1 year actuarial survival in patients in Group 1 was substantially better than that in patients in Group 2 (67 versus 23%, p = 0.009). Group 2, however, had higher values for plasma renin activity (17.7 +/- 6.0 versus 4.3 +/- 1.4 mg/ml per h, p less than 0.05), lower values for serum sodium concentration (134.6 +/- 1.2 versus 139.2 +/- 0.6 mEq/liter, p less than 0.05) and higher values for mean right atrial pressure (15.8 +/- 2.0 versus 7.9 +/- 1.4 mm Hg, p less than 0.01) than did patients in Group 1.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Identification of hyponatremia as a risk factor for the development of functional renal insufficiency during converting enzyme inhibition in severe chronic heart failure.

To identify patients with severe chronic heart failure who are at greatest risk of developing functional renal insufficiency during converting enzyme inhibition, creatinine clearance was measured in 59 patients before and after long-term therapy with captopril (39 patients) or enalapril (20 patients), while digitalis and diuretic therapy was kept constant. Creatinine clearance increased or remained constant in 33 of the 59 patients (Group I), but declined in the remaining 26 patients (Group II). The two groups were similar with respect to the cause of heart failure, pretreatment renal function and all pretreatment hemodynamic variables. Patients in Group II, however, had lower values for serum sodium concentration (134.8 +/- 1.0 versus 137.0 +/- 0.6 mmol/liter) and higher values for plasma renin activity (10.6 +/- 3.4 versus 3.0 +/- 0.5 ng/ml per hour), received larger doses of furosemide (108 +/- 11 versus 84 +/- 6 mg/day), were more frequently diabetic (42 versus 15%) and were more frequently treated with enalapril (50 versus 21%) than were patients in Group I (all p less than 0.05). By stepwise logistic analysis, only hyponatremia (or an elevated plasma renin activity) and enalapril therapy independently predicted the decline in creatinine clearance during converting enzyme inhibition. These observations could not be explained by changes in systemic blood pressure. In patients with a normal serum sodium concentration (greater than or equal to 137 mmol/liter), creatinine clearance increased with captopril (+21%, p less than 0.05), but not with enalapril (-6%, p = NS).(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Functional renal insufficiency during long-term therapy with captopril and enalapril in severe chronic heart failure.

Renal function was evaluated in 104 patients with severe chronic heart failure whom we treated with captopril or enalapril. Seventy patients showed no change or an improvement in renal function (group A), and 34 patients developed functional renal insufficiency (group B). Before converting-enzyme inhibition, group B patients received higher doses of furosemide (p less than 0.02) and had lower central venous pressures (p less than 0.05) than group A patients. After 1 to 3 months of converting-enzyme inhibition, an excessive reduction in left ventricular filling pressure (to less than 15 mm Hg) or mean arterial pressure (to less than 60 mm Hg) was noted in 28 of 34 (82%) patients in group B but in only 22 of 70 patients in group A (31%) (p less than 0.001). At the end of the study, drug-induced azotemia resolved after a reduction in the dosage of diuretics, despite unaltered treatment with captopril and enalapril. Hence, the deterioration of renal function after converting-enzyme inhibition in heart failure is not a toxic or immunologic reaction to therapy but results from specific hemodynamic events that can be ameliorated by sodium repletion.

Adult↗

Comparison of captopril and enalapril in patients with severe chronic heart failure.

To evaluate the concept that long duration of action is an advantageous property of angiotensin-converting enzyme inhibitors in the treatment of severe heart failure, we randomly assigned 42 patients to therapy with either a short-acting inhibitor (captopril, 150 mg daily) or a long-acting inhibitor (enalapril, 40 mg daily) for one to three months while concomitant therapy with digoxin and diuretics was kept constant. The treatment groups had similar hemodynamic and clinical characteristics at base-line evaluation and similar initial responses to converting-enzyme inhibition. During long-term therapy, captopril and enalapril produced similar decreases in systemic blood pressure, but the hypotensive effects of enalapril were more prolonged and persistent than those of captopril. Consequently, although the patients in both groups improved hemodynamically and clinically during the study, serious symptomatic hypotension (syncope and near syncope) was seen primarily among those treated with enalapril. Sustained hypotension also probably accounted for the decline in creatinine clearance (P less than 0.05) and the notable retention of potassium (P less than 0.05) observed in the patients treated with enalapril but not in those treated with captopril. We conclude that when large, fixed doses of converting-enzyme inhibitors are used in the treatment of patients with severe chronic heart failure, long-acting agents may produce prolonged hypotensive effects that may compromise cerebral and renal function, and thus they may have disadvantages in such cases, as compared with short-acting agents.

Adult↗

Comparative hemodynamic and clinical effects of long-term treatment with prazosin and captopril for severe chronic congestive heart failure secondary to coronary artery disease or idiopathic dilated cardiomyopathy.

Short- and long-term hemodynamic and clinical responses to sequential therapy with prazosin (15 mg/day for 3 to 12 weeks) and captopril (75 to 300 mg/day for 2 to 15 weeks) were compared in 22 patients with severe chronic congestive heart failure. First doses of prazosin produced marked increases in cardiac index and stroke volume index (p less than 0.01), but these effects were lost during long-term treatment. First doses of captopril produced only modest increases in both variables, but these persisted without attenuation during prolonged therapy. Both drugs produced immediate decreases in left ventricular filling pressure, mean arterial pressure, mean right atrial pressure and systemic vascular resistance; these changes became significantly attenuated (p less than 0.01) with prazosin but not with captopril. At the end of treatment, stroke volume index was significantly higher and right and left ventricular filling pressures were significantly lower with captopril than with prazosin (p less than 0.05 to 0.01). Only 8 of the 22 patients (36%) treated with prazosin benefited clinically, whereas 14 of 19 patients (74%) treated with captopril felt that they had improved (p less than 0.05). These differences could not have been predicted by comparing responses to first doses of the 2 drugs. These findings indicate that the choice of 1 vasodilator drug over another in patients with congestive heart failure should be based on studies that compare their long-term rather than short-term hemodynamic and clinical effects.

Adult↗

Systemic vasoconstrictor effects of oxygen administration in obliterative pulmonary vascular disorders.

Although oxygen is frequently administered to patients with obliterative pulmonary vascular disorders (OPVD) for diagnostic and therapeutic purposes, its hemodynamic effects in these patients have not been systematically evaluated. The response to administration of 50 to 70% oxygen was studied in 14 patients with pulmonary hypertension secondary to OPVD. Mean pulmonary artery pressure decreased (from 62 +/- 5 to 57 +/- 5 mm Hg, p less than 0.01) after oxygen inhalation secondary to a decrease in cardiac index (1.9 +/- 0.2 to 1.8 +/- 0.2 liters/min/m2, p less than 0.01), without changes in pulmonary arteriolar resistance. This decline in forward output appeared to result from a systemic vasoconstrictor effect of oxygen (change in systemic vascular resistance from 1,965 +/- 275 to 2,297 +/- 336 dynes s cm-5, p less than 0.01), which decreased heart rate (from 93 +/- 3 to 89 +/- 2 beats/min, p less than 0.01) by stimulation of baroreceptor reflexes and decreased stroke volume (from 22 +/- 3 to 21 +/- 2 ml/beat/m2, p less than 0.05) by increasing impedance to left ventricular ejection. The decrease in left-sided cardiac output likely led to a decline in venous return to the right side of the heart and, consequently, to a decrease in right atrial and pulmonary arterial pressures. Accordingly, the percent decrease in mean pulmonary artery pressure varied linearly and directly with the percent increase in systemic vascular resistance (r = 0.84), but not with changes in pulmonary arteriolar resistance (r = 0.15).(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Hemodynamic factors limiting the response to transdermal nitroglycerin in severe chronic congestive heart failure.

To clarify the continuing controversy concerning the use of transdermal nitroglycerin (TDN), the shortterm hemodynamic responses to sublingual, oral and transcutaneous nitrates were evaluated and compared in 22 patients with severe chronic congestive heart failure. Sixteen patients showed favorable hemodynamic effects with TDN, but the doses needed to achieve this response varied greatly: 10 mg/24 hours in 6 patients, 20 mg/24 hours in 5 patients, 40 mg/24 hours in 3 patients and 60 mg/24 hours in 2 patients. Of the 6 remaining patients, 3 did not respond to high-dose TDN even though they showed marked effects after sublingual and oral nitrate administration; 3 others did not respond to any nitrate formulation by any route. TDN produced immediate increases in cardiac index and decreases in right and left ventricular filling pressure, mean arterial pressure and systemic vascular resistance (p less than 0.01). These effects, however, became rapidly attenuated within 3 to 6 hours; after 18 to 24 hours, only modest decreases in right and left ventricular filling pressures were observed. After removal of TDN treatment, rebound decreases in cardiac index and rebound increases in mean arterial pressure and systemic vascular resistance occurred, but right and left ventricular filling pressures returned to pretreatment values without rebound changes. Isosorbide dinitrate, 40 mg orally, produced hemodynamic effects that were greater in magnitude than effects seen after administration of TDN (p less than 0.05 to 0.01), but 4 patients in whom tolerance to TDN developed showed reversible cross tolerance to oral isosorbide dinitrate.(ABSTRACT TRUNCATED AT 250 WORDS)

Administration, Oral↗

Role of the renin-angiotensin system in the development of hemodynamic and clinical tolerance to long-term prazosin therapy in patients with severe chronic heart failure.

Right heart catheterization was performed before and during long-term therapy with prazosin in 27 patients with severe chronic heart failure who underwent serial hemodynamic studies during 3 to 12 weeks of treatment with the drug. Doses of digoxin and furosemide remained constant during the trial; in addition, 11 of the 27 patients were assigned to concomitant therapy with spironolactone, while the remaining 16 patients did not receive the aldosterone antagonist. First doses of prazosin produced marked increases in cardiac index and marked decreases in mean arterial pressure, left ventricular filling pressure and systemic vascular resistance in both groups of patients (all p less than 0.01), but these effects became rapidly attenuated (p less than 0.01) in both groups after 48 hours and remained attenuated during long-term therapy. After 3 to 12 weeks, values for cardiac index returned to pretreatment levels and did not decrease when the drug was withdrawn; values for mean arterial pressure, left ventricular filling pressure and systemic vascular resistance remained significantly decreased (although attenuated) after 3 to 12 weeks (p less than 0.01) and increased to pretreatment values when the drug was withdrawn. The magnitude and time course of these responses were not altered by concomitant therapy with spironolactone. Complete loss of hemodynamic efficacy (prazosin tolerance) was noted in 14 (58%) of the 24 patients who underwent long-term hemodynamic study and was not accompanied by long-term changes in plasma renin activity or body weight. These data indicate that prazosin produces long-term hemodynamic and clinical benefits in only 30 to 40% of patients with severe chronic heart failure and do not support a role for the renin-angiotensin system in the development of tolerance to alpha-adrenergic blockade. This low response rate explains why most randomized double-blind trials of prazosin in heart failure have not been able to demonstrate a significant difference between patients treated with placebo and those receiving active drug.

Adrenergic alpha-Antagonists↗

Comparative immediate hemodynamic and hormonal effects of amrinone and captopril in patients with severe chronic heart failure.

To compare the responses to oral inotropic and vasodilator drugs, maximally effective doses of amrinone (300 mg over 3 hours) and captopril (25 mg orally) were administered to 21 patients with severe chronic heart failure, who had not received either agent previously. Despite similar decreases in systemic vascular resistance with both drugs, amrinone produced greater increases in cardiac index (+ 0.56 vs. + 0.41/min/m2, p less than 0.05) and smaller decreases in mean arterial pressure (-11.1 vs. -15.2 mm Hg, p less than 0.05) than did captopril; three patients became symptomatically hypotensive with captopril, but none did so after amrinone. These differences were due to a significant decrease in heart rate with captopril (-6.3 beats/min, p less than 0.01), whereas heart rate increased with amrinone (+ 4.3 beats/min, p less than 0.01); the increases in stroke volume index with both drugs were similar. Despite similar decreases in left ventricular filling pressures, the decrease in mean right atrial pressure with amrinone was greater than with captopril (-5.6 vs. -3.2 mm Hg, p less than 0.01). This difference was the result of the greater decrease in pulmonary arteriolar resistance, and hence in right ventricular afterload, with amrinone than with captopril, (-33% vs. -16%, respectively), p less than 0.01. Despite these superior hemodynamic responses to amrinone, when patients received sequential long-term treatment with both drugs during the follow-up period, only 12% of patients benefitted during therapy with amrinone, whereas 64% improved clinically with captopril.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Influence of renal function on the hemodynamic and clinical responses to long-term captopril therapy in severe chronic heart failure.

To evaluate the influence of renal function on the efficacy of converting-enzyme inhibition in patients with severe chronic heart failure, we measured the long-term hemodynamic and clinical responses to captopril in 101 consecutive patients with heart failure grouped according to pretreatment serum creatinine concentration (group I, less than 1.4 mg/dL; group II, 1.4 to 2.8 mg/dL; and group III, greater than 2.8 mg/dL). After 1 to 3 months of treatment, patients with preserved renal function (group I) had greater increases in stroke volume index and greater decreases in left ventricular filling pressure and systemic vascular resistance than did patients with renal impairment (groups II and III) (p less than 0.05). Clinical improvement paralleled these hemodynamic benefits; only 2 of 12 patients with severe renal insufficiency (group III) improved clinically compared with 29 of 40 patients with preserved renal function (group I) and 29 of 49 patients with mild-to-moderate renal impairment (group II), (p less than 0.005). Therapy-limiting rash and dysgeusia occurred most frequently in patients with renal impairment. Our findings support an important role for the kidneys in mediating the beneficial actions of captopril in patients with severe congestive heart failure.

Adult↗

Comparative effects of captopril and isosorbide dinitrate on pulmonary arteriolar resistance and right ventricular function in patients with severe left ventricular failure: results of a randomized crossover study.

We compared the short-term hemodynamic effects of isosorbide dinitrate (40 mg orally) and captopril (25 mg orally) in 18 patients with severe chronic heart failure in a randomized, crossover study conducted on consecutive days. Captopril and isosorbide dinitrate produced similar decreases in systemic vascular resistance, but whereas nitrate therapy decreased pulmonary arteriolar resistance significantly, captopril did not; the difference between the two drugs was highly significant (-25% vs -5%, p less than 0.001). Left ventricular filling pressures declined similarly with both captopril (-10.5 mm Hg) and with isosorbide dinitrate (-9.3 mm Hg), but because pulmonary arteriolar resistance fell significantly with nitrate therapy, mean right atrial pressure decreased more with isosorbide dinitrate than with captopril (-5.4 vs -2.8 mm Hg, respectively; p less than 0.001). Although systemic resistance declined similarly with both drugs, cardiac index increased more with nitrate therapy than during converting-enzyme inhibition (+0.47 vs +0.23 L/min/m2) (p less than 0.01), and therefore mean arterial pressure fell less with isosorbide dinitrate than with captopril (-10.5 mm Hg vs -16.7 mm Hg); p less than 0.05); two patients developed symptomatic hypotension with captopril, whereas none did so with the nitrate. The difference in the effects of the two drugs on cardiac index was not due to differences in their effects on heart rate, since heart rate fell similarly with both drugs, and thus both drugs produced similar increases in stroke volume index. These data indicate that, in patients with severe chronic heart failure, nitrates exert favorable dilating effects on the pulmonary circulation not shared by captopril.(ABSTRACT TRUNCATED AT 250 WORDS)

Captopril↗

Hemodynamic and clinical significance of the pulmonary vascular response to long-term captopril therapy in patients with severe chronic heart failure.

Exercise capacity in patients with left heart failure is closely related to the performance of the right ventricle and the pulmonary circulation. To determine the significance of changes in pulmonary resistance during long-term vasodilator therapy, hemodynamic studies were performed before and after 1 to 3 months of treatment with captopril in 75 patients with severe chronic left heart failure. Patients were grouped according to the relative changes in pulmonary and systemic resistances during long-term therapy: patients in Group I (n = 24) showed greater decreases in pulmonary arteriolar resistance (PAR) than in systemic vascular resistance (SVR) (% delta PAR/% delta SVR greater than 1.0), whereas patients in Group II showed predominant systemic vasodilation (% delta PAR/% delta SVR less than 1.0). Despite similar changes in systemic resistance, patients in Group I showed greater increases in cardiac index, stroke volume index and left ventricular stroke work index (p less than 0.01 to 0.001) but less dramatic decreases in mean systemic arterial pressure (p less than 0.02) than did patients in Group II. Despite similar changes in left ventricular filling pressure, patients in Group I showed greater decreases in mean pulmonary artery and mean right atrial pressures (p less than 0.02 to 0.01) than did patients in Group II. Pretreatment variables in Groups I and II were similar, except that plasma renin activity was higher (8.7 +/- 2.1 versus 3.0 +/- 0.6 ng/ml per h) and serum sodium concentration was lower (133.1 +/- 0.9 versus 137.1 +/- 0.6 mEq/liter) in Group II than in Group I (both p less than 0.05). Both groups improved clinically after 1 to 3 months, but symptomatic hypotension occurred more frequently in Group II than in Group I (36 versus 8%) (p less than 0.005). These findings indicate that changes in the pulmonary circulation modulate alterations in both right and left ventricular performance during the treatment of patients with left heart failure. Hyponatremic patients are likely to experience symptomatic hypotension with captopril because they are limited in their ability to increase cardiac output as a result of an inadequate pulmonary vasodilator response to the drug.

Adult↗

Usefulness of plasma renin activity in predicting haemodynamic and clinical responses and survival during long term converting enzyme inhibition in severe chronic heart failure. Experience in 100 consecutive patients.

The relation between plasma renin activity before treatment and the haemodynamic and clinical responses to converting enzyme inhibition was determined in 100 consecutive patients with severe chronic heart failure who were treated with captopril or enalapril. Initial doses of captopril produced significant increases in cardiac index and decreases in left ventricular filling pressure, mean arterial pressure, mean right atrial pressure, heart rate, and systemic vascular resistance that varied linearly with the pretreatment value for plasma renin activity. In contrast, there was no relation between the pretreatment activity and the magnitude of haemodynamic improvement after 1-3 months of treatment with the converting enzyme inhibitors, and, consequently, a similar proportion of patients with a high (greater than 6 ng/ml/h; greater than 4.62 mmol/l/h), intermediate (2-6 ng/ml/h; 1.54-4.62 mmol/l/h), and low (less than 2 ng/ml/h; less than 1.54 mmol/l/h) pretreatment value improved clinically during long term treatment (64%, 60%, and 64% respectively). Long term survival after one, two, and three years was similar in the three groups. Estimating the degree of activation of the renin-angiotensin system by measuring pretreatment plasma renin activity fails to predict the long term haemodynamic or clinical responses to converting enzyme inhibitors in patients with severe chronic heart failure, and thus appears to be of limited value in selecting those patients likely to benefit from treatment with these drugs.

Adult↗

Hemodynamic changes mimicking a vasodilator drug response in the absence of drug therapy after right heart catheterization in patients with chronic heart failure.

We suspected that patients with severe chronic heart failure may show hemodynamic changes after cardiac catheterization in the absence of drug therapy that could complicate assessment of the hemodynamic effects of new vasodilator and inotropic agents. To evaluate this phenomenon prospectively, hemodynamic variables were measured in 21 patients with heart failure 30 min and 2, 6, 24, and (in 12 patients) 48 hr after right heart catheterization, during which time therapy was not altered. During the first 2 hr we noted a significant increase in cardiac index and decreases in left ventricular filling pressure, mean arterial pressure, mean right atrial pressure, and systemic vascular resistance (p less than .01); a further decline in left ventricular filling pressure was noted over the next 24 hr, after which all hemodynamic variables remained stable. The magnitude of these hemodynamic changes resembled the effects of many established vasodilator drugs and was further enhanced after meals. These data indicate that hemodynamic improvement may be observed without any therapeutic intervention during the course of invasive studies in patients with severe chronic heart failure; such changes may lead investigators to attribute efficacy to ineffective drug therapy. To minimize the occurrence of such responses, we recommend that intravascular catheters be inserted the day before drug evaluation and that hemodynamic measurements be made with patients in a postprandial state.

Adult↗

Failure of low doses of amrinone to produce sustained hemodynamic improvement in patients with severe chronic congestive heart failure.

Although amrinone produces acute hemodynamic improvement in patients with severe chronic congestive heart failure (CHF), it has not produced clinical benefits in long-term controlled trials. To determined if the administration of subtherapeutic doses of amrinone may account for its lack of efficacy in these studies, the dose requirements of the drug were investigated in 30 patients with severe CHF. Doses of 100 mg of oral amrinone produced moderate increases in cardiac index (0.35 liters/min/m2) and decreases in pulmonary capillary wedge pressure (6.8 mm Hg) and systemic vascular resistance (16%) (all p less than 0.01); these effects, however, were short-lived (less than 2.5 hours). Doses of 200 mg of oral amrinone produced marked increases in cardiac index (0.56 liters/min/m2) and substantial decreases in left ventricular filling pressure (9.9 mm Hg) and systemic vascular resistance (30%) (all p less than 0.01), and these effects persisted for longer than 4 hours. Only 4 patients showed hemodynamic responses with 100 mg of the drug that were sufficiently marked and long-lasting to merit chronic therapy, whereas 28 patients had such a response with the 200-mg dose. When 200 mg of amrinone was administered orally every 8 hours, sustained hemodynamic benefits were seen for 48 hours. However, 16 of 22 patients who received 600 mg of the drug daily for more than 1 week had intolerable adverse reactions that required drug withdrawal. In conclusion, hemodynamically effective doses of amrinone (600 mg/day) cannot be tolerated for long periods by most patients with severe chronic CHF.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Efficacy of captopril in low-renin congestive heart failure: importance of sustained reactive hyperreninemia in distinguishing responders from nonresponders.

To determine the efficacy of converting-enzyme inhibition in patients with low-renin congestive heart failure (CHF), the long-term hemodynamic and clinical responses to captopril were evaluated in 26 consecutive patients with severe, chronic CHF whose pretreatment plasma renin activity (PRA) was less than 2 ng/ml/hour. After 2 to 8 weeks of continuous treatment with captopril, 14 patients (54%) showed long-term hemodynamic benefits, of whom 13 (50%) improved clinically by at least 1 New York Heart Association functional class. To distinguish responders from nonresponders, patients were grouped based on the presence or absence of sustained reactive hyperreninemia (PRA during chronic therapy greater than 4 ng/ml/hour). After 2 to 8 weeks of therapy with captopril, 14 patients had sustained reactive hyperreninemia. Their cardiac index increased by 0.33 liters/min/m2 (p less than 0.01), left ventricular filling pressure decreased by 12.6 mm Hg (p less than 0.001), mean right atrial pressure decreased by 4.9 mm Hg (p less than 0.001) and systemic vascular resistance decreased by 529 dyne s cm-5 (p less than 0.001). Twelve of these 14 patients improved clinically. Twelve other patients had no reactive increase in PRA, and these patients showed no significant improvement in any hemodynamic variable after 2 to 8 weeks of treatment with captopril; only 1 of the 12 patients improved clinically (p less than 0.001 between groups). The 2 groups were otherwise similar with regard to pretreatment demographic, hemodynamic and hormonal variables.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗