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Biomedical subjects

H Gavras

Publications and source records attributed to H Gavras.

At least 199 records · Page 11Linked to original sources

Antihypertensive effect of the new oral angiotensin converting enzyme inhibitor "MK-421".

The effects of the new oral converting enzyme inhibitor "MK-421" on blood pressure, plasma renin activity, plasma angiotensin II, aldosterone, and angiotensin converting enzyme were assessed in 16 hypertensive patients. Maximum (maintenance) doses ranged from 2.5 mg-40 mg daily. Blood pressure decreased from 177 +/- 7/111 +/- 4 mm Hg to 145 +/- 6/94 +/- 3 mm Hg supine and from 174 +/- 7/177 +/- 4 mm Hg to 142 +/- 6/101 +/- 3 mm Hg upright (mean +/- SEM, p less than 0.001 for both). Heart rate did not change significantly. Plasma renin activity rose during treatment, whereas plasma angiotensin II, aldosterone, and angiotensin converting enzyme remained suppressed at 24h after the maximum dose. Magnitude of blood pressure reduction after the maximum dose did not correlate with baseline plasma renin activity levels. No side-effects were noted during the 2-10 week observation period. MK-421 is similar to its predecessors in efficacy and clinical and biochemical correlates, the main difference being its higher potency and longer duration of action.

Administration, Oral↗

Angiotensin inhibition in severe heart failure: acute central and limb hemodynamic effects of captopril with observations on sustained oral therapy.

The systemic, pulmonary, and limb circulatory responses to the angiotensin-converting enzyme inhibitor, captopril, were determined in 10 patients with severe, chronic heart failure. Immediate effects include sustained reductions in arterial pressure and pulmonary capillary wedge pressure and improvement in cardiac output, as reported with other vasodilator drugs. Calf vascular resistance did not change despite substantial lowering of total systemic vascular resistance, indicating that arteriolar dilatation occurred on a selective basis. Transient reduction in mean right atrial pressure paralleled slight calf venodilatation, but effects upon the resistance vasculature predominated. Plasma renin activity and norepinephrine concentrations increased after therapy in the acute phase as plasma aldosterone levels consistently fell. During maintenance oral treatment over 7 to 15 months (median, 11.5 months), patients displayed symptomatic benefit, improved functional capacity, and greater exercise tolerance. No major adverse reactions developed. These findings suggest that angiotensin converting enzyme inhibition with captopril in congestive heart failure patients improved cardiocirculatory function through selective arteriolar dilatation. The reordering of regional blood flow which appears to result from release of angiotensin-mediated vasoconstriction, as well as the suppression of aldosterone, may underlie the prolonged benefit observed in these patients. This oral vasodilator appears to represent an effective adjunct for the treatment of advanced, chronic heart failure refractory to conventional measures.

Administration, Oral↗

Three new long-acting converting-enzyme inhibitors: relationship between plasma converting-enzyme activity and response to angiotensin I.

Three new angiotensin converting-enzyme inhibitors were given orally to 20 men in single doses ranging from 1.25 to 40 mg. Two of them induced comparable marked inhibition of both the blood pressure response to exogenous angiotensin I and plasma converting-enzyme activity. Onset of action was relatively slow, but 21 to 24 hr after drug plasma converting-enzyme activity was still clearly reduced. The third was less active. There was a close correlation between blood pressure response on administration of angiotensin I and plasma converting-enzyme activity. There were no adverse effects. These new drugs are interesting because of their long duration of action. The measurement of plasma converting-enzyme activity seems useful for monitoring efficacy of converting-enzyme blockade and compliance to therapy.

Adult↗

Effects of the oral angiotensin-converting enzyme inhibitor MK-421 in human hypertension.

1. The effects of the new oral angiotensin-converting enzyme (ACE) inhibitor MK-421 on blood pressure, plasma renin activity, angiotensin-II, aldosterone and converting enzyme activity were assessed in 16 hypertensive patients followed for 6--18 weeks. 2. After an initial titration period, maintenance doses of 2.5--40 mg once daily produced satisfactory blood pressure control in 11 and a partial but significant decrease in the remainder. 3. Treatment was associated with no change in heart rate and no orthostatic hypotension. At 24 h after the first effective dose, blood pressure was still decreased, plasma ACE was suppressed to 16% of the baseline, plasma angiotensin to 58%, aldosterone to 42%, and plasma renin activity was elevated to 228% of the baseline. 4. Magnitude of blood pressure fall was significantly correlated with the height of pretreatment blood pressure but not with baseline levels of plasma renin activity.

Adult↗

Effect of a new angiotensin converting enzyme inhibitor MK 421 and its lysine analogue on the components of the renin system in healthy subjects.

1 MK 421 and its lysine analogue are two new inhibitors of angiotensin converting enzyme. Ten mg of both compounds were each given p.o. to 12 normotensive volunteers to determine their effect on the various components of the renin angiotensin aldosterone system. 2 Plasma converting enzyme activity decreased to very low levels within 3 to 4 h to recover only slowly over the next 72 h. Plasma angiotensin II and aldosterone also fell but returned to baseline within 24 h, whereas plasma renin activity rose reflecting the low angiotensin II levels. 3 There was a close correlation between both angiotensin II and aldosterone levels and the logarithm of plasma converting enzyme activity demonstrating that angiotensin II and aldosterone fell only when converting enzyme activity was reduced to very low levels. 4 Mean hourly urinary sodium excretion increased markedly 6 to 10 h post-drug, while blood pressure decreased slightly. Both drugs were well tolerated. 5 Thus 10 mg of MK 421 or its lysine analogue given orally are effective and long acting angiotensin converting enzyme inhibitors.

Adult↗

RHC 3659: a new orally active angiotensin converting enzyme inhibitor in normal volunteers.

1 The new converting enzyme inhibitor RHC 3659 was tested in 15 male volunteers. The study consisted of two parts: first, the ability of a single oral dose (5, 10, 20, 40 or 80 mg) to inhibit the pressor response to exogenous angiotensin I was tested with blood pressure and heart rate monitored continuously through an intraarterial catheter. A dose-related shift to the right of the pressor response curve to angiotensin I was observed with a peak occurring within 0.5 to 1 h. The pressor response to angiotensin II was unaffected. 2 In the second part, plasma renin and converting enzyme activity, angiotensin II and aldosterone were measured serially before and up to 8 h after administration of a single oral dose of RHC 3659. As expected. plasma angiotensin II and aldosterone fell within 30 min while plasma renin activity increased. Plasma converting enzyme activity was suppressed at 0.5 h in a dose-related manner with levels still below 30% of control 4 h following 80 mg of the inhibitor. 3 However, in vitro the enzyme-inhibitor complex seemed quited fragile since during storage of the plasma samples at -20 degrees C, converting enzyme activity increased significantly already within days (P less than 0.001, n = 28) and continued to rise for more than 2 months. This fragility may explain the seemingly lower potency of RHC 3659 when compared to captopril. No side effects were observed.

Adult↗

Evidence for bradykinin potentiation by angiotensin congeners in conscious rats.

It has become increasingly clear that the potent vasoactive peptides bradykinin and angiotensin share a common point of metabolism, i.e., angiotensin-converting enzyme or kininase II, and may interact with prostaglandins to regulate regional blood flow. To establish whether the sensitivity to exogenous bradykinin was affected by the presence of angiotensin, vasodepressor dose-response curves to injected bradykinin were performed in conscious rats before and during a 1-h infusion of angiotensin I (30 ng/min), angiotensin II (30 and 300 mg/min), and [Sar2,Ala8]angiotensin II (5 micrograms/min). All of these induced a parallel leftward shift of the bradykinin dose-response curve of approximately threefold. No similar changes were observed during control infusions of dextrose, similar pressor doses of lysine vasopressin, or norepinephrine. Sensitivity to bradykinin was enhanced by saralasin in normal and nephrectomized rats, suggesting that the antagonist itself was responsible. Similar potentiation was present during both acute (1 h) and chronic infusions (9 days) of angiotensin II and attenuated the effect of a converting-enzyme inhibitor on bradykinin sensitivity. Accordingly, these results suggest a competitive interaction in vivo between angiotensin congeners and bradykinin at a point of bradykinin degradation, probably angiotensin-converting enzyme or kininase II. This is a potential additional mechanism by which these systems may interact to affect regional blood flow and must be considered in the interpretation of results obtained during saralasin infusion.

Angiotensin I↗

Role of vasopressin, catecholamines, and plasma volume in hypertonic saline-induced hypertension.

Elevation of blood pressure induced by an acute sodium and fluid load in the anephric state has been attributed to intravascular fluid volume expansion. The present experiments were designed to study the role of vasopressin and catecholamines in this type of hypertension. Normotensive anephric rats, adrenergically intact or pretreated with alpha- and beta-adrenoceptor blockade, and deoxycorticosterone (DOC)-salt-treated anephric rats, intact or pretreated with alpha- and beta-adrenoceptor blockade, received an infusion of 2 ml containing 3 meq NaCl, followed by intravenous administration of an analogue antagonist of the vasopressor effect of arginine-vasopressin (AVP). Pressure increments induced by hypertonic saline were abolished by an AVP antagonist partly in the adrenergically intact animals (leaving a small residual pressure elevation) and completely in adrenergically blocked animals, which had a larger AVP component. Volumes expansion did not necessarily accompany increase in blood pressure after saline infusion. In fact some DOC-salt-treated animals with the highest blood pressures and norepinephrine levels exhibited contraction of plasma volume. Increments in blood pressure were negatively correlated with plasma volume changes (r = -0.687, P less than 0.05) in these animals and positively with norepinephrine levels in all adrenergically intact animals (r = 0.818, P less than 0.001). It is concluded that the hypertensive response elicited by acute hypertonic saline load is due to vasoconstriction mediated partly by vasopressin and partly by the sympathetic system, which may in some way attenuate the effect of vasopressin.

Animals↗

Acute regional circulatory and renal hemodynamic effects of converting-enzyme inhibition in patients with congestive heart failure.

The acute effects of the angiotensin converting-enzyme inhibitor captopril on regional blood flow, renal hemodynamics and sodium excretion were studied in 12 patients with severe congestive heart failure. Converting-enzyme inhibition decreased systemic vascular resistance by 27% and increased cardiac index by 16%. Estimated hepatic blood flow decreased 17%, but renal blood flow increased 60%. The ratio of renal-systemic blood flow increased from 0.10 +/- 0.01 to 0.14 +/- 0.02 (p = 0.031). Although renal plasma flow increased from 202.8 +/- 28.8 to 323.7 +/- 42.7 ml/min (p less than 0.008), the glomerular filtration rate did not change significantly from the mean pretreatment value of 82.1 +/- 12.3 ml/min. The filtration fraction decreased from 41.3 +/- 3.8% to 33.4 +/- 4.5% (p = 0.050), while urinary sodium excretion doubled, from 34.5 +/- 9.6 to 68.2 +/- 19.6 muEq/min. The plasma renin activity increased from 12.6 +/- 5.0 to 29.9 +/- 8.4 ng/ml/hr (p = 0.030) as plasma aldosterone concentration decreased from 30.5 +/- 6.5 to 11.3 4/- 1.2 ng/dl (p = 0.010) and norepinephrine concentrations decreased from 774 +/- 105 to 618 +/- 85 pg/ml (p = 0.020). We conclude that converting-enzyme inhibition reverses renal vasoconstriction in congestive heart failure and redistributes regional blood flow. The natriuresis may be mediated by one or more of the following: improved renal plasma flow, reduction in filtration fraction, suppression of hyperaldosteronism, and lowering of circulatory catecholamine concentrations.

Acute Disease↗

The opposing effects of chronic angiotensin-converting enzyme blockade by captopril on the responses to exogenous angiotensin II and vasopressin vs. norepinephrine in rats.

To study the influence of acute and chronic angiotensin-converting enzyme blockade on the pressor response to exogenous angiotensin II, vasopressin and norepinephrine, we gave normal female Wistar rats 100 mg of captopril or 1 ml of 5% glucose twice daily by gavage for 2 weeks. On the 15th day, rats were anesthetized with pentobarbital, and dose-response curves to angiotensin II, lysine-vasopressin, and norepinephrine were obtained before and after intraperitoneal injection of 100 mg/kg of captopril or 1 ml of 5% glucose. Acute as well as chronic converting enzyme blockade enhanced the pressor response to exogenous angiotensin II. Similarly, sensitivity to exogenous vasopressin was increased by both acute and chronic converting enzyme inhibition. In contrast, chronic converting enzyme blockade significantly blunted the response to exogenous norepinephrine, whereas acute blockade tended to accentuate its pressor effect. These results suggest that chronic angiotensin-converting enzyme blockade may partly inhibit sympathetic activity which, in turn, might contribute to the antihypertensive efficacy of this therapeutic approach. These results also point to an important physiological interaction between the two pressor hormones, angiotensin II and vasopressin.

Angiotensin II↗

Dobutamine infusion in conscious dogs with and without acute myocardial infarction. Effects on systemic hemodynamics, myocardial blood flow, and infarct size.

We infused dobutamine (20 microgram/kg per min) intravenously, once before and once after coronary artery occlusion, in 10 chronically instrumented dogs. Both infusions increased cardiac output and left ventricular dP/dt and dP/dt/P, but divergent effects on heart rate and aortic blood pressure were observed. Dobutamine decreased heart rate and increased mean aortic blood pressure before coronary artery occlusion, whereas after occlusion it increased heart rate while mean aortic blood pressure remained unchanged. A greater decrease in total peripheral vascular resistance occurred during dobutamine infusion after coronary artery occlusion than before. These differences may relate to withdrawal of enhanced sympathetic tone after coronary occlusion. Similar infusions of normal saline (n = 9) produced no systemic hemodynamic changes either before or after coronary artery occlusion. Myocardial blood flow increased to both non-ischemic and ischemic regions of the heart during dobutamine infusion, but the endocardial:epicardial blood flow ratio did not change significantly. In addition, infarct size, measured by nitroblue tetrazolium stain, was smaller in the dobutamine group (10 +/- 1 g) than in the normal saline group (15 +/- 2 g). Neither left ventricular weight nor risk zone differed between the two groups. These results indicate that dobutamine may be a useful inotropic agent during acute myocardial infarction.

Animals↗

Blood pressure response to central and/or peripheral inhibition of phenylethanolamine N-methyltransferase in normotensive and hypertensive rats.

We studied the effects on blood pressure and heart rate of two different phenylethanolamine N-methyltransferase (PNMT) inhibitors in normotensive, in two-kidney renal hypertensive, and in deoxycorticosterone-salt (DOC-salt) hypertensive rats. One compound (SK&F 64139) blocks the conversion of norepinephrine to epinephrine in both the central and the peripheral nervous system, whereas the other (SK&F 29661) does not cross the blood-brain barrier and therefore is active mostly in the adrenal glands. In the rats given SK&F 29661, practically no acute blood pressure changes were in the adrenal glands. In the rats given SK&F 64139 induced only a minor blood pressure and heart rate response in normotensive and two-kidney renal hypertensive rats. However, in DOC-salt hypertensive rats, it reduced arterial pressure to approximately normal levels and concomitantly slowed pulse rate. There was a close correlation between the magnitude of the blood pressure response observed in all SK&F 64139-treated animals and the control plasma norepinephrine (4 = -0.795, P less than 0.001) and epinephrine (r = -0.789, P less than 0.001) levels. These results suggest an important role for central epinephrine in regulating the peripheral sympathoadrenomedullary and the baroreceptor reflex activity, particularly when the maintenance of the high blood pressure is not renin-dependent.

Animals↗

Reversal of experimental delayed cerebral vasospasm by angiotensin-converting enzyme inhibition.

Delayed cerebral vasospasm is an important determinant of the clinical outcome after subarachnoid hemorrhage, but its prevention and treatment has met with limited success. Since cerebral arteries were found to be sensitive to the vasoconstrictor effect of angiotensin II, the possibility of angiotensin's contribution to this vasospasm was investigated. Delayed cerebral arterial spasm was documented angiographically 72 hours after introduction of blood in the subarachnoid space of dogs. Following injection of the angiotensin-converting enzyme inhibitor, teprotide, repeat cineangiograms at 30, 60, and 90 minutes demonstrated partial or total release of spasm of the basilar artery and its branches. It is concluded that angiotensin II participates in the delayed cerebral vasospasm after hemorrhage, and that angiotensin inhibition may release the spasm and prevent cerebral ischemia.

Angiography↗