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Biomedical subjects

H Gavras

Publications and source records attributed to H Gavras.

At least 307 records · Page 17Linked to original sources

Safety and efficacy of chronic therapy with captopril in hypertensive patients: an update.

Captopril, an orally active angiotensin-converting enzyme inhibitor, has been administered to 81 patients with different types of clinical hypertension. Most of the patients had previously uncontrollable high blood pressure. In order to achieve a satisfactory blood pressure control during long-term captopril therapy, a concomitant decrease in total body sodium was required in more than half of the patients. During our first two years of clinical experience with this new antihypertensive agent, side effects developed in 46.9 per cent of the patients and necessitated the withdrawal of the drug in 23.4 per cent of all patients. Only a few side effects such as hypotensive or syncopal episodes and cold extremities appeared to be due to the chronic blockade of the renin-angiotensin system. The most frequent and the most serious adverse reactions such as skin rash, altered taste, pancytopenia, and pemphigus foliaceus seemed to be specifically drug related. The incidence of cutaneous and taste problems was markedly higher in patients with impaired renal function in whom retention of captopril has been previously demonstrated. This suggests that the occurrence of adverse reactions to captopril could be lowered in the future by using smaller daily doses and by titrating them according to the renal function.

Adolescent↗

Pilot study of the effects of the angiotensin-converting enzyme inhibitor CI-906 on patients with essential hypertension.

The effects of two single doses of the new oral nonsulfhydryl angiotensin-converting enzyme (ACE) inhibitor CI-906 on blood pressure and hormone levels are described in eight subjects with essential hypertension. Starting at 0.625 mg, doses were separated by a placebo day and doubled in consecutive patients until the full effect (obtained with 5 and 10 mg) was reached, at which point the remaining patients received the same dosage. All doses, including the smallest, caused ACE suppression to less than 1 per cent of baseline lasting for least 12 hours and remaining below 30 per cent at 48 hours, accompanied by a rise in plasma renin activity (by 10.9 +/- 2.1 ng/ml/hr) and fall in aldosterone (by -12.6 +/- 2.5 ng/100 ml). However, a clinically significant, though partial and short-lived, effect on blood pressure was observed at 2.5 mg. The two highest doses produced similar effects in terms of magnitude of mean blood pressure lowering (by 26 +/- 5 and 25 +/- 2 mm Hg, respectively) and duration (varying from 12 to over 24 hours) regardless of pretreatment renin levels. There was no orthostatic hypotension, tachycardia, or other adverse reaction.

Adult↗

Isradipine versus captopril in patients with essential hypertension.

We conducted a double-blind, crossover study comparing the antihypertensive effects of isradipine versus captopril in patients with essential hypertension. Seventeen patients (8 men, 9 women; 6 whites, 11 blacks) completed both phases of the study, which consisted of two 5-week treatment periods separated by 2 weeks of placebo treatment. Each drug was randomly allocated to half the patients as the first drug and half as the second drug they received. Ambulatory blood pressure (BP) monitoring was carried out on the day before treatment and the last day of each active treatment. Both drugs were effective and well tolerated but isradipine was more effective overall than captopril in lowering BP (9.4% vs 3.9%, respectively; P < 0.02). Black patients had significantly higher BP at baseline than white patients; furthermore, black patients responded better to isradipine than to captopril. White patients had a smaller decrease in blood pressure with both drugs than did black patients, but white patients still attained a lower diastolic BP with captopril than did black patients (88 +/- 2 mm Hg vs 96 +/- 9 mm Hg; P < 0.01). There was no correlation between the pretreatment plasma levels of pressor hormones (plasma renin activity, catecholamines, and arginine vasopressin) and the magnitude of BP response to either drug, but the decrease in BP in response to captopril correlated significantly with the increase in plasma renin activity during treatment (r = -.84; P < 0.05).(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Synthesis and some pharmacologic properties of five novel V1 or V1/V2 antagonists of AVP.

Based on [1-(1-mercaptocyclohexaneacetic acid),2-(O-ethyl-D-tyrosine),4-valine]-8-arginine-vasopressin as a model, five new analogues of arginine-vasopressin (AVP) were designed and synthesized. Four of them have in position 1 a large lipophilic substituent, whereas the fifth contains pchloro-D-phenylalanine at position 2. We found that the anti-antidiuretic potency with 1-mercapto-4-methycyclohexaneacetic acid is higher than with 1-mercaptocyclohexaneacetic acid (model peptide) in position 1 and this analogue is among the most potent antagonists of the antidiuretic response to AVP known to date. Upon further increase of the size of substituents, antagonistic potency was significantly decreased or totally eliminated. As for the substitution of p-chloro-D-phenylalanine in position 2, we conclude that this modification leads to substantial decrease of the V2 antagonistic potency.

Animals↗

A new highly potent antagonist of bradykinin.

We report that the acylation of the N-terminus of [D-Arg0,Hyp3,Thi5,8,D-Phe7]bradykinin, one of the most potent bradykinin antagonists described to date, with 1-adamantane-acetic acid, results in an analogue with more than ten times enhanced potency. The new analogue does not increase the plasma catecholamines, even when administered at doses sufficient to inhibit by more than 90% the vasodepressor response to 250 ng of exogenous bradykinin. This modification suggests new possibilities for the design of even more potent and selective bradykinin antagonists for studying the physiopathology of bradykinin.

Animals↗

Pre- and postsynaptic effects of SKF64139, a phenylethanolamine N-methyltransferase inhibitor, in conscious normotensive rats.

We investigated in conscious normotensive rats the effect of SKF64139 (2 mg i.v.), a potent phenylethanolamine N-methyltransferase (PNMT) inhibitor, on blood pressure responses to norepinephrine (40, 80, and 160 ng i.v.); methoxamine (2.5, 5 and 10 micrograms i.v.), a directly active sympathomimetic agent that is not taken up by adrenergic nerves; and tyramine (20, 40, and 80 micrograms i.v.), an indirectly acting sympathomimetic amine. The pressor effect of norepinephrine was not changed by 2 mg of SKF64139, while those of methoxamine and tyramine were significantly reduced. The dose-response curve to exogenous norepinephrine was also evaluated following blockade of norepinephrine uptake in the nerve endings using 0.25 mg desipramine i.v. This dose of desipramine had no effect on blood pressure increase induced by methoxamine. In rats pretreated with the neuronal uptake inhibitor desipramine in a dose that did not affect alpha-adrenoceptors, SKF64139 significantly decreased the pressor responses to norepinephrine. Increasing the dose of SKF64139 to 8 mg i.v. resulted in a significant fall in base-line blood pressure and in a blunted blood pressure response to norepinephrine. These data demonstrate that in vivo the PNMT inhibitor SKF64139 blocks alpha-adrenoceptors and inhibits neuronal uptake. The alpha-adrenoceptor blocking properties of SKF65139 are masked by simultaneous blockade of norepinephrine uptake when agonists with affinity for the uptake system are used. These findings need to be taken into account when interpreting cardiovascular effects of the PNMT inhibitor SKF64139.

Animals↗

Discrepancy between antihypertensive effect and angiotensin converting enzyme inhibition by captopril.

Captopril, an inhibitor of angiotensin converting enzyme, was administered twice daily to 13 hypertensive patients for a mean period of 9 weeks. Continuous blood pressure control in the ambulatory patients was established with a portable blood pressure recorder. Notwithstanding, in eight patients with normal renal function, plasma converting enzyme was found to resume normal activity before administration of the morning dose of captopril. Only in 5 patients with impaired renal function did some blockade of plasma converting enzyme persist for more than 12 hours. Measured plasma converting enzyme activity seemed to reflect total conversion of angiotensin I, including conversion in the pulmonary vascular bed, since changes in its activity were closely paralled by changes in plasma aldosterone levels. Bradykinin accumulation seems unlikely when converting enzyme and thus, presumably, kininase II has resumed normal activity. Captopril administration does not seem to alter plasma epinephrine or norepinephrine levels. Blood pressure reduction in the face of normal angiotensin converting enzyme activity is probably due to hyporesponsiveness of the arterioles to pressor hormones, which may be due to specific renin-related and/or nonspecific effects of captopril.

Adult↗

Converting enzyme inhibition during chronic angiotensin II infusion in rats. Evidence against a nonangiotensin mechanism.

Interpretation of results obtained with angiotensin-converting enzyme inhibition in hypertensive patients has been obscured by the possibility of nonangiotensin-mediated mechanisms, particularly rats, we have compared the effects of converting enzyme inhibition (CEI) by oral captopril administration to those of dextrose. In this setting of constant angiotensin II levels, any apparent effects of CEI must be mediated by a nonangiotensin-related mechanism. Angiotensin II infusion at 30 ng/min increased mean blood pressure by an average of 22 mm Hg. Following 7 days of CEI, effective blockade of converting enzyme was established both by a 10-fold elevation of vasodepressor sensitivity to exogenous bradykinin and a markedly decreased plasma converting enzyme activity. On the ninth day of angiotensin II infusion, mean arterial pressure, heart rate, and plasma renin activity were not different between CEI and dextrose-treated groups. Similarly, blockade of angiotensin II by saralasin induced a comparable fall in blood pressure in both groups. Metabolic studies also revealed no long-term differences in water and food intake, weight change, or sodium and potassium metabolisms. These findings suggest that, in the continued presence of angiotensin II, there is no detectable hemodynamic or metabolic effect of chronic converting enzyme inhibition, and therefore that bradykinin plays little or no role in its long-term antihypertensive action.

Angiotensin II↗

Norepinephrine and renin activity in chronic renal failure. Evidence for interacting roles in hemodialysis hypertension.

To assess the interaction between adrenergic activity and blood pressure regulation in patients with chronic renal failure, plasma norepinephrine (NE) and plasma renin activity (PRA) were measured before and after vigorous ultrafiltration. The significance of PRA was further assessed by angiotensin blockade with saralasin. Two patterns of response were defined: nine patients had low levels of PRA before and after hemodialysis. These patients showed a net fall in norepinephrine and no angiotensin dependence of any time. Failure to stimulate either PRA or norepinephrine was also observed during periods of marked hypotension. Seven other patients had higher PRA, which rose during hemodialysis. This was associated with an increase in NE and postdialysis angiotensin dependence. Patients experiencing hypotension in this group showed a sharp rise in NE, suggesting baroceptor-mediated adrenergic stimulation. In all patients sustaining hypotension during therapy, postdialysis PRA was closely correlated with NE. These results indicate that hemodialysis mobilizes the renin-angiotensin system to maintain hypertension in a greater proportion of dialysis patients than previously supposed and that impaired renin release following hypotension may represent uremic autonomic dysfunction.

Adult↗

Role of reactive hyperreninemia in blood pressure changes induced by sodium depletion in patients with refractory hypertension.

Sixteen patients with refractory hypertension were submitted to vigorous sodium depletion while cardiovascular homeostasis was monitored with measurements of hormonal and hemodynamic parameters and repeat saralasin tests. This regimen resulted in a negative sodium balance by an average of 300 mEq. The loss of sodium closely correlated to the decrease of body weight (r = 0.70, p less than 0.005). Blood pressure (BP) decreased from 176/166 +/- 8/3 to 155/109 +/-6/3 mm Hg. There was a significant correlation between percent increments in plasma renin activity (PRA) and the rise in plasma norepinephrine (r = 0.68, p less than 0.05) and a close negative correlation between percent increase in PRA and the ratio of fall in mean blood pressure (MAP) per unit of weight loss (r = -0.73, p less than 0.005). Thus, patients with the least percent increase in PRA demonstrated the greatest fall in BP per unit of weight loss, indicating that relative rather than absolute elevation of renin may be the factor limiting antihypertensive efficacy of sodium depletion. Sodium depletion induced increase in peripheral resistance and decrease in cardiac output, both mostly attributable to relative hyperreninemia. Indeed, the adverse hemodynamic changes were reversed by angiotensin inhibition, during which BP normalized. It is concluded that vigorous sodium depletion complemented by angiotensin blockade or suppression with sympatholytic agents improves management of otherwise refractory hypertension.

Adult↗

Interaction of the sympathetic nervous system with vasopressin and renin in the maintenance of blood pressure.

To evaluate the partial contributions and interaction of three vasopressor systems in blood pressure maintenance, nephrectomized rats and rats with intact kidneys were submitted sequentially to catecholamine depletion, elimination of vasopressin's vasoconstrictor action, and (for those with kidneys in situ) angiotensin blockade. Catecholamine depletion decreased blood pressure and stimulated vasopressin levels in all rats, but significantly more so in the anephric ones. Subsequent injection of an antagonist to the vasopressor effect of vasopressin produced a lasting fall of blood pressure in anephric rats, but only transient fall in those with intact kidneys. Infusion of teprotide--an angiotensin converting enzyme inhibitor--in the latter animals also produced transient blood pressure fall, but if this were followed by injection of the vasopressin antagonist, the pressure remained low for several hours. Blood pressure levels were closely correlated with those of plasma catecholamines throughout these maneuvers. Catecholamine levels were inversely correlated with those of plasma vasopressin, which were far greater in anephric rats through both stimulation and accumulation. Plasma renin activity was increasingly stimulated by falling blood pressure after each maneuver in rats with intact kidneys. Thus, it appears that in the resting state the sympathetic nervous system is more involved in the maintenance of blood pressure, whereas vasopressin and renin are important backup mechanisms.

Animals↗

Central and peripheral indices of sympathetic activity after blood pressure lowering with enalapril (MK-421) or hydralazine in normotensive rats.

Various antihypertensive drugs have different effects on vasoactive mechanisms. In normotensive Wistar rats, we investigated the effects on plasma and tissue catecholamines of chronic treatment with two agents: MK-421, an angiotensin converting-enzyme inhibitor (CEI), and hydralazine, a vascular smooth muscle relaxant. Both agents lowered blood pressure via arteriolar dilation, to the same final level. However, hydralazine stimulated the renin-angiotensin system and elevated the plasma norepinephrine (NE) and epinephrine (E) levels, whereas MK-421 did not. In MK-421-treated animals, NE, E, and the ratio of E/NE were decreased in the brain stem, and this ratio was increased in the heart. In hydralazine-treated rats, the catecholamine levels were unchanged in the brain stem and heart. The turnover rate of NE was significantly reduced in the brain stem and heart of MK-421-treated rats, whereas, after hydralazine, the turnover rate in the heart was increased (decreasing the half-life of NE by about 50%), indicating increased sympathetic activity. Thus, elimination of angiotensin II (AII) by CEI is associated with decreased sympathetic activity in both the brain stem and heart, whereas an equipotent antihypertensive action by smooth muscle relaxation leads to stimulation of both the renin-angiotensin and the sympathetic systems. These differences are more readily apparent by measurement of catecholamine turnover rates in tissues than of catecholamine levels, and they may account for the different hemodynamic effects of the two agents, even though both drugs act through arteriolar dilation.

Animals↗

Effects of a specific inhibitor of the vascular action of vasopressin in humans.

Experimental evidence indicates that arginine vasopressin (AVP) may contribute to the rise of blood pressure (BP) in hypertension induced by renal failure and sodium overload. We studied the AVP inhibitor [1-(B-mercapto-B,B-cyclopentamethylenepropionic acid)-2-(O-methyl)tyrosine] AVP in 12 normal and seven hypertensive subjects with end-stage renal disease. To test the agent's capacity to block the pressor action of exogenous AVP In humans, we constructed a dose-response curve with AVP doses of 1 to 20 mU/kg, raising BP by up to 30 mm Hg. Subsequently, five volunteers receive intravenous (i.v.) doses of 0.1 mg, and five volunteers received 0.5 mg of the inhibitor. The dose-response curve was then repeated with AVP doses up to 200 mU/kg. Both doses of the inhibitor shifted the curve to the right and downward, with the BP response to 20 mU/kg AVP being inhibited by 23% and 80% respectively. The duration of action of the compound was tested in two additional subjects, and was found to be over 3 hours. We then tested the compound in seven hypertensive patients with end-stage renal failure. Two days before dialysis, patients received a 150 mEq/day Na diet. After an additional Na load of 180 mEq via i.v. saline over 3 hours under constant BP and ECG monitoring, they received an i.v. bolus of 0.5 mg AVP inhibitor. A moderate BP fall occurred in five patients; it was maximal at 45 to 60 minutes and returned to baseline by 70 to 90 minutes.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Reversal of experimental acute cerebral vasospasm by angiotensin converting enzyme inhibition.

We tested the hypothesis that cerebral arteriospasm developing after rupture of a subarachnoid aneurysm may be due to the vasoconstrictor effect of locally generated angiotensin II. Ten dogs had subarachnoid hemorrhage simulated by intracisternal introduction of 2 ml autologous blood, and were followed by cineangiography. Thirty minutes later, when acute arteriospasm was established, seven dogs received injection of the angiotensin converting enzyme inhibitor teprotide and 3 control dogs received normal saline. Repeat angiography at 30 and 90 minutes after injection, showed total or partial release of spasm in the experimental dogs and no change or further intensification of spasm in the control animals. We concluded that angiotensin converting enzyme inhibition may be a potentially useful approach for the reversal or prevention of cerebral arteriospasm after subarachnoid hemorrhage.

Acute Disease↗