Comparison in normal volunteers of three converting enzyme inhibitors: RHC 3659, MK 421 and captopril.
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Publications and source records attributed to J Biollaz.
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1 The disposition of two angiotensin converting-enzyme inhibitor drugs was studied in normal volunteers. One drug was enalapril maleate (MK-421), which requires in vivo esterolysis to yield active inhibitor (MK-422). The other was a lysine analogue of MK-422 (MK-521), which requires no bioactivation. 2 Absorption of enalapril maleate (10 mg, p.o.) was rapid, with peak serum concentrations of enalapril observed 0.5-1.5 h after administration. Based upon urinary recovery of total drug (enalapril plus MK-422), absorption was at least 61%. Bioactivation appeared to be largely post-absorptive. From the ratio of MK-422 to total drug in urine, the minimum extent of bioactivation was estimated at 0.7. 3 A similar dose of MK-521 was absorbed more slowly, reaching peak serum concentrations 6-8 h following drug administration. Minimum absorption, based upon urinary recovery, was 29%. 4 Serum concentration v time profiles for both drugs were polyphasic and exhibited prolonged terminal phases. 5 Recovery in urine and faeces of administered enalapril maleate (intact and as MK-422) was 94%. Recovery of MK-521 was 97%. These results indicate lack of significant metabolism of these agents, apart from the bioactivation of enalapril.
1 Two single doses of 10 mg each of the converting enzyme inhibitor enalapril maleate or MK-421 and of its lysine analogue (MK-521) were administered p.o. to twelve male volunteers. 2 The active diacid metabolite of MK-421 and the lysine analogue were determined by radioimmunoassay and MK-421 by the active metabolite method following in vitro hydrolysis. 3 Peak serum levels of MK-421, active metabolite and lysine analogue were reached within 1, 3 to 4, and 6 h respectively. Practically all MK-421 had disappeared from serum within 4 h. 4 A close correlation between percent inhibition of plasma converting enzyme activity and the serum concentration of active metabolite was observed ( r = 0.98, n = 171, P less than 0.001). Similarly, converting enzyme blockade as expressed by the ratio plasma angiotensin II/angiotensin I was closely correlated with serum active metabolite levels (r = 0.93, n = 15, P less than 0.001).
Escape from the sodium-retaining action of mineralocorticoids coincides with the suppression of plasma renin and angiotensin II levels. The purpose of this study was to evaluate whether blockade of the renin system accelerates this escape. Eight male normotensive volunteers, aged 24--33 yr, were maintained during two subsequent periods of 12 days each, separated by 3--4 weeks, on a constant intake of sodium and potassium of 140 mmol/day. During both periods, fludrocortisone acetate (0.2 mg) was administered orally three times a day on days 4--12. In addition, on days 3--12, either a converting enzyme inhibitor (MK 421;20 mg orally, twice daily) or a placebo was added in double blind fashion and randomized sequence. During both periods, blood pressures were similar; they tended to increase slightly toward day 12. The weight increase did not differ between the two periods. With MK 421, angiotension II levels were significantly lower than with placebo on days 3--6 (P less than 0.001). On the same days, PRA was increased due to converting enzyme blockade. Despite the significantly different angiotensin II levels on days 3--6, daily urinary sodium excretion on all individual days as well as cumulative sodium balance were the same during both periods. Therefore, we could find no evidence in man that suppression of circulating angiotensin II levels is causally related to escape from mineralocorticoid excess.
"MK-421" a new oral converting enzyme inhibitor was administered to 16 hypertensive patients in doses ranging between 2.5-40 mg once daily for periods of 6-18 weeks. The blood pressure, plasma renin activity, plasma angiotensin II, aldosterone and angiotensin converting enzyme activity were assessed before and during treatment. Blood pressure normalized in 11 patients and decreased significantly in the remaining 5, without significant changes in heart rate or orthostatic hypotension. At 24 hrs after the first effective dose, plasma renin activity remained elevated to 228% whereas plasma angiotensin II was suppressed to 58%, aldosterone was suppressed to 40% and angiotensin converting enzyme activity was suppressed to 16% of the baseline. Magnitude of blood pressure decrement achieved with the maximal dose did not correlate with baseline plasma renin activity levels. No side-effects were noted during the 6-18 week period of observation.
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.
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.
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.
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.
Sixteen out of 78 patients (20.5%) on chronic hemodialysis had a mean hematocrit below 0.20 L x L-1 during a six months follow-up period. Three of the 16 had been previously binephrectomized. Eleven of the remaining patients were investigated by 51Cr labelling of red cells. Blood loss in the dialyzer and blood lines was measured at 2.72 +/- 1.90 ml of red blood cells (0.97-7.31). Occult intestinal blood loss was detected in 2 patients. Clinically latent hypersplenism was evidenced in all patients, as demonstrated by an increased splenic-cardiac ratio (99.5 +/- 38% and a decreased red blood cell half-life (16.3 +/- 2.3 days). Hypersplenism and blood loss during dialysis are two underestimated but major contributory factors in the increased anemia observed in chronically hemodialyzed patients.
Clonidine s.c. (0.01-0.3 mg/kg), in unanesthetized rats, caused an initial rise (+20 mm Hg), followed by a continuous fall of BP and a dose-dependent natriuresis and diuresis for up to 2 h. Glomerular filtration rate (GFR) (CIn) increased during the first 20 min, while effective renal plasma flow (ERPF) (CPAH) remained normal. Subsequently, between 20 and 60 min after injection, ERPF (CPAH) decreased considerably while GFR had reverted to its normal value. In saline-infused rats clonidine diuresis was accompanied by an "inappropriate" positive free water clearance. Pentobarbital anesthesia suppressed the initial BP peak and the diuresis. Phenoxybenzamine (1 mg/kg i.v.) was antinatriuretic in saline diuresis; the effect of phenoxybenzamine + clonidine on diuresis and salt excretion represented the sum of the effects of both drugs, but phenoxybenzamine enhanced the clonidine-induced increase of GFR. Neither haloperidol (1 mg/kg i.v.) nor bulbocapnine (3 mg/kg i.v.) interfered with the renal effects of clonidine. Clonidine s.c. caused hyperglycemia and glucosuria which did not account for the natriuresis. Clonidine thus appears to increase the GFR and "filtration fraction" (FF) by a phenoxybenzamine-insensitive rise of glomerular ultrafiltration, to depress ERPF by alpha-adrenergic afferent vasoconstriction, to induce natriuresis by a tubular action not blocked by phenoxybenzamine and to exert an antivasopressin effect, either by depressing pituitary vasopressin secretion or the renal response to vasopressin.
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Using a semiautomatic device (Remler), ambulatory blood pressure was recorded in ambulatory hypertensive patients who were either untreated (n = 55) or treated chronically with beta-blocking agents (n = 28), diuretics (n = 42), or a combination of both (n = 75). In all patients, one blood pressure reading was obtained during usual activities every 30 min for 12 h. The selection of untreated patients was based on clinic measurements (two to three repeated blood pressures of greater than 140/89 mm Hg). The mean systolic and diastolic blood pressures averaged from all patients over the whole day did not differ significantly among the groups, ranging from 133.7 to 141 mm Hg for the systolic and from 83.8 to 88.4 mm Hg for the diastolic. The variability of blood pressure, reflected by the difference between the average of the three highest and the three lowest values of the day, was not different among the four groups and ranged from 41.4 to 50.6 mm Hg for the systolic and from 30.1 to 34.4 mm Hg for the diastolic. Similarly, variability expressed as the standard deviation of the mean of all blood pressures measured during the day did not differ among the groups. In all groups, blood pressure was highest in the morning and lowest in early afternoon, and tended to rise again in the late afternoon. Thus, blood pressure variability of hypertensive patients is not changed by antihypertensive therapy with beta-blocking agents and/or diuretics.
Synthetic atrial natriuretic peptide, containing 26 amino acids in the rat sequence, L-364, 343 (Ileu-ANP), was infused intravenously at increasing rates (1-40 micrograms/min) into four normal volunteers. Mean intraarterial blood pressure decreased and heart rate increased in cumulative-dose-dependent fashion. Skin blood flow as measured with a laser Doppler device rose already with a cumulative dose of 55 micrograms Ileu-ANP and further rises were directly related to dose. The only side effects observed were those accompanying symptomatic hypotension at higher doses. These findings provide strong evidence that Ileu-ANP acts as a vasodilator in normal volunteers.
Nineteen hypertensive patients were treated with increasing doses of the new angiotensin-converting enzyme inhibitor MK 421. Twenty milligrams orally reduced blood pressure from 180/112 +/- 6.8/3.6 (mean +/- SEM) to 160/100 +/- 6.5/3.3 mm Hg (p less than 0.005) while heart rate increased from 75 +/- 2 to 87 +/- 3 beats/min (p less than 0.005). Plasma converting enzyme activity was still markedly reduced 24 h following 2.5, 5, 10, or 20 mg MK 421 p.o. (p less than 0.001). In nine patients treated with 20 mg b.i.d. for up to 10 months, blood pressure was controlled, with the association of hydrochlorothiazide 50 mg q.d. in five. However, 12 to 16 h following the preceding drug administration, plasma angiotensin II and aldosterone were back to base-line levels. Analysis of plasma angiotensin II-renin relationships strongly suggests that converting enzyme blockade is not complete even 4 h after 20 mg MK 421 and starts to wear off already at 12 h. Thus, MK 421 20 mg taken orally twice daily, effectively reduces blood pressure, but does not constantly suppress plasma angiotensin II and aldosterone. Whether its long duration of action makes once daily administration possible has not yet been established.