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Biomedical subjects

J Ménard

Publications and source records attributed to J Ménard.

At least 127 records · Page 7Linked to original sources

Need for plasma angiotensin measurements to investigate converting-enzyme inhibition in humans.

Since only a minute proportion of total angiotensin-converting enzyme (ACE) is present in plasma, the reliability of conventional in vitro measurements of ACE activity has been questioned. Data presented here demonstrate that the definition of ACE inhibition depends on the methodology used, with different results obtained with different substrates. We have developed a method that provides accurate and precise determinations of "true" angiotensin levels and in vivo ACE activity was estimated by measuring the plasma angiotensin II/angiotensin I ratio. Since the initial interruption of angiotensin II production by an ACE inhibitor stimulates renal renin release, the response can be quantitated by measuring changes in plasma levels of angiotensin I. The actual state of the renin-angiotensin system during ACE inhibition is represented by the plasma angiotensin II level. When ACE inhibition is no longer complete, increased angiotensin I levels bring the system back toward initial angiotensin II concentrations.

Administration, Oral↗

Immunologic approaches to blockade of the renin-angiotensin system: a review.

Several immunologic approaches to blockade of the renin-angiotensin system (RAS) have been reported, involving most of the proteins and peptides of the biochemical cascade: renin, substrate, angiotensins, and converting enzyme. None as yet has involved blockade of angiotensin II receptors. Earlier and more recent studies used passive transfer of heterologous antibodies or active immunization against RAS proteins and peptides. Passive transfers have been performed with both polyclonal antibodies and now with specific monoclonal immunoglobulins. The latter are better defined in affinity, quantity, and capacity to bind and thus inhibit the biologic activity of the antigen. Active immunization produced long-term blockade of part or all of the biologic activity of the system. The immunopathologic consequences of the use of antibodies raised against a self-antigen could be of interest in defining the predominant site of storage and secretion of the relevant protein and hence the respective roles of different tissues in the production of specific proteins in, for example, the vascular pulmonary bed for converting enzyme and renal arterial tree for renin. In all cases immunologic methods offer in vivo experimental models of short- or long-term RAS blockade that could be compared with pharmacologic methods, such as converting-enzyme inhibition, angiotensin II antagonists, and renin inhibitors.

Angiotensin I↗

Antialdosterones: incidence and prevention of sexual side effects.

The use of spironolactone in the treatment of hypertension has been limited by the occurrence of sexual side effects, mainly menstrual disturbances in women and gynaecomastia in men. In order to minimize this limitation on the use of an effective potassium-sparing antihypertensive agent, two strategies can be proposed: (1) A decrease in the daily dose of spironolactone. In 182 patients with essential hypertension treated with spironolactone alone for a mean follow-up period of 23 months, daily doses of 75-100 mg were as effective on blood pressure as doses of 150-300 mg. In contrast, the development of gynaecomastia--91 cases among 699 men--was dose-related in 6.9% (50 mg/day) to 52.2% (150 mg or more/day) of the cases. (2) An improvement in the receptor-binding specificity of spironolactone. Three 9 alpha, 11 alpha-epoxy derivatives have been characterized in vitro in rats and in rabbits. They exhibited a 3- to 10-fold decrease of the antiandrogenic and progestagenic effect, compared with spironolactone. In humans, one of these derivatives counteracted the fall in urinary Na/K ratio induced by 9 alpha-fluorohydrocortisone at a 25 mg dose.

Blood Pressure↗

Plasma angiotensins, renin, and blood pressure during acute renin inhibition by CGP 38 560A in hypertensive patients.

The new renin inhibitor CGP 38560A has been shown to block angiotensin (ANG) production in healthy volunteers. In order to determine its potential antihypertensive effect, the compound was administered in a 30-min infusion, in 12 hypertensive patients (mean blood pressure (BP): 112.8 +/- 3.5 mm Hg). These patients were selected for their sensitivity to captopril: a single oral dose of 50 mg captopril lowered their mean BP by 8.8 +/- 2.2 mm Hg after 30 min and by 15.3 +/- 1.5 mm Hg after 90 min. At the end of the renin inhibitor infusion, mean blood pressure decreased by 5.7 +/- 2.2 mm Hg in the six patients infused with the dose of 0.125 mg/kg and by 6.0 +/- 1.8 mm Hg in the six patients infused with 0.250 mg/kg. The fall in blood pressure was correlated to the initial plasma renin activity (PRA) (r = 0.61, P less than .05). A dose-dependent effect was observed on plasma ANG I which fell by 74% with 0.125 mg/kg and by 94% with 0.250 mg/kg. Identical falls were found for plasma ANG II (72% and 94%, respectively) and ANG I and ANG II were well correlated (r = 0.91, P less than .001). The fall in BP was correlated to the fall in plasma ANG I (r = 0.77, P less than .01). The time-course of the BP changes was parallel to the changes in plasma angiotensins, as were the slightly delayed rise and fall in active renin measured by a direct immunoradiometric assay. When measured by the conventional ANG I radioimmunoassay, PRA values indicated a long-lasting inhibition.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Crossover design for the dose determination of an angiotensin converting enzyme inhibitor in hypertension.

In order to determine the dose regimen of new antihypertensive compounds, between-patient trials are usually performed. However, the combined use of a crossover design and a precise methodology to measure blood pressure (BP) and biological effects can provide relevant data with a minimal number of patients, if there is no carryover effect which invalidates the experiment. Such goals were successfully achieved with just 25 hypertensive patients who were randomly allocated in double-blind fashion every 2 weeks to a new angiotensin converting enzyme (ACE) inhibitor, benazepril [10 mg once a day (o.d.), 20 mg o.d., 10 mg twice a day (b.i.d.) and 20 mg b.i.d.], or a placebo. The mean BP fall [systolic (SBP)/diastolic (DBP), measured in mmHg] just before drug intake was significantly greater with benazepril: -14/-9 (10 mg o.d.); -15/-8.5 (20 mg o.d.); -22.5/-14 (10 mg b.i.d.), and -21/-13 (20 mg b.i.d.) in comparison with placebo (-3/-3). Mean active plasma renin (measured in pg/ml), assessed by an immunoradiometric assay based on two monoclonal antibodies, increased significantly in a dose-dependent manner, by +0.7 (placebo), +15.0 (10 mg o.d.), +23.4 (20 mg o.d.), +44.4 (10 mg b.i.d.) and +78.8 (20 mg b.i.d.), whereas plasma ACE decreased (by 67 and 78% after 10 and 20 mg o.d., respectively, and by 91-92% after 10 and 20 mg b.i.d.). In the clinical development of an antihypertensive drug, the earlier use of such within-patient studies, with the random insertion of one placebo period between the active periods, should help in the dose-response curve search.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Comparison of increase in the enalapril dose and addition of hydrochlorothiazide as second-step treatment of hypertensive patients not controlled by enalapril alone.

Forty-six patients were randomly allocated to two different groups of treatment if their diastolic blood pressure remained above 90 mm Hg after one month of treatment with 20 mg enalapril mg once daily. In the first group (ENA), 23 patients were given higher daily dosages of enalapril (40 mg and, when necessary, 60 mg). The second group of 23 patients (HCTZ) was given 20 mg/day enalapril and hydrochlorothiazide (25 mg/day and, when necessary, 50 mg). Blood pressure was measured by an automatic device and by the physician with a standard sphygmomanometer. Blood pressure was significantly lower in the HCTZ group, according to both the automatic device (130 +/- 9/80 +/- 8 vs. 141 +/- 5/86 +/- 8 mm Hg, p less than 0.01/p less than 0.05) and the sphygmomanometer (134 +/- 10/89 +/- 6 vs. 149 +/- 16/94 +/- 5 mm Hg, p less than 0.001/p less than 0.01). Plasma renin activity, increased by enalapril at the 20 mg dosage, rose in the HCTZ group but not in the ENA group (22.4 +/- 22 vs. 10.2 +/- 11 pmol/ml/h, p less than 0.05). Plasma aldosterone increased significantly in the HCTZ group (0.44 +/- 0.22 vs. 0.30 +/- 0.17 pmol/ml, p less than 0.05) but did not change in the ENA group (0.31 +/- 0.11 vs. 0.30 +/- 0.17 pmol/ml, NS). In the ENA group, converting enzyme activity was not reinforced (5.7 +/- 8 vs. 6.6 +/- 6 mU/ml, NS) despite an increase in plasma enalaprilat levels (172.4 +/- 108 vs. 72.1 +/- 42 ng/ml, p less than 0.001).(ABSTRACT TRUNCATED AT 250 WORDS)

Angiotensinogen↗

Hemodynamic and biochemical consequences of renin inhibition by infusion of CGP 38560A in normal volunteers.

Hemodynamic and biochemical effects of the new renin inhibitor CGP 38560A (molecular weight 826) were tested in 15 healthy volunteers after a single-blind, randomized, placebo-controlled protocol. At a 2-week interval, groups of five subjects received a 30-minute infusion of either 5% dextrose or CGP 38560A 50, 125, or 250 micrograms/kg. Blood pressure, heart rate, plasma renin activity, active and total renin, angiotensin-(1-8)octapeptide (angiotensin II), and aldosterone were sequentially measured up to 3 hours from the onset of the infusion. There was no consistent change in blood pressure or heart rate. Plasma renin activity and angiotensin II decreased dose dependently, and peak suppression was observed at the end of the infusion of CGP 38560A and after the 250-micrograms/kg dose. Plasma renin activity fell from 1.0 +/- 0.19 (mean +/- SEM) to less than 0.05 ng/ml/hr in all five subjects (p less than 0.001), and angiotensin II fell from 7.7 +/- 1.2 to 2.6 +/- 0.9 femtomole/ml (p less than 0.01). Active renin rose fourfold from 24 +/- 1.9 to 98 +/- 14 pg/ml (p less than 0.001) at the end of the infusion of the high dose. Plasma angiotensin II returned toward its initial values much faster than plasma renin activity and active renin. In conclusion, CGP 38560A was well tolerated. It induced a dose-dependent decrease in angiotensin II and plasma renin activity and a long-lasting and dose-dependent rise in active renin. The doses used did not reduce plasma angiotensin II maximally despite reduction of plasma renin activity to unmeasurable levels.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Relationships of weight gain and behavior to digestive organ weight and enzyme activities in piglets.

Organ weights and digestive enzyme contents of the pancreas, stomach and duodenum were measured in 75 nursing piglets at 21 d of age. Piglets were given creep feed from 10 d of age. Creep feed intake was less than 1.5 g.d-1.piglet-1 up to d 18; on d 19 and 20 it averaged 15 g.d-1.piglet-1. On d 10, piglets went to the feeder more frequently than on the following days. Feeding bouts were longer on d 16, 17 and 18 just prior to the increase in creep feed consumption. Means and SE for the parameters studied at 21 d of age were 7.01 +/- .18 mg for pancreas weight; 61,499 +/- 4,091 units of amylase (UA) and 1,510 +/- 110 UA/mg DNA; 2,962 +/- 189 units of chymotrypsin (UC) and 68.94 +/- 3.92 UC/mg DNA; 8.76 +/- .35 g for fundic mucosa weight; 558,875 +/- 49,287 units of pepsin (UP) and 12,338 +/- 1,175 UP/mg DNA; 1.75 +/- .06 g for duodenum weight; 1.39 +/- .07 units of maltase (UM) and .14 +/- .006 UM/mg DNA. Day-0 weight was not correlated with 21-d gain. Feeding behaviors were correlated positively with 21-d gains. Feeding behaviors and behaviors were correlated positively to pancreas total and specific enzyme contents as well as to stomach and duodenum weights, RNA/DNA ratios of the pancreas and the stomach and protein/DNA of the pancreas but were correlated negatively with specific and total pepsin and maltase activities. Variation was large in enzyme activities (cv = 35 to 82%).(ABSTRACT TRUNCATED AT 250 WORDS)

Amylases↗

Hypertension costs: source, evolution and impact of cost-containment measures in various health-care systems.

As a consequence of the high prevalence of hypertension in most countries, the management of this disease generates costs which are only justified if the beneficial effects of the reduced blood pressure can be achieved by the long-term control of blood pressure in compliant patients. The expenditure includes not only the cost of drugs, but also the cost of visits to physicians and various supplementary examinations. Whereas these latter cost items are exclusively dependent on the physicians who order them, the costs of the drugs are dependent on the physician's choice and also on the drug-pricing mechanisms, which are complex, variable from one country to another and dependent on economic choices, as well as on medical parameters. The selection of drugs should be tailored to each individual patient and based on reliable medical evidence. However, the consequences of the choice of drugs will be very much influenced by the pricing procedures applied in each country. Whereas improvement in the quality of hypertension management will increase the efficacy of the medical intervention, cost-containment measures might make it even more efficient. These measures can be initiated by the physicians themselves, in regard to the number of visits and the choice of supplementary examinations. They can also be generated by incentive measures coming from the different health-care systems (state or private insurance schemes). Such measures should prevent patients being deprived of access to the most modern methods of treatment, including examinations and drugs, while at the same time aiming at eliminating unnecessary examinations and inappropriate choice of drugs. The impact of cost-containment measures, when implemented, should be monitored in regard to both the quality of care (permanent blood pressure control of treated patients, without impairment of their quality of life) and the existence of social inequalities in the access to optimal health-care.

Antihypertensive Agents↗

Long-term cardiac effects of hypotensive agents in normotensive mature rats: comparison of beta-blocking agent and converting enzyme inhibition.

The hemodynamic and myocardial effects of chronic treatment (5 months) with converting enzyme inhibitor (CEI, enalapril, group T1, n = 10) or a beta 1 blocker (atenolol, group T2, n = 13) of normotensive mature male Wistar rats were studied and compared to untreated younger rats (group C0, 11 months old, n = 14) and to untreated age-matched controls (group C1, 16 months old, n = 14). Heart rate was significantly decreased in T2 rats but unchanged in the T1 group. There was a significant decrease in systolic and diastolic arterial blood pressure (BP) in both treated groups (systolic T1:90 +/- 17, T2: 87 +/- 10, vs. C1: 102 +/- 11 mm Hg, and diastolic T1: 60 +/- 17, T2: 59 +/- 9, vs. C1: 73 +/- 13 mm Hg). Cardiac output was unchanged by therapy but stroke volume was significantly increased in the T2 group (0.24 +/- 0.03 vs. 0.19 +/- 0.04 cm3 in C1). Total peripheral resistance was significantly decreased in T1 and T2 groups. Left ventricular weight to body weight ratio (LVW/BW) was significantly decreased in T1 (1.74 +/- 0.11 vs. 2.02 +/- 0.22 in C1) but unchanged in T2 (1.90 +/- 0.15 vs. 2.02 +/- 0.22). The left ventricular passive pressure-volume curve was significantly rightward shifted by beta-blocker therapy (T2) but unchanged by CEI (T1). This corresponds to a decrease of chamber stiffness k in the T2 group compared to C1 and T1 groups. A significant fibrosis was seen in group T2 (mean collagen fiber thickness of 3.03 +/- 0.24 vs. 2.8 +/- 0.15 micron) but not in the T1 group (2.94 +/- 0.14 vs. 2.8 +/- 0.15 micron). Thus, despite the similar decrease in BP induced by the CEI and the beta blocker, the cardiac effects of the two drugs were opposite: CEI decreased LVW/BW with no change in the left ventricular pressure-volume curve and myocardial fibrosis whereas beta blocker did not change the LVW/BW, but induced a left ventricular dilation associated with a decrease in chamber stiffness and an increase in subendocardial fibrosis.

Adrenergic beta-Antagonists↗

Long-term metabolic effects of spironolactone and thiazides combined with potassium-sparing agents for treatment of essential hypertension.

By using information prospectively collected in the computerized ARTEMIS databank, the long-term metabolic consequences of spironolactone, hydrochlorothiazide-amiloride combination and cyclothiazide-triamterene combination were evaluated in 100 patients for each group matched according to sex, age and blood pressure (BP). Spironolactone was prescribed at a mean dose of 98 mg, hydrochlorothiazide at 36 mg and cyclothiazide at 2 mg, during a mean follow-up of 20 months. Compared with the pretherapeutic values, BP decreased equally in both treatment groups (18/9 mm Hg on average). Creatinine increased significantly in the 3 groups (9, 8, 14 mumol/liter, p less than 0.001) as did uric acid (18, 31, 42 mumol, p less than 0.001). Plasma potassium increased with spironolactone (0.7 mmol/liter, p less than 0.001) and remained stable with the combinations of the thiazide-potassium-sparing agents. For the 3 groups, the slight and nonsignificant variations of fasting blood glucose and cholesterol were mainly the results of a phenomenon of regression to the mean. However, when both groups of thiazide-treated patients were considered, the reduction of plasma potassium was accompanied by a slight increase in glucose (0.1 mmol/liter) and cholesterol levels (0.2 mmol/liter) compared with when kalemia decreased (-0.1 and -0.1 mmol/liter, respectively, p less than 0.05 and p less than 0.05). It is concluded that in a clinical daily practice of a hypertension clinic low doses of spironolactone or of thiazides combined with potassium-sparing agents reduced BP without alteration in lipid or carbohydrate metabolism on long-term follow-up.

Amiloride↗

Characterization of five epitopes of human renin from a computer model.

Antigenic determinants in proteins have been found to coincide with surface regions accessible to a large probe of 1-nm radius, which approximates the size of an antibody binding domain. To predict epitopes of human renin, a computer algorithm was used to calculate the accessibility of a model of the three-dimensional structure of human renin to a 1-nm probe. Of the 17 segments predicted to be epitopes or parts of epitopes, 6 were synthesized and tested for their recognition by 11 polyclonal antibodies prepared against pure human renin. Four peptides, Y-133-144, C-180-188, Y-211-224, and Y-300-310, were bound by some polyclonal anti-renin antibodies when tested in both a solution assay and an enzyme-linked immunosorbent assay (ELISA), and one peptide, C-290-296-G, was bound only in an ELISA. Of the five epitopes identified, peptide Y-211-224 seems dominant, since it was bound by all antisera in the solution assay and by 8 of the 11 in the ELISA. This peptide contains a disulfide loop, and the corresponding linear peptide obtained after reduction of the disulfide was not recognized by any anti-renin antisera in the solution assay. This suggests that the epitope is conformationally dependent and that a disulfide bridge linking cysteines-217 and -221 is present in the native structure of human renin. Purified immunoglobulins raised to peptides Y-133-144 and Y-211-224 (located near, but not at, the catalytic site) were found to inhibit the cleavage of human angiotensinogen by purified human renin but not the cleavage of a tetradecapeptide substrate representing the N-terminal region of angiotensinogen.(ABSTRACT TRUNCATED AT 250 WORDS)

Amino Acid Sequence↗

Plasma renin activity in phaeochromocytoma: effects of beta-blockade and converting enzyme inhibition.

We measured plasma renin activity and plasma catecholamines in 26 untreated patients with phaeochromocytoma, 18 untreated patients with primary hypertension, and 10 normal control volunteers. Plasma renin activity measured in patients in the supine position, standing position and after walking for 1 h was higher in the subjects with phaeochromocytoma than in those with primary hypertension or in the volunteers (F = 9, P less than 0.001). In all three situations, renin activity was closely correlated with noradrenaline levels in the phaeochromocytoma patients (r = 0.545, r = 0.600, and r = 0.739; P less than 0.01) but not in the subjects with primary hypertension or in the volunteers. The cardioselective beta-blocker acebutolol reduced heart rate, mean blood pressure and renin activity by averages of 20, 12 and 89% respectively in the seven phaeochromocytoma patients given the drug. Captopril decreased mean blood pressure by 19% and raised renin activity by 293% in the nine phaeochromocytoma patients tested. These findings show that in phaeochromocytoma, hypertension is accompanied by high renin levels and that renin release is stimulated in response to noradrenaline overflow. The hypotension observed in response to beta-blockade and captopril provides indirect support for the possibility that renin-dependent mechanisms are involved in the hypertension of phaeochromocytoma.

Acebutolol↗

Crossover design to test antihypertensive drugs with self-recorded blood pressure.

In a double-blind, within-patient study, blood pressure was measured at regular intervals at the clinic by the physician and each day at home by the patient. Both methods of blood pressure measurement demonstrated an antihypertensive effect of the diuretics chlorthalidone (25 mg) and triamterene (50 mg) and the beta-blocker oxprenolol (160 mg) and the greater efficacy of the combination of the two therapies. During placebo, as well as during active treatment, blood pressure values were higher at the clinic than at home, except when the patients were taking the beta-blocker, which minimized the arousal response during blood pressure measurements in the clinic. With 2-week treatment periods, separated by 2 weeks of placebo administration, blood pressure returned toward its initial level after each of the three treatments and none of the carryover effects was significant at the 5% level. This methodology was intended to make it possible to demonstrate in 27 patients at the clinic and in 20 patients with measurements made at home, at the usual statistical risks (alpha = 5%, beta = 10%), a fall of 5 mm Hg in diastolic blood pressure in comparison with a placebo. Moreover, at the end of this 3-month follow-up, each patient could continue to receive the treatment that was the most effective and the best tolerated. In conclusion, the use of a within-patient trial design, with a 15-day washout period between active treatments and careful recording of blood pressure values, can minimize the number of patients included in hypertension trials and offer to each patient the possibility of individualization of treatment.

Antihypertensive Agents↗

Differential effects of nephrectomy and surgery on plasma kininogens and angiotensinogen in the rat.

The effects of bilateral nephrectomy or a sham operation on plasma angiotensinogen and on the different kininogens were studied in the rat. Total plasma kininogen was measured by RIA of kinins after trypsin hydrolysis. In addition, the high molecular weight (HMW) kininogen and the low molecular weight (T)-kininogen were specifically quantified by using direct RIAs. Angiotensinogen was measured by RIA of angiotensin I after exhaustion by renin. Three groups of control, nonoperated, bilaterally nephrectomized and sham-operated rats were studied in each experiment. Twenty-four hours after either a bilateral nephrectomy or a sham operation total plasma kininogen was elevated approximately 5 times when compared to control rats. Time course measurements from 0 to 48 h in 3 other groups of control, bilaterally nephrectomized and sham-operated rats demonstrated that kininogen gradually increased at 12, 24, and 48 h after the surgery and that the elevation observed in plasma kininogen appeared to be entirely due to an increase in T-kininogen levels. There was no difference in T-kininogen levels between bilaterally nephrectomized and sham-operated animals. By contrast HMW kininogen was neither influenced by surgery nor by nephrectomy. Angiotensinogen increased more than 8 times in bilaterally nephrectomized rats but displayed only little changes in sham-operated animals. During the course of this experiment it was observed that also in control animals submitted to repeated skin incision and venipuncture for blood sampling at the jugular vein, T-kininogen increased dramatically in plasma, but reached values lower than in sham-operated or bilaterally nephrectomized rats. In a third experiment performed in normal rats it was found that T-kininogen levels were more than 3 times elevated over initial values 24 h after a single blood sampling at the jugular vein. These results indicate that T-kininogen but not HMW kininogen is very sensitive to surgery, perhaps as a result of increased T-kininogen synthesis due to an inflammatory reaction. The T-kininogen might participate in the inflammatory reaction that occurs at the site of tissue injury and in the healing process. As there was no difference in T-kininogen, and in HMW kininogen levels between bilaterally nephrectomized and sham-operated rats, the kidneys do not seem to play an important role in the regulation of plasma kininogens. Angiotensinogen, HMW kininogen, and T-kininogen are therefore regulated separately after nephrectomy or surgery.

Angiotensinogen↗