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A multicenter, double-blind, randomized, placebo-controlled study of isradipine and methyldopa as monotherapy or in combination with captopril in the treatment of hypertension. The LOMIR-MCT-IH Research Group.

This multicenter, double-blind, randomized trial of 1 year's duration compared the safety and efficacy of isradipine, methyldopa, and placebo in 368 men, aged 40 to 65 years, with mild-to-moderate essential hypertension. Initial treatment with isradipine (1.25 mg twice daily), methyldopa (250 mg twice daily), or placebo was started after a wash-out and single-blind placebo period. If normotension [diastolic blood pressure (DBP) < 95 mm Hg] was not achieved, doses were doubled. If the maximum dose as monotherapy did not result in normotension, captopril (25 mg or, if necessary, 50 mg, once daily) was added to the treatments of the three patient groups. Despite the marked placebo effect during the first 2 weeks of treatment, monotherapy with isradipine resulted in a higher rate of normalization (more than 64%) compared with 50% in the methyldopa group and 36% in the placebo group. Adding captopril to the treatments of non-responders increased the rate of normalization to 90% in the isradipine group, 84% in the methyldopa group, and 75% in the placebo group. Twenty-one patients dropped-out and 70 patients discontinued the study, the majority because of a lack of efficacy and adverse reactions. The most common adverse reactions reported were cardiovascular and gastrointestinal complaints, headaches, and sleep and sexual disorders, mostly by patients taking methyldopa. Isradipine was well tolerated and the side-effects were minimal. These results indicate that isradipine is superior to methyldopa and, whether as monotherapy or in combination with captopril, highly effective and well tolerated in the treatment of mild-to-moderate hypertension.

Adult↗

Bulbospinal serotonin neurons and hypotensive effects of methyldopa in the spontaneously hypertensive rat.

Systemic methyldopa administration in genetically hypertensive rats evoked a hypotension which was attenuated after prior treatment with the neurotoxin 5,7-dihydroxytryptamine (5,7-DHT) given either intracerebroventricularly, to produce a generalised ablation of serotonin nerves in brain and spinal cord, or by injection into the cervical spinal cord, to cause a selective destruction of descending serotonin pathways. Direct microinjection of methyldopa into the ventrolateral medulla in the area of the B1 and B3 serotonin cells was also effective in lowering arterial pressure. The hypotensive response to this medullary administration of methyldopa was again attenuated by 5,7-DHT given either intracerebroventricularly or by intraspinal injection. On the other hand, prior treatment intracerebroventricularly with 6-hydroxydopamine did not affect the hypotensive effect of methyldopa injected into the region of the ventrolateral B1 and B3 cells, supporting the suggestion that this effect of methyldopa is mediated by bulbospinal serotonin neurons and not by descending catecholamine nerves. The fact that methyldopa injection into the ventrolateral medulla in a region coinciding with the B1 and B3 cells lowers blood pressure is consistent with previous studies demonstrating that these neurons serve to maintain or elevate arterial pressure.

5,7-Dihydroxytryptamine↗

Differences in the central hypotensive actions of alpha-methyldopa and clonidine in the spontaneously hypertensive rat: contribution of neurons arising from the B3 and the C1 areas of the rostral ventrolateral medulla.

The rostral ventrolateral medulla (RVLM) is the proposed site of origin of bulbospinal excitatory vasomotor neurons, and this brainstem area gives rise to chemically distinct populations of neurons, including serotonin-containing neurons of the B3 group and epinephrine-containing neurons of the C1 group, which independently serve sympathoexcitatory functions. In the present study, we sought to establish (a) whether distinct and chemically specific pathways originating in the C1 or B3 regions are involved in the antihypertensive effects of alpha-methyldopa (methyldopa) and clonidine and (b) if so, whether these effects are related to an activation of alpha-adrenoceptors in these areas. Microinjections of methyldopa (6 nmol) or clonidine (5 nmol) were made in the C1 or B3 area in intact spontaneously hypertensive rats (SHR), pretreated with 5,7-dihydroxytryptamine (5,7-DHT) or with phentolamine. The microinjection of clonidine into both the B3 and the C1 area caused a rapid decrease in arterial pressure, whereas microinjection of methyldopa lowered the arterial pressure only after injection into the B3 area. Pretreatment with intracerebroventricular (i.c.v.) 5,7-DHT attenuated the hypotension produced by microinjection of clonidine into the B3 area, suggesting that this effect is mediated by serotonin-containing neurons. Central pretreatment with phentolamine reduced the hypotensive effects produced by injection of clonidine into either area and of methyldopa into the B3 region, consistent with previous suggestions that these central effects are mediated through alpha-adrenoceptors. These results suggest that both serotonin-containing and epinephrine-containing neurons contribute to the central action of clonidine, whereas the effects of methyldopa injection in RVLM appear to be mediated by serotonin-containing but not by epinephrine-containing neurons.

5,7-Dihydroxytryptamine↗

The plasma noradrenaline and growth hormone response to alpha-methyldopa and clonidine in hypertensive subjects.

The mechanism of the antihypertensive effect of alpha-methyldopa was compared with clonidine by administering equipotent single doses of clonidine (0.2 mg) and alpha-methyldopa (750 mg) to nine hypertensive patients. Plasma noradrenaline was followed for 8 h thereafter as an index of peripheral sympathetic activity. alpha-Methyldopa and clonidine produced the same hypotensive response at 6 and 8 h after dosing with a similar fall in plasma noradrenaline levels at these times. Linear regression analysis between the systolic blood pressure fall and the corresponding plasma noradrenaline fall, showed that the slopes of the two regression lines were similar for alpha-methyldopa as for clonidine. Equipotent doses of alpha-methyldopa and clonidine produce the same fall in plasma noradrenaline. This supports the current hypothesis that an alpha-methyldopa metabolite acts centrally, like clonidine, to reduce peripheral sympathetic activity.

Adult↗

Importance of central serotonin neurons in the hypotensive action of methyldopa in the rat.

Normotensive (WKY) and stroke prone spontaneously hypertensive (SHR-SP) rats were given methyldopa (200 mg/kg i.p.) daily for five days and their brains were then sectioned and processed with the Faglu method for catecholamine fluorescence. This treatment with methyldopa induced a green fluorescence not seen in control animals, in cells coinciding with the B1-B9 groups of serotonin neurons in the brainstem. Pretreatment with the neurotoxin 5,7-dihydroxytryptamine (5,7-DHT, i.c.v.), which is relatively specific for serotonin neurons, prevented the appearance of this green fluorescence in the serotonin cell groups of rats given methyldopa. Pretreatment with 5,7-DHT, i.c.v. approximately halved the magnitude of the hypotensive response to a single dose of methyldopa (80 mg/kg i.p.). We suggest that central serotonin nerves contribute to the hypotensive action of methyldopa. It is our hypothesis that methyldopa is taken up by these serotonin cells and that the green fluorescence reflects the production of alpha-methyldopamine, as a result of decarboxylation by the ubiquitous enzyme, L-aromatic amino acid decarboxylase.

5,7-Dihydroxytryptamine↗

Mechanism of the hypotensive action of methyldopa in normal and immunosympathectomized rats.

1. The antihypertensive action of methyldopa was investigated in the light of the prevailing false sympathetic neurotransmitter hypothesis of Day & Rand (1963). Immunosympathectomized and normal animals were used for the investigation.2. Methyldopa in a single injection significantly decreased the blood pressure in control hypertensive, immunosympathectomized normotensive, and normal rats. Guanethidine did not decrease the blood pressure of immunosympathectomized rats; it decreased the blood pressure of control and control hypertensive rats.3. The hypotensive effect of methyldopa was not antagonized by adrenoceptor and ganglion blocking agents or by the inhibition of dopamine beta-oxidase.4. High doses of methyldopa produced less hypotension than relatively low doses. This might be due to an antagonism of the hypotensive effect by methylnoradrenaline, which is formed from methyldopa.5. The antihypertensive action of methyldopa could not be correlated with any change in aortic sodium or potassium.6. It is concluded that methyldopa does not exert its hypotensive effect by producing a weakly active false sympathetic neurotransmitter.

Animals↗

The interaction of orally administered iron with levodopa and methyldopa therapy.

The ability of methyldopa and levodopa to interact with both ferrous and ferric iron under a variety of conditions likely to be encountered physiologically has been examined. Spectrophotometric studies of ferrous sulphate in the presence of methyldopa indicate that no complexation occurs below pH2, whilst between pH 4-9, a variety of iron-methyldopa complexes is formed. The formation of these complexes is fast at high pH (pH 9: t1/2 less than 5 s), whilst the rate slows as the pH is lowered (pH 4: t1/2 greater than 30 min). These complexes are characteristic of iron-catecholate species, indicating that in the presence of methyldopa (and levodopa) ferrous iron undergoes autoxidation to the ferric form. The tight binding of ferric iron to methyldopa is predicted to alter the biodistribution characteristics of the complex with respect to the unchelated components. Furthermore, under the acid conditions of the stomach, redox cycling can occur. This will result in both catechol oxidation and production of the toxic hydroxyl radical. The findings suggest that care should be exercised when simultaneous administration of either methyldopa or levodopa with ferrous sulphate is indicated.

Administration, Oral↗

Increased metabolic heat production following chronic alpha-methyldopa therapy in hypertensives.

The objective of this study was to measure metabolic heat production in mild-moderate hypertensives when given chronic alpha-methyldopa for control of hypertension and to compare this with hydrochlorothiazide. Four men and one woman, age range 29-55 years, euthyroid, and not previously on alpha-methyldopa, had their drugs replaced by placebo for 4 weeks, and then alpha-methyldopa or hydrochlorothiazide was randomized single blindly to patients. The dose of each drug was increased until the ambulatory diastolic blood pressure was less than 95 mmHg (1 mmHg = 133.322 Pa), and then the dose was maintained for 20-24 weeks. The two active drugs were then crossed over, and each medication was again titrated to attain diastolic normotension (less than 95 mmHg). Maintenance was for a comparable 20-24 weeks. At week 4 (end of placebo period), weeks 20-24 (for hydrochlorothiazide or alpha-methyldopa monotherapy), and again at week 40-48 (end of cross-over period), metabolic heat production (watts), heart rate (beats per minute), and blood pressure (millimetres of Hg) were measured in a resting sitting position for 1 h in a whole body calorimeter (air temperature 28 degrees C and a dew point temperature less than 5 degrees C) for 15 experimental sessions. In four out of five patients, metabolic heat production was significantly (P less than 0.05) higher when patients were treated with alpha-methyldopa. We speculate from our data that alpha-methylnorepinephrine, the major metabolite of alpha-methyldopa, may be thermogenic and that this should be considered when the drug is prescribed.

Aged↗

Effect of methyldopa on renal function in rats with L-NAME-induced hypertension in pregnancy.

BACKGROUND: Pregnancy-induced hypertension is characterized by an increased sympathetic activity and probably by a decreased synthesis/activity of nitric oxide. The aim of the present study is to evaluate whether the beneficial action of the sympathetic antagonist methyldopa (a first-choice hypotensive agent in the treatment of PIH) may be associated to changes in nitric-oxide synthesis. METHODS: Forty pregnant Wistar rats received L-NAME (NO synthase inhibitor, 9-10 mg/kg/day) from mid-pregnancy (day 11) through to term. Some rats were treated with daltroban (TxA receptor antagonist, 60 mg/kg/day), diltiazem (calcium channel blocker, 30 mg/kg/day), methyldopa (central adrenergic antagonist, 400 mg/kg/day) or L-arginine (260 mg/kg/day) from mid-pregnancy. The effect of the different treatments on systolic blood pressure (SBP), creatinine clearance (CCR), urine protein excretion (UP) and urinary nitrate excretion (UNO(3), representing urine NO metabolite) were evaluated and the results compared with those found in normal pregnancy. Normal pregnant rats receiving similar treatment were used as controls. RESULTS: In normal pregnant (P) rats, SBP values decreased from 94 +/- 2 to 83 +/- 3 mm Hg at the end of pregnancy (p < 0.01) and CCR augmented significantly. Drug treatment had no significant effect. In NAME-treated rats, at the same period, the SBP augmented from 92 +/- 1 to 129 +/- 1.8 mm Hg (p < 0.01). At the end of pregnancy, NAME rats had significantly lower CCR values and higher UP excretion when compared with P rats. UNO(3) increased significantly in P and in P rats treated with methyldopa. As expected, in NAME rats UNO(3) excretion was significantly reduced. Treatment with methyldopa normalized SBP, improved CCR and proteinuria and was associated with an increase in UNO(3). Similar results were obtained with L-arginine treatment. Diltiazem lowered SBP significantly but had no effect on renal function or UNO(3) and daltroban had no effect. CONCLUSION: The increased UNO(3) found in NAME rats treated with methyldopa suggests that the vasoconstriction secondary to chronic NO inhibition may be partially related to an increased sympathetic activity. The efficient action of the sympathetic antagonist methyldopa may be due not only to its antihypertensive effects but also by its stimulating effect on NO synthesis leading also to an improvement of renal function.

Animals↗

[The combination of methyldopa with pindolol in the treatment of hypertension (author's transl)].

32 patients with moderate or severe hypertension (16 men and 16 women, aged 32--75 years) were treated with alpha-methyldopa (daily dose: 750 mg) + placebo for 2 weeks, then with alpha-methyldopa + pindolol (15--45 mg daily) for 12 weeks. These patients had been under alpha-methyldopa monotherapy before the trial with unsatisfactory results. The simultaneous administration of alpha-methyldopa and pindolol considerably decreased the systolic and diastolic blood pressure, both sitting and standing, and the heart rate. The combination of methyldopa and pindolol was significantly more effective than methyldopa alone.

Adult↗

Effect of alpha-methyldopa on dopamine synthesis and release in rat striatum in vitro.

The effect of alpha-methyldopa and alpha-methyldopamine (alpha-MDA) on the rate of hydroxylation of radioactive tyrosine was studied in striatal slices from rat brain. This was done by measuring the formation of 3-H-H2O as well as the accumulation of 3-H-dopamine (3-H-DA) from L-3, 5-3-H-tyrosine. alpha-Methyldopa, at tissue concentrations similar to those found in vivo after systemic administration, produced a decrease in both 3-H-H2O and 3-H-DA. The marked decrease (91thyldopa injection, also inhibited 3-H-H2O formation. The inhibitory effect of alpha-methyldopa on 3-H-H2O formation was not reduced by the addition of brocresine, which prevents the formation of alpha-MDA. The effects of alpha-methyldopa and alpha-MDA on the release of 3-H-DA that had been taken up into brain slices, was also studied. Although alpha-methyldopa, 1000 muM, did not increase the release of 3H-DA from tissue, alpha-MDA did. However, the latter was more potent in inhibiting 3-H-H2O formation from 3-H-tyrosine than in releasing 3-H-DA. These results, as well as the close similarity between the percent reduction of 3-H-H2O formation and tissue 3-H-DA levels, suggest that alpha-methyldopa decreases tissue levels of dopamine by inhibiting tyrosine hydroxylase activity in DA neurons.

Animals↗

Role of central and peripheral mechanisms in the action of alpha-methyldopa on blood pressure and renin secretion.

The mechanism by which alpha-methyldopa lowers arterial pressure and suppresses renin secretion was investigated in pentobarbital-anesthetized dogs in which changes in renal perfusion pressure were prevented by adjusting a suprarenal aortic clamp. After intravenous alpha-methyldopa (100 mg/kg) mean arterial pressure (MAP) decreased form 127+/-3 to a mean minimum of 107+/-4 mm Hg (P less than .01) and plasma renin activity (PRA) decreased from 20.6+/-4.8 to 10.9+/-1.7 ng/ml/3 hr (P less than .05). Blockade of peripheral dopa decarboxylase with intravenous carbidopa (20 mg/kg) significantly attenuated the hypotensive action of intravenous alpha-methyldopa but MAP still decreased from 145+/-6 to 130+/-5 mm Hg(P less than .001). Intravenous carbidopa completely abolished the fall in PRA produced by intravenous alpha-methyldopa (16.8+/-2.8 to 16.9+/-2.1 ng/ml/3 hr.) Intraventricular carbidopa (3 microng/kg/min) did not block the hypotensive (135+/-8 to 113+/-7 mm Hg, P less than .01) or renin-lowering effect (24.3+/-5 to 13.4+/-3.2 ng/ml/3 hr, P less than .01) of intravenous alpha-methyldopa (0.5 mg/kg decreased MAP from 118 +/- 5 to 104 +/- 5 mm Hg (P less than 0.001) but had no effect on PRA (23.4+/-6 TO 19.4+/-7 NG/ML/3 hr.) Intraventricular alpha-methylnorepinephrine (2 microng/kg) also decreased MAP from 127+/-5 to 112+/-3mm Hg (P less than .006) but again failed to significantly alter PRA (36.1+/-11.8 to 37.2+/-15 ng/ml/3 hr). These results indicate that there is both a central and peripheral component to the antihypertensive effect of alpha-methyldopa in the dog and that the suppression of renin secretion results from a peripheral action of the drug.

Animals↗

Central hypotensive action of alpha-methyldopa: an iontophoretic study in the cat.

The central site and mechanism of alpha-methyldopa-induced hypotension were examined with the microiontophoretic technique which permits the topical application of drugs to single neurons of the bulbar vasomotor center in decerebrate cats. Cardiovascular neurons were identified by their response to an increase in arterial blood pressure following a small intravenous pressor dose of norepinephrine. Microiontophoretic application of alpha-methyldopa was found to have an inhibitory effect on the spontaneous firing rate of cardiovascular neurons. Furthermore, alpha-methyldopa was found to completely block the excitatory response of cardiovascular neurons to iontophoretically applied norepinephrine. Non-cardiovascular neurons, recorded from the same brain area, were unaffected by iontophoretic application of alpha-methyldopa at the same or greater doses that produced responses in cardiovascular neurons. While peripheral factors cannot be entirely ruled out, the present findings are contrary to the postulate that alpha-methyldopa lowers arterial blood pressure by stimulating central alpha-adrenoceptors, causing a reduction of sympathetic outflow to the periphery. Rather, the data indicate that alpha-methyldopa or its metabolites act directly on central alpha-adrenoceptors in a manner which results in reduced activity.

Action Potentials↗

[A comparative evaluation of metoprolol and methyldopa in hypertension therapy (author's transl)].

The antihypertensive effect and the tolerability of the cardioselective beta-blocking drug metoprolol, in comparison to methyldopa, were assessed in 119 hypertensive patients (73 WHO stage 1 and 46 WHO stage 2). After 2 weeks of placebo wash-out, the patients were randomly allocated to treatment with either of the two drugs: metoprolol up to 200 mg bid, and methyldopa up to 500 mg bid, for 6 weeks. Periodical clinical, biochemical, haematological, radiological and electrocardiographical measurements were performed. In respect to pre-treatment values, heart rate, both in lying and standing position, was significantly reduced (P less than 0.01) only in the metoprolol group, while systolic and diastolic blood pressures were significantly reduced (P less than 0.01) with both drugs in both positions. Asymptotic regression analysis showed that velocity of blood pressure reduction was comparable with both drugs. In the lying position, the diastolic blood pressure reduction obtained with metoprolol was significantly greater (P less than 0.05) in respect to that obtained with methyldopa. In general, side effects were few and of mild severity: mainly bradycardia in the metoprolol group and dizziness and fatigue in the methyldopa group. After the formal end of the double-blind trial, 36 patients, 14 in the metoprolol group and 22 in the methyldopa group, were treated in open conditions with metoprolol alone; after an average period of 6.5 weeks, diastolic blood pressure was significantly reduced (P less than 0.05) only in the group previously treated with methyldopa. In conclusion, metoprolol is a well tolerated and effective antihypertensive agent, which may be safely used in patients with mild to moderate hypertension.

Adult↗

Comparison of antihypertensive activity of atenolol and methyldopa at rest and during exercise.

In a double-blind, cross-over trial, 37 hypertensive patients were treated in random order, after a 4-week run-in period, with 100 mg atenolol in a single daily dose, or 250 mg methyldopa three times daily (or 500 mg three times daily in case of poor response). Both therapeutic regimens significantly reduced blood pressure (13/13 mmHg for atenolol and 17/10 mmHg for methyldopa) in an erect position. The higher dose of methyldopa gave a further significant reduction only for the systolic standing blood pressure. No statistical difference was found between the antihypertensive activity of the two drugs, but atenolol reduced heart rate more than did methyldopa. Side effects occurred more frequently during methyldopa administration and most often during the first days of treatment. During exercise (treadmill test) the two drugs induced the same antihypertensive response, but atenolol provoked a greater reduction of exercise tachycardia. Whereas total oxygen consumption was not affected by the two drugs, atenolol induced a much greater reduction of the myocardial oxygen consumption evaluated by the product of the systolic blood pressure X heart rate. These findings show that atenolol at the 100-mg daily dose is as effective as the full dosage of methyldopa and in addition shows better tolerance, a simpler therapeutic scheme, and less incidence of side effects.

Adult↗

Comparative antihypertensive effects of guanabenz and methyldopa.

The effects of guanabenz acetate, a centrally acting alpha-adrenergic, non-sodium-retaining antihypertensive agent, were compared with those of methyldopa in 248 hypertensive outpatients during a one-year, double-blind, multi-center study. Mean supine diastolic blood pressure (SDBP) decreased from 102 to 91 mmHg (P less than 0.01) among 78 guanabenz-treated patients and from 101 to 92 mmHg (P less than 0.01) among 89 methyldopa-treated patients who completed six months of treatment. Clinically significant individual SDBP decreases occurred in 76% of the guanabenz-treated patients and in 63% of the methyldopa-treated patients (P less thn 0.05). Blood pressure remained unchanged during the second six months, with response of 82% and 60%, respectively, for guanabenz and methyldopa (P less than 0.05). Although drowsiness and dry mouth occurred more frequently with guanabenz, evidence of fluid retention, such as weight gain, edema, and congestive heart failure, was significantly more frequent with methyldopa than with guanabenz. Because it does not induce volume expansion, guanabenz, unlike methyldopa, may be useful as sole initial antihypertensive therapy.

Blood Pressure↗

INFLUENCE OF METHYLDOPA ON CENTRAL EFFECTS OF RESERPINE.

Methyldopa potentiated hypnosis due to hexobarbitone in mice, as did reserpine, chlorpromazine and 5-hydroxytryptamine. Methyldopa antagonized the increase by reserpine of sleep due to hexobarbitone, but enhanced the potentiation by chlorpromazine and 5-hydroxytryptamine of hypnosis due to hexobarbitone. The sedative effect of reserpine in mice and the emetic effect in pigeons were also antagonized by methyldopa. However, the effects of reserpine on convulsions due to leptazol and in causing ptosis were not antagonized by methyldopa. It is suggested that some effects of reserpine (potentiation of hexobarbitone-sleeping time, sedation and emesis) are unrelated to changes in brain amine levels and that methyldopa, with its weak reserpine-like actions, is an antagonist to reserpine.

Anesthesia↗

Pharmacokinetics and presystemic gut metabolism of methyldopa in healthy human subjects.

This study examined the pharmacokinetics and metabolism of methyldopa after giving single 250-mg oral and intravenous doses to 16 healthy human volunteers. A 48-hour washout period was allowed between oral and intravenous treatments. Blood and urine samples were collected; methyldopa was assayed in blood and urine, and its metabolites (methyldopa sulfate, alpha-methyldopamine, and alpha-methyldopamine sulfate) were assayed in urine. Pharmacokinetic parameters were recorded as follows: half-life was 2.0 +/- 0.7 hours; total body and renal clearance were 268 +/- 72 and 107 +/- 35 mL/min, respectively; and volume of distribution at steady-state was 33 +/- 11 L. The absolute bioavailability of the drug was 42 +/- 16%. The measurable metabolites in urine after oral and intravenous administration accounted for 27% and 17% of the dose, respectively. Methyldopa sulfate was the most abundant metabolite recorded; its quantity was higher after oral than after intravenous administration, 20.1 +/- 5.7% versus 6.7 +/- 5.3% of the dose (P < .05), suggesting significant presystemic gut metabolism. First-pass gut metabolism for methyldopa was estimated to be 17.6 +/- 6.9% of the dose given.

Administration, Oral↗