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Effects of varying doses of spironolactone without and with nitrates on portal vein pressure and kidney function in partial portal vein ligated rats.

The optimal dose of spironolactone to reduce portal vein pressure, alone or in combination with isosorbide-5-mononitrate (IsMn), has not been identified. We studied the effects of 8 days oral treatment with spironolactone, IsMn or both on portal pressure, plasma volume and renal sodium handling in rats with partial portal vein ligation. At daily doses of 0.33; 0.50; 1, and 1.50 mg/kg, spironolactone reduced portal pressure (all P < .05) as compared with placebo. Only the highest dose significantly lowered plasma volume (10.1 +/- 0.7 vs. 13.0 +/- 0.3 mL; P < .03) and enhanced urinary fractional sodium excretion (0.73 +/- 0.04 vs. 0.58 +/- 0.03%; P < .03) and the (Na+)/(K+) ratio in urine (0.43 +/- 0.04 vs. 0.30 +/- 0.03; P < .02). IsMn at doses of 0.25; 0.50, and 1 mg/kg decreased portal pressure (all P < .05) without a change in plasma volume but with a tendency (not significant) to lower fractional sodium excretion. IsMn impaired free water clearance at doses of 0.5 and 1 mg/kg (P < .05). Combinations of spironolactone 1 mg/kg with IsMn 0.5 or 1 mg/kg have no additive effect on portal pressure compared with spironolactone or IsMn alone. The higher the dose of IsMn in the combination, the more the natriuretic effect of spironolactone is opposed. Low doses of spironolactone are as effective as a higher dose to reduce portal pressure. This reduced portal pressure was independent of changes in plasma volume and diuretic effect, which suggests that spironolactone might have a direct vasoactive effect on the splanchnic circulation. To counteract sodium retention of nitrovasodilators, combination with high doses of spironolactone seems advantageous.

Animals↗

Spironolactone metabolism: steady-state serum levels of the sulfur-containing metabolites.

Metabolism of spironolactone in man is extensive and complex. For many years the dethioacetylated metabolite, canrenone, was assumed to be the major metabolite. However, recent studies using specific high performance liquid chromatography (HPLC) have demonstrated the presence of spironolactone and the sulfur-containing metabolites 7 alpha-thiomethylspirolactone (IV) and 6 beta-hydroxy-7 alpha-thiomethylspirolactone (V), in addition to canrenone, in the serum after a single oral dose of spironolactone. The importance of spironolactone and metabolites IV and V relative to canrenone at steady state remains unknown and was the subject of the present investigation. Twelve healthy males received 100 mg spironolactone, once daily, for 15 days. Repeated blood samples were taken on days 1, 8 and 15 for estimation of spironolactone and its metabolites. Peak serum levels [mean (SD)] of spironolactone, canrenone, and sulfur-containing metabolites IV and V were 72 (45), 155 (43), 359 (106) and 101 (26) ng/ml, respectively on day 1 and 80 (20), 181 (39), 391 (118) and 125 (24) ng/ml, respectively on day 15. The AUC (0-24) values of these compounds on day 15 were 231 (50), 2173 (312), 2804 (777) and 1727 (367) ng.hr/ml, respectively and the post-steady state elimination half-life (t1/2) values were 1.4 (0.5), 16.5 (6.3), 13.8 (6.4), and 15.0 (4.0) hours, respectively. It was concluded that unmetabolized spironolactone is present in the serum and that the sulfur-containing metabolite IV rather than canrenone is the major metabolite in serum following single or repeated doses of spironolactone.

Adolescent↗

Improved bioavailability from a spironolactone beta-cyclodextrin complex.

The relative bioavailabilty of spironolactone from a complex with beta-cyclodextrin has been evaluated. Capsules containing 100 mg micronised spironolactone powder were compared with 100 mg spironolactone beta-cyclodextrin complex in 8 healthy volunteers by a single dose, double blind, crossover pharmacokinetic study. Subjects were randomly allocated to each preparation and crossed over after 2 weeks. Relative bioavailability was assessed by the measurement of serum canrenone concentrations. The mean relative bioavailability of the spironolactone cyclodextrin complex, compared to the micronised spironolactone powder, was 233%. Statistical analysis (Wilcoxon signed rank test) revealed that this difference was significant with a mean area under the serum concentration time curve of 3.90 and 1.88 mg.h.l-1 for the complex and micronised spironolactone powder, respectively. Four of the volunteer also received a 100 mg spironolactone tablet (Aldactone) under identical conditions. Pharmacokinetic analysis revealed that the mean relative bioavailability of the spironolactone beta cyclodextrin complex and micronised powder when compared with spironolactone tablets (Aldactone) was 252% and 124%, respectively. There was no change in the canrenone elimination half lives of each subject.

Adult↗

Effect of spironolactone and potassium canrenoate on cytosolic and nuclear androgen and estrogen receptors of rat liver.

Spironolactone and potassium canrenoate are diuretics that are used widely for management of cirrhotic ascites. The administration of spironolactone frequently leads to feminization, which has been noted less frequently with the use of potassium canrenoate, a salt of the active metabolite of spironolactone. The use of these two drugs has been associated with decreases in serum testosterone levels and spironolactone with a reduction in androgen receptor (AR) activity. This decrease in AR has been cited as the cause of the antiandrogen effect of these drugs. We therefore assessed the effect of both drugs on levels of androgen and estrogen receptors (ER) in the liver, a tissue that is responsive to sex steroids. Three groups of male rats (n = 12 rats each) were studied. Group 1 (control) received vehicle only; group 2 received spironolactone (5 mg/day); group 3 received potassium canrenoate (5 mg/day). After 21 days of treatment, the animals of all groups were killed and liver tissue was assayed for nuclear and cytosolic AR and ER, and for male specific estrogen binder (MEB), an androgen-responsive protein. Both drugs drastically decreased the nuclear AR content, as compared with the control group, but only spironolactone decreased cytosolic AR. When the total hepatic content of AR is considered, a highly significant decrease is observed only in rats treated with spironolactone. This reduction in hepatic AR content suggested loss of androgen responsiveness of liver. We confirmed this by assessing levels of MEB, and found that livers from group 2 animals had no detectable MEB activity, whereas livers from both group 1 and 3 had normal MEB activity. No changes were observed in nuclear ER and cytosolic ER of group 3 as compared with group 1. Nuclear estrogen receptor decreased and cytosolic ER increased in group 2, but with no change in total ER content. These results indicate that (a) only spironolactone appears to act as an antiandrogen in liver, resulting in a decrease in both AR and male specific estrogen binder content, and (b) neither drug results in elevated hepatic ER content, although spironolactone-treated animals show an altered subcellular localization.

Animals↗

Influence of spironolactone on urinary prostaglandin E2 and kinin excretion in rats.

Spironolactone was administered to spontaneously hypertensive rats (SHRs) in order to examine the urinary excretions of prostaglandin E2 (PGE2) and kinin. Thirteen SHRs were divided into 2 groups: 0.1 ml of sesame oil was administered to one group (the spironolactone-lactone-untreated group, n = 6) and 20 mg of spironolactone in 0.1 ml of sesame oil was administered to the other group (the spironolactone-treated group, n = 7) by the subcutaneous route for 10 days in succession. Determinations were then made of the body weight, blood pressure, urine volume, and excretion levels of Na, K, kinin and PGE2 in the 24-hour urine. After the animals had been killed by decapitation, blood samples were drawn for determination of the plasma renin activity (PRA). The results obtained indicated decreased blood pressure and increased urinary Na excretion in the spironolactone-treated group. On the other hand, the PGE2 excretion level in the 24-hour urine decreased markedly immediately after administration of spironolactone (p less than 0.05) and was maintained at lower levels up to the end of the experiment. However, the 24-hour urinary kinin levels showed similar changes in both the spironolactone-treated group and the untreated group with no significant difference between them. These findings suggest that spironolactone has a suppressive effect on urinary PGE2 excretion, the activity of which is not mediated by kinin production in the kidneys but is the result of a direct action of spironolactone itself.

Animals↗

The role of spironolactone in the treatment of patients with refractory hypertension.

BACKGROUND: Hypertension is resistant to pharmacologic therapy in 5% to 10% of patients. The current study tested whether addition of spironolactone to the treatment of patients with refractory hypertension would lead to adequate blood pressure (BP) control. METHODS: Among 520 patients who were referred for treatment of hypertension to one medical clinic from 1997 to 1999, a total of 25 patients who met the inclusion criteria of refractory hypertension were prospectively included in this study. The inclusion criteria were as follows: 1) hypertension of > or = 6 months without any apparent cause; 2) clinical BP measurement and mean 24-h ambulatory BP monitoring > 140/90 mm Hg despite treatment with at least two antihypertensive drugs; 3) no prior therapy with spironolactone; and 4) no renal insufficiency. Spironolactone was added to the previous regimen at a dosage of 1 mg/kg/day while any angiotensin converting enzyme inhibitor was suppressed. Serum potassium and creatinine levels were checked before the introduction of spironolactone and 1 month later. RESULTS: After 1 month of therapy with spironolactone, 23 patients had a clinical BP < 140/90 mm Hg. Ambulatory BP monitoring when compared before and 1 month after initiation of spironolactone decreased significantly (systolic BP from 152 +/- 2 mm Hg to 128 +/- 2 mm Hg, P < .001; and diastolic BP from 86 +/- 2 mm Hg to 76 +/- 2 mm Hg, P < .013). By 3 months after the introduction of spironolactone, the mean number of antihypertensive drugs required per patient was significantly reduced (from 3.2 +/- 0.2 to 2.1 +/- 0.2, P < .001). No patient required discontinuation of spironolactone due to adverse renal effects. CONCLUSION: Spironolactone is a safe, effective therapy for patients with refractory hypertension.

Adult↗

Spironolactone ameliorates renal injury and connective tissue growth factor expression in type II diabetic rats.

Administration of spironolactone provides a beneficial effect in various animal models of renal injury. In this study, we investigated whether spironolactone prevents the progression of diabetic nephropathy through reduction of connective tissue growth factor (CTGF) synthesis in type II diabetic rats. In addition, we evaluated the effect of aldosterone and spironolactone on CTGF and collagen production in cultured cells. Renal functional and morphologic changes were examined in Otsuka Long-Evans Tokushima Fatty rats with or without spironolactone treatment (20 mg/kg/day) for 8 months, as well as in non-diabetic age-matched Long-Evans Tokushima Otsuka rats. Spironolactone treatment did not induce any significant differences in body weight, kidney/body weight ratio, serum creatinine concentration, blood glucose levels, or systolic blood pressure. However, urinary protein and albumin excretion were significantly decreased in the spironolactone treatment group, which was associated with amelioration of glomerulosclerosis. In addition, renal CTGF, collagen synthesis demonstrated marked decreases in the spironolactone treatment group. In cultured MC and PTC, aldosterone induced significant increases in CTGF gene expression and protein synthesis associated with increased collagen synthesis, which was abolished by prior treatment with spironolactone. However, aldosterone treatment did not induce transforming growth factor (TGF)-beta1 overproduction, and inhibition of TGF-beta1 by neutralization of TGF-beta1 protein did not significantly prevent aldosterone-induced CTGF production. These results suggest that the antifibrotic effects of spironolactone may be mediated by CTGF through a TGF-beta1-independent pathway in this animal model of diabetic nephropathy.

11-beta-Hydroxysteroid Dehydrogenases↗

Long-term effects of spironolactone on proteinuria and kidney function in patients with chronic kidney disease.

Experimental evidence suggests that aldosterone contributes to progressive kidney disease. Angiotensin-converting enzyme inhibitors and angiotensin type 1 receptor antagonists suppress the renin-angiotensin system but they do not effectively reduce plasma aldosterone. Hence, administration of aldosterone receptor antagonists may provide additional renal protection. In the present prospective randomized open-label study, we evaluated the effects of spironolactone (25 mg/day for 1 year) on proteinuria and estimated glomerular filtration rate in 83 patients with chronic kidney disease already treated with angiotensin-converting enzyme inhibitors and/or angiotensin type 1 receptor antagonists. Eighty-two patients were treated with angiotensin-converting enzyme inhibitors and/or angiotensin type 1 receptor antagonists alone and served as controls. After 1 year of therapy, proteinuria decreased from 2.1+/-0.08 to 0.89+/-0.06 g/g creatinine (P<0.001) in patients treated with spironolactone, but it did not change in control patients. Baseline aldosterone levels were significantly correlated with proteinuria (r=0.76, P<0.0001), and predicted the degree of reduction in proteinuria with spironolactone (r=0.42, P<0.0002). Baseline estimated glomerular filtration rate was similar in patients treated with spironolactone and controls (62.4+/-2.4 and 62.2+/-2.1 ml/min/1.73 m(2), respectively). After 1 month of therapy with spironolactone, estimated glomerular filtration rate decreased more in patients treated with spironolactone than in controls. However, by the end of 1 year the monthly rate of decrease in estimated glomerular filtration rate from baseline was lower in patients treated with spironolactone than in controls (0.323+/-0.044 vs 0.474+/-0.037 ml/min/1.73 m(2), P<0.01). Spironolactone caused a significant rise in serum potassium levels (from 4.2+/-0.04 at baseline to 5.0+/-0.05 mEq/l after 12 months of treatment, P<0.001). In conclusion, this study has shown that spironolactone may reduce proteinuria and retard renal progression in chronic kidney disease patients.

Angiotensin II Type 1 Receptor Blockers↗

Combined effects of enalapril and spironolactone in hamsters with dilated cardiomyopathy.

Chronic angiotensin I-converting enzyme inhibition can be associated with aldosterone escape. We investigated the effects of enalapril, spironolactone, and their combination on hemodynamics and cardiac remodeling in cardiomyopathic hamsters to determine whether these drugs could exert additive effects. Cardiomyopathic hamsters, Bio TO-2 dilated strain, were orally treated with enalapril (20 mg. kg. day ) and/or spironolactone (20 mg. kg. day ) according to a 2 x 2 factorial design from 120 days of age. Animals were investigated at 180 (10 animals per group) and 240 (16 animals per group) days of age. Compared with corresponding untreated groups, enalapril significantly decreased mean blood pressure (-18%); enalapril and spironolactone significantly increased cardiac output (+28%, +11%) and femoral blood flow (+10%, +12%) and significantly decreased systemic (-38%, -17%) and femoral (-26%, -13%) vascular resistances. Enalapril and spironolactone significantly decreased left ventricle cavity area (-21%, -26%) and left (-34%, -47%) and right (-37%, -48%) ventricle collagen density. Spironolactone significantly increased left ventricle wall thickness (+4%). There were significant enalapril x spironolactone interactions for most variables (compared with control group, +52%, +36%, +45% for cardiac output; +26%, +28%, +26% for femoral blood flow; -50%, -30%, -45% for systemic vascular resistance; -33%, -20%, -35% for femoral vascular resistance; -27%, -31%, -40% for left ventricle cavity area; and -46%, -58%, -60% for left and -39%, -50%, -66% for right ventricle collagen density in enalapril, spironolactone, and enalapril + spironolactone groups, respectively). In cardiomyopathic hamsters, enalapril and spironolactone in combination did not improve hemodynamics more than enalapril alone but induced stronger effects than each drug alone on cardiac remodeling.

Angiotensin-Converting Enzyme Inhibitors↗

Spironolactone blocks glucocorticoid-mediated hearing preservation in autoimmune mice.

HYPOTHESIS: Although autoimmune sensorineural hearing loss can be effectively treated with corticosteroids, little is known about how these drugs affect cochlear function. MRL/MpJ-Faslpr autoimmune mice treated with a mineralocorticoid (aldosterone) have previously been shown to have hearing improvement equal to those treated with a glucocorticoid (prednisolone). This suggested that the restoration of hearing with steroids was the result of an effect on sodium transport rather than an antiinflammatory or immunosuppressive role. We hypothesized that corticosteroids reverse autoimmune hearing loss through the mineralocorticoid receptor and that blocking the mineralocorticoid receptor will prevent glucocorticoid effects. METHODS: Spironolactone, a mineralocorticoid receptor antagonist, was administered to MRL/MpJ-Faslpr autoimmune mice alone or in combination with corticosteroids. The four treatment groups were: spironolactone, spironolactone + aldosterone, spironolactone + prednisolone, and untreated water controls. Auditory brainstem response (ABR) thresholds were recorded before and during treatment (2, 3, and 4 mo) to measure the effect of steroids on hearing decline. RESULTS: Hearing in spironolactone and spironolactone + prednisolone mice showed progressive decline in hearing similar to water controls. The hearing was preserved in spironolactone + aldosterone mice, presumably as a result of the fact that aldosterone has a higher affinity for the mineralocorticoid receptor than spironolactone. Thus, aldosterone was able to maintain cochlear function with autoimmune disease progression, similar to previous reports of aldosterone treatment effects. CONCLUSIONS: Spironolactone effectively blocked prednisolone from improving hearing in MRL/MpJ-Faslpr autoimmune mice. This offers evidence that the inner ear mineralocorticoid receptor is the therapeutic target for corticosteroids used to treat autoimmune and sudden sensorineural hearing loss. Pharmacologic treatments that selectively target the mineralocorticoid receptor may provide greater clinical benefit with fewer systemic side effects than prednisone in patients with autoimmune sensorineural hearing loss.

Aldosterone↗

Combined effects of low-dose spironolactone and captopril therapy in a rat model of genetic hypertrophic cardiomyopathy.

For several years, the severe side effects associated with the use of high doses of the aldosterone antagonist, spironolactone, limited its clinical use. Studies have recently shown efficacy and minimal side effects of low-dose spironolactone combined with standard therapy in the treatment of heart failure and hypertensive patients. The authors evaluated the effects of low-dose spironolactone alone or in combination with angiotensin-converting enzyme (ACE) inhibitors on the progression of left ventricular dysfunction and remodeling in a congenic rat model of hypertrophic cardiomyopathy. The congenic SS-16/Mcwi rats developed severe cardiac hypertrophy despite being normotensive even on high-salt diet. SS-16/Mcwi and SS/Mcwi rats were fed a low-salt (0.4% NaCl) diet and were treated with vehicle (CON), spironolactone (20 mg/kg/d subcutaneously), captopril (100 mg/kg/d drinking water), or both spironolactone and captopril for 4 weeks. Blood pressure, plasma peptides, cardiac fibrosis, and echocardiography measurements were evaluated. Spironolactone at a low dose had no effect on blood pressure, cardiac hypertrophy, and fibrosis in either strain. However, in combination with captopril, spironolactone decreased the cardiac hypertrophy more than captopril treatment alone. In the SS-16/Mcwi rats, the combined therapy significantly preserved the cardiac index when compared with control. These data indicate that the addition of low-dose spironolactone to captopril treatment was more effective in preventing the progression of heart hypertrophy and ventricular dysfunction in the SS-16/Mcwi than captopril alone. This study suggests that combined spironolactone and captopril therapy may be useful in the treatment of hypertrophic cardiomyopathy.

Administration, Oral↗

Antiangiogenic effects of spironolactone and other potassium-sparing diuretics in human umbilical vein endothelial cells and in fibrin gel chambers implanted in rats.

OBJECTIVE: Potassium-sparing diuretics have different effects on angiogenesis that may mediate some abilities to treat cardiovascular diseases. The aim of the current study was to compare the effects of spironolactone and an active metabolite, canrenone, or a derivative, eplerenone, and amiloride, a diuretic without affecting mineralocorticoid activity, on the proliferation of human umbilical vein endothelial cells (HUVEC) and on angiogenesis in fibrin gel chambers implanted in rats. MATERIALS AND METHODS: We measured the effects of spironolactone, canrenone, eplerenone, and amiloride on the proliferation of HUVEC in the presence or absence of vascular endothelial growth factor (VEGF) and basic fibroblast growth factor (bFGF). We also examined the effects of these compounds on migration and capillary tube formation by HUVEC. Finally, the effects of the compounds on neovessel formation in vivo were investigated by implanting Wistar rats for 14 days with perforated Plexiglas chambers containing rat fibrin. RESULTS: Spironolactone and amiloride inhibited the proliferation of HUVEC, but canrenone and eplerenone had no effect. The inhibitory effect of spironolactone was not prevented by VEGF or bFGF. Aldosterone had no effect on spironolactone-induced inhibition of HUVEC proliferation. Spironolactone induced a dose-dependent reduction of both cell chemotaxis and capillary tube formation. In fibrin gel chambers, spironolactone and amiloride significantly reduced the numbers of both peripheral and central neovessels. Canrenone and eplerenone, in contrast, had no antiangiogenic effect. CONCLUSION: Spironolactone and amiloride significantly inhibited angiogenesis in vitro and in the fibrin gel chamber in vivo. Spironolactone antiangiogenic effects are unrelated to antimineralocorticoid activity.

Amiloride↗

Spironolactone use in patients with heart failure.

BACKGROUND: The addition of spironolactone, an aldosterone antagonist, to standard therapy can reduce the risk of both morbidity and mortality in patients with severe heart failure. OBJECTIVE: To evaluate the use of spironolactone in class III and IV heart failure patients in four urban teaching hospitals. METHODS: We conducted a concurrent medical record review of 163 patients with documented heart failure admitted to a general medicine service over a 5-week period. Data retrieved included patient demographics, heart failure class, left ventricular ejection fraction, spironolactone contraindications, spironolactone use, dose and frequency, and other heart failure medication use, dose and frequency. All data reflected patients' baseline status. RESULTS: Our patient population was 80% white people, 61% male, with a mean age of 70 years (35-99). A total of 114 had class III or IV heart failure (70%). Angiotensin-converting enzyme inhibitors or appropriate alternative were prescribed in 117 (72%) patients, whereas beta-blockers were used in 121 (74%) patients. Fifty-seven patients met spironolactone ideal candidate criteria. Of these, eight (14%) were appropriately prescribed spironolactone. CONCLUSIONS: Three years after publication of the Randomized Aldactone Evaluation Study, spironolactone is underutilized in the treatment of heart failure. Results of this study indicated that the majority of patients in class III or IV heart failure were not prescribed spironolactone. Improvements in spironolactone prescribing are needed.

Adult↗

Effect of spironolactone on K(+) homeostasis and ENaC expression in lymphocytes from chronic hemodialysis patients.

BACKGROUND: Cardiac disease is the major cause of death in hemodialysis patients (HD). It is now clear that aldosterone has deleterious effects in the cardiovascular system. In the present study, we evaluated the effects of an aldosterone-antagonist, spironolactone, on the extrarenal regulation of potassium in HD patients. Furthermore, to validate the effectiveness of the spironolactone dose-design, we measured the expression of Na(+)-channel (ENaC alpha subunit) in peripheral blood mononuclear cells (PBMC), before and after a two-week course of spironolactone. METHODS: The study design included a two-week baseline period, followed by spironolactone treatment (50 mg three times weekly for 15 days), and by a two-week washout period and then a two-week placebo period. An oral K(+) load (0.3 mEq/K(+) kg body weight plus carbohydrates) was administered at the end of each period, and time-course of plasma potassium was evaluated. ENaC expression in PBMC was assessed before and after spironolactone. RESULTS: The maximal increase in plasma potassium after the K(+) carbohydrate load was: control 5.33 +/- 0.88 mEq K(+)/L; spironolactone 5.23 +/- 0.68 mEq K(+)/L; placebo 5.38 +/- 0.61 mEq K(+)/L (N= 9). No patients developed hyperkalemia during the spironolactone treatment period. ENaC expression was significantly higher in all six HD patients studied, compared to control subjects (P < 0.05). Treatment with spironolactone in HD patients reduced alpha subunit mRNA expression to values similar to those of normal subjects. CONCLUSION: Spironolactone may be considered for the treatment of selected chronic HD patients. The effect of the drug on a known target of aldosterone, the ENaC, demonstrates the effectiveness of the drug to block aldosterone effects in nonepithelial tissues.

Adolescent↗

Effects of spironolactone on endothelial function, vascular angiotensin converting enzyme activity, and other prognostic markers in patients with mild heart failure already taking optimal treatment.

OBJECTIVES: To examine whether the favourable effects on endothelial function, vascular angiotensin converting enzyme (ACE) activity, cardiac remodelling, autonomic function, and QT intervals of spironolactone in combination with ACE inhibitor also occur in patients with New York Heart Association class I-II congestive heart failure (CHF) taking optimal treatment (including beta blockers). METHODS: Double blind, crossover study comparing 12.5-50 mg/24 hours spironolactone (three months) with placebo in 43 patients with class I-II CHF taking ACE inhibitors and beta blockers. RESULTS: Acetylcholine induced vasodilatation improved with spironolactone (p = 0.044). Vascular ACE activity fell (p = 0.006). QTc and QTd fell (mean (SD) QTc 473 (43.1) ms with placebo, 455 (35.4) ms with spironolactone, p = 0.002; QTd 84.5 (41.3) ms with placebo, 72.1 (32.3) ms with spironolactone, p = 0.037). beta-Type natriuretic peptide (BNP) and procollagen III N-terminal peptide (PIIINP) concentrations were also reduced by spironolactone (mean (SD) BNP 48.5 (29.6) pg/ml with placebo, 36.8 (28.5) pg/ml with spironolactone, p = 0.039; PIIINP 3.767 (1.157) microg/ml with placebo, 3.156 (1.123) microg/ml with spironolactone, p = 0.000). CONCLUSIONS: Spironolactone improves vascular function (endothelial function, vascular ACE activity) and other markers of prognosis (BNP, collagen markers, and QT interval length) in asymptomatic or mild CHF when added to optimal treatment including beta blockade. This gives support to the hypothesis that the prognostic benefit seen in RALES (randomised aldactone evaluation study) and EPHESUS (eplerenone postacute myocardial infarction heart failure efficacy and survival study) may also occur in patients with milder CHF already taking standard optimal treatment.

Adrenergic beta-Antagonists↗

Plasma corticosteroid concentrations during spironolactone administration: evidence for adrenal biosynthetic blockade in man.

Spironolactone, a mineralocorticoid antagonist, may also inhibit aldosterone biosynthesis. In vitro studies suggest that spironolactone and its major metabolites inhibit adrenal 18- and 11 beta-hydroxylase activity. We examined various adrenal corticosteroids and their precursors, plasma renin activity, aldosterone excretion rate, and serum and urine electrolytes in normal subjects before and on days 5 and 10 of spironolactone administration (400 mg/day). Plasma corticosteroids were also examined 60 min after ACTH (Cortrosyn) 0.25-mg iv bolus. RIAs were performed after extensive chromatography; there was no interference of spironolactone and its metabolites in the assays. All studies were performed in supine subjects in metabolic balance on a constant 120-meq sodium intake. Plasma renin activity was increased (P less than 0.001) on both days 5 and 10 of spironolactone. Plasma aldosterone (PA) and the aldosterone excretion rate increased (P less than 0.01) on day 5 of spironolactone but decreased (P less than 0.01) from day 5 to 10. Both 11-deoxycorticosterone and 18-hydroxycorticosterone were increased from day 5 to 10. Corticosterone, progesterone, and dehydroepiandrosterone did not increase significantly during spironolactone administration. Incremental PA response to ACTH was less than control on day 10 of spironolactone, but other corticosteroid responses to ACTH were not different during control and days 5 or 10 of treatment. Reduction in PA and further elevation in its precursors during the second 5-day period of spironolactone therapy suggests inhibition of aldosterone biosynthesis during this phase of treatment in normal man. The disproportionate increments in 18-hydroxycorticosterone and 11-deoxycorticosterone suggest biosynthetic inhibition at the 18-dehydrogenase and 11 beta-hydroxylase sites.

18-Hydroxycorticosterone↗

[Influence of spironolactone on urinary prostaglandin E2 and kinin excretions in spontaneously hypertensive rats].

Spironolactone was administered to spontaneously hypertensive rats (SHRs) in order to examine the urinary excretions of prostaglandin E2 (PGE2) and kinin. Thirteen SHRs were divided into 2 groups, and 0.1 ml of sesame oil was administered to one of 2 groups (spironolactone-untreated group) (n = 6) and 20 mg of spironolactone in 0.1 ml of sesame oil was administered to the other group (spironolactone-treated group) (n = 7) by the subcutaneous route for 10 days in succession, followed by the determination of body weight, blood pressure, urine volume, excretion levels of Na, K, kinin and PGE2 in 24-hour urine. Blood samples were drawn after these animals were killed by decapitation for determining plasma renin activity (PRA). In consequence, decreased blood pressure and increased urinary Na excretion were observed in the spironolactone-treated group. On the other hand, PGE2 excretion level in 24-hour urine markedly decreased immediately after administration of spironolactone (p less than 0.05) and was maintained at lower levels up to the end of experiment. However, 24-hour urinary kinin levels showed similar changes in the spironolactone-treated group and the untreated group with no significant difference between the two groups. These results indicate that spironolactone has a suppressive effect on urinary PGE2 excretion, the activity of which is not mediated by kinin production in the kidneys but produced by a direct action of spironolactone itself.

Animals↗

Interest of the association clonidine-spironolactone in cirrhotic patients with ascites and activation of sympathetic nervous system.

BACKGROUND: The aim of this study was to examine the effects of spironolactone, clonidine and the association of clonidine-spironolactone on renin-aldosterone and sympathetic systems, renal function, systemic hemodynamics and mobilization of ascites in 32 alcoholic cirrhotic patients with marked increase in sympathetic system. METHODS: Measurements were taken before and after an 8-day treatment with spironolactone (200 mg/day), after an 8-day treatment with clonidine (0.150 mg/day) and 10 days after adjunction of spironolactone (200 mg/day) to clonidine. RESULTS: Three patients abandoned the treatment or were excluded because lack of compliance. Spironolactone alone induced an increase in renin-aldosterone and sympathetic systems without any remarkable increase of natriuresis and body weight loss. Given for 8 days, clonidine alone induced a significant decrease in plasma norepinephrine associated with a significant increase in glomerular filtration rate without effect on natriuresis. In contrast, 10 days after adjunction of spironolactone to clonidine, plasma renin and aldosterone significantly decreased, natriuresis increased (from 7.4 +/- 0.7 to 41.6 +/- 3.2 mEq/24 h) and body weight decreased (from 66.03 +/- 2.3 to 63.5 +/- 2.3 kg) without adverse effects. CONCLUSION: In cirrhotic patients with ascites and marked activation of sympathetic nervous system, spironolactone (200 mg/day) is unable to mobilize ascites. In these patients, after 8 days, clonidine decreases sympathetic activity, increases glomerular filtration rate and after 18 days, decreases plasma renin and aldosterone concentrations allowing a better action of spironolactone. The association clonidine-spironolactone enhances natriuresis and body weight loss.

Adrenergic alpha-Agonists↗