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F Witassek

Publications and source records attributed to F Witassek.

8 recordsLinked to original sources

[Effect of a chronic alpha adrenergic receptor blockade on basal secretion of renin in essential hypertension].

To investigate the effect of chronic alpha-adrenergic receptor blockade on renin release, plasma renin activity (PRA) was determined overnight at short intervals in 9 patients with essential hypertension before and after 7 days medication with phenoxybenzamine (20 mg orally/day). Inhibition of basal (supine) renin secretion in response to alpha-adrenergic receptor blockade was more apparent in patients with elevated PRA (n = 3) than in those with normal PRA. On the other hand, patients with low PRA (n = 2) even showed an increase in renin release. In addition, night-day variations with secretory episodes in PRA were blunted during drug administration. It is suggested that alpha-adrenergic receptor blockade inhibits renin secretion distal to its blockade of specific adrenergic receptors. However, the increase in renin release during phenoxybenzamine observed in patients with low PRA indicates that the responsiveness of renin secretion to stimulatory effects (most probably induced by the lowered blood pressure in our patients) remained intact during alpha-adrenergic receptor blockade.

Adrenergic alpha-Antagonists

Primary aldosteronism: inability to differentiate unilateral from bilateral adrenal lesions by various routine clinical and laboratory data and by peripheral plasma aldosterone.

In 31 patients with primary aldosteronism routine clinical and laboratory data, the effect of orthostasis on plasma aldosterone (PA), plasma renin activity (PRA) and cortisol (PC), effect of fludrocortisone or high sodium intake on basal PA and night-day fluctuations of basal PA and PC with and without suppression of pituitary ACTH by dexamethasone were determined to differentiate patients with a unilateral aldosterone producing tumour (adenoma, APA, n=20; carcinoma, CA, n=1) from those with idiopathic bilateral adrenal hyperplasia (IAH, n=10). Mean systolic and diastolic blood pressure, age, serum potassium and urinary excretion of sodium and potassium were not significantly different in both groups of patients. Normokalaemic primary aldosteronism occurred both in patients with APA (n=2) and in patients with IAH (n=1). Mean basal PA and mean urinary excretion rate of aldosterone-18-glucuronide were higher though not significantly different in patients with APA or CA than in those with IAH. A substantial number of the patients with APA (n=5) and with IAH (n=3) showed urinary excretion rates of aldosterone-18-glucuronide less than 13 microgram/24 h. Mean PA and PRA significantly increased (P less than 0.025) in patients with IAH in response to posture. However, these changes also occurred at times in some patients with APA. Both fludrocortisone and high sodium intake produced a variable and no group-specific effect on basal PA. Night-day variations in PA were positively correlated with those in PC in all patients with APA (n=12) and in 5 of 8 patients with IAH. A dissociation of PA and PC, however, was only observed in patients with IAH. Finally, the effect of dexamethasone on plasma aldosterone curves was variable in both groups of patients. Our results indicate that under the described conditions analysis of routine clinical and laboratory data and of peripheral PA, PRA and PC are of limited value in differentiating patients with APA or CA from those with IAH.

Adenoma

[Aldosterone and renin in liver cirrhosis with ascites].

Supine plasma aldosterone and plasma renin activity were determined in patients with cirrhosis of the liver and ascites (n = 10). Most of the patients initially showed an increase in plasma aldosterone and plasma renin activity. However, values within the normal range were observed (plasma aldosterone, n = 3; plasma renin activity, n = 4). In the ascitic fluid renin activity could not be detected, whereas aldosterone concentrations correlated significantly with the respective plasma levels (r = 0.8, p less than 0.01). During therapy with spironolactone alone (n =2) or in combination with furosemide (n = 4), diuresis and natriuresis showed no correlation with changes in plasma aldosterone and/or plasma renin activity. Our results suggest that other factors than renin and aldosterone secretion may be important in the formation of ascites in patients with cirrhosis of the liver. In addition, the inverse correlation between mean arterial blood pressure and plasma renin activity (r = -0.65, p less than 0.05) found in our patients supports the assumption that the increase in renin secretion is probably induced by changes in (renal) hemodynamics.

Aldosterone

Effect of a spirolactone on plasma and urinary aldosterone in primary aldosteronism.

In primary aldosteronism due to an adrenal adenoma (n=2), treatment with a spirolactone (160 mg Canrenone/day for 7 days) decreased plasma aldosterone and urinary aldosterone-18-glucuronide. However, in the presence of a normalization in urinary aldosterone 18-glucuronide plasma aldosterone remained elevated above normal. Continued therapy with higher doses (320 mg/day for 7 days and 480 mg/day for 28 days) did not significantly alter plasma aldosterone, while urinary aldosterone-18-glucuronide returned to values comparable to those obtained before therapy. Cessation of the drug resulted in a marked increase in plasma aldosterone and urinary aldosterone-18-glucuronide. The results indicate that in primary aldosteronism due to an adrenal adenoma, the spirolactone (Canrenone) inhibits aldosterone biosynthesis and seems to influence aldosterone degradation.

Adenoma

[Plasma renin activity and plasma aldosterone in essential hypertension: effect of age and diastolic blood pressure].

In patients with essential hypertension a gradual decrease in basal and stimulated renin secretion was found with increasing age. Stimulated plasma aldosterone decreased similarly; however, the observed changes were less pronounced. Young patients (less than 35 years) with high renin hypertension had lower diastolic blood pressure than patients with low renin hypertension in the same age group. Contrary to these findings, a markedly higher diastolic blood pressure was observed in patients over 35 years of age with high renin hypertension than in the group of patients with low renin hypertension. These results indicate that neither high nor low renin essential hypertension patients represent homogeneous groups. Furthermore, the dissociation between changes in renin activity and plasma aldosterone points to a disturbed relationship between the renin angiotensin system and aldosterone secretion in essential hypertension.

Adolescent

[Primary aldosteronism].

The syndrome of primary aldosteronism is caused either by an aldosterone-producing adenoma or by idiopathic bilateral adrenal hyperplasia. Hypokalemic hypertension is the leading symptome of the disease. Diagnosis is by the combination of abnormally high and non-suppressible aldosterone values with undetectable or low renin values unresponsive to postural changes or salt restriction. Patients with aldosterone-producing adenoma normally show a fall in plasma aldosterone in response to posture and ACTH-dependent circadian rhythm of aldosterone, whereas bilateral hyperplasia is characterized by postural increases in plasma aldosterone and an ACTH-independent diurnal aldosterone rhythm. These creteria serve to differentiate between adenoma and hyperplasia. An aldosterone-producing adenoma can be localized by veinography, determination of aldosterone concentration in both adrenal veins and by 131I-cholesterol scintigraphy. In our hands the determination of aldosterone in blood from both adrenal veins is the most efficient procedure. In interpreting the results, however, rhythmic and sudden changes in adrenal hormone secretion should be considered. In cases where no adrenal venous blood is obtained, 131I-cholesterol scintigraphy may be used to localize adenoma. In patients with aldosterone-producing adenomas unilateral adrenalectomy should be performed, whereas patients with idiopathic bilateral hyperplasia should receive antihypertensive therapy. As rare instances of primary aldosteronism, a case of aldosterone-producing carcinoma of the adrenal cortex and a case of presumably unilateral adrenal hyperplasia are reported.

Adenoma

[Primary aldosteronism: diagnosis, laterality and regulation of hormone secretion].

In 16 patients with hypokalemic hypertension the combination of abnormally high and unsuppressible plasma aldosterone with low or undetectable renin activity led to the diagnosis of primary aldosteronism. To differentiate between aldosterone producing adenoma and idiopathic bilateral hyperplasia, determination of aldosterone concentration in both adrenal veins was performed in 12 patients. In 4 of these patients the two forms of primary aldosteronism could not be differentiated as in these cases only one of the two adrenal veins simultaneously showing an abnormally high aldosterone concentration could be canulated. Plasma aldosterone and plasma cortisol were determined overnight (20.00-8.00 h) at short time intervals in 8 patients with adenoma, 1 patient with carcinoma of the adrenal cortex and 3 patients with bilateral hyperplasis. In all patients with adenoma a significant correlation between aldosterone and cortisol was observed (p less than 0.05-0.001) whereas no correlation was seen in the patients with hyperplasia and carcinoma. The clinical importance of these findings is that in the presence of ACTH-dependent secretion of aldosterone the site of the adenoma can be predicted even when blood from only one adrenal vein is obtained.

Adenoma