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Biomedical subjects

M Stowasser

Publications and source records attributed to M Stowasser.

At least 55 records · Page 3Linked to original sources

An association of primary aldosteronism and adrenaline-secreting phaeochromocytoma.

1. Two patients with adrenaline-only secreting phaeochromocytomas and primary aldosteronism were studied. 2. Urinary adrenaline levels were raised and plasma adrenaline was not suppressed normally following administration of clonidine. Plasma aldosterone to plasma renin activity ratios were repeatedly elevated. 3. Both had large intra-adrenal phaeochromocytomas visible on computerized tomography (CT) scanning. Surrounding adrenal cortical tissue contained an adenoma in one and nodular hyperplasia in the other. 4. Following removal of the adrenal gland containing the phaeochromocytoma, plasma and urinary adrenaline levels, and plasma aldosterone to plasma renin activity ratios returned to normal. 5. Adrenaline-only secreting phaeochromocytomas and primary aldosteronism have been rarely diagnosed even as separate entities, but reliable screening tests are now available. 6. Simultaneous presence of these two conditions of hormone excess is probably a chance occurrence. Alternatively, there may be a genetic predisposition to endocrine dysplasia, or an interaction between the contiguous medullary and cortical tissues, particularly after the normal architecture has been disturbed by an enlarging phaeochromocytoma.

Adrenal Cortex↗

High incidence of primary aldosteronism in 199 patients referred with hypertension.

1. This study sought to assess the incidence of primary aldosteronism in 199 hypertensives who were normokalaemic and in whom the question of primary aldosteronism had never been raised. 2. The screening test applied was the aldosterone to renin ratio in plasma, which was raised in 40 and normal in 159 patients. A second ratio was normal in 14 of these 40. 3. Twenty-two patients with two further raised ratios required fludrocortisone suppression testing. This has been completed in 17, and failure to suppress led to a diagnosis of primary aldosteronism in all. 4. A dexamethasone suppression test (DST) excluded ACTH-dependent hyperaldosteronism and laterality of aldosterone production was determined by adrenal vein sampling. 5. Unilaterality in five patients led to adrenalectomy in four and spironolactone in one. Bilaterality in six patients led to spironolactone. 6. This study so far provides a proven (minimum) incidence for primary aldosteronism of 8.5%, a probable incidence of 12.0% (including two raised ratios) and a possible (maximum) incidence of 13.0% (leaving out those with second ratio normal). Exclusion of hypokalaemic hypertensives will lead to an underestimation of the true incidence of primary aldosteronism. 7. Based on this and other evidence, it is estimated that the incidence of primary aldosteronism in the 'essential hypertensive' population is between 5 and 15%, and is probably around 10%.

Adolescent↗

Response to unilateral adrenalectomy for aldosterone-producing adenoma: effect of potassium levels and angiotensin responsiveness.

1. Normokalaemic primary aldosteronism (PA) masquerades as 'essential hypertension', and 50% of patients with aldosterone-producing adenoma (APA) are normokalaemic at presentation to this unit. 2. Angiotensin-responsive (AII-R) APA is as common as angiotensin-unresponsive (AII-U) APA, and requires adrenal venous sampling for differentiation from bilateral adrenal hyperplasia (BAH). 3. From 1981 to 1992, 55 patients with APA underwent unilateral adrenalectomy and were followed up for at least 12 months postoperatively. Hypertension was cured in 55% and improved in the remainder. 4. Cure rate was lower (P < 0.001) in males (11/32, 34%) vs females (19/23, 83%), lower (P < 0.005) in patients over 45 years of age (13/33, 39%) vs those 45 years or younger (17/22, 77%), lower (P < 0.05) in AII-R APA (11/28, 39%) vs AII-U APA (19/27, 70%) and tended to be lower (not significant) in normokalaemic APA (7/17, 41%) vs hypokalaemic APA (23/38, 61%). 5. A higher proportion (P <0.001) of AII-R APA patients were males (23/28, 82%) vs AII-U APA (9/27, 33%), and a higher proportion were from the older age group AII-U APA 13/27, 48%; P < 0.05). Females with AII-U APA who were hypokalaemic had a very high cure rate (16/17, 94%). 6. Since unilateral adrenalectomy cures or improves blood pressure in normokalaemic and AII-R as well as in hypokalaemic and AII-U patients, all hypertensives should be screened for PA, and AII-R APA differentiated from BAH in proven PA.

Adrenal Cortex Neoplasms↗

Renin gene polymorphism associated with aldosterone responsiveness to the renin-angiotensin system in patients with aldosterone-producing adenomas.

Aldosterone-producing adenomas may be responsive or unresponsive to the renin-angiotensin system. In tumours from patients in the responsive subgroup, renin mRNA is expressed in greater amounts than in tumours from patients in the unresponsive subgroup, or in normal adrenals. We compared the frequency of two renin gene polymorphisms in peripheral blood DNA from the two subgroups and found a significant association (allele frequency X2 = 7.67, p < 0.006) between BglI polymorphism and aldosterone responsiveness. This may be a significant determinant of the biochemical behaviour of these tumours.

Adenoma↗

Karyotypic abnormalities in benign adrenocortical tumors producing aldosterone.

Because familial hyperaldosteronism type II (FH-II) includes tumor formation, we examined the karyotypes of benign adrenocortical aldosterone-producing adenomas (APAs), including those from patients with FH-II. Cell culture was successful in 12 of 14 tumors removed, two of which were from patients with FH-II. Five of the 12 tumors cultured (one from a patient with FH-II) had abnormal karyotypes. All were from male patients, and loss of the Y chromosome was observed in each. One showed loss of chromosome 19, and another showed an unbalanced t(6;7) producing partial trisomy 7q. Oncogenes are present at these breakpoints, and loss of the Y chromosome and monosomy 19 have previously been reported in neoplasia. This is the first report of cytogenetic abnormalities in benign adrenocortical tumors.

Adrenal Gland Neoplasms↗

Cortisol production by aldosterone-producing adenomas in vitro.

1. In vitro short-term production of cortisol by dispersed tumour and non-tumourous adrenal cortical cells was measured with and without added angiotensin II (AII) or adrenocorticotrophin (ACTH) in adrenals removed from five patients with primary aldosteronism. 2. Aldosterone-producing adenomas (APA) were classified as angiotensin responsive (AII-R) or angiotensin unresponsive (AII-U) based on pre-operative behaviour in vivo. 3. Cortisol was produced by both tumour and cortex in vitro without stimulation, and significantly more cortisol was generated by the cortex. 4. Addition of AII significantly increased cortisol production by both tumour and cortex to an equal extent. 5. Addition of ACTH also significantly increased cortisol production by both tumour and cortex, but tumours were more responsive than cortex. The response to ACTH exceeded the response to angiotensin in both tumour and cortex. 6. There was no obvious difference between AII-R and AII-U APA in terms of cortisol production.

Adenoma↗

Evidence that primary aldosteronism may not be uncommon: 12% incidence among antihypertensive drug trial volunteers.

1. Six (12%) out of 52 respondents to newspaper advertisements for antihypertensive drug trials had elevated aldosterone to renin ratio, confirmed by repeated measurement. 2. Failure to suppress aldosterone with fludrocortisone acetate administration and oral salt loading confirmed the presence of primary aldosteronism in all six patients. 3. Two of the six patients have already had aldosterone-producing adenomas removed, one has commenced spironolactone, and one has an adrenal mass on computerized tomography but investigation is incomplete. 4. None of the six patients with primary aldosteronism had unprovoked hypokalaemia. 5. Plasma aldosterone levels did not distinguish those patients with subsequently proven primary aldosteronism from the others. Plasma renin activity (PRA) was a better discriminator, but not as good as the aldosterone to renin ratio. 6. The incidence of primary aldosteronism is probably much higher than the 1% currently quoted in texts, with earlier, normokalaemic forms accounting for the majority of cases.

Adult↗

Angiotensin-responsive aldosterone-producing adenomas: postoperative disappearance of aldosterone response to angiotensin.

1. Nineteen out of 47 patients (40%) with confirmed unilateral aldosterone-producing adenoma (APA) were responsive to low-dose angiotensin II infusion (AII-R), as defined by an increase in plasma aldosterone concentration of > 50% over basal at 2 ng/kg per min for 60 min. 2. Seven to ten days after unilateral adrenalectomy, aldosterone was no longer responsive to angiotensin infusion in AII-R APA (100%, n = 17). Therefore, angiotensin responsiveness resides within the adenoma in AII-R APA. 3. The upright posture test for the differentiation of adenoma from hyperplasia was unreliable for the AII-R APA (26%), but generally reliable in the angiotensin-unresponsive subtype, (AII-U APA, 96%). 4. The reported predominance of females in APA was seen in AII-U APA (68%), but was reversed in AII-R APA (37%).

Adenoma↗

Renin-aldosterone response to dexamethasone in glucocorticoid-suppressible hyperaldosteronism is altered by coexistent renal artery stenosis.

The responses of renin, aldosterone, and blood pressure to ACTH suppression with dexamethasone in a 61-yr-old man with glucocorticoid-suppressible hyperaldosteronism were modified by coexistent atheromatous renal artery stenosis (RAS). The apparent responsiveness of aldosterone to angiotensin-II resulting from RAS has implications for the regulation of steroidogenesis in this condition. After successful surgical correction of the RAS, the response changed and resembled that seen in two younger males (one his son) with uncomplicated glucocorticoid-suppressible hyperaldosteronism.

Adolescent↗

Primary aldosteronism: hypertension with a genetic basis.

Exciting developments in knowledge of primary aldosteronism include description of new subtypes and elucidation of the genetic basis of one variety. Furthermore, relatively simple biochemical screening (aldosterone/renin ratio) has disclosed that primary aldosteronism is more common than previously thought, by diagnosing patients at an earlier, normokalaemic stage. The mutant gene discovered in the glucocorticoid-suppressible variety (FHI) codes for an aldosterone biosynythetic enzyme normally controlled by angiotensin II, and now controlled by corticotropin. The zona fasciculata is hyperplastic and makes aldosterone and "hybrid steroids" 18-oxocortisol and 18-hydroxycortisol in excess, in response to ACTH but not to angiotensin II. Adrenal tumours have not yet been described in this condition. Aldosterone-producing adenomas (Conn's syndrome) are also commonly composed of zona fasciculata-like cells, make "hybrid steroids" in excess and are very sensitive to ACTH but not to angiotensin II. We have described a new variety of aldosterone-producing adenoma which is responsive to angiotensin II (AII-responsive APA), consists of at least 20% zona glomerulosa-like cells, and does not make "hybrid steroids" in excess. We have also described a new familial variety of primary aldosteronism that includes tumours and is not glucocorticoid-suppressible (FHII). We propose that primary aldosteronism is a spectrum of genetic diseases expressed as either hyperplasia or neoplasia, and that morphological and genetic diversity explains biochemical and clinical behaviour.

Adrenocorticotropic Hormone↗

Familial hyperaldosteronism type II: five families with a new variety of primary aldosteronism.

1. Thirteen patients from five families had Familial Hyperaldosteronism Type II (FH-II), a new variety of familial primary aldosteronism not suppressible with dexamethasone that often involves adrenocortical adenoma formation. 2. Five patients had solitary aldosterone-producing adenomas, three had bilateral autonomous overproduction of aldosterone, and in five the subtype is yet to be determined. 3. Comparing FH-II patients with 88 patients with primary aldosteronism of other causes revealed no differences in mean age at presentation or at onset of hypertension, sex incidence, lowest recorded serum potassium, plasma aldosterone, plasma renin activity or adenoma size. 4. Analysis of DNA in peripheral blood of patients with FH-II, their affected and unaffected relatives, and in removed tumours is in progress in order to determine the underlying genetic defect(s) in FH-II, perhaps an abnormality in the P-450aldo gene (CYP11B2). 5. It is recommended that hypertensive relatives of patients with primary aldosteronism should have measurements of the aldosterone/renin ratio.

Adult↗

Clinical and pathological diversity of primary aldosteronism, including a new familial variety.

1. Of 93 patients with primary aldosteronism seen during a 20 year period, 52 had an aldosterone-producing adenoma (APA) removed (five more await surgery), 14 had bilateral adrenal hyperplasia (BAH), three had glucocorticoid-suppressible hyperaldosteronism (GSH), one had adrenal carcinoma and 18 are yet to be categorized. 2. Seventy-three presented with hypertension and hypokalaemia. Others had markedly suppressed renal venous plasma renin activity (PRA) or elevated plasma aldosterone (PA)/PRA ratio, in new or resistant hypertensives. 3. The PA/PRA ratio was the most reliable screening test. 4. Diagnosis depended on the failure of suppression of aldosterone by salt loading and fludrocortisone. 5. Differentiation of BAH from APA depended on adrenal venous sampling comparing adrenal and peripheral venous PA/cortisol ratios. 6. A new familial variety of primary aldosteronism is described, with two affected members in each of three families. 7. Primary aldosteronism should be looked for in resistant and low-renin hypertension as well as in hypertension with hypokalaemia, and other family members should have PA/PRA measured if they are hypertensive.

Adenoma↗

Diaphragmatic paralysis following cervical herpes zoster.

A 74-year-old man was found to have a paralysed left hemidiaphragm within four months of the appearance of a typical herpes zoster rash involving his left shoulder and neck. Investigations, including bronchoscopy and computed tomography of the chest, failed to detect a cause for the diaphragmatic paralysis. We believe that the cervical zoster and diaphragmatic paralysis were causally related, a rare but recognised association.

Aged↗

Hybrid gene or hybrid steroids in the detection and screening for familial hyperaldosteronism type I.

1. Early diagnosis of Familial Hyperaldosteronism Type I (FH-I, glucocorticoid-suppressible hyperaldosteronism) in asymptomatic, affected individuals is essential if death from stroke is to be prevented. 2. In 21 patients with FH-I (presence of the causative hybrid 11 beta-hydroxylase/aldosterone synthase gene confirmed by Southern blot testing), various biochemical parameters were compared as possible screening tests. Hypokalaemia and elevated plasma aldosterone each detected only two (10%) of the affected individuals. 3. Plasma renin activity 19 (90%) and aldosterone/renin ratio 18 (86%) were more reliable but not free from false negatives. 4. Levels of the urinary 'hybrid' steroid, 18-oxocortisol, were elevated (P < 0.01) in all 15 patients tested (138.2 +/- 17.4 micrograms/g creatinine, range 41.6 +/- 281.0 micrograms/g) with no overlap when compared with 11 normals (9.7 +/- 1.3 micrograms/g, range 2.8-17.4 micrograms/g). 5. We conclude that measurement of urinary 'hybrid' steroids is probably the most rapid and reliable biochemical screening test currently available for FH-I, with confirmation dependent on demonstration of the hybrid gene by genetic techniques.

Adult↗