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PubMed · 216524

Adrenal function testing.

Abstract

Glucocorticoid stimulation and suppression tests are essential to the definitive diagnosis of diseases of the hypothalamic-pituitary-adrenal axis, because they document abnormal physiologic control of hormonal secretion. Similarly, diseases of the renin-angiotensin-aldosterone axis are diagnosed by mineralocorticoid stimulation and suppression testing. [Ed. Note: See Moore TJ, Williams GH: Adrenal causes of hypertension, in this issue.] Unlike tests of glucocorticoid function, testing of the renin-angiotension-aldosterone system is more complicated, because knowledge of posture and dietary sodium are necessary to interpret the results. However, measurement of the tropic hormone renin and plasma levels of aldosterone can be accurately made, allowing precise definition of this system. Errors are most commonly encountered when dynamic tests of cortisol output are performed in patients taking medications that may interfere with the assays or with the metabolism of the administered compounds, such as dexamethasone or metyrapone. Abnormal, spurious values may also be obtained in some individuals who do not have adrenocortical hyperfunction if they are very obese or if testing is performed in a setting of clinical stress. Careful attention to these pitfalls will avoid errors and allow the clinician to arrive at the correct diagnosis.

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BibTeXRIS

R G Dluhy. 1978. Adrenal function testing.. https://pubmed.ncbi.nlm.nih.gov/216524/

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Urine free cortisol in the high-dose dexamethasone suppression test for the differential diagnosis of the Cushing syndrome.

OBJECTIVE: To develop criteria for interpreting the high-dose dexamethasone suppression test using urine free cortisol as an end point for the differential diagnosis of the Cushing syndrome. DESIGN: Retrospective review. SETTING: Inpatient research ward. PATIENTS: Patients (118) with surgically confirmed causes of the Cushing syndrome: 94 with pituitary disease, 14 with primary adrenal disease, and 10 with ectopic adrenocorticotropic hormone (ACTH) secretion. MAIN OUTCOME MEASURES: The sensitivity, specificity, and diagnostic accuracy were determined for the high-dose dexamethasone suppression test using urine free cortisol and using 17-hydroxysteroid excretion. For each analysis, patients with pituitary disease were considered to be "diseased" and patients with nonpituitary disease were considered to be "non-diseased". The level of suppression that gave 100% specificity was determined for each steroid. RESULTS: The accuracy of urine free cortisol when used as an end point in the high-dose dexamethasone suppression test was equivalent to that of 17-hydroxysteroid excretion. At all levels of sensitivity and specificity, however, the degree of suppression of urine free cortisol used for the diagnosis of pituitary disease was greater than that of 17-hydroxysteroid excretion. The likelihood ratios for pituitary disease based on urine free cortisol suppression of greater than 50%, of greater than 80%, and of greater than 90% were 4.2, 10.1, and "infinite," respectively. Suppression of urine free cortisol greater than 90% or suppression of 17-hydroxysteroid excretion greater than 64% was associated with 100% specificity. When these criteria were combined, the percentage of correct predictions (102 of 118 [86%; 95% CI, 78% to 92%]) was higher than that obtained using either steroid alone (89 of 118 [75%; CI, 65% to 83%]) (P = 0.009) and higher than that obtained using the traditional criterion of 50% suppression for 17-hydroxysteroid excretion (95 of 118 [80%; CI, 71% to 87%]) (P = 0.016). CONCLUSIONS: In the high-dose dexamethasone suppression test, the degree of suppression of urine free cortisol used for the diagnosis of pituitary disease is greater than that traditionally used for 17-hydroxysteroid excretion. The diagnostic performance of the test is improved by measuring both urine free cortisol and 17-hydroxysteroid excretion and by requiring greater suppression of both steroids.

17-Hydroxycorticosteroids