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Endocrinological and pathological entities of the pre-Cushing's syndrome.

The purpose of the study was to clarify the disease entity of pre-Cushing's syndrome. The authors report on the pathological findings and contents of various steroids in the adenomas of three cases of pre-Cushing's syndrome. Oncocytes were found in one adenoma and others were pure clear cell dominant adenomas. All the adenomas contained higher concentrations of precursor steroids than those of five cases of Cushing's syndrome. However, the patterns of increased precursors were quite different among the three cases. Pre-Cushing's syndrome appeared to include several different kinds of disease entities.

Adrenal Cortex↗

Clinical and laboratory findings and results of therapy in 58 patients with adrenocortical tumors admitted to a single medical center (1951 to 1978).

We reviewed 150 findings in 58 patients (14 males and 44 females) with adrenocortical tumors (26 with adenoma and 32 with carcinoma) admitted to Vanderbilt Hospital during 28 years. In general, our findings agree with those reported by others in multi-institutional series or literature reviews. Adenomas took longer to diagnose than carcinomas. Adenomas usually caused Cushing's syndrome, but two caused virilization and three caused no endocrine syndrome. There was no difference in time required for diagnosis of carcinoma in men or women or in those with Cushing's syndrome, virilization or no endocrine syndrome. Urinary 17-hydroxycorticoid (17-OHCS) levels were similar in those with adenoma and those with carcinoma, but 17-ketosteroid (17-KS) levels were usually less than 20 mg per day in patients with adenoma and greater than 20 mg per day in patients with carcinoma. Adenomas were uniformly independent of endogenous ACTH stimulation, but frequently responded to exogenous ACTH. As with adenomas, no carcinoma demonstrated normal suppression with dexamethasone or normal response to metyrapone, but only one responded to exogenous ACTH. Some patients had no clinical Cushing's syndrome despite high levels of plasma cortisol and urine 17-OHCS. "Nonfunctional" tumors probably merely secreted insufficient steroids to cause signs and symptoms. Patients with adenoma were uniformly cured by surgical tumor resection. Occasional patients with carcinoma enjoyed long survival despite incomplete resection of their tumors, but most patients died of recurrent of metastatic carcinoma within seven years, often within a year of two. Small tumor size and benign histologic features were insufficient to predict benign clinical behavior. The adrenocorticolytic drug, o,p'DDD, offered objective remission for only an occasional patient.

Adenoma↗

Triamcinolone acetonide aerosols for asthma. I. Effective replacement of systemic corticosteroid therapy.

Triamcinolone acetonide, a water-insoluble corticosteroid preparation in a Freon-propelled metered-dose aerosol, was administered via a specially designed nebulizer to 22 adult patients with severe, chronic asthma. All patients had required oral corticosteroid therapy, daily, for several years, in order to control their incapacitating obstructive airways disease. During 4 wk of treatment with triamcinolone acetonide, taken in 4 daily doses totaling 8 to 28 inhalations (400-1,400 mcg) per day: (1) asthma remained under satisfactory control; (2) oral corticosteroids were stopped in 19 patients and reduced in 2, and 1 patient withdrew from the study; (3) adrenal cortical function returned to normal or near normal levels; (4) spirometric and plethysmographic measurements improved significantly; (5) daily self-measurements of peak expiratory flow showed a marked improvement in median weekly levels, as well as a reduction in daily variability. No immediate undesirable side effects were noted. These observations indicated that more extensive applications of topical corticosteroid therapy are justified as an effective, convenient, and relatively safe method for the preventive management of severe, persistent asthma.

Administration, Intranasal↗

Expression of adrenocorticotropin receptor gene in adrenocortical adenomas from patients with Cushing syndrome: possible contribution for the autonomous production of cortisol.

OBJECTIVE: To examine whether inhibition of endogenous adrenocorticotropin (ACTH) secretion in patients with Cushing syndrome affects the expression of the ACTH receptor (ACTH-R) gene in adrenocortical adenoma and attached atrophic normal gland. SUMMARY BACKGROUND DATA: ACTH increases adrenal cell growth and steroidogenesis by means of ACTH-R. In vivo and in vitro studies have shown that expression of ACTH-R is upregulated by its own ligand ACTH in several species. In patients with Cushing syndrome resulting from adrenocortical adenoma, there is autonomous production of cortisol from the adenoma. This strongly inhibits endogenous ACTH secretion, giving rise to the speculation that the expression of the ACTH-R gene in these patients is also suppressed. However, previous studies have shown that administration of exogenous ACTH to these patients leads to a further increase in the production of cortisol, suggesting the expression of functional ACTH-R in the adenoma. The authors, therefore, examined the expression of the ACTH-R gene in these patients. METHODS: Fourteen patients with Cushing syndrome were studied. Glucocorticoid excess resulting from autonomous production from the adenomas was ascertained, and unilateral adrenalectomy was performed. The levels of ACTH-R and cytochrome P450 side chain cleavage enzyme (P450scc) mRNAs were determined by Northern blot analysis. The entire coding region of the ACTH-R gene in these patients was sequenced. RESULTS: ACTH-R mRNA abundance in the attached atrophic normal adrenals was suppressed and invariably less than that in the normal gland obtained from a patient with renal cancer. However, the expression of ACTH-R mRNA was not suppressed in any of the adenomas. Expression of ACTH-R mRNA in the adenomas was four- to sixfold greater than that in the attached atrophic gland. No mutation in the coding sequence of the ACTH-R gene in the adenoma was detected in any of the patients. The mRNA in the adenomas appeared to be translated into functionally active receptor because intramuscular administration of ACTH resulted in significant increases in plasma cortisol before surgery but not 3 months after surgery. In addition, there was a positive linear correlation between the expressions of ACTH-R and P450scc mRNAs in the adenoma tissue. CONCLUSIONS: Suppressed ACTH secretion in patients with Cushing syndrome results in reduction of the ACTH-R mRNA expression in nonneoplastic adrenocortical cells. However, the regulatory mechanism of ACTH-R expression might be different in adenoma. Persistent expression in the adenoma of ACTH-R alone, even in the absence of ACTH, might result in increased basal adenyl cyclase activity, as observed in the case of thyroid-stimulating hormone receptor, and thereby might play a role in the autonomous production of cortisol.

Adenoma↗

Recovery of adrenal function after treatment of adrenocortical carcinoma with o,p'-DDD.

The adrenolytic agent, 2,2-bis[2-chlorophenyl-4-chlorophenyl] 1,1 dichloroethane (o,p'-DDD), was used over a 20-month period following surgery in a 2 3/12-year-old girl for treatment of adrenocortical carcinoma. The child remained free of disease and was maintained on glucocorticoid and mineralo-corticoid supplements for 7 years. Hormonal evaluation was undertaken at 9 9/12 years of age to determine remaining adrenal steroidogenic capacity. Following discontinuation of both hydrocortisone and 9 alpha-fludrocortisone, she remained stable and asymptomatic. Immediately after discontinuing 9 alpha-fludrocortisone, the adrenal glomerulosa was able to respond to stimulation by the renin-angiotensin system as shown by the ability to achieve renal sodium conservation on a restricted sodium intake (less than 10 mEq/d for 5 d). The response of the adrenal fasciculata to ACTH stimulation showed a slower recovery. Baseline levels of cortisol were in the low normal range, but there was no increase in plasma cortisol or urinary 17-hydroxysteroids following stimulation with ACTH. The responses of cortisol, deoxycorticosterone, and corticosterone to ACTH stimulation gradually improved to achieve normal stimulated levels 18 months after stopping medications. Serum testosterone and delta 4-androstenedione were initially increased for level of puberty, while levels of dehydroepiandrosterone were prepubertal. Testosterone and delta 4-androstenedione did not suppress with dexamethasone (2 mg/d for 2 d; 4 mg/d for 2 d), and dehydroepiandrosterone decreased only slightly. However, administration of norethindrone (Norlutin) (10 mg orally, three times a day for 3 d) resulted in suppression while human chorionic gonadotrophin (hCG; 5000 U i.m. daily for 3 d) produced stimulation of testosterone, delta 4-androstenedione and dehydroepiandrosterone. Thus the androgens were felt be predominantly of ovarian origin. Dehydroepiandrosterone rose to low normal levels by 18 months after discontinuation of hydrocortisone. We thus demonstrate for the first time that both the adrenal glomerulosa and fasciculata have the capacity to recover normal function following treatment with o,p'-DDD. Further, we suggest that early exposure to excess adrenal androgens may result in mild alteration of gonadal function.

Adenocarcinoma↗

Primary aldosteronism caused by adrenal cortical carcinoma.

Adrenocortical carcinoma rarely produces pure primary aldosteronism. We document the occurrence of such a case. Through tumor steroid analysis, we show that the content of aldosterone per gram of tumor tissue is diminished compared to aldosterone producing adenomas. We also demonstrate the occurrence of angiotensin II receptors on the tumor, a finding hitherto noted only on aldosterone producing adenomas.

Adenoma↗

Evidence for chronic stress in captive but not free-ranging cheetahs (Acinonyx jubatus) based on adrenal morphology and function.

The cheetah (Acinonyx jubatus) is highly endangered because of loss of habitat in the wild and failure to thrive in captivity. Cheetahs in zoos reproduce poorly and have high prevalences of unusual diseases that cause morbidity and mortality. These diseases are rarely observed in free-ranging cheetahs but have been documented in cheetahs that have been captured and held in captive settings either temporarily or permanently. Because captivity may be stressful for this species and stress is suspected as contributing to poor health and reproduction, this study aimed to measure chronic stress by comparing baseline concentrations of fecal corticoid metabolites and adrenal gland morphology between captive and free-ranging cheetahs. Additionally, concentrations of estradiol and testosterone metabolites were quantified to determine whether concentrations of gonadal steroids correlated with corticoid concentration and to assure that corticosteroids in the free-ranging samples were not altered by environmental conditions. Concetntrations of fecal corticoids, estradiol, and testosterone were quantified by radioimmunoassay in 20 free-ranging and 20 captive cheetahs from samples collected between 1994 and 1999. Concentrations of baseline fecal corticoids were significantly higher (p = 0.005) in captive cheetahs (196.08 +/- 36.20 ng/g dry feces) than free-ranging cheetahs (71.40 +/- 14.35 ng/g dry feces). Testosterone concentrations were lower in captive male cheetahs (9.09 +/- 2.84 ng/g dry feces) than in free-ranging cheetahs (34.52 +/- 12.11 ng/g dry feces), which suggests suppression by elevated corticoids in the captive males. Evidence for similar sulppression of estradiol concentrations in females was not present. Adrenal corticomedullary ratios were determined on midsagittal sections of adrenal glands from 13 free-ranging and 13 captive cheetahs obtained between 1991 and 2002. The degree of vacuolation of cortical cells in the zona fasciculata was graded for each animal. Corticomedullary ratios were larger (p = 0.05) in captive cheetahs; however, there was no difference (p = 0.31) in the degree of corticocyte vacnolation between the two populations. These data proxile both mnorphologic and functional evidence suggestive of chronic stress in captive cheetahs. Further research into the role of hypercortisolemia in the pathogenesis of the reproductive abnormalities and unusual diseases of captive cheetahs is needed.

Acinonyx↗

Changes of adrenal hormones in goats with experimentally induced arthritis.

An experiment was carried out to clarify the mechanism of occurrence of arthritis in goats. In it changes of the adrenal hormones in blood and urine were examined in goats with experimentally induced arthritis. Four groups of goats were used. A goat of group B was inoculated with anaerobic Corynebacterium organisms isolated from a joint of a field case. Group H was treated with hormones (deoxycorticosterone acetate and adrenalin). Group BH was inoculated with those organisms and treated with these hormones. The other group served as an untreated control. Arthirits was induced to three of the four goats of group BH. The blood level of 11-hydroxycorticosteroids and the urine level of 17-hydroxycorticosteroids were higher in group BH than in any other group at the time of appearance of clinical signs. The hypofunction of the adrenal cortex was seen in two of three goats with induced arthritis. Serotonin increased transitorily in group BH around the time of appearance of clinical signs, but there was finally no difference in its level among goats with or without induced arthritis. There was no definite tendency in the fluctuation of level of adrenalin or noadrenalin.

11-Hydroxycorticosteroids↗

[Mechanism of action of tetracycline on the functional state of the adrenal cortex].

The mechanism of stimulation of the adrenal cortex function by tetracycline was studied on albino rats. It was shown that tetracycline administered orally in a dose of 200 mg/kg regularly induced an increase in the corticosterone levels in the peripheral blood of the animals by the 15th day of the antibiotic use. It was shown on the animals with an experimentally suppressed function of the hypophysis by prolonged administration of hydrocortisone acetate that tetracycline primarily stimulated the hypophysis function resulting in production and excretion of increased amounts of the adrenocorticotropic hormone into the blood. The hormone increased the production of corticosterone in the adrenal glands which resulted in its higher levels in the peripheral blood.

Adrenal Cortex↗