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Biomedical subjects

D L Loriaux

Publications and source records attributed to D L Loriaux.

At least 55 records · Page 3Linked to original sources

Cortisol production rate in childhood and adolescence.

We studied the daily cortisol production rate in 33 normal children and adolescents, using a stable isotope-dilution technique employing high-performance liquid chromatography-mass spectrometry. Two indwelling intravenous catheters were inserted and tracer 9,12,12-2H3-cortisol (deuterated cortisol) was infused continuously for 30 hours. After 6 hours of tracer infusion to allow for equilibration, blood was obtained every 20 minutes for 24 hours. The mean (+/- SD) cortisol production rate was 9.5 +/- 2.5 mg/day (6.8 +/- 1.9 mg/m2/day). Cortisol production rate did not vary with sex or pubertal stage. These results suggest that the cortisol production rate in children and adolescents is significantly lower than previously estimated.

Adolescent

Petrosal sinus sampling: discordant lateralization of ACTH-secreting pituitary microadenomas before and after stimulation with corticotropin-releasing hormone.

Petrosal sinus sampling was performed 171 times in 157 patients with known or suspected Cushing disease. In all cases, samples for measuring adrenocorticotropic hormone (ACTH) levels were obtained from both inferior petrosal sinuses and a peripheral vein, both before and after intravenous corticotropin-releasing hormone (CRH) administration. In seven examinations in seven patients, a ratio, or gradient, between the ACTH levels in the inferior petrosal sinuses existed in the samples obtained prior to CRH stimulation; however, poststimulation samples demonstrated reversal of the gradient, suggesting lateralization to the contralateral side of the pituitary gland. Data from surgical exploration of the pituitary gland were available for six of these patients, all of whom had adenomas. Prestimulation samples provided correct lateralization in three patients, and in two patients the poststimulation samples provided correct lateralization. One patient had a midline adenoma. When the results of pre- and poststimulation petrosal sinus sampling conflict, neither can be relied on uniformly to provide correct lateralization of ACTH-secreting pituitary adenomas.

Adenoma

Primary cortisol resistance presenting as isosexual precocity.

Primary cortisol resistance (PCR) is a rare cause of hypercortisolism and usually does not produce clinical manifestations. This report describes primary cortisol resistance in a boy with isosexual precocity. A 6 7/12-yr-old boy had Tanner stage 3 pubic hair, accelerated linear growth, and advanced bone age (10 yr), but normal (for age) tests. There were no features of glucocorticoid excess. Serum androstenedione and dehydroepiandrosterone concentrations were 4.7 +/- 0.3 nmol/L (mean +/- SEM of four measurements; normal less than 1.2) and 13.5 nmol/L (single measurement; normal, 1.0-2.2), respectively. The serum testosterone concentration was 0.9 nmol/L (normal, less than 0.7), and FSH and LH were normal. Serum cortisol concentrations were 1590 +/- 110 nmol/L (normal, 190-630) and 580 +/- 60 nmol/L (normal, 50-410) at 0800 and 2000 h, respectively. Serum cortisol responded normally to insulin-induced hypoglycemia. Glucocorticoids and adrenal androgens were resistant to suppression by dexamethasone. The Kd of [3H]dexamethasone binding to the glucocorticoid receptors of mononuclear leukocytes was increased (6.4 +/- 0.8 nM; mean +/- SEM of four determinations; normal, 1.4-3.4; P less than 0.001), but the binding capacity was normal. This patient with isosexual precocity has PCR, as indicated by functionally abnormal glucocorticoid receptors and hypercortisolism without other clinical or biochemical manifestations of Cushing's syndrome. Excessive adrenal stimulation by ACTH caused increased secretion of both cortisol and adrenal androgens, and the latter caused the clinical manifestations. PCR should be considered in other male children with isosexual precocity or female children with heterosexual precocity.

Adrenal Glands

Steroidogenic enzyme activities, morphology, and receptor studies of a testicular adrenal rest in a patient with congenital adrenal hyperplasia.

Steroid-secreting tumors of the testis have generally been considered to be of Leydig cell origin. Testicular tumors in patients with congenital adrenal hyperplasia have been thought to be adrenal rests, but no conclusive evidence supporting the hypothesis has been presented. We report a morphological and biochemical analysis of a patient with 21-hydroxylase deficiency who developed bilateral nodular hyperplasia of steroid-secreting tissue within the testis, despite suppression therapy with both exogenous glucocorticoids and testosterone. The tissue was formed of confluent nodules of homogenous cells. Electron microscopy showed the cells to have abundant smooth endoplasmic reticulum, well developed Golgi apparatus, and mitochondria with predominantly tubular cristae, features characteristic of steroid-secreting cells of adrenocortical origin. Crystals of Reinke were not observed. Functional studies in vivo showed a marked response to ACTH infusion, with 17-hydroxyprogesterone rising from 56 to 13,500 ng/mL, cortisol from less than 2 to 19 micrograms/dL, and testosterone from 369 to 629 ng/dL, with an attendant increase in testicular size and pain over 48 h. Receptor studies in vitro revealed no gonadotropin receptors, but abundant angiotensin-II receptors. Enzyme activity analysis in vitro showed undetectable 21-hydroxylase activity and an enzyme profile consistent with adrenocortical cells rather than Leydig cells. Based on these morphological and biochemical findings, we conclude that the nodular steroidogenic tissue that replaced this patient's testes was of adrenal origin. The study documents for the first time the development of adrenocortical tumors from adrenal rest tissue within the testis.

Adrenal Glands

Pulsatile growth hormone secretion in patients with acromegaly and normal men: the effects of growth hormone-releasing hormone infusion.

Twenty-four GH secretory patterns were studied before and during continuous infusions of GHRH in six patients with active acromegaly and in six normal adult men. GH release was episodic in both groups. Control subjects showed a normal diurnal variation in GH release, with the majority of GH released at night (2200-0800 h); mean levels were 1.5 +/- 0.4 (SE) ng/mL (day) and 4.2 +/- 0.8 ng/mL (night). Acromegalics had no diurnal variation in GH; levels were 45.3 +/- 13.7 ng/mL (day) and 39.8 +/- 12.2 ng/mL (night). Acromegalics demonstrated an increased frequency of GH pulses compared to normals (11.8 +/- 0.8 vs. 2.2 +/- 0.3/24 h). During continuous 24-h infusions of GHRH, the normal subjects continued to show a diurnal variation in GH release, but GH pulse frequency increased to a rate (11.7 +/- 1.4 pulses/24 h) very similar to that of the patients with acromegaly. In contrast, GHRH infusion did not alter the GH pulse frequency in the acromegalics. GHRH increased the mean levels of GH in both groups (patients 80.2 +/- 20.3 vs. 41.0 +/- 12.1 ng/mL, x +/- SE. P less than 0.05; controls 10.2 +/- 2.0 vs. 3.33 +/- 0.5 ng/mL, P less than 0.01). Some of the patients with acromegaly showed a progressive decline in GH levels during the infusion period, suggesting desensitization or exhaustion of releaseable stores; however, GH levels remained above basal values in all patients. After the 24-h GHRH infusions, the GH response to a bolus of GHRH was diminished in the normal subjects (2.1 +/- 0.9 vs. 16.8 +/- 5 ng/mL, x +/- SE; P less than 0.01) but not in the acromegalic patients (30.2 +/- 8.9 vs. 35.5 +/- 12.5 ng/mL; NS). These results indicate that GH release is episodic under basal conditions and during continuous GHRH infusion in both acromegalic and normal subjects, indicating the importance of other modulators of GH release, such as somatostatin, which may remain pulsatile even in acromegaly.

Acromegaly

Effect of chronic treatment with the glucocorticoid antagonist RU 486 in man: toxicity, immunological, and hormonal aspects.

Suppression of immune function was traditionally thought to occur only with pharmacological levels of glucocorticoids. However, recent studies in rodents have suggested that glucocorticoids exert tonic antiinflammatory/immunosuppressive effects even at basal nonstress concentrations. To examine whether basal glucocorticoid secretion modulates immune function in man we employed the specific glucocorticoid receptor antagonist RU 486. If a tonic level of inhibition of the immune system by basal glucocorticoid levels was present, then a potentiation or enhancement of immune function might evolve in the absence of glucocorticoid action. To examine this hypothesis, we studied 11 healthy male normal volunteers who received RU 486 (10 mg/kg.day) or placebo vehicle, divided into 2 daily oral doses, for 7-14 days. Blood samples were collected every 2 days for measurement of plasma ACTH and cortisol concentrations along with 24-h urine samples for measurement of 17-hydroxysteroid and free cortisol excretion. Complete and differential blood counts, erythrocyte sedimentation rates, C-reactive protein, antinuclear antibodies, rheumatoid factor, and quantitative immunoglobulins were also determined at 2-day intervals. Leukocytes were obtained by leukopheresis for phenotypic characterization and functional analysis before and 7 days after the initiation of RU 486 or placebo therapy. Blockade of cortisol receptors with RU 486 was associated with marked compensatory elevations of plasma ACTH and cortisol and increases in 24-h urinary excretion of 17-hydroxysteroids and free cortisol. Unexpectedly, 8 of the 11 subjects developed generalized exanthem after 9 days of RU 486 treatment. One subject developed symptoms and signs consistent with the diagnosis of adrenal insufficiency. Total white blood cell counts, absolute lymphocyte, neutrophil and eosinophil counts, erythrocyte sedimentation rate, and quantitative immunoglobulins did not change with RU 486 therapy. Similarly, T-, B-, and natural killer cell subsets did not change during RU 486 treatment. Furthermore, functional evaluation of lymphocyte cytotoxicity and proliferation revealed no changes. We conclude that administration of high doses of RU 486 to normal volunteers does not result in measurable enhancement of immune function. This suggests that in man, glucocorticoids may not exert a tonic inhibitory effect on the immune system as they appear to do in rodents. Alternatively, the compensatory increase in endogenous cortisol may obviate any effect of the glucocorticoid antagonist on the immune system.(ABSTRACT TRUNCATED AT 400 WORDS)

Adrenal Insufficiency

The pathophysiology of precocious puberty.

Advances in understanding of normal puberty have clarified many of the mechanisms underlying precocity and led in several instances to better therapy. The essential diagnostic task is to determine if the normal process has been triggered prematurely or if an abnormal process (usually inappropriate sex steroid secretion) has circumvented the normal physiology.

Child

Glucocorticoid resistance in humans and nonhuman primates.

In humans, the syndrome of cortisol resistance is characterized by the absence of signs and symptoms of Cushing's syndrome, elevated total and unbound plasma cortisol concentrations, and increases in urinary free cortisol excretion and plasma adrenocorticotropic hormone. In one family, a severely affected member had hypertension and hypokalemic alkalosis associated with increased plasma concentrations of corticosterone and deoxycorticosterone. These patients are resistant to suppression of the pituitary-adrenal axis by dexamethasone. Dexamethasone therapy, however, effectively corrected hypertension and hypokalemic alkalosis in the severely affected patient, without causing signs of glucocorticoid excess. The glucocorticoid receptor from these patients has a low affinity for glucocorticoids and is unstable during thermal activation. Both the molecular weight of the glucocorticoid receptor and the size of the corresponding mRNA are similar to those of normal controls. Transformation of B-lymphocytes with Epstein-Barr virus leads to induction of glucocorticoid receptors. Receptor induction, however, is lower in patient cells than those obtained from normal controls. This decreased induction parallels decreased expression of glucocorticoid receptor mRNA. Thus, in this form of glucocorticoid resistance the glucocorticoid receptor is abnormal and leads to diminished target organ responsiveness. Many New World primates exhibit glucocorticoid "resistance," without apparent pathology. These species have markedly elevated plasma cortisol, both total and unbound concentrations, increased urinary free cortisol excretion, and marked increases in plasma adrenocorticotropic hormone and beta-endorphin. The glucocorticoid receptors of these primates have decreased affinity for glucocorticoids, are thermolabile, and are not induced by Epstein-Barr virus transformation as indicated by specific binding and mRNA expression. Both the molecular weight of the glucocorticoid receptor and the size of the corresponding mRNA are similar to those of normal controls. Despite the high plasma cortisol concentrations in these primates, there is no sodium retention and aldosterone levels are actually increased. The kidney aldosterone receptor cross-reacts poorly with cortisol, explaining the absence of sodium retention. New World primates also have progesterone, estrogen, aldosterone, and vitamin D insensitivity, suggesting a common factor linking steroid hormone receptors.

Animals

Treatment of familial male precocious puberty with spironolactone and testolactone.

Because the pubertal growth spurt in boys appears to be mediated by both androgens and estrogens, we hypothesized that blockade of both androgen action and estrogen synthesis would normalize the growth of boys with familial male precocious puberty. To test this hypothesis, we studied nine boys (age range, 3.3 to 7.7 years) during treatment with an antiandrogen (spironolactone) or an inhibitor of androgen-to-estrogen conversion (testolactone), followed by treatment with both agents. After six months of observation without treatment, the first four boys received spironolactone for six months, followed by spironolactone and testolactone. The next five boys received testolactone for six months, followed by spironolactone and testolactone. Neither spironolactone nor testolactone, given alone, was satisfactory as a treatment for this condition. However, a combination of spironolactone and testolactone, given for at least six months, restored both the growth rate and the rate of bone maturation to normal prepubertal levels and controlled acne, spontaneous erections, and aggressive behavior. The combined therapy was associated with a significantly lower growth rate than testolactone alone (P less than 0.05) and a significantly lower rate of bone maturation than spironolactone alone (P less than 0.05). No important adverse effects were observed during combined treatment. Six of the nine boys continued to receive the combined therapy for an additional 12 months and maintained normal prepubertal rates of growth and bone maturation. The mean predicted height (+/- SEM) increased progressively during the combined treatment although the difference between the pretreatment and post-treatment predictions was not significant (169.5 +/- 2.8 at the end of treatment vs. 166.2 +/- 4.5 cm before treatment; P = 0.29). We conclude that blockade of both androgen action and estrogen synthesis with the combination of spironolactone and testolactone is an effective short-term treatment for familial male precocious puberty. Further study will be required, however, to assess the long-term outcome in boys who receive this treatment.

Aggression

Hormonal and metabolic responses of untrained, moderately trained, and highly trained men to three exercise intensities.

Untrained, moderately trained (runners, 15 to 25 mi/wk), and highly trained (runners, greater than 45 mi/wk) men participated in graded treadmill exercise at 50%, 70%, and 90% of their maximal oxygen consumption to quantify the relation between intensity of exercise and sympathetic nervous system and metabolic responses. Sympathetic system activation was noted at all intensities tested and was proportional to the relative exercise intensity. The magnitudes of the norepinephrine (NE) and epinephrine (E) responses were similar in all three groups of men at each relative exercise intensity and correlated with the magnitudes of change in levels of circulating plasma adrenocorticotropin hormone, cortisol, lactate (La), phosphate (Pi), and glucose (GI). The magnitudes of change in concentrations of La, Pi, and GI were also similar for the three groups at each relative exercise intensity. In contrast, a lower degree of sympathetic system activation in response to a given absolute workload was noted in the moderately and highly trained men as compared to that of the untrained men. Sympathetic and metabolic responses to exercise are similar under conditions of comparable relative exercise intensities, regardless of conditioning level. The sympathetic-adrenal medullary system is more sensitive to exercise than the hypothalamic-pituitary-adrenal axis. For a given absolute workload, the degree of activation significantly lower in trained individuals.

Adrenocorticotropic Hormone

Efficacy of a gonadotropin-releasing hormone agonist in the treatment of uterine leiomyomata: long-term follow-up.

The authors employed a gonadotropin-releasing hormone agonist (GnRH-a) (D-His6-pro9-NET-GnRH) to treat 19 patients with symptomatic uterine leiomyomata, by daily subcutaneous injections (4 micrograms/kg) for 6 months. After therapy, patients were followed for 6 months without any therapy. Uterine volumes were measured by serial pelvic examinations and pelvic sonography. Measurements of serum estradiol, luteinizing hormone, and follicle-stimulating hormone were used to assess treatment response. Pituitary desensitization and hypoestrogenemia were achieved in all within 8 weeks, and in 18 of 19, hypoestrogenemia was maintained for the duration. Uterine volume at the conclusion of therapy (207.5 +/- 152.7 ml) was significantly reduced in all patients when compared with pretreatment sizes (420.8 +/- 276.4, P less than 0.05). Side effects included hot flashes (78%), vaginal dryness (32%), and transient frontal headaches (55%). All patients reported partial or complete relief from their symptomatic leiomyomata. Uterine volume at the conclusion of follow-up (345.4 +/- 195.7 ml) was greater than at the conclusion of therapy. Menses resumed in all patients within 4 to 8 weeks. In conclusion, GnRH-a therapy does not provide definitive therapy for symptomatic uterine leiomyomata but is effective in reducing the size of leiomyomata as a temporary measure. Gonadotropin-releasing hormone agonist therapy may be useful as an adjunct before myomectomy or hysterectomy and deserves further investigation.

Adult

Estrogen and androgen levels in women treated with radiation for cervical cancer--possible influence on breast cancer risk.

In 1984-1985, estrogen and androgen levels in blood sera were measured in 320 women who had been treated for cervical cancer in the early 1960s. Study subjects were from US clinics in Baltimore, Maryland; Boston and Norfolk, Massachusetts; Buffalo, New York; Houston, Texas; and San Juan, Puerto Rico. These clinics had participated in a larger international follow-up study of cervical cancer in which a 20-30% reduction in breast cancer risk was linked to prior pelvic irradiation, even when treatment occurred after menopause. Overall, the 203 irradiated and 117 nonirradiated women had similar mean levels of estradiol, estrone, androstenedione, and testosterone. However, there appeared to be negative, albeit inconsistent, trends for androstenedione, testosterone, and estrone, suggesting that the irradiated women had lower levels of these hormones when compared with the nonirradiated women. These differences did not reach the level of statistical significance. While chance could partially explain these findings, it is plausible that the frequently observed protective association of breast cancer with pelvic irradiation could be due in part to a decrease in steroid hormones that is secondary, perhaps, to adrenal irradiation.

Adult

Interaction of RU 486, a glucocorticoid and progestin antagonist with human circulating mononuclear leukocytes.

The glucocorticoid and progestin antagonist, RU 486 (17 beta-hydroxy-11 beta-[4-dimethylaminophenyl]-17 alpha-[1-propynyl]-estra-4, 9-dien-3-one), antagonizes the suppressive effect of dexamethasone on [14C]2-deoxyglucose uptake by intact human mononuclear leukocytes in a concentration-dependent fashion. The authors found at least two types of specific-binding sites for this compound in the mononuclear leukocytes. The first type of sites (receptor content [Ro], 10.8 +/- 1.6 fmoles/10(6) cells [mean +/- SD of 4 experiments]; equilibrium dissociation constant (Kd), 0.3 +/- 0.1 nM) have a capacity similar to that of the dexamethasone binding site (Ro, 11.2 fmoles/10(6) cells; Kd, 1.2 nM). The second type of sites (Ro, 56 +/- 27 fmoles/10(6) cells: Kd, 19 +/- 5 nM) have a higher capacity and lower affinity for RU 486 than the first type of sites and do not interact with dexamethasone. The authors were unable to demonstrate the presence of the second type of binding sites in subcellular fractions. This finding suggests that this site is unstable and lost in the fractionation process. The role of the second type of low-affinity, high-capacity RU 486 specific-binding site in intact human mononuclear leukocytes, as well as its possible occurrence in other tissue, requires further investigation.

Binding Sites

Primary adrenal causes of Cushing's syndrome. Diagnosis and surgical management.

Cushing's syndrome is rare with only 20% of patients having a primary adrenal cause of hypercortisolism. We have developed a strategy to evaluate patients with suspected Cushing's syndrome and to localize the pathologic condition responsible for the hypercortisolism. This report reviews the last 11 consecutive patients who had a primary adrenal cause of hypercortisolism. Each patient had elevated 24-hour urine free cortisol and 17-hydroxycorticosteroid excretion consistent with hypercortisolism. All but one patient had undetectable plasma ACTH levels. No patient suppressed urinary steroid levels with high-dose dexamethasone and only one patient increased plasma ACTH or cortisol levels with oCRH, findings that were consistent with a pituitary-independent form of hypercortisolism. No patient had a pituitary tumor detected by computed tomography or magnetic resonance imaging, and eight patients had adrenal tumors accurately imaged. MRI of the adrenal glands correctly diagnosed adenoma in 5 of 6 patients with adenomas, carcinoma in 1 patient, and ACTH-producing pheochromocytoma in 1 patient. One tumor classified as carcinoma by MRI appeared on pathologic examination to be an adenoma. Three patients underwent petrosal sinus sampling for measurement of ACTH before and after oCRH administration, and each had petrosal sinus ACTH levels equal to peripheral levels, consistent with a primary adrenal cause of hypercortisolism. Two of these patients had typical bilateral pigmented micronodular adrenocortical disease and the third patient had macronodular adrenocortical hyperplasia. Each of the 11 patients was cured of hypercortisolism by unilateral or bilateral adrenalectomy and no patient has developed recurrent disease during the 7 to 29 month follow-up period. New modalities including the ovine CRH test, MRI, and petrosal sinus sampling have improved the evaluation of certain patients with Cushing's syndrome.

Adolescent

Corticotropin-releasing hormone: clinical applications.

Corticotropin-releasing hormone, a 41-amino-acid peptide, is an important hypothalamic factor regulating the pituitary secretion of adrenocorticotropic hormone (ACTH). This hormone, while rarely involved in the etiology of Cushing's syndrome, seems to play a major role in the pathogenesis of non-Cushing hypercortisolemic states. The administration of synthetic human and ovine CRH has been found useful in the differential diagnosis of Cushing's syndrome and in the preoperative localization of intrasellar ACTH-secreting tumors.

Adrenal Insufficiency

Cushing syndrome due to primary pigmented nodular adrenocortical disease: findings at CT and MR imaging.

Primary pigmented nodular adrenocortical disease (PPNAD) is a rare cause of Cushing syndrome in infants, children, and young adults. It is characterized by non-adrenocorticotropic hormone-dependent hypersecretion of cortisol by multiple, pigmented nodules of hyperplastic adrenocortical cells. With a single exception, adrenal glands have been described as normal with computed tomography (CT) in all previous series. Eight patients had Cushing syndrome due to surgically proved PPNAD. Four of the eight patients had stigmas of Carney complex (lentigines, calcified Sertoli cell tumors of the testes, and cardiac and soft-tissue myxomas). CT and/or magnetic resonance (MR) imaging demonstrated unilateral or bilateral nodularity in five of six patients examined. Macronodules (greater than 10 mm) were seen in the two oldest patients. As the clinical presentation of Cushing syndrome in this group of patients may be atypical (severe osteoporosis or short stature), the detection of multiple, small adrenocortical nodules with CT or MR imaging supports, or may even suggest, the diagnosis of PPNAD.

Adolescent

Growth hormone responses to growth hormone-releasing hormone in Hand-Schüller-Christian Disease.

Bolus doses of GH-releasing hormone (GHRH), 1 microgram/kg i.v., were given to two groups of adult patients with growth hormone deficiency (GHD): 9 with Hand-Schüller-Christian disease (HSCD, presumed hypothalamic GHD) and 9 with idiopathic GHD (IGHD, etiology unknown). Six patients in each group were then given further GHRH doses daily for 5 days, and the GH responses to GHRH were measured over 3 h on day 1 and day 5. Plasma levels of insulin-like growth factor-I (IGF-I) were measured twice daily on days 1 and 5 during GHRH treatment. All patients with HSCD had measurable GH responses to the first dose of GHRH, with a mean peak response of 6.4 +/- 2.1 ng/ml (mean +/- SE). Only 5 of 9 patients with IGHD had GH responses above the detection limits of the assay; their mean peak response, 1.3 +/- 0.2 ng/ml, was significantly lower than the GH responses of the HSCD patients (p less than 0.05). Responses in both groups of patients were lower than those previously observed in normal adult men (35 +/- 8 ng/ml; p less than 0.01). Five days of daily stimulation with GHRH significantly (p less than 0.01) increased the GH response in both groups of patients. The rise was greater in patients with HSCD than with IGHD (HSCD, 5.1 +/- 2.5 ng/ml on day 1, vs. 12.0 +/- 6.8 ng/ml on day 5; IGHD, 1.4 +/- 0.3 ng/ml vs. 2.9 +/- 0.6 ng/ml).(ABSTRACT TRUNCATED AT 250 WORDS)

Adult