Search PubMed⌕ Search

Biomedical subjects

D L Loriaux

Publications and source records attributed to D L Loriaux.

At least 145 records · Page 8Linked to original sources

Abnormal hypothalamic-pituitary-adrenal function in anorexia nervosa. Pathophysiologic mechanisms in underweight and weight-corrected patients.

To study the pathophysiology of hypercortisolism in patients with anorexia nervosa, we examined plasma ACTH and cortisol responses to ovine corticotropin-releasing hormone before and after correction of weight loss. We also studied patients with bulimia whose weight was normal, since this disorder has been suspected to be a variant of anorexia nervosa. Before their weight loss was corrected, the anorexic patients had marked hypercortisolism but normal basal plasma ACTH. The hypercortisolism was associated with a marked reduction in the plasma ACTH response to corticotropin-releasing hormone. When these patients were studied three to four weeks after their body weight had been restored to normal, the hypercortisolism had resolved but the abnormal response to corticotropin-releasing hormone remained unchanged. On the other hand, at least six months after correction of weight loss their responses were normal. The bulimic patients whose weight was normal also had a normal response to corticotropin-releasing hormone. We conclude that in underweight anorexics, the pituitary responds appropriately to corticotropin-releasing hormone, being restrained in its response by the elevated levels of cortisol. This suggests that hypercortisolism in anorexics reflects a defect at or above the hypothalamus. The return to eucortisolism soon after correction of the weight loss indicates resolution of this central defect despite persistence of abnormalities in adrenal function.

Adrenocorticotropic Hormone↗

Luteinizing hormone releasing hormone analogue therapy for central precocious puberty. Long-term effect on somatic growth, bone maturation, and predicted height.

The long-acting analogue of luteinizing hormone releasing hormone, D-Trp6-Pro9-NEt-LHRH (LHRHa), is effective in the short-term treatment of central precocious puberty. We report the results of two to four years of LHRHa therapy in 27 children with this disorder. Secondary sex characteristics regressed in most patients. Sex steroid levels and basal and LHRH-stimulated gonadotropin levels remained suppressed compared with pretreatment values. Linear growth rates decreased from 11.0 +/- 0.8 (SEM) cm/yr before treatment to 5.7 +/- 0.4 cm/yr at two years of treatment and 3.7 +/- 0.7 cm/yr at four years of treatment. Predicted heights by the Bayley-Pinneau method increased from 156.4 +/- 2.0 cm before treatment to 162.3 +/- 2.3 cm at two years and 163.4 +/- 2.4 cm at three years. Five patients treated for four years had a mean increase in predicted height of 5.5 cm. To date no adverse effects have been observed. However, the ultimate safety of this analogue is not known. We conclude that LHRHa appears to be an effective long-term therapy for central precocious puberty.

Body Height↗

Cortisol resistance in man.

Primary cortisol resistance in man is a familial disease characterized by increased plasma cortisol concentrations, high urinary free cortisol excretion, a normal circadian pattern of cortisol secretion, resistance to adrenal suppression by dexamethasone and absence of the clinical stigmata of Cushing's syndrome or signs of adrenal insufficiency. In its severe form, hypertension and hypokalemic alkalosis are present, owing to increased secretion of the sodium-retaining corticoids, corticosterone and deoxycorticosterone. In subjects with a less severe resistance to cortisol, there are no clinical abnormalities and the disease is revealed only by detailed examination of several parameters of cortisol metabolism or by glucocorticoid receptor studies. In whole-cell glucocorticoid receptor assays (peripheral mononuclear leukocytes, fibroblasts, or B-lymphocytes transformed with the Epstein-Barr Virus) low receptor affinity for dexamethasone could be demonstrated conclusively only in the severely affected subject. When affected cells are transformed with the Epstein-Barr virus, receptor induction is less than that of normal cells. The decreased affinity of the receptor for its ligand is reflected in an increased rate of loss of specific bound ligand during thermal activation. The molecular weight of the receptor, determined by SDS-PAGE, is similar to that from normal cells (approximately 92,000). Only in the severely affected patient was the proportion of activated receptor remaining in the cytosol of thermally activated intact cells reduced. At saturating concentrations of dexamethasone, nuclear binding appears normal in cells from both the severe and the asymptomatic forms of this condition, providing an explanation for the apparently complete compensation of the target tissue resistance to glucocorticoids by the high plasma cortisol levels. The clinical manifestations of the disorder (hypertension, hypokalemia) can be corrected with high doses of dexamethasone (3mg/day).

Adrenocorticotropic Hormone↗

The new world primates as animal models of glucocorticoid resistance.

Many New World primate species have greatly increased plasma cortisol concentrations, decreased plasma cortisol binding globulin capacity and affinity, marked resistance of the hypothalamic-pituitary-adrenal axis to suppression by dexamethasone, and no biological evidence of glucocorticoid excess. These primates also have high levels of circulating progesterone, estrogen, mineralocorticoid, androgen and vitamin D. The glucocorticoid target tissues that have been examined (circulating mononuclear lymphocytes and cultured skin fibroblasts) have normal concentrations of glucocorticoid receptors with decreased affinity for dexamethasone. Transformation of B-lymphocytes with the Epstein-Barr virus leads to glucocorticoid receptor induction that is less than that observed with cells from Old World primates. The receptor in these cells has a low affinity for dexamethasone. The low affinity leads to an increased loss of specific bound ligand during thermal activation. Meroreceptor generation is normal. The molecular weight of the receptor, determined by SDS-PAGE, is similar to that of Old World primates (approximately 92,000) and the activation pattern per se, examined in vitro by heating cytosol and performing phosphocellulose chromatography, appears similar to that of human controls. The ratios of nuclear to cytosolic hormone-receptor-complexes and of cytosolic activated to unactivated receptor complexes in intact cells are similar to Old World primates. Results from mixing studies do not support the hypothesis that a binding inhibitor(s) or a deficient cytosolic positive modifier(s) of binding underlies the findings in these primates. The New World primates, unlike men with the syndrome of primary cortisol resistance, have compensated for their condition with intra-adrenal and mineralocorticoid receptor adaptations. Thus, unlike Old World primates, cortisol in New World primates has only weak sodium-retaining potency because the aldosterone receptor has a low affinity for cortisol. The common element that would explain the apparent resistance to six steroid hormones in New World primates remains unknown.

Adrenal Glands↗

Effect of the antiprogestin RU486 on progesterone production by cultured human granulosa cells: inhibition of the ovarian 3B-hydroxysteroid dehydrogenase.

Recent studies suggest that the antiprogestin RU486 may have a direct effect on human ovarian luteal function. To further examine this possibility, we have studied the effect of RU486 on ovarian steroidogenesis using human granulosa cells obtained from women undergoing in vitro fertilization. RU486 at concentrations of 0.1, 2, 5, 10 and 100 nM was incubated with 10(5) granulosa cells over 72 hours. Significant suppression of progesterone production occurred following treatment of cultured cells with 2, 5, 10, and 100 nM RU486 at 24 hours (p less than 0.05) and 48 hours (p less than 0.01). At 72 hours, significant decreases in progesterone production were observed with 10 nM (p less than 0.05) and 100 nM RU486 (p less than 0.01). The greatest effect of RU486 on progesterone production occurred at 24 hours of incubation (slope = -8.03) compared with 48 (slope = -4.71) or 72 (slope = -2.31) hours (p less than 0.01). Maximal suppression of progesterone production occurred using 10 nM RU486 with no further significant suppression observed with 100 nM RU486. Other steroids (R5020, DHA) failed to suppress progesterone production suggesting that the observed inhibitory effect on progesterone was specific to RU486. To better understand how RU486 decreases progesterone production in granulosa cell cultures, we measured human ovarian 3B-hydroxysteroid dehydrogenase (3BHSD) in the presence and absence of RU486 in vitro. A significant dose-dependent decrease in the activity of 3BHSD was observed at concentrations of RU486 that were equal to or greater than substrate concentration. Taken together, these findings suggest that RU486 may directly affect human ovarian progesterone production through a mechanism that involves a reduction in 3BHSD activity.

3-Hydroxysteroid Dehydrogenases↗

Long-acting gonadotropin hormone-releasing hormone analog used to treat uteri.

Because the size of leiomyomata uteri often decreases significantly after menopause, the authors elected to employ a long-acting gonadotropin hormone-releasing hormone analog (GnRH-alpha) (imbzl-D-His6-Pro9-Net-GnRH) to create a state of pseudomenopause in six patients with leiomyomata uteri diagnosed on the basis of pelvic examination and confirmed by pelvic ultrasonography. Patients received daily, subcutaneous injections of GnRH-alpha (4 micrograms X kg-1 X 24 hour-1) for 6 months. Uterine size (13.8 +/- 4 weeks [mean +/- standard deviation (SD), n = 6]) was determined by pelvic examination and uterine volume (533.9 +/- 394 ml [mean +/- SD, n = 6]) was determined by pelvic ultrasonography before medical therapy was begun. They observed a decrease in uterine size by pelvic examination within 4 weeks of the initiation of therapy, and all patients experienced a decrease in uterine size (9.5 +/- 4 weeks [mean +/- SD, n = 6]) (P less than 0.05) within 8 weeks of initiation of therapy. After 6 months of therapy, uterine size was 229.5 +/- 145 ml (mean +/- SD, n = 6). During treatment, plasma estrogen concentrations were assessed intermittently (every 1 to 4 weeks) and remained less than 4 pg X ml-1 throughout the period of therapy. All six patients have discontinued therapy. There has been no increase in uterine size in these patients for a period from 3 to 7 months.(ABSTRACT TRUNCATED AT 250 WORDS)

Adolescent↗

Effect of low doses of estradiol on 6-month growth rates and predicted height in patients with Turner syndrome.

We randomly assigned 16 girls with Turner syndrome, age 5 to 15 years, to receive treatment with 100 ng/kg/day ethinyl estradiol or placebo for 6 months, with crossover after a 2-month interim period. We assessed growth by measurement of the 4-week lower leg growth rate and by height velocity. Bone age was determined at the beginning and end of treatment. Growth rate during ethinyl estradiol treatment was approximately 70% greater than during placebo (P less than 0.001), without any bone age advancement relative to that with placebo. The change in predicted height was significantly greater after 6 months treatment with ethinyl estradiol than after treatment with placebo (mean +/- SEM, +0.35 +/- 0.38 cm vs. -0.85 +/- 0.32 cm, P less than 0.03). Breast budding occurred in six patients. We conclude that it may be feasible to begin low-dose estrogen therapy to promote growth at an earlier age than would be conventionally used to induce pubertal development. These data are still relatively short term, however; until long-term data are available, it would be premature to make definitive recommendations regarding the dose and timing of estrogen treatment in Turner syndrome.

Adolescent↗

The NIH experience with precocious puberty: diagnostic subgroups and response to short-term luteinizing hormone releasing hormone analogue therapy.

Between 1979 and 1983, 129 children (95 girls) with precocious puberty were referred to the National Institutes of Health and received treatment for at least 6 months with the long-acting LHRH analogue D-Trp6-Pro9-NEt-LHRH. The majority (107 of 129) of the children had central precocious puberty mediated by activation of the hypothalamic-pituitary-gonadal axis in association with hypothalamic hamartomas (24 of 107) or other central nervous system lesions (21 of 107), or idiopathic precocious puberty (62 of 107). Hypothalamic hamartomas or other central nervous system lesions were a frequent cause of central precocious puberty in girls (27 of 87), but idiopathic precocious puberty was still the most frequent diagnosis (63%). Idiopathic precocious puberty was uncommon in boys (6%). The patients with peripheral precocious puberty included six girls with McCune-Albright syndrome and six boys with familial male precocious puberty. These children had peripheral sex steroid secretion in the absence of hypothalamic-pituitary-gonadal axis maturation. The children with combined peripheral and central precocious puberty included nine children with congenital adrenal hyperplasia and one girl with a virilizing adrenal tumor. In the patients with central precocious puberty or combined peripheral and central precocious puberty, LHRHa therapy caused suppression of gonadotropin and sex steroid levels (P less than 0.001), stabilization or regression of secondary sexual characteristics, and decreases in growth rate and in the rate of bone age maturation (P less than 0.005). Patients with peripheral precocious puberty, however, had no significant change in gonadotropin or sex steroid levels, growth rate, or the rate of bone age maturation, and no improvement in secondary sexual characteristics. Thus, LHRHa is an effective treatment of central precocious puberty and combined peripheral and central precocious puberty, but is ineffective in the therapy of peripheral precocious puberty.

Adrenal Hyperplasia, Congenital↗

Adaptation during surgical stress. A reevaluation of the role of glucocorticoids.

Pharmacologic doses of glucocorticoids are administered to patients with adrenal insufficiency during operative procedures to prevent hemodynamic instability, cardiovascular collapse, and death. Since these supraphysiologic doses might not be necessary and might have adverse effects, we examined the effects of different doses of glucocorticoids on hemodynamic adaptation during surgical stress in adrenalectomized primates. Sham-adrenalectomized placebo-treated animals served as controls. Adrenalectomized monkeys were maintained for 4 mo on physiologic glucocorticoid and mineralocorticoid replacement. The adrenalectomized monkeys were then stratified into three groups receiving, respectively, subphysiological (one-tenth the normal cortisol production rate), physiological, or supraphysiological (10 times the normal cortisol production rate) cortisol (hydrocortisone) treatment. 4 d later a cholecystectomy was performed. The intraoperative hemodynamic and metabolic parameters, perioperative survival rates, and postoperative wound healing were compared. The subphysiologically treated group was hemodynamically unstable before, during, and after surgery and had a significantly higher mortality rate than control. In this group, arterial blood pressure was low, and the cardiac index, systemic vascular resistance index, and left ventricular stroke work index were all reduced, suggesting decreased cardiac contractility and blood vessel tone. In contrast, the physiologically replaced group was indistinguishable from either supraphysiologically treated animals or sham-operated controls. All groups had similar metabolic profiles and normal wound healing. These findings suggest that the permissive actions of physiologic glucocorticoid replacement are both necessary and sufficient for primates to tolerate surgical stress. Supraphysiological glucocorticoid treatment has no apparent advantage during this form of stress in the primate.

Adaptation, Physiological↗

Ovarian function in girls with McCune-Albright syndrome.

We measured plasma estradiol levels and ovarian volumes in eight girls with precocious puberty due to McCune-Albright syndrome. Six girls had gonadotropin-independent ovarian estrogen secretion and two girls had pubertal gonadotropin levels. Mean ovarian volume in all patients was significantly greater than in normal prepubertal girls. Mean ovarian volumes of the girls with McCune-Albright syndrome overlapped the range found in girls with idiopathic central precocious puberty or central precocious puberty associated with central nervous system lesions. However, the degree of asymmetry between the right and left ovaries was significantly greater in girls with McCune-Albright syndrome. Asymmetry was due, for the most part, to the presence of large solitary cysts in the larger of the two ovaries. In the six girls with McCune-Albright syndrome and gonadotropin-independent precocious puberty, both mean ovarian volume and the degree of asymmetry between the right and left ovaries were significantly correlated with plasma estradiol. Serum follicle-stimulating hormone bioactivity was increased in two patients but did not vary with ovarian cyst size. Thyroid-stimulating hormone levels were normal but serum prolactin was slightly elevated in one of the six girls with gonadotropin-independent precocious puberty. Fluctuation in the size of unilateral ovarian cysts appears to result in changes in the plasma estradiol level, leading to advancement and spontaneous regression of secondary sexual characteristics and menses in girls with McCune-Albright syndrome. The cause of the cyst formation is unknown but may be related to periodic elevation of as yet undefined serum factors such as follicle-stimulating hormone bioactive substances.

Animals↗

The effect of serum prolactin on plasma adrenal androgens and the production and metabolic clearance rate of dehydroepiandrosterone sulfate in normal and hyperprolactinemic subjects.

Hyperprolactinemic patients may have increases in plasma dehydroepiandrosterone (DHA) and dehydroepiandrosterone sulfate (DHAS). We examined the effect of lowering serum PRL with bromocriptine or pituitary surgery on the serum concentrations of adrenal androgens and on the production rate (PR) and MCR of DHAS in eight hyperprolactinemic women (HP). We also examined the effect of bromocriptine therapy on adrenal androgens in five normal men. Serum DHAS was elevated in HP compared to normal women (mean +/- SEM, 254 +/- 28 vs. 182 +/- 13 microgram/dl; P less than 0.04). Serum DHA and androstenedione (delta 4) in HP were not significantly different from normal. Serum PRL fell from 160 +/- 16 to 37 +/- 9 ng/ml during or after treatment. Mean 24-h serum DHAS fell from 198 +/- 30 to 106 +/- 17 micrograms/dl (P less than 0.001) with treatment, without a change in the mean 24-h serum cortisol concentration (6.2 +/- 0.4 vs. 6.6 +/- 0.4 micrograms/dl). Thus, the DHAS to cortisol (DHAS/F) ratio fell significantly (32 +/- 5 to 17 +/- 4; P less than 0.001). This was also true of the DHAS/F ratio during ACTH stimulation (8 +/- 1 to 6 +/- 1; P less than 0.02). Similar changes were found in basal and ACTH-stimulated DHA/F ratios, whereas the basal and ACTH-stimulated delta 4/F ratios did not change significantly with treatment. Treatment lowered the PR of DHAS from 27 +/- 5 to 17 +/- 3 mg/24 h (P less than 0.03) and increased the DHAS MCR from 16 +/- 2 to 21 +/- 3 liters/24 h (P less than 0.01). Bromocriptine treatment of normal men lowered serum PRL from 15 +/- 2 to less than 2.5 ng/ml. There were no significant changes in the basal and ACTH-stimulated serum DHAS/F, DHA/F, or delta 4/F ratios or DHAS PR and MCR during bromocriptine therapy. The failure of bromocriptine to significantly alter these steroids in normal men suggests that bromocriptine was not directly responsible for the changes in HP treated with this drug. A mechanism for the increased PR of DHAS in HP was sought by examining the serum concentrations of the steroid biosynthetic intermediates relevant to DHAS production. Lowering serum PRL was associated with a decrease in basal and ACTH-stimulated 17-hydroxypregnenolone/17-hydroxyprogesterone and DHA/delta 4 ratios, suggesting an increase in 3 beta-hydroxysteroid dehydrogenase/delta 4,5-isomerase activity. However, increased gonadal secretion of the delta 4-steroids may have occurred with the fall in serum PRL.(ABSTRACT TRUNCATED AT 400 WORDS)

Adrenal Glands↗

Ovine corticotropin-releasing hormone stimulation test in normal children.

We administered ovine corticotropin-releasing hormone (CRH) as a bolus iv injection (1 microgram/kg) to 21 normal boys and girls, aged 6-15 yr. CRH stimulated release of immunoreactive ACTH and cortisol in all children. The peak plasma ACTH and cortisol levels after CRH were 15.7 +/- 9.4 (SD) pg/ml and 14.3 +/- 3.6 micrograms/dl, respectively, in the girls, and 20.7 +/- 9.7 pg/ml and 16.6 +/- 3.3 micrograms/dl, respectively, in the boys. Plasma ACTH and cortisol responsiveness to CRH did not differ between girls or boys, or between children and adults. Cortisol-binding globulin concentrations in plasma did not change with age. We conclude that CRH provides a safe means of stimulating the pituitary-adrenal axis in children.

Adolescent↗

Responses of plasma adrenocorticotropin, cortisol, and dehydroepiandrosterone to ovine corticotropin-releasing hormone in healthy aging men.

To assess the effects of age on both the pituitary ACTH response to corticotropin-releasing hormone (CRH) and the secretory responses of cortisol (F) and dehydroepiandrosterone (DHEA) to endogenous rises in ACTH, we measured evening basal and ovine CRH (oCRH; 1 mu/kg)-stimulated plasma concentrations of ACTH,F, and DHEA in 49 healthy men, aged 21-86 yr. By analysis of variance, we found no change with age in either the basal concentration of ACTH or the magnitude of the peak ACTH response to oCRH. Older men had higher basal F levels (P less than 0.05), while basal plasma levels of CBG and ratios of F to CBG did not vary significantly with age (P greater than 0.1). We also found no significant increase with age in the magnitude of the peak F response to oCRH (P greater than 0.2), although peak F responses occurred significantly earlier (P less than 0.03) in the older men. Basal plasma levels of DHEA decreased significantly with age (P less than 0.001), as did the magnitude of peak DHEA responses to endogenous ACTH rises (P less than 0.01). There was no alteration in the timing of the peak DHEA response with age (P greater than 0.7). We conclude that while ACTH and F responses to evening injections of oCRH are well maintained in healthy aging men, that of DHEA is discordantly decreased. The present findings are compatible with the hypotheses that there is a diminished sensitivity of ACTH secretion to negative feedback regulation by glucocorticoids in older men, and there is an ACTH-independent age-related diminution in adrenal androgen secretion.

Adrenocorticotropic Hormone↗

Corticotropin-releasing hormone (CRH) stimulation in Nelson's syndrome: response of adrenocorticotropin secretion to pulse injection and continuous infusion of CRH.

Nelson's syndrome develops in 10-15% of patients with Cushing's disease who undergo bilateral adrenalectomy. Whether the pituitary tumors of Nelson's syndrome are autonomous or are regulated by hypothalamic signals or glucocorticoids is controversial. We, therefore, compared the plasma ACTH responses to synthetic ovine corticotropin-releasing hormone (CRH) in 11 patients with Nelson's syndrome, 1 patient with Cushing's disease who had had bilateral adrenalectomy and did not have Nelson's syndrome, 14 patients with Cushing's disease, and 27 normal subjects. The plasma ACTH response to CRH in 10 patients with Nelson's syndrome was markedly increased and prolonged compared to the responses of normal subjects or patients with Cushing's disease. In 4 patients with Nelson's syndrome, plasma ACTH and cortisol concentrations also were determined at frequent intervals for 10-24 h during continuous infusions of 0.15 M saline or CRH (1 microgram/kg X h). There was no desensitization of ACTH secretion during short term continuous infusion of CRH. Exogenous cortisol inhibited CRH-stimulated ACTH secretion. These findings suggest that the ACTH response to CRH of patients with ACTH-secreting tumors of Nelson's syndrome differs from the response of those who have the microadenomas of Cushing's disease in two ways: the magnitude is greater, and the response is prolonged. These differences can be explained by the greater size of the tumor and the reduced glucocorticoid feedback in adrenalectomized patients with Nelson's syndrome.

Adolescent↗