Search PubMedSearch

Biomedical subjects

D L Loriaux

Publications and source records attributed to D L Loriaux.

At least 91 records · Page 5Linked to original sources

Acute exercise stimulates the renin-angiotensin-aldosterone axis: adaptive changes in runners.

The plasma concentrations of aldosterone and its known regulators, plasma renin, potassium and ACTH, were examined during graded intensities of treadmill exercise (50, 70 and 90% of maximal oxygen uptake, VO2max). Sedentary men (n = 7) and two groups of runners of different training status (moderately trained, 15-25 miles/week, n = 7; highly trained, greater than 45 miles/week, n = 7) were studied in an attempt to define whether physical training causes changes in aldosterone homeostasis. Acute exercise was associated with elevations in plasma aldosterone, renin activity, potassium and ACTH in all three groups of subjects at exercise intensities of 70 and 90% VO2max. There were no differences in any of the responses among the three groups except for a blunted response of PRA at 90% VO2max in highly trained athletes. The exercise-induced rise of plasma aldosterone concentration did not correlate with changes in the concentration of its regulatory substances. We conclude that exercise stimulates the renin-angiotensin-aldosterone axis in an intensity-dependent fashion. With increased physical training identical hormonal and metabolic responses result at increased absolute workloads.

Adrenocorticotropic Hormone

Effect of gonadotropin secretion rate on the radiosensitivity of the rat luteinizing hormone-releasing hormone neuron and gonadotroph.

To test the hypothesis that the functional state of hypothalamic LHRH neurons and pituitary gonadotrophs might alter their radiosensitivity, we determined the experimental conditions under which the gonadotropin response to castration could be impaired by a single dose of cranial irradiation. Single doses of cranial irradiation greater than 2000 rads were lethal to unshielded rats. Shielding of the oropharynx and esophagus allowed the animals to survive doses up to 5000 rads. Doses between 2000 and 5000 rads had no effect on basal gonadotropin levels for as long as 3 months after irradiation. Irradiation caused a dose- and time-dependent impairment, however, in the gonadotropin response to castration. Impairment of the gonadotropin levels of castrate animals occurred in animals that were irradiated either before or after castration. However, rats irradiated in the castrate state showed a decreased susceptibility to irradiation damage. Additionally, stimulation of the pituitary by LHRH agonist (LHRHa) 3 h before irradiation significantly reduced the impairment of gonadotropin secretion 12-20 weeks after irradiation (P less than 0.05). Thus, increased functional activity of the rat hypothalamus or pituitary at the time of irradiation, induced by either castration or acute LHRHa administration, was associated with some protection against the gonadotropin-lowering effect of irradiation. Based upon these data, we hypothesize that stimulation of gonadotropin secretion at the time of therapeutic cranial irradiation in humans might protect against subsequent impairment of gonadotropin secretion.

Animals

Androstanediol glucuronide isomers in normal men and women and in men infused with labeled dihydrotestosterone.

3 alpha-Androstanediol glucuronide (Adiol G) is a major metabolite of dihydrotestosterone (DHT). Adiol G actually represents 2 different compounds, since the glucuronide can be conjugated at the 3-carbon position (Adiol 3-G) or at the 17-carbon position (Adiol 17-G). To determine which glucuronide represents the predominant physiological DHT metabolite and which isomer is the major circulating form, we developed a RIA to directly measure Adiol 3-G in serum extracts. In 10 normal men, mean serum Adiol 3-G and total Adiol G levels were 4.44 +/- 0.49 (+/- SE) nmol/L (208 +/- 23 ng/dL) and 27.9 +/- 2.8 nmol/L (1310 +/- 129 ng/dL), respectively (13.9 +/- 3.0% of Adiol G was Adiol 3-G). In 10 normal women sampled during the early follicular phase, mean serum Adiol 3-G and total Adiol G levels were 2.64 +/- 0.64 nmol/L (124 +/- 30 ng/dL) and 14.9 +/- 1.5 nmol/L (697 +/- 69 ng/dL), respectively (17.4 +/- 3.6% of Adiol G was Adiol 3-G). In 4 normal men infused for 8 h with tritiated DHT, 17.4 +/- 3.4% of the resulting tritiated Adiol G was Adiol 3-G. These results indicate that Adiol 17-G is the predominant circulating form of Adiol G in normal men and women and that it is also the major Adiol G isomer derived from DHT.

Adult

The antiglucocorticoid and antiprogestin steroid RU 486 suppresses the adrenocorticotropin response to ovine corticotropin releasing hormone in man.

The glucocorticoid and progesterone antagonist RU 486 normalizes the clinical and biochemical features of hypercortisolism in patients with nonpituitary Cushing's syndrome, presumably by antagonizing the action(s) of cortisol. Since RU 486 has progesterone agonist activity in addition to its progesterone antagonist action, the possibility that it might have some glucocorticoid agonist action did not seem unreasonable. To test this hypothesis we examined the effects of RU 486 on pituitary ACTH secretion in 10 patients with primary adrenal insufficiency in whom glucocorticoid replacement was withheld for 36 h. Each patient received, in randomized sequence 3-7 days apart, an oral dose of placebo, RU 486 (20 mg/kg), cortisol (0.1 mg/kg), or a combination of RU 486 and cortisol at 1800 h. Two hours later, an iv bolus dose of ovine CRH (1 microgram/kg) was administered, and plasma ACTH levels were measured serially for 3 h. RU 486 suppressed ovine CRH-stimulated ACTH secretion, albeit less than cortisol. Its glucocorticoid agonist effect was calculated to be approximately 1/250th that of cortisol on a weight basis. Additionally, RU 486 partially antagonized cortisol-induced suppression of ACTH secretion. These findings suggest that RU 486 is a partial glucocorticoid agonist and offer some insight as to its action in patients with Cushing's syndrome. Whether this degree of glucocorticoid agonist activity is adequate to support life, however, is not known.

Addison Disease

Interaction of epidermal growth factor with the hypothalamic-pituitary-adrenal axis: potential physiologic relevance.

Epidermal growth factor (EGF), a polypeptide mitogen that participates in wound healing, has ACTH-like activity in ewes. We examined its effects on the primate hypothalamic-pituitary-adrenal (HPA) axis by administering mouse EGF (mEGF) iv (0-100 micrograms/kg) to rhesus monkeys. mEGF caused dose-dependent elevations of plasma ACTH and cortisol in these animals. To define whether the locus of stimulation was the hypothalamus and/or the pituitary gland we examined the capacity of mEGF to directly stimulate hypothalamic CRH or pituitary ACTH secretion in a rat hypothalamic organ culture system and a rat pituitary cell system, respectively. mEGF stimulated hypothalamic CRH release in a dose-dependent manner, but failed to cause pituitary ACTH release. We conclude that EGF is a stimulator of the HPA axis in primates. Thus, EGF, and/or one of its naturally occurring analogs, may participate in the physiological activation of the HPA axis at times during which the concentrations of these factors are raised in the systemic circulation and/or locally in the hypothalamus. Such states may include trauma, surgery, and possibly emotional stress.

Adrenocorticotropic Hormone

Resumption of puberty after long term luteinizing hormone-releasing hormone agonist treatment of central precocious puberty.

To determine whether puberty resumes normally after long term LHRH agonist (LHRHa) treatment, we studied 16 children with central precocious puberty treated with LHRHa (D-Trp6,Pro9,NEt-LHRH) for 1-4 yr (mean, 3.3 yr). Treatment was discontinued at a mean age of 11.6 +/- 1.3 (+/- SD) yr. Plasma hormone levels, growth velocity, rate of bone maturation, and pubertal stage were assessed at the end of treatment and 3 and 12 months later. Basal plasma sex steroid and basal and LHRH-stimulated gonadotropin levels returned to near-pretreatment levels 3 months after discontinuation of therapy and were fully restored to pretreatment levels at 12 months. Growth velocity, which had been 7.8 cm/yr before treatment, was stable after discontinuation of treatment at approximately 2.6 cm/yr. The predicted height, which had increased during treatment (P less than 0.01), remained stable at approximately 5 cm above the pretreatment predicted height. The rate of bone age advancement (delta bone age/delta chronological age) increased gradually from 0.4 at the end of treatment to the normal value of 0.9 12 months posttreatment. Breast and pubic hair pubertal stages, which were stable throughout treatment and were 4.0 +/- 0.8 (+/- SD) and 3.6 +/- 1.0 at the end of treatment, increased to 4.9 +/- 0.2 and 4.5 +/- 1.0. This approximated the normal rate of 1 stage/yr. Menses occurred in 8 of 12 girls within 1 yr after treatment and in an additional 3 by 20 months after treatment. Six of the girls had menstruated before treatment, and all of these menstruated within 14 months after discontinuing therapy. We conclude that gonadotropin and sex steroid secretion and the clinical progression through puberty appear to resume normally after discontinuation of long term LHRHa treatment of central precocious puberty. Long term follow-up will be required, however, to determine whether the improvement in predicted height of these patients will be achieved, and whether adult reproductive function will be normal.

Body Height

Premature thelarche and central precocious puberty: the relationship between clinical presentation and the gonadotropin response to luteinizing hormone-releasing hormone.

Premature thelarche is a benign condition that affects young girls. In contrast, central precocious puberty is considered a more serious disorder that causes progressive secondary sexual development, accelerated growth and skeletal maturation, early epiphyseal fusion, and short adult stature. Differentiation between these 2 conditions is important, but may be difficult on clinical grounds, since patients with both disorders may present initially as isolated breast development. To examine the potential usefulness of gonadotropin measurements in distinguishing early central precocious puberty from premature thelarche, we measured basal and LHRH-stimulated plasma gonadotropin levels in 58 girls with idiopathic premature breast development. The girls were divided into six clinically distinct groups, based on the severity of clinical presentation, ranging from isolated breast development (group A) to complete secondary sexual development and accelerated growth and skeletal maturation (group F). The mean basal plasma LH levels and the peak LH response to LHRH stimulation were significantly less in girls with isolated thelarche (group A) than in girls with complete sexual development (group F). The mean basal plasma FSH levels did not differ between these groups, but the peak FSH response to LHRH was greater in girls with isolated thelarche than in girls with complete sexual development. Thus, girls with isolated premature thelarche had a FSH-predominant response to LHRH [mean ratio of peak LH to peak FSH, 0.29 +/- 0.10 (+/- SD)], while girls with complete sexual development had a LH-predominant response (peak LH/FSH, 4.16 +/- 1.80). All girls with isolated thelarche had peak LH/FSH ratios less than 1, and all girls with complete sexual development had a ratio greater than 1. Girls with early or intermediate manifestations of central precocious puberty, who had features of puberty in addition to breast development but lacked all of the features of group F, comprised groups B-E. These girls also had intermediate peak LH/FSH ratios, ranging from 0.29 +/- 0.10 (group B) to 3.35 +/- 2.66 (group E). We conclude that girls with early central precocious puberty frequently have LH and FSH responses to LHRH that are indistinguishable from the FSH-predominant responses of girls with isolated thelarche. These data are consistent with the hypothesis that premature thelarche and central precocious puberty may represent different positions along a continuum of hypothalamic LHRH neuron activation.

Breast

The effect of short term treatment with growth hormone and ethinyl estradiol on lower leg growth rate in girls with Turner's syndrome.

An important consequence of Turner's syndrome is short stature. We previously reported that the optimal doses of ethinyl estradiol (EE2) and GH for the stimulation of short term growth in such patients were 100 ng/kg.day and 0.15 U/kg (administered sc three times weekly), respectively. The aim of this study was to determine whether the combination of low dose estrogen and GH would stimulate short term growth more than either agent administered alone. Thirty-nine girls with Turner's syndrome (aged 5-15 yr) underwent one to three 6-month cycles, each consisting of a 2-month baseline period, a 2-month treatment period, and a subsequent 2-month washout period. During the first 2 yr of the study, the girls were assigned to receive the three treatments in random order. The treatments were EE2 (100 ng/kg.day, orally), GH (0.15 U/kg, sc, three times weekly), or the combination of EE2 and GH. Subsequently, some of the girls were treated with reduced doses of EE2 (50 ng/kg.day) and GH [0.09 U/kg, three times weekly (tid)] according to the same protocol. Lower leg length was measured every 2 months throughout the study. EE2 increased lower leg growth rate significantly at the dose of 100 ng/kg.day, but not at the dose of 50 ng/kg.day. Similarly, the higher dose of GH (0.15 U/kg, tiw) increased lower leg growth rate significantly, whereas the lower dose (0.09 U/kg, tiw) did not. However, combined treatment with the lower doses of EE2 (50 ng/kg.day) and GH (0.09 U/kg, tiw) stimulated lower leg growth rate significantly and to a similar degree as the higher dose of GH (0.15 U/kg, tiw). This higher dose of GH appeared to cause a maximal increase in lower leg growth rate, which was not further increased by combined administration with the higher dose (100 ng/kg.day) of estrogen. Thus, addition of low dose EE2 to an optimal dose of GH did not cause any apparent increase in short term lower leg growth rate in girls with Turner's syndrome. Whether the long term outcome of GH treatment would be altered by concurrent administration of low dose estrogen will require long term clinical trials.

Adolescent

The antiglucocorticoid and antiprogestin steroid RU 486: its glucocorticoid agonist effect is inadequate to prevent adrenal insufficiency in primates.

The glucocorticoid receptor antagonist RU 486 has been used to treat the hypercortisolism of patients with nonpituitary Cushing's syndrome. Since endogenous cortisol production fluctuates in many patients with either the ectopic ACTH syndrome or adrenocortical tumors, treatment of these patients with a fixed dose of RU 486 introduces the risk of adrenal insufficiency. While RU 486 possesses some glucocorticoid agonist activity in addition to its potent antagonist effects, it is not known whether this intrinsic agonist activity is of sufficient magnitude to prevent adrenal insufficiency and sustain life. To answer this question three groups of bilaterally adrenalectomized cynomolgus monkeys (n = 5/group) were randomized to receive a daily injection of RU 486 (5 mg/kg.day), cortisol (1.25 mg/kg.day), or saline (placebo). All adrenalectomized monkeys received weekly im injections of deoxycorticosterone pivalate (1 mg) to prevent mineralocorticoid deficiency. Five sham-adrenalectomized monkeys served as controls and received im injections of saline (placebo). Blood was collected before adrenalectomy or sham operation and every 3 days postoperatively for measurement of serum electrolytes, blood urea nitrogen, and creatinine; plasma ACTH concentrations; and complete blood and differential cell counts. All sham-operated and cortisol-replaced adrenalectomized monkeys survived, and none developed overt biochemical evidence of adrenal insufficiency. All placebo and RU 486-replaced adrenalectomized monkeys expired within 33 days after adrenalectomy, presumably from adrenal insufficiency. These findings suggest that while RU 486 is a partial glucocorticoid agonist, its degree of glucocorticoid agonism is inadequate to prevent adrenal insufficiency and support life in adrenalectomized primates.

Adrenal Insufficiency

Usefulness of inferior petrosal sinus venous endocrine markers in Cushing's disease.

Bilateral and simultaneous sampling of the inferior petrosal sinuses in patients with Cushing's disease has been used to establish the presence and laterality of adrenocorticotropic hormone (ACTH)-producing microadenomas prior to transsphenoidal surgery. Successful preoperative lateralization depends upon equivalent dilution of pituitary venous blood on the two sides since samples which are diluted by unequal amounts of non-pituitary blood may lead to erroneous results. To assure valid sampling results, the use of other pituitary hormones, measured simultaneously, has been proposed to correct the ACTH concentrations from the inferior petrosal sinuses against unequal dilution by non-pituitary venous blood. This proposal presumes that ACTH-secreting microadenomas will not cause unequal delivery of the other pituitary hormones into the two inferior petrosal sinuses. The inferior petrosal sinus concentrations of prolactin (PRL), thyrotropin (TSH), and the alpha subunit of human chorionic gonadotropin (alpha-HCG) were evaluated as indicators of pituitary venous blood dilution in 11 patients with Cushing's disease. Four patients with ectopic ACTH syndrome served as controls. Blood was withdrawn simultaneously from catheters in both inferior petrosal sinuses and from a peripheral vein for measurement of ACTH, PRL, TSH, and alpha-HCG. The ACTH concentrations were then corrected for dilution by non-pituitary blood by dividing the ACTH concentration from each side by the ratio of the inferior petrosal sinus to peripheral blood concentrations of PRL, TSH, and alpha-HCG for that side. At surgery, all 11 patients had ACTH-secreting microadenomas on the side predicted by the uncorrected ACTH concentrations. However, in three patients the corrected ACTH values would have led to erroneous results. Among the 18 sets of corrected inferior petrosal sinus measurements in these three patients, the corrected ACTH values failed to show an inferior petrosal sinus gradient in six and localized the tumor to the side opposite the adenoma in four. Incorrect lateralization was obtained with each of the hormones (PRL, TSH, and alpha-HCG) used for correction. Furthermore, the ipsilateral (side of tumor)-to-contralateral inferior petrosal sinus gradient of ACTH in patients with Cushing's disease was generally paralleled by a significant inferior petrosal sinus gradient of PRL, TSH, and alpha-HCG to the side of the tumor, whereas patients with the ectopic ACTH syndrome tended not to exhibit lateralizing (side-to-side) gradients.(ABSTRACT TRUNCATED AT 400 WORDS)

Adenoma

The effect of ketoconazole on steroidogenesis. II. Adrenocortical enzyme activity in vitro.

The activity of five adrenocortical steroidogenic enzymes, 3 beta-hydroxysteroid dehydrogenase/isomerase (3 beta-HSD), 17-hydroxylase (17-OHase) 17,20 desmolase (17,20D), 21-hydroxylase (21-OHase) and 11-hydroxylase (11-OHase), were measured in vitro in purified mitochondria or microsomes from rhesus monkey (Macaca mulata) and human adrenal tissue in the presence and absence of graded concentrations of ketoconazole. Rhesus 3 beta-HSD activity was unaffected by ketoconazole at concentrations up to 5000 microM. However, human adrenal 3 beta-HSD was inhibited by approximately 40% (p less than .01) at concentrations of 500 microM and by 80% at 100 microM. 17-OHase and 17,20D were significantly inhibited in the human at 5 microM (p less than .001) and in the rhesus monkey at 50 microM (p less than .001). A similar inhibitory effect was found on microsomal 21-OHase, with significant inhibition at 5 microM ketoconazole in the human and rhesus monkey (p less than 0.001). Mitochondrial 11-OHase was also significantly inhibited by ketoconazole in both the human (p less than .005) and rhesus (p less than .001) at 2.0 microM. These results represent documentation of the specific adrenal steroidogenic steps affected by ketoconazole and confirm the observations that this imidazole derivative is a powerful inhibitor of enzymes in the glucocorticoid pathway.

3-Hydroxysteroid Dehydrogenases

The effect of ketoconazole on steroidogenesis: I. Leydig cell enzyme activity in vitro.

The in vitro inhibition of Leydig cell microsomal steroidogenesis by ketoconazole, a potent P-450 dependent enzyme blocker, was evaluated in the human, stallion and pig. Purified Leydig cells were isolated by mechanical dispersion of teased, decapsulated whole testes and sieving through a 0.25 mm stainless steel mesh. The activity of 3 beta-hydroxysteroid dehydrogenase/isomerase (3 beta-HSD), 17-hydroxylase (17-OHase), 17,20-desmolase (17,20D), 17-ketosteroid reductase (17-KSR) and aromatase were measured using a constant amount (50 microM) of 14C-labelled substrates in the presence of varying concentrations of pure ketoconazole. Products were isolated by thin layer chromatography and verified by derivative formation. 17-OHase and 17,20D activities were significantly inhibited (p less than .001) by ketoconazole at concentrations as low as 5 microM. 3 beta-HSD, 17-KSR and aromatase activities were only significantly inhibited by ketoconazole at concentrations of 500 and 5000 microM. These data describe the specific loci of inhibition of ketoconazole on testicular steroidogenesis and confirm the observations that ketoconazole is an effective inhibitor of androgen biosynthesis in several species.

Aldehyde-Lyases

Acute hypothalamic-pituitary-adrenal responses to the stress of treadmill exercise. Physiologic adaptations to physical training.

To study the effects of physical conditioning on the hypothalamic-pituitary-adrenal axis, we examined the plasma ACTH, cortisol, and lactate responses in sedentary subjects, moderately trained runners, and highly trained runners to graded levels of treadmill exercise (50, 70, and 90 percent of maximal oxygen uptake) and to intravenous ovine corticotropin-releasing hormone (1 microgram per kilogram of body weight). Basal evening concentrations of ACTH and cortisol, but not of lactate, were elevated in highly trained runners as compared with sedentary subjects and moderately trained runners. Exercise-stimulated ACTH, cortisol, and lactate responses were similar in all groups and were proportional to the exercise intensity employed. These responses, however, were attenuated in the trained subjects when plotted against applied absolute workload. Only the highly trained group had diminished responses of ACTH and cortisol to ovine corticotropin-releasing hormone, consistent with sustained hypercortisolism. We conclude that physical conditioning is associated with a reduction in pituitary-adrenal activation in response to a given workload. Alterations of the hypothalamic-pituitary-adrenal axis consistent with mild hypercortisolism and similar to findings in depression and anorexia nervosa were found only in highly trained runners. Whether these alterations represent an adaptive change to the daily stress of strenuous exercise or a marker of a specific personality profile in highly trained athletes is unknown.

Adaptation, Physiological

The effect of 4MA, a potent inhibitor of 5 alpha-reductase, on the growth of androgen-responsive human genitourinary tumors grown in athymic nude mice.

The five alpha-reductase inhibitors are a newly developed family of compounds that block the intracellular conversion of testosterone (T) to dihydrotestosterone (DHT). 17-beta-N, N-Diethylcarbamoyl-4-methyl-4-aza-5-alpha-androstan-3-one (4MA), the most widely studied of these compounds, has been shown to inhibit the androgen-dependent growth of both normal animal tissues and of the Noble tumor, an experimental, hormone-responsive rat neoplasm. 4MA has been found to inhibit androgen-dependent growth without altering plasma levels of T or DHT. In the present study, we assessed the efficacy of 4MA in inhibiting the growth of PC-82 and R198, human androgen-responsive genitourinary malignancies. In the first experiment, 4MA was administered subcutaneously at a dose of 6 mg/kg/day to castrated and hormonally replaced groups of PC-82-bearing male athymic nude mice. 4MA therapy when compared to control therapy caused significant PC-82 growth inhibition in three different groups of hormonally replaced castrated mice: physiologic T-replaced (P less than .001), supraphysiologic T replaced (P less than .001), and supraphysiologic T and DHT replaced (P less than .001). There was no difference between the post therapy plasma levels of T or DHT in the control-treated and 4MA-treated mice. In the second experiment, the effect of 4MA (6 mg/kg/day S.Q.) was compared to that of castration and control therapy on the growth of R198. Both castration and 4MA therapy effectively inhibited R198 growth when compared to control therapy (P = .01 and .02, respectively), but there was no difference in the degree of growth inhibition seen with 4MA or castration (P = .45). Castration and 4MA-therapy significantly lowered plasma T levels when compared to control therapy; castration also significantly lowered plasma DHT levels, while 4MA and control therapy did not. These studies suggest that 4MA is effective in inhibiting the growth of human androgen-responsive tumors grown in athymic nude mice and that further studies with other 5 alpha-reductase inhibitors are indicated.

5-alpha Reductase Inhibitors

Metabolism of exogenous 4- and 2-hydroxyestradiol in the human male.

The metabolic fate of the isomeric catecholestrogens 4-hydroxyestradiol (4-OHE2) and 2-hydroxyestradiol (2-OHE2) was studied to elucidate possible differences in their metabolism as an explanation for their different bioactivities. Healthy young men (n = 3 each) were infused (90 min) with 4-OHE2 (60 micrograms/h) or 2-OHE2 (100 micrograms/h). The main metabolites were determined in plasma and urine before, during and after infusion. Unconjugated and conjugated steroids, the latter after hot acid hydrolysis, were subjected to chromatography on LH-20 columns and measured by specific RIAs. During the infusion 4-OHE2 reached significant plasma concentrations whereas 2-OHE2 was so rapidly metabolised that its plasma levels remained virtually undetectable in spite of a higher infusion rate. The metabolism of 4-OHE2 was dominated by direct conjugation, that of 2-OHE2 by methyl ether formation. These findings were corroborated by the urinary excretion rates: during the infusion and the first hours afterwards, 4-OHE2 was mainly excreted as 4-OHE2 and 4-hydroxyestrone, while 2-OHE2 was predominantly excreted as 2-hydroxyestradiol 2-methyl ether and 2-hydroxyestrone 2-methyl ether.

Adult

Catecholamine-glucocorticoid interactions during surgical stress.

The stress response involves activation of the hypothalamic-pituitary adrenal axis and the sympathetic nervous system. To study the relative contributions of glucocorticoids, epinephrine, norepinephrine, and dopamine to homeostasis, we examined the effects of cortisol and epinephrine deficiency on the norepinephrine and dopamine responses to surgical stress in nonhuman primates. Adult male cynomolgus monkeys (n = 7-8/group) underwent bilateral or sham adrenalectomy and were maintained for 4 months on physiologic glucocorticoid (hydrocortisone phosphate, 32 mg/M2/day) and mineralocorticoid (DOCA pivalate, 1 mg/day) replacement, or placebo injections, respectively. The adrenalectomized monkeys were then stratified into three groups receiving subphysiologic (X1/10), physiologic (X1), or supraphysiologic (X10) glucocorticoid replacement. A cholecystectomy was performed 4 days later and the pre-, intra-, and postoperative plasma catecholamine levels were measured. Adrenalectomized animals had markedly decreased plasma epinephrine concentrations and accentuated plasma norepinephrine and dopamine responses to cholecystectomy, when compared to sham-adrenalectomized controls. The magnitude of the norepinephrine accentuation was inversely related to the dose of cortisol administered preceding surgery. Norepinephrine and dopamine failed to completely normalize even at the high dose of glucocorticoid replacement which had been calculated to be similar to the cortisol production rate during maximal stress. Thus, surgical stress in the setting of inadequate glucocorticoid (cortisol) replacement and epinephrine deficiency, stimulates additional sympathetic activity, probably as an adaptive mechanism to maintain homeostasis. Both norepinephrine and dopamine are recruited to compensate for the glucocorticoid and epinephrine deficiency. Glucocorticoid administration decreases but does not normalize this compensatory sympathetic activity.

Animals

Adrenal 11-hydroxylase activity in a hypercortisolemic New World primate: adaptive intra-adrenal changes.

The squirrel monkey, a representative New World primate, has high plasma cortisol and aldosterone concentrations when compared to Old World primates. We measured adrenal mitochondrial 11-hydroxylase (11-OHase) activity in squirrel monkeys and in two representative Old World species (cynomolgus and rhesus macaques) in an effort to explain these elevated plasma glucocorticoid and mineralocorticoid levels. The activity of 11-OHase was 5-fold higher in the squirrel monkey than in the Old World species tested. Calculated 11-OHase Vmax was different in the squirrel monkey and the cynomolgus. However, the Km values were similar in the New World primate when compared to cynomolgus. The ability of metyrapone to block 11-OHase was less in the former than in the latter. The data are consistent with the hypothesis that the squirrel monkey adrenal cortex possesses an increased number of 11-hydroxylase enzyme units compared to that of Old World primate species, and is therefore more efficient in producing cortisol. This difference in 11-OHase activity in the squirrel monkey, in addition to other previously reported adrenal steroidogenic enzyme alterations, may be adaptive in nature, favoring increased cortisol and aldosterone production in this and possibly other New World primate species.

Adaptation, Physiological