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Biomedical subjects

J R Ducharme

Publications and source records attributed to J R Ducharme.

At least 19 recordsLinked to original sources

Reduced pituitary volume in children with short stature: clinical and radiological correlates.

A retrospective evaluation of 80 cases of growth retardation evaluated at the Hôpital Sainte-Justine of Montreal has revealed that 20 of them (25%; 15 boys and 5 girls) had a reduction of pituitary volume as revealed by high-resolution CT scanning of the pituitary gland. Of these patients, 8 had complete growth hormone (GH) deficiency, as evaluated by arginine infusion and L-Dopa-propranolol testing and nocturnal blood sampling, and 3 had GH neurosecretory dysfunction. Five patients had combined or multiple hormonal deficiencies. A statistically significant correlation was found between nocturnal plasma GH values and pituitary volumes. From this study it can be concluded that reduced pituitary volume is a frequent finding in growth-retarded children with hypopituitarism.

Adolescent

Cyclooxygenase products formed by primary cultures of cells from human chorion laeve: influence of steroids.

Cells were isolated from human chorion laeve obtained at term (38-40 weeks gestation) by elective caesarean section and were maintained in primary culture for 1 week in defined media supplemented with 10% fetal calf serum. The production of various cyclooxygenase products by the cultures was examined. Little or no prostaglandin (PG) F2 alpha, 6-keto-PGF1 alpha, thromboxane B2, or 13,14-dihydro-15-keto-PGF2 alpha was found. In contrast, the cells produced PGE2 which was low on day 0, increased during culture to a maximum on day 1 or 2, then declined to low levels. When cells were grown in the presence of media containing cortisol, dexamethasone, progesterone, and estradiol (at 10(-7) or 10(-9) M), the glucocorticoids (at 10(-7) and 10(-9) M), but not estrogen or progesterone, markedly inhibited the increase in PGE2 output. There was no difference in the protein content and thymidine incorporation of cells grown in the presence of glucocorticoids when compared with controls. This inhibitory effect was not sensitive to cycloheximide (1 microgram/mL) indicating protein synthesis may not be involved in the process. These studies indicate that PGE2 is the major prostaglandin formed by primary cultures of chorion laeve and that prostaglandin metabolism in the chorion is sensitive to glucocorticoid inhibition.

Cells, Cultured

Effect of catecholamines on porcine Sertoli and Leydig cells in primary culture.

The accumulation by purified immature porcine Leydig and Sertoli cells of cyclic adenosine 3',5'-monophosphate in the presence of 1-methyl-3-isobuthylxathine was studied and their respective testosterone and 17 beta-estradiol production in response to catecholamines was assessed in vitro. These substances increased both basal and FSH-stimulated cyclic adenosine 3',5'-monophosphate accumulation in Sertoli cells. In contrast, catecholamines slightly enhanced basal cyclic adenosine 3',5'-monophosphate production but inhibited its human chorionic gonadotropin-stimulated accumulation by Leydig cells. Catecholamines had no effect on basal and stimulated testosterone release by these cells, while dopamine inhibited 17 beta-estradiol synthesis by Sertoli cells. Using various alpha- and beta-adrenergic agonists and antagonists, beta-receptors, likely of the beta 1-subtype, were shown to be present in both cell lines. Taken together these data suggest the presence of a cyclic adenosine 3',5'-monophosphate-linked adrenergic receptor in porcine Leydig and Sertoli cells, the role of which remains to be determined.

1-Methyl-3-isobutylxanthine

Persistent effects of a marathon run on the pituitary-testicular axis.

Plasma levels of testosterone (T), LH, FSH, prolactin (PRL), cortisol (F), dehydroepiandrosterone sulfate (DHAS), noradrenaline (NA), NA sulfate (NAS), adrenaline (A) and A sulfate (AS) were measured in 7 adult males before and immediately after a marathon run as well as every morning for 5 days after the run. While plasma T levels fell significantly on the first and the second postmarathon day, those of LH rose significantly during the first 3 postrun days. Plasma PRL and F values increased significantly only at the end of the marathon. Plasma levels of NA and NAS rose significantly at the end of the run and again on days 2 and 5 postmarathon, respectively. A similar pattern was observed for A and AS except for the second peak of free A. These results show that a strenuous physical exercise leads to a persistent relative insensitivity to LH of the testicular T biosynthetic machinery, while the feedback mechanisms operating at the hypothalamic-pituitary level are normal. Furthermore, they suggest that catecholamines may be responsible for the prolonged inhibitory effect of stress on T biosynthesis.

Adult

Inhibition of prolactin release and blockade of adenohypophyseal cell cyclic AMP accumulation are two dissociable effects of dopaminergic and non-dopaminergic drugs.

The secretion of PRL by the anterior pituitary gland is under a tonic inhibitory control exerted by dopamine (DA). However, the mechanism(s) involved in the inhibition of PRL secretion is not clearly defined. Several recently published papers supported the hypothesis that DA inhibits the release of PRL through blockade of the pituitary adenylate cyclase-cyclic AMP system. We have recently demonstrated that sodium ions are essential for dopaminergic inhibitory action on PRL secretion. The present paper reports the effects, in the presence or in the absence of Na+, of either DA, bromocriptine, apomorphine or 2 anticalmodulin drugs, penfluridol and W-7, on cyclic AMP accumulation by rat adenohypophyseal cells in primary culture. Studies with dopaminergic agonists show that in the presence of Na+ inhibition of both PRL and cyclic AMP is obtained at 15 and 30 min, while in the absence of the ion a dissociation exists between the inhibition of PRL release which is completely abolished, and that of cyclic AMP content which is still present. Dose-response studies done in the presence of Na+ show the existence of a good correlation between hormone and nucleotide effects of dopaminergic agonists while, in the absence of Na+, a dissociation is observed between the inhibition of PRL release, which is completely suppressed, and that of cyclic AMP accumulation which is slightly or not at all decreased. The inhibitory effects of penfluridol after 15 and 30 min of incubation were not suppressed by Na+ removal, although its hormonal actions were slightly decreased.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Isolation, purification and culture of Sertoli cells from immature piglet testes.

Several studies suggest a role of Sertoli cells in the control of Leydig cell steroidogenesis. In order to verify this hypothesis, we have developed a system for the purification of pig Sertoli cells. These cells were then characterized by their morphological appearance in light and electron microscopy, their ability to bind [125I]follicle stimulating hormone (FSH) and their functional capacity as evaluated by adenosine 3',5' monophosphate (cAMP) accumulation and lactate production when in primary culture under basal and FSH-stimulated conditions. Crude Sertoli cell suspensions from immature porcine testes were fractionated on discontinuous Percoll gradients (densities 1.025, 1.039, 1.055, 1.080 g/ml). Highly purified Sertoli cells were contained in the second band (d: 1.039) generated on the gradient. These cells demonstrated morphological and functional integrity as evidenced by binding specifically [125I] FSH and by responding to FSH stimulation (by an increased production of cAMP and lactate after 3 days in primary culture), but not to human chorionic gonadotrophin (hCG). This preparation represents a useful model for the study of Sertoli cell functions and their interation with Leydig cells in the regulation of testicular steroidogenesis.

Animals

Role of arginine-vasopressin (AVP) in stress-induced inhibition of testicular steroidogenesis in normal and in AVP-deficient rats.

It has been recently demonstrated that immobilization stress induces in rats a state of testicular desensitization to gonadotropins as well as a post-cAMP blockade of testosterone (T) biosynthesis. Since arginine-vasopressin (AVP) has recently been found to antagonize in rats the in vitro T-releasing effect of human CG, with this work we have verified whether AVP might be involved in stress-induced inhibition of T biosynthesis. In Sprague-Dawley and Long-Evans adult male rats chronically cannulated in the jugular vein, a small but statistically significant rise of plasma AVP levels was observed after 2 h of immobilization stress. The iv infusion of AVP (1 micrograms/kg/h) to chronically cannulated rats induced a fall of plasma T levels. A dose-dependent inhibition of plasma T values was also observed 3 h after ip administration of AVP (1, 5, 25 micrograms/kg) in animals killed by decapitation. An antagonist of AVP pressor activity [1-(beta-mercapto-beta 1 beta-cyclopentamethylenepropionic acid), 2-(O-methyl)tyrosine] AVP, antagonized, when injected ip at a dose of 30 micrograms/kg, the T-inhibitory effects of 3 h of immobilization stress. No consistent changes in plasma LH levels were observed in these experiments. To further evaluate the role of AVP in stress-induced T inhibition, AVP-deficient Brattleboro rats were submitted to 2 or 3 h of immobilization stress concomitantly with rats of the original Long-Evans strain. After 2 h and even more after 3 h of stress, plasma T levels fell in Long-Evans rats together with basal and human CG- or cAMP-stimulated T production by Percoll purified Leydig cells. In Brattleboro rats, 2 h of stress had no effects on plasma T levels nor in vitro basal or stimulated T production, whereas 3 h of immobilization were as effective as in Long-Evans animals. These results suggest, therefore, that at least part of T inhibitory effects of immobilization, those occurring during the first 2 h of stress, are due to an AVP-induced, post-cAMP blockade of T biosynthesis. Since plasma corticosterone, during 2 h of stress, rose to similar, albeit smaller, levels in Brattleboro rats as compared to those in Long-Evans animals, this glucocorticoid does not seem to be involved in the testicular effects of stress.(ABSTRACT TRUNCATED AT 400 WORDS)

Animals

Further studies on the relationship of adrenal and gonadal steroids in pubertal development in female rats.

Surgical adrenalectomy or the administration of aminoglutethimide, corticosterone (B), and androstenedione (delta 4) to the immature female rat had no effect on the timing of vaginal membrane opening. Dehydroepiandrosterone (DHA) and estrone (E1) significantly hastened vaginal patency. Aminoglutethimide increased pituitary LH content while FSH content was decreased. An anti-17 beta-E2 antibody increased pituitary LH content and plasma concentration suggesting enhanced synthesis and release of LH. Pituitary FSH content was unaltered while plasma FSH decreased. Aminoglutethimide increased adrenal and ovarian but not pituitary weight while the antibody had no effect. Since little DHA is present in rat plasma and adrenal and since only estrogens have any effect on the onset of puberty, it is likely that the adrenal is not directly involved in pubertal development in the female rat.

Adrenal Glands

Adenohypophyseal hormone response to chronic stress in dexamethasone-treated rats.

The influence of dexamethasone treatment on the basal values of corticosterone, GH, prolactin (PRL), LH and FSH, as well as on the adenohypophyseal hormone response to chronic stress was studied in female rats. Dexamethasone acetate (25 micrograms/100 b.w.), given by gavage twice daily for 10 days, decreased the resting plasma levels of corticosterone, GH, LH and PRL, whereas the FSH titers remained normal. The secretion of ACTH (evaluated indirectly through corticosterone concentrations) and of GH appeared to be most sensitive to the suppressive effect of dexamethasone. The same hormonal response pattern was induced by 8 h of daily immobilization for 10 days, except that ACTH release was enhanced and the plasma LH titers dropped more drastically. Dexamethasone administration in combination with restraint did not alter the characteristic hormonal profile of chronic stress, despite the fact that ACTH secretion was completely blocked. These data suggest that the inhibition of PRL, LH and GH secretion following severe, chronic stress is not causally related to the sustained elevation of plasma ACTH.

Animals

Pattern of adenohypophyseal hormone changes in male rats following chronic stress.

To delineate the pattern of adenohypophyseal hormone secretion following chronic stress, adult male rats were exposed daily to 6 h of cold, forced exercise or immobilization for 3, 6, 10, 15, 28 or 42 consecutive days. Groups of these animals were sacrificed at the end of the last stress sessions, and plasma growth hormone (GH), luteinizing hormone (LH), prolactin (Prl) and follicle-stimulating hormone (FSH) levels were measured by radioimmunoassay (RIA). Irresspective of the different stimuli used, long-term stress induced a morphologic and hormonal response characterized by decreased ponderal growth, adrenal enlargement, thymus involution and significant diminutions in GH, Prl and LH levels with no modifications in FSH titers. The magnitude and duration of these changes varied with the severity of the stressors.

Adrenal Glands

Reevaluation of levodopa-propranolol as a test of growth hormone reserve in children.

The growth hormone (GH) reserve of 15 short children was evaluated with the levodopa-propranolol test (DPT) and the sequential arginine-insulin test (AIT). Four patients failed to respond to both tests and were classified as hyposomatotropic. In the other 11 children, the mean GH peak response to the DPT was significantly higher than that to the AIT, mainly because five subjects who had a normal response to the DPT failed to respond to the AIT. These children had a generally poor yearly growth increment prior to testing associated in three with an obvious emotional problem, and were found at follow-up to have resumed a normal growth pattern. These data confirm the effectiveness of the DPT as a test of GH reserve. Although hypoglycemia can occur occasionally during test, this procedure is safer and easier to perform than the widely used AIT. Finally, the DPT seems to detect a category of children who have a temporary growth failure and nonresponse to the usual GH tests but who are not hyposomatotropic and consequently do not require human GH.

Adolescent

Antagonism of pentobarbital-induced hormonal changes by TRH in rats.

In adult male rats, injection of TRH into a lateral ventricle of the brain 5 min prior to pentobarbital (PB) administration caused a significant dose-related inhibition of prolactin (PRL) release, in doses ranging from 500 to 5 ng. Among 8 TRH analogues devoid of thyrotropin-releasing activity, 6 were found to significantly suppress PB-induced PRL secretion at an intraventricular dose level of 10 microgram, and the 3 most effective in this respect were also able to counteract growth hormone (GH) release elicited by PB. The derivative [1,3'-DCM2]TRH was still potent enough to block PB-induced PRL secretion at an intraventricular dosage of 50 ng. The peptide ACTH 4--10 was ineffective, whereas another ACTH derivative H-Met(O2)-Glu-His-Phe-D-Lys-Phe-OH (Org 2766) reduced PRL release. TRH did not affect the increase of plasma PRL induced by acute stress. alpha-Methyl-p-tyrosine (alpha-MT) failed to influence the inhibiting effect of TRH on GH secretion but significantly reduced that on PRL release. p-Chlorophenylalanine (PCPA) completely blocked the antagonistic effect of TRH on all PB-induced hormonal changes, suggesting that serotoninergic mechanisms may be involved in the extra-pituitary effect of TRH.

Adrenocorticotropic Hormone

Effects of chronic stress on pituitary hormone release induced by combined hemi-extirpation of the thyroid, adrenal and ovary in rats.

Morphologic and hormonal changes, induced by combined ablation of a thyroid lobe, one adrenal and one ovary, were studied over a 15-day period in rats, some of whom were subjected to 8 h of daily immobilization. The compensatory hypertrophy (CH) of the contralateral glands in non-stressed animals was associated with a significant increase in the plasma levels of LH (from the 1st to the 10th day), prolactin (PRL, from the 3rd to the 6th day), FSH (on the 3rd day) and corticosterone (from the 6th to the 15th day), whereas GH titers were not altered. Immobilization for 1, 3, 6, 10 or 15 days inhibited the b.w. gain, induced involution of the thymus, enhanced compensatory enlargement of the adrenal, and blocked the CH of the ovary and, to a lesser degree, of the thyroid. This chronic stressor produced a marked rise in plasma corticosterone, antagonized the surge of PRL, FSH and LH, and decreased the plasma levels of GH. On the basis of these morphological and hormonal variations, it appears that severe chronic stress in hemi-thyroidectomized-adrenalectomized-ovariectomized animals further increases the ACTH response but antagonizes the increased secretion of the other pituitary hormones.

Adrenal Glands

Thyrotropin-releasing hormone in rat brain: nyctohemeral variations.

The concentration of thyrotropin-releasing hormone (TRH) was measured by specific radioimmunoassay in three different brain regions of rats sacrificed every 4 h over a 24 h period. TRH concentration reached a zenith at 1200 h both in the hypothalamus and the amygdala but did not vary in the forebrain. These results indicate that a nyctohemaral variation of TRH levels exists in hypothalamic and extrahypothalamic brain areas.

Amygdala

Increase in plasma growth hormone levels following thyrotropin-releasing hormone injection in children with primary hypothyroidism.

Thyrotropin-releasing hormone (TRH) induced a significant increase in plasma growth hormone (GH) levels in 4 of 8 children with primary hypothyroidism, while a slight decrease was observed in 8 control children. Base-line plasma prolactin (PRL) levels and peak responses to TRH were higher in hypothyroid children than in controls. These data may indicate the existence of dysfunction of central nervous system mechanisms of control of GH and PRL secretion in subjects with primary hypothyroidism.

Adolescent