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Biomedical subjects

E C Degli Uberti

Publications and source records attributed to E C Degli Uberti.

At least 19 recordsLinked to original sources

Diurnal rhythm of plasma catecholamines in acromegaly.

We investigated the 24-h profiles of the circulating levels of norepinephrine (NE) and epinephrine (E), blood pressure (BP), and heart rate in 14 acromegalic patients, before (A) and 3-6 months after transsphenoidal surgery (C-A, cured; A-A, active), and in 8 age-matched normal subjects (N). In addition, the responses of NE, E, PRA, and aldosterone to upright posture were investigated. No significant differences in the mean 24-h plasma NE and E levels were observed between either group of acromegalics and the N subjects. Analysis of the 24-h profiles indicated a statistically significant 24-h rhythm of both NE and E in N subjects. No evidence of a 24-h rhythm of plasma NE and E and BP was found in A patients. After surgery, a statistically significant 24-h rhythm of NE was detected in the patients with acrophase (13.54 and 13.45 h in C-A and A-A patients, respectively) and mesor (1019.8+/-45.1 and 1017.8+/-54.7 pmol/L in C-A and A-A patients, respectively) similar to those observed in N subjects (acrophase, 13.21 h; mesor, 942.3+/-42.5 pmol/L). After surgery, the plasma concentration of E clearly fluctuated throughout the 24 h in both C-A and A-A patients, even if cosinor analysis failed to reveal a 24-h significant rhythm. A statistically significant 24-h rhythm of BP was restored only in C-A patients. The mean 24-h heart rate was slightly, but significantly (P<0.05), higher in A than in N subjects and decreased after surgery. No significant differences in upright-stimulated NE, E, and plasma aldosterone levels were observed between each group of acromegalics and N subjects. However, basal and upright-stimulated PRA levels were significantly (P<0.001) lower in A patients. In conclusion, our study demonstrates the lack of a clear circadian variation in catecholamine levels and BP in active acromegaly and the return of a significant 24-h rhythm of NE and BP after pituitary surgery, concomitant with the reduction in GH and insulin-like growth factor I serum levels.

Acromegaly↗

Hypothalamic amenorrhea and cardiovascular hormones: changes of plasma calcitonin gene-related peptide and atrial natriuretic peptide levels.

Typical modifications of cardiovascular activity and water and salt homeostasis throughout female reproductive life are well known. Differences in plasma levels of calcitonin gene-related peptide (CGRP) and atrial natriuretic peptide (ANP) have been observed in conditions characterized by different estrogenic levels, suggesting a correlation between female reproductive function and these cardiovascular hormones. The aim of our study was to investigate in hypothalamic amenorrhea the relationship between estrogen deficiency and plasma ANP and CGRP response to adaptive tests (saline infusion test and upright posture test, respectively). Women with hypothalamic amenorrhea (aged 18-28 years) (n = 6) and age-matched healthy controls (n = 6) underwent both functional tests. Plasma CGRP and ANP levels were measured by specific radioimmunoassays before and in course of the tests. Basal plasma CGRP levels of amenorrheic patients did not significantly differ from those of normal women, while basal plasma ANP levels were significantly higher compared to controls (p < 0.01). In amenorrheic women, plasma CGRP levels showed a significant increase in response to upright posture test, though lower than the increase observed in normal women. In contrast, saline infusion test determined a significant increase in plasma ANP levels only in control subjects. In women with hypothalamic amenorrhea, the altered response of CGRP and ANP to adaptive stimuli indicates a partial derangement in the control of the secretion of these cardiovascular hormones. Nevertheless, the differences between such modifications and those observed in other conditions of altered estrogenic levels, suggest that in amenorrheic women hypogonadism is not the major factor influencing CGRP and ANP response to adaptive stimuli.

Adolescent↗

Evidence that enhancement of cholinergic tone increases basal plasma levels of calcitonin gene-related peptide in normal man.

To investigate the influence of the cholinergic system on the modulation of the circulating levels of calcitonin gene-related peptide (CGRP) under basal conditions in normal man, the effects of an acetylcholinesterase inhibitor, pyridostigmine bromide, and a muscarinic receptor blocker, pirenzepine, were studied in 16 normal subjects (8 females and 8 males). Pyridostigmine (120 mg, orally) induced a significant (P < 0.01) rise in basal plasma CGRP, while it reduced systolic and diastolic blood pressure. In all subjects, pirenzepine (0.6 mg/kg, i.v. bolus) was unable to modify the basal CGRP level. In conclusion, a pharmacologically induced enhancement of cholinergic tone resulted in an increase in CGRP, whereas muscarinic receptor blockade had no effect on CGRP levels or blood pressure. Therefore, the cholinergic system seems to be involved in the control of CGRP release in man, acting as a positive modulator. However, the available data do not indicate that there is a tonic cholinergic tone responsible for CGRP secretion under physiological conditions.

Adult↗

Progressive disruption of the circadian rhythm of melatonin in fatal familial insomnia.

Fatal familial insomnia (FFI) is a disease characterized by loss of sleep activity due to selective thalamic degeneration. To assess the secretory pattern of melatonin (MT) in FFI, we studied two cases of overt disease under standardized conditions and polysomnographic control. Each patient underwent repeated 24-h study sessions, and MT was assayed at 30-min intervals. Six healthy volunteers were used as controls. Slow wave sleep was never recorded, whereas occasional episodes of enacted dreaming accompanied by rapid ocular movements and complex muscular activities were documented, with no detectable rhythm. Plasma MT concentrations gradually decreased as the disease progressed. A significant circadian rhythm was detected in the earlier recordings, with decreasing amplitudes with disease progression. Complete rhythm obliteration was achieved in the most advanced stage. Normally placed nocturnal acrophases were detected in the earlier stages, but then a shift toward the daytime hours was observed. Thalamic lesions of FFI appear to determine a progressive disruption of the sleep/wake cycle accompanied by decreased circulating levels of MT, with progressive alterations in the circadian rhythm of this hormone. On the other hand, decreased secretion of MT may contribute to the sleep disturbances of FFI.

Adult↗

Effect of deltorphin on behavior and hippocampal electrical activity in rabbits.

To clarify the role of delta-opioid receptors on modulation of hippocampal electrical activity and behavior, deltorphin (DT), a naturally occurring heptapeptide that selectively binds to delta-opioid receptors, was intravenously (IV) administered to rabbits. For this purpose, at 8-day intervals, the effects of IV administration of normal saline and IV infusion of synthetic DT (1 mg/kg b.wt. for 2 min) on the spontaneous behavior in neutral environment, both in absence of any external stimulus and after the introduction of a stuffed predator, were examined in seven adult male rabbits, on separate and successive occasions. During each session of experimental procedure, hippocampal EEG was also recorded by telemetry. Behavioral activity showed an increase in alert and reactive immobility after the peptide injection in comparison with that observed during control period (saline administration). Under DT treatment the frequency of hippocampal electrical activity decreased, and a reduction in rhythmicity of electrical pattern was also observed in presence of stressful stimulus. These findings show that DT may affect neural and behavioral elements related to the control of attentional and emotional processes, suggesting a modulating role of delta-opioid receptors.

Animals↗

Modulatory effect of the renin-angiotensin system on the plasma levels of calcitonin gene-related peptide in normal man.

Calcitonin gene-related peptide (CGRP) has positive chronotropic and inotropic effects in animals and humans, and produces the most potent vasodilation known for an endogenous peptide. Yet, a physiological role for CGRP in the regulation of vascular tone and blood pressure has not been demonstrated. We studied the effects of 1) assumption of the upright position and 2) iv infusion of angiotensin-II (sequential doses of 8, 16, and 32 ng/kg.min, each dose for 20 min) in eight normal subjects (four men). Serial venous blood samples were taken to determine the plasma CGRP, epinephrine, norepinephrine, and aldosterone levels and PRA. Blood pressure and heart rate were continuously monitored at the finger with a Finapres 2300 instrument. After assumption of the upright posture, a quick rise in plasma CGRP levels was observed together with the expected increases in plasma norepinephrine and aldosterone and PRA. A transient increment was also observed for diastolic blood pressure and heart rate. Angiotensin-II infusion caused dose-dependent increases in plasma CGRP and aldosterone concentrations, already significant at the lowest infusion rate and parallel with the blood pressure rise. Plasma catecholamines significantly increased only at higher infusion rates. Our data demonstrate that modifications of plasma CGRP concentrations are part of the normal response to postural and vasomotor changes. These findings suggest a physiological role for CGRP in regulation of the peripheral vascular tone and possibly blood pressure in man.

Adult↗

Differences in blood pressure regulation of congestive heart failure, before and after treatment, correlate with changes in the circulating pattern of atrial natriuretic peptide.

The mechanisms underlying altered BP regulation in congestive heart failure are unknown. This study examines the possibility that differences in circadian blood pressure (BP) regulation between the normal and the failing heart correlate with changes in the circulating pattern of atrial natriuretic peptide (ANP). Twelve normotensive patients with coronary artery disease were studied over two separate 24-h periods, the first during acute exacerbation of congestive heart failure (radionuclide-determined ejection fraction at rest was less than 30%) and the second after therapy-induced functional recovery (ejection fraction was more than 40%). BP monitoring at 10-min intervals and intra-atrial blood samples for ANP assays at hourly intervals were obtained. Significant correlation between ejection fraction and the indexes of circadian BP variability (standard deviation of the 24-h pressure mean and day-night pressure difference) were found both before and after treatment. Ejection fraction was independent of the BP means (24-h, daytime and night-time). BP variability, 24-h mean and daytime mean were higher after treatment. ANP means were lower after treatment, whereas ANP variability was higher. The indexes of BP and ANP variability correlated both before and after treatment, whereas the BP and the ANP means were independent. These findings demonstrate that differences in BP regulation of CHF before and after effective treatment correlate with changes in the circulating pattern of ANP. We speculate that by modulating ANP release, the heart could be actively involved in BP regulation as part of the compensatory mechanisms aimed at protecting against circulatory overload.

Aged↗

Effect of deltorphin on pituitary-adrenal response to insulin-induced hypoglycemia and ovine corticotropin-releasing hormone in healthy man.

To determine the role of delta-opioid receptors in the modulation of hypothalamic-pituitary-adrenal activity, we studied in normal subjects the effect of the highly selective delta-opioid receptor agonist deltorphin (DT) on the secretion of ACTH, cortisol, and arginine vasopressin in response to insulin-induced hypoglycemia. In an attempt to clarify the site of opiate modulation of ACTH secretion, we also studied in normal subjects the effect of DT on the ACTH response to ovine CRH-41. DT blunted the ACTH, cortisol, and arginine vasopressin responses to insulin-induced hypoglycemia, whereas it had no effect on the ACTH and cortisol responses to CRH. We conclude that DT-induced activation of delta-opioid receptors exerts an inhibitory influence on hypoglycemia-stimulated ACTH secretion. Based on the lack of an effect of DT on the ACTH response to CRH, we postulate that DT may modulate the secretion of ACTH through suprapituitary mechanisms.

Adrenocorticotropic Hormone↗

Circadian profile of plasma calcitonin gene-related peptide in healthy man.

Calcitonin gene-related peptide (CGRP) is known to exert potent cardiovascular effects and is presumed to participate in the neural control of circulation and blood flow. It has been assayed in many physiological and disease conditions, yet virtually nothing is known of the normal fluctuations in its circulating levels. We have studied the variability throughout a 24-h period of plasma concentrations of CGRP in eight recumbent healthy volunteers (four men and four women, 25-37 yr old), after careful standardization of their daily diet and routine schedules. A correlation with the circadian rhythms of blood pressure (BP), heart rate (HR), and plasma aldosterone (PA), PRA, plasma cortisol (PC), and atrial natriuretic peptide (ANP) was also made. Plasma CGRP concentrations ranged from a mean peak value of 18.1 +/- 1.5 pmol/L to a mean lowest value of 11.7 +/- 0.4 pmol/L (P less than 0.05). The mean circadian acrophase of CGRP (calculated by cosinor analysis to occur at 2314 h) anticipated the corresponding acrophases of the other hormones (0122, 0528, 0809, and 0840 h for ANP, PRA, PA, and PC, respectively). Instead, BP and HR rhythms seemed to be antiphasic with the ANP rhythm (calculated acrophases occurred at 1356, 1339, and 1314 h for systolic BP, diastolic BP, and HR, respectively). Our data demonstrate that, like many other hormones, CGRP circulates in plasma with a circadian rhythm. There seems to be a temporal sequence starting with the nocturnal rise in plasma CGRP concentrations and progressing with the ensuing elevations of ANP, PRA, PA, and PC, whereas BP and HR are kept to their lowest values. These findings are in favor of a physiological role of CGRP in the complex regulation of BP homeostasis.

Adult↗

Dermorphin inhibits spinal nociceptive flexion reflex in humans.

Dermorphin (D) is a potent opiate-like peptide isolated from the skin of some species of frogs. Experimental studies in animals indicate that D has a potent antinociceptive effect, while no investigation exists about its analgesic properties in humans. Our study shows that i.v. infusion of 0.16 mg/kg D induces a marked and long-lasting increase in the threshold of nociceptive flexion reflex in healthy volunteers. This effect is also evident in a complete chronic spinal subject, showing that D depresses the nociceptive transmission mainly acting at spinal level. Naloxone, while fully antagonizing the effects of morphine and enkephalin analogue, is able to reverse only partly (ca. 50%) the depressive effect of D on nociceptive spinal reflex. This fact may suggest that D interacts with different spinal opiate receptor populations in inducing analgesia.

Adult↗

Prolactin releasing and luteinizing hormone inhibiting activity of dermorphin shorter homologues in the rat.

Dermorphin, a heptapeptide isolated from the skin of the frogs Phillomedusa sauvagei and Phillomedusa rhodei, is endowed with potent peripheral and central opioid-like activity. Intracerebroventricular (icv) injection of dermorphin (31.2, 62.5 and 125 pmol/100g) induced in ovariectomized (OVX) rats dose related rises and decreases in prolactin (PRL) and luteinizing hormone (LH) levels, respectively. The aim of this work was to evaluate the same endocrine responses after administration of shorter peptide amide homologues, related to the N-terminal sequence of dermorphin. These compounds retain a substantial analgesic activity although the latter decreases with the decrease in the number of amino acid residues. Icv administration of the hexapeptide homologue (dermorphin 1-6 amide) to OVX rats did not induce any PRL rise or LH inhibition, even at the high dose of 250 pmol/100g. The pentapeptide (dermorphin 1-5 amide), instead, increased PRL and decreased LH secretion, although the effect was significant only at the dose of 250 pmol/100g. Administration of the tetrapeptide (dermorphin 1-4 amide) induced a significant PRL rise and LH inhibition at both the doses of 125 and 250 pmol/100g. The tetrapeptide was the smallest fragment of the dermorphin moiety which caused endocrine responses while the tripeptide (dermorphin 1-3 amide) was completely ineffective in this context. These data indicate that a complete dissociation exists between the behavioral and endocrine effects of the dermorphin homologues examined. In fact, shorter dermorphins whose analgesic potency was directly related to the number of amino acids, exhibited an opposite pattern in evoking endocrine effects.

Analgesics↗

The effects of dermorphin on the endocrine system in man.

This paper summarizes the results of our recent studies in a group of healthy subjects on the endocrine effects of the new potent opioid peptide, dermorphin (H-Tyr-D-Ala-Phe-Gly-Tyr-Pro-Ser-NH2), originally isolated from amphibian skin. Intravenous infusion (5.5 microgram/kg/min for 30 min) of dermorphin (D) significantly increased plasma levels of prolactin (PRL), growth hormone (GH), thyrotropin (TSH) and renin activity (PRA), but decreased plasma levels of cortisol. D produced a small decrease in ACTH, and a small increase in plasma aldosterone. Pretreatment with the opioid receptor antagonist naloxone (N) suppressed the PRL and TSH response to D, blunted the D-induced GH and PRA increase, and completely prevented the D-induced plasma cortisol decrease, but enhanced plasma cortisol and ACTH levels. These data indicate that the action of D is mediated through opioid receptors, and are consistent with the conclusion that: (1) D, a new opioid peptide, can stimulate PRL, GH and TSH release in humans; (2) D increases PRA levels, perhaps via activation of the sympathetic nervous system, providing evidence that opioid peptides may exert an influence on renin secretion; (3) D suppresses plasma cortisol levels, by affecting ACTH secretion, corroborating previous observations that opioid peptides might affect the function of the pituitary-adrenocortical axis.

Adrenocorticotropic Hormone↗

Dermorphin reduces the metyrapone-evoked release of adrenocorticotropin, beta-endorphin, and beta-lipotropin in man.

The aim of this study was to investigate further the influence of dermorphin (D), a new potent opioid peptide (H-Tyr-D-Ala-Phe-Gly-Tyr-Pro-Ser-NH2), on the functional activity of the pituitary-adrenocortical system in man. Six normal men were treated with oral metyrapone to stimulate the secretion of ACTH, beta-lipotropin, and beta-endorphin. In these subjects, significant suppression of metyrapone-evoked release of ACTH and related peptides occurred during D infusion (5.5 micrograms/kg X min for 30 min) compared with that during saline infusion. These results indicate that D can induce a significant decline in plasma levels of ACTH, beta-lipotropin, and beta-endorphin, the major circulating peptides from the C-terminal part of proopiocortin, and suggest that opioid peptides may be involved in the control of the functional activity of pituitary-adrenocortical activity in man.

Adrenocorticotropic Hormone↗

Effect of pentagastrin on adrenocorticotropin hormone and thyroid-stimulating hormone release in normal subjects.

The possible role of gastrin on TSH, ACTH and cortisol secretion was evaluated by intravenous administration of pentagastrin, the carboxyl-terminal tetrapeptide of gastrin (0.5 microgram/kg b.w.) into 12 healthy subjects. Pentagastrin produced a significant rise in plasma ACTH and cortisol levels but did not alter TSH basal release. These preliminary results suggest that gastrin can influence basal activity of ACTH-cortisol axis. However, further investigation is required to determine its physiological role and mechanisms of action.

Adrenocorticotropic Hormone↗

Effect of ketanserin, an inhibitor of 5-HT2 receptors, on the aldosterone-stimulating action of metoclopramide.

To estimate the possible involvement of a peripheral serotonergic pathway in the mechanism of the aldosterone-stimulating effect of metoclopramide (M) the plasma aldosterone (PA), renin activity (PRA) and prolactin (PRL) response to M was studied in 6 normal subjects before and after administration of ketanserin (K), a pure, specific, and selective blocking agent of 5-hydroxytryptamine type 2 (5-HT2) receptors. With K preadministration the M-induced increase of PRL was similar to that observed in control conditions, in accordance with the specific and peripheral antiserotonergic action of the drug. K potentiated the PA and PRA elevation in response to M. These data suggest that the PA response to M is not related to M's agonist activity at the peripheral 5-HT2 receptors level. The results further indicate that K can induce an enhancement of the activity of renin-angiotensin-aldosterone system with an higher PRA and PA response to stimulatory action of M.

Adolescent↗

Prolactin-releasing activity of dermorphin, a new synthetic potent opiate-like peptide, in normal human subjects.

Dermorphins (D) are heptapeptides (H-Tyr-D-Ala-Phe-Gly-Tyr-X-Ser-NH2; X, Pro or Hyp) with powerful central and peripheral opiate-like activity, originally isolated from the skin of South American frogs. To study the effect of a synthetic D on PRL secretion in man, either D (5.5 micrograms/kg . min for 30 min) or D-placebo (0.9% saline) infusion over 30 min was administered iv in random sequence to 11 volunteers (6 women and 5 men). In all the subjects, D induced a significant increase in the levels of PRL, more consistently in women than in men. To investigate whether the increase in PRL was due to the opiate agonist properties of D, the study was repeated in the same subjects during naloxone infusion. The PRL response to D was completely suppressed, suggesting that the peptide exerts its effect on PRL release via an opiate receptor stimulation of the mu-type. These data allow us to conclude that D may affect PRL release in humans; however, further investigation is necessary before any physiological significance might be attributed to D in man.

Adolescent↗

Responses of plasma renin activity, aldosterone, adrenocorticotropin, and cortisol to dermorphin, a new synthetic potent opiate-like peptide, in man.

This study was designed to investigate the effect of dermorphin (D), a new synthetic potent opiate-like peptide (H-Tyr-D-Ala-Phe-Gly-Tyr-Pro-Ser-NH2), on PRA, plasma aldosterone (PA), plasma cortisol (PC), and plasma ACTH levels in normal men. D infusion (5.5 micrograms/kg X min for 30 min) significantly increased PRA (P less than 0.01) and decreased PC levels (P less than 0.02). D produced a small decrease in ACTH and a small increase in PA. Pretreatment with the opioid receptor antagonist naloxone (N) blunted the D-induced PRA increase and completely prevented the D-induced PC decrease, but enhanced PC and ACTH levels. These data indicate that the action of D is mediated through opioid receptors, and are consistent with the conclusion that 1) D, a new opioid peptide, increases PRA levels, perhaps via activation of the sympathetic nervous system, providing evidence that opioid peptides may exert an influence on renin secretion; and 2) D suppresses PC levels, perhaps by affecting ACTH secretion, corroborating previous observations that opioid peptides might affect the function of the pituitary-adrenocortical axis.

Adolescent↗

Opioid peptides. Analgesic activity of potent dermorphin tetrapeptides. VI.

By employing the mouse tail-flick assay the analgesic activity of selected dermorphin tetrapeptides was assessed. The remarkable differences in potency exhibited by peptides after i.c.v. (500-1000 times higher than morphine) and s.c. (nearly comparable to morphine) administration are probably due to peptidase degradation.

Analgesics↗