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Biomedical subjects

R Volpi

Publications and source records attributed to R Volpi.

At least 127 records · Page 7Linked to original sources

Effects of the GABAergic agent sodium valproate on the arginine vasopressin responses to hypertonic stimulation and upright posture in man.

In order to evaluate the possible influence of GABAergic neurotransmission on the arginine vasopressin (AVP) response to osmotic and pressure volumetric stimuli, the GABAergic drug sodium valproate was administered by mouth (200 or 400 mg 16 h, 8 h and just before tests) to eight normal men before osmotic (i.v. infusion of 0.51 , NaCl for 2 h) and orthostatic (standing upright and maintaining an orthostatic position for 20 min) tests. In both experimental conditions, the AVP rise was significantly lower in the presence than in absence of sodium valproate. The maximum AVP responses in the control orthostatic and osmotic tests were respectively 2.3 and 2.5 times higher than basal levels. When 600 mg sodium valproate was given, the maximum AVP rise in response to hypovolaemic and osmotic stimuli were respectively 1.75 and 2.1 times higher than basal value. Similar results were obtained giving 1.2 g sodium valproate. These results suggest that in man a GABAergic pathway is involved in the AVP responses to hypovolaemic and hyperosmotic stimuli.

Adult↗

Muscarinic cholinergic, but not serotoninergic mediation of arginine vasopressin response to metoclopramide in man.

The possibility that metoclopramide (MCP) stimulates arginine vasopressin (AVP) secretion in man through a serotoninergic and/or a cholinergic muscarinic pathway was studied. Twenty normal male subjects were tested with MCP (10 mg in an i.v. bolus) alone or in the presence of the 5HT1 serotoninergic antagonist metergoline (10 mg/day p.o. in five divided doses for 4 days), the 5HT2 receptor blocker ketanserin (10 mg i.v. 5 min before MCP) (n = 10), the M1 and M2 muscarinic antagonist atropine (1.2 mg i.v. just before MCP administration) or the M1 muscarinic receptor blocker pirenzepine (40 mg i.v. 10 min before MCP) (n = 10). AVP doubled in response to MCP. the MCP-induced AVP rise did not change after metergoline, ketanserin or pirenzepine administration, whereas it was abolished by atropine. Additional experiments were performed in order to evaluate the effect of 1.2 mg atropine, given alone, on circulating AVP levels and whether the effect of atropine on the AVP response to MCP depends on the amount of the muscarinic antagonist (dose-response study). For these purposes, atropine was given alone to the same subjects previously tested with MCP plus atropine; furthermore, eight additional male subjects were tested with MCP plus atropine given in doses ranging from 0.8 to 1.4 mg. The results of these additional studies failed to show an effect of atropine alone on AVP secretion and demonstrated a dose-related inhibition of MCP-induced AVP rise by increasing atropine administration from 0.8 mg to 1.2 mg.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Different effects of aging on the opioid mechanisms controlling gonadotropin and cortisol secretion in man.

The present study was undertaken in order to assess the influence of aging on the endogenous opioid control of gonadotropin and adrenocorticotropin/cortisol secretion in man. For this purpose, the capability of the opioid antagonist naloxone to increase circulating levels of luteinizing hormone (LH), follicle-stimulating hormone (FSH) and cortisol was tested in male subjects of different ages. Thirty normal men were randomly chosen and divided into 3 groups by age: group I = 22-40 years (n = 10); group II = 41-59 years (n = 10); group III = 62-80 years (n = 10). Since the men of group III showed higher basal serum gonadotropin concentrations than the subjects of group I and group II, we selected from a large population a fourth group of elderly men with normal basal LH and FSH levels: group IV = 61-82 years (n = 7). All subjects were tested for 120 min during the intravenous administration of naloxone (4 mg given in an intravenous bolus at time 0, plus 10 mg infused for 2 h). Control tests with normal saline instead of naloxone were performed in all groups. All subjects had similar blood testosterone and cortisol levels, whereas LH and FSH concentrations were significantly higher in group III than in groups I, II and IV. Naloxone increased plasma cortisol concentrations by 50% in all groups. The cortisol secretory response followed a similar pattern regardless of age.(ABSTRACT TRUNCATED AT 250 WORDS)

Adrenocorticotropic Hormone↗

Simultaneous inhibition by pirenzepine of the GH responses to GnRH and TRH in insulin-dependent diabetics and in patients with major depression.

The present study was undertaken in order to establish whether muscarinic cholinergic receptors are involved in the anomalous GH response to GnRH in men with insulin-dependent diabetes mellitus and in male patients with major depression. For this purpose, 16 male diabetics, 18 depressed men and 9 normal controls were tested with GnRH (25 micrograms iv) with and without previous treatment with the muscarinic cholinergic receptor blocker pirenzepine (40 mg iv 10 min before GnRH). Additional experiments with TRH (200 micrograms iv 10 min after pirenzepine) were performed in the same subjects and used for comparison between responders to TRH and GnRH. The administration of GnRH stimulated GH release in 12 out of the 16 diabetics and in 8 out of the 18 depressed patients, but not in the normal controls. Control and diabetic non-responders to GnRH did not respond to TRH. In contrast, all diabetic responders to GnRH, except 2, showed paradoxical GH responses to TRH. All depressed responders to GnRH and 3 of the non-responders, were responsive to TRH. The pattern and magnitude of the secretory responses to TRH and GnRH were similar in depressed and diabetic patients. When the effects of GnRH and TRH were restudied in the presence of pirenzepine, neither GnRH nor TRH enhanced the serum concentrations of GH in any patient. These data indicate that a muscarinic cholinergic mechanism is involved in the anomalous responses of GH to GnRH and TRH in diabetic men and in male patients affected by major depression.

Acetylcholine↗

Arginine vasopressin secretion in non-obese women with polycystic ovary syndrome.

Arginine vasopressin responses to osmotic (0.1 ml.kg-1.min-1 NaCl), orthostatic (standing upright and maintenance of orthostatic position for 20 min), and hypoglycemic (0.15 IU/kg insulin) stimuli were evaluated in women with polycystic ovaries and in normal subjects. Blood dehydroepiandrosterone, dehydroepiandrosterone sulphate, androstenedione, testosterone, cortisol, and endogenous insulin levels were significantly higher in women with polycystic ovaries than in controls, whereas estrone, estradiol-17 beta, progesterone and 17OH-progesterone concentrations were normal in all subjects. Arginine vasopressin basal levels (mean +/- SEM of 3 test days; women with polycystic ovaries: 2.8 +/- 0.2 pmol/l; controls: 2.7 +/- 0.2 pmol/l) and secretory responses to orthostatic (mean peaks 100% higher than baseline values) and to hypertonic (130% increments) stimuli were similar in the two groups. Arginine vasopressin responses to hypoglycemia were lower in women with polycystic ovaries (50% increment) than in controls (150% increment), although comparable blood glucose decrements and GH or cortisol increments were found in the two groups. Arginine vasopressin peak responses to hypoglycemia were negatively correlated to testosterone, androstenedione, and endogenous insulin levels, but did not correlate with basal and hypoglycemia-induced peak cortisol concentrations or with circulating levels of other steroids. These data indicate a hypothalamic posterior pituitary disorder affecting arginine vasopressin response to insulin-induced hypoglycemia in women with polycystic ovaries syndrome associated with elevated blood androgen and insulin concentrations.

Adult↗

Metergoline, naloxone, and sodium valproate did not modify arginine vasopressin response to insulin-induced hypoglycemia in man.

The present study was carried out in order to determine whether insulin-induced hypoglycemia exerts its stimulatory effect on plasma concentrations of arginine vasopressin (AVP) by interacting with a serotonergic, a GABA-ergic or an opioid pathway. For this purpose, the effect of the serotonergic antagonist metergoline (10 mg/day for 4 days po), the GABA-ergic agonist sodium valproate (600 mg in three divided doses po) and the opioid-receptor blocker naloxone (10 mg in a iv bolus) on the AVP response during an insulin (0.15 IU/kg bw) tolerance test (ITT) was evaluated in three groups of 6 normal men each. In all men, control ITTs were performed without drug treatments. Basal and ITT-stimulated AVP secretion was not modified by drug administration, suggesting that serotonergic, GABAergic and naloxone-sensitive opioid receptors are not involved in the regulation of AVP secretion in response to insulin-induced hypoglycemia.

Adrenocorticotropic Hormone↗

Oxytocin response to insulin-induced hypoglycemia in obese subjects before and after weight loss.

The response of plasma oxytocin to an iv bolus injection of crystalline insulin (0.15 U/kg) was evaluated in 14 normal weight [mean body mass index (BMI) = 23] and in 9 obese (mean BMI = 42) men. Similar blood glucose decrements after insulin injection were observed in the two groups. Obese and normal weight subjects presented similar basal oxytocin levels. In both groups, oxytocin rose significantly during the insulin tolerance test (ITT); however, the peak oxytocin response in the obese men was significantly lower than in the normal weight subjects. Obese men were restudied after substantial weight loss. Basal oxytocin levels and glucose response to insulin did not change after weight reduction. The oxytocin response to the ITT was significantly higher than before slimming and did not differ from that observed in the normal weight subjects. A significant negative correlation between BMI values and oxytocin peak levels during ITT was observed in the lean controls and obese subjects (r = 0.516, p less than 0.02). These results demonstrate that in obese subjects the oxytocin secretory response during an insulin tolerance test is reduced, suggesting the existence of a hypothalamic-pituitary disorder in obesity.

Adult↗

Oxytocin reduces exercise-induced ACTH and cortisol rise in man.

The effect of oxytocin on the ACTH, cortisol, GH and PRL response to physical exercise was investigated in 6 normal men. In addition, the possible involvement of endogenous opioids in the mediation of oxytocin action was evaluated. After fasting overnight, each subject was tested on four mornings at least 1 week apart. Exercise was performed on a bicycle ergometer. The workload was gradually increased at 3-min intervals until exhaustion and lasted about 20 min in all subjects. Tests were carried out under administration of oxytocin (2000 mIU as an iv bolus injection plus 32 mIU/min per 30 min) or naloxone (10 mg as an iv bolus injection) alone; furthermore, the effect of oxytocin together with naloxone (10 mg as an iv bolus injection) was evaluated. In the remaining test, normal saline was given instead of drugs. Plasma ACTH, cortisol, PRL and GH concentrations were significantly increased by physical exercise. Administration of oxytocin, naloxone or their combination was without effect on the PRL and GH rise elicited by exercise. In contrast, the exercise-induced ACTH and cortisol response was significantly raised by naloxone and reduced by oxytocin. When oxytocin was preceded by administration of naloxone, the ACTH and cortisol response to exercise was not reduced by oxytocin. These data show that oxytocin is capable of inhibiting the rise in ACTH and cortisol, but not in GH and PRL induced by physical exercise. Since naloxone abolished the inhibitory effect of oxytocin, oxytocin action on ACTH and cortisol secretion might be supposed to be mediated by an opioid pathway.(ABSTRACT TRUNCATED AT 250 WORDS)

Adrenocorticotropic Hormone↗

An 11-year longitudinal study of the occupational dust exposure and lung function of polyvinyl chloride, cement and asbestos cement factory workers.

Standardized questionnaires and lung function tests were administered in 1973, 1980, and 1984 to 126 workers occupationally exposed to polyvinyl chloride (PVC) dust, to cement dust, or to asbestos cement dust until 1974-1978 and to PVC thereafter. The workers in the last group were assigned to two asbestos exposure categories (heavy and slight). The decline in forced vital capacity (FVC) and forced expiratory volume in 1 s (FEV1.0) was analyzed with regard to the length of time since the data of first employment. After adjustment for age, height, and smoking status at the date of first employment, the decline in FVC and FEV1.0 among the nonsmokers-light smokers was slightly accelerated with length of employment in the PVC and slight asbestos exposure groups and markedly accelerated with time since first employment in the heavy asbestos exposure group. The heavy smokers in all the exposure groups had FVC and FEV1.0 predicted values that were lower than those of the nonsmokers-light smokers; these differences remained constant with length of employment. Cessation of asbestos exposure for about 10 years did not seem to change lung function decline.

Adult↗

Naloxone decreases the inhibiting effect of ethanol on the release of arginine-vasopressin induced by cigarette smoking in man.

In order to establish whether ethanol exerts its inhibiting effect on the nicotine-induced release of arginine-vasopressin (AVP) by interacting with an opioid pathway, six normal volunteers were treated with naloxone (2 or 4 mg as IV bolus, plus 5 or 10 mg infused over 105 minutes) during (2 nonfilter) cigarette smoking and ethanol (50 mL to 110 mL of whiskey) drinking. In addition, control experiments with naloxone, ethanol, or cigarette smoking alone were performed. When given alone, naloxone and ethanol did not modify AVP secretion, whereas nicotine increased plasma AVP levels by about 2.5-fold. This effect was completely blocked by ethanol. In the presence of naloxone, AVP rose only by about 1.7-fold in response to nicotine. Since naloxone only partially reversed the inhibiting effects of ethanol, only a partial involvement of opioid peptides in ethanol action might be supposed. Alternatively, ethanol and naloxone-sensitive opioids might produce their inhibiting effects on AVP rise in response to nicotine through independent pathways.

Adult↗

Muscarinic cholinergic and histaminergic H1 and H2 receptors are not involved in the LH response to naloxone in man.

The role of muscarinic-cholinergic and H1-, H2-histaminergic receptors as possible mediators of the LH response to the opioid antagonist naloxone was evaluated in 18 normal men. Subjects were divided in 3 groups of 6 men; the increment of LH in the plasma elicited by naloxone was evaluated after giving naloxone alone or together with dexchlorpheniramine, cimetidine or pirenzepine (respectively H1-, H2-histaminergic and muscarinic-cholinergic receptor antagonists). LH release was significantly stimulated by naloxone in all subjects; this response was not altered by histaminergic or cholinergic blockade. These results confirm the stimulatory effect of naloxone on LH release in man, without evidence of the involvement of H1-, H2-histaminergic or muscarinic-cholinergic pathways.

Adult↗

TSH and PRL responses to domperidone and TRH in men with insulin-dependent diabetes mellitus of different duration.

The effect of domperidone, a specific blocker of dopamine receptors, on serum TSH and PRL levels was evaluated in 16 euthyroid men affected by insulin-dependent diabetes mellitus (IDDM) of different duration and in 7 age-matched normal controls. Diabetics were divided into 2 groups of 8 men according to the duration of their disease (group I: 1-9 years; group II: 11-18 years). Both groups had normal basal levels of TSH and PRL. Responses of these hormones to domperidone were similar in normal controls and in group I diabetics, whereas they were significantly reduced in patients of group II. When all 16 diabetics were studied together, a significant negative correlation was found between mean maximal peaks of TSH and PRL responses to domperidone and duration of diabetes. In order to evaluate whether the reduced effect of domperidone in diabetics was due to alterations of the dopaminergic control of TSH and PRL secretion, the domperidone test was repeated in 6 normal controls and in 6 diabetics of group II after infusion of dopamine (4 micrograms/kg/min for 2 h). Dopamine infusion induced parallel decreases in TSH and PRL concentrations, without modifying hormonal secretory patterns in response to domperidone. These data suggested that the reduced TSH and PRL responses to domperidone in diabetics were not due to alterations of the dopaminergic control of pituitary function but to a defect at the pituitary level. To test this hypothesis, TSH and PRL responses to TRH were evaluated in group I and group II diabetics and in normal controls.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Lysine-vasopressin does not affect basal and LH-RH-stimulated LH and FSH release during the menstrual cycle of normal women.

In order to test possible effects of lysine-vasopressin (LVP) on basal and LH-RH-stimulated LH and FSH release, an intravenous bolus of LVP (0.06 IU/kg body weight) was injected alone or 10 min before LH-RH (100 micrograms i.v.) in 33 normal women in the follicular, periovulatory and luteal phase of their menstrual cycle. The administration of LVP modified neither the basal secretion of the gonadotropins nor the LH-RH-induced LH and FSH release. These data suggest that in humans, vasopressin is not involved in the control of gonadotropin release at the level of the anterior pituitary.

Adult↗

Cholinergic mediation of growth hormone secretion induced by thyrotropin-releasing hormone in cirrhotic patients.

In order to evaluate the possible involvement of muscarinic cholinergic receptors in the GH response to TRH in patients with liver cirrhosis, 8 males with post-hepatitic cirrhosis and 11 males with post-alcoholic cirrhosis were primed with the anticholinergic agent pirenzepine and tested with TRH. In addition, 10 male patients affected by piecemeal necrosis were tested in a similar manner. High basal concentrations of GH were found in all groups. None of the patients with piecemeal necrosis responded to TRH, whereas in patients with post-hepatitic and in post-alcoholic cirrhosis, TRH induced a significant rise in GH levels. The priming with pirenzepine (40 mg given iv 10 min before TRH) completely blocked the TRH-induced GH increase, but did not affect the TRH-induced TSH release. These data suggest that a muscarinic cholinergic pathway is involved in the anomalous response of GH to TRH in patients with liver cirrhosis. The lack of effect of pirenzepine on the TRH-stimulated TSH release suggests that the muscarinic cholinergic mediation is peculiar for the effect of TRH on GH secretion.

Adult↗

Nicotinic and M1-, M2-muscarinic cholinergic control of ACTH response to insulin-induced hypoglycaemia in man.

The possible mediation of muscarinic and/or nicotinic-cholinergic receptors in the response of ACTH to insulin-induced hypoglycaemia was evaluated in 18 normal men. Subjects were tested with the insulin (0.15 U/kg) tolerance test (ITT) in basal conditions and in the presence of the M1- and M2-muscarinic antagonist atropine (600 micrograms iv just before insulin injection (time 0) plus 600 micrograms 20 min later in 6 subjects) or the M1-muscarinic receptor blocker pirenzepine (40 mg iv 10 min before ITT or 20 mg at time 0 plus 30 mg at time 20 in 6 subjects). The remaining 6 men were treated with the nicotinic receptor antagonist trimethaphan (0.3 mg/min x 30 min before ITT). ACTH rose 4.7 times in response to hypoglycaemia. The ACTH response to hypoglycaemia did not change after pirenzepine administration, whereas it was significantly increased by atropine and decreased by trimethaphan treatment. These data indicate that nicotinic and muscarinic (M2 but not M1) receptors participate in a different manner in the regulation of the hypoglycaemia-induced ACTH release.

Adrenocorticotropic Hormone↗

Oxytocin enhances thyrotropin-releasing hormone-induced prolactin release in normal menstruating women.

The effects of oxytocin (OT) on basal thyrotropin-releasing hormone (TRH)-stimulated thyrotropin (TSH) and prolactin (PRL) secretion were evaluated in normal menstruating women during follicular, periovulatory, and luteal phases. Two different studies were performed. In one study, 15 subjects were treated with OT or saline; in the other study, 20 women were tested with TRH alone or in combination with OT. Results during follicular, periovulatory, and luteal phases were similar. OT did not produce any effect on basal serum TSH and PRL levels and on the TRH-stimulated TSH secretion, whereas it significantly enhanced the PRL response to TRH. At all examined phases during the menstrual cycle, the mean peak PRL response was reached within 20 minutes after TRH injection, and the peak was about three times higher than basal value when TRH was given alone and about four times when OT was present. These data suggest that in normal women OT is not involved in the control of basal and TRH-stimulated TSH secretion and of basal PRL release. In contrast, the enhancement of the TRH-induced PRL release suggests that OT plays a role in the control of the acutely stimulated PRL secretion. Because results were similar regardless of the phase of the menstrual cycle, estrogen and/or progesterone do not appear to be involved in the effect of OT on the TRH-induced PRL release.

Adult↗

Muscarinic cholinergic modulation of insulin response to an intravenous glucose tolerance test in normal man.

The effect of pirenzepine, a specific muscarinic cholinergic receptor antagonist, on insulin and glucagon responses to an intravenous injection of glucose was investigated in eight normal adult subjects. These volunteers received two iv glucose tolerance tests (0.33 g/kg) before and after the oral administration of 125 mg of pirenzepine (three doses of 25 mg during the day before the experiment and a fourth dose of 50 mg 2 h before glucose injection). Treatment with pirenzepine neither altered basal blood glucose levels nor affected glucose tolerance after the injection of the glucose load. In addition, it did not modify basal plasma insulin and glucagon levels and the decrement of glucagon in response to glucose injection. In contrast, pirenzepine significantly decreased insulin release induced by glucose administration. In man, during the present experimental conditions, the muscarinic cholinergic system modulates insulin, but not glucagon response to an iv glucose injection.

Adult↗