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Biomedical subjects

L Capretti

Publications and source records attributed to L Capretti.

At least 73 records · Page 4Linked to original sources

Luteinizing hormone responses to gonadotropin-releasing hormone and naloxone in menstruating women with type I diabetes of different duration.

Luteinizing hormone (LH) responses to gonadotropin-releasing hormone (GnRH) (100 micrograms injected intravenously (IV)) or naloxone (4 mg injected plus 8 mg infused in 2 hours IV) were evaluated in 29 women with insulin-dependent diabetes mellitus (IDDM) (duration, group I (n = 15): less than 10 years, range 3 to 9 years; group II (n = 14): greater than 10 years, range 11 to 20 years) and in 15 normal controls, on the 22nd days of normal menstrual cycles. Both GnRH- and naloxone-induced LH responses were similar in group I diabetics and normal controls, whereas they were significantly lower in group II than in group I diabetics or normal controls. Positive correlations were found between LH responses to GnRH and naloxone, whereas negative correlations were observed between maximal LH peaks in response to GnRH or naloxone and duration of diabetes. These data indicate that a hypothalamic pituitary disorder affects LH secretion with time after the onset of IDDM.

Adult↗

Reduction of baclofen-, but not sodium valproate-induced growth hormone release in type I diabetic men.

The effects of sodium valproate (a drug enhancing endogenous gamma aminobutyric acid (GABA)-ergic activity) and of the GABA analog baclofen (a GABA B receptor agonist) on serum GH levels was tested in 8 type I diabetic men and 8 normal controls. Sodium valproate (800 mg) or baclofen (10 mg) were given by mouth at 08.30 h on the experimental day. Control tests with a placebo were performed on different occasions. Basal GH levels were similar in controls and diabetic patients. Sodium valproate induced a 7 fold increase in serum GH concentrations in both groups. In contrast, baclofen-induced GH rise was significantly higher in normal controls (mean peak was 3.4 times higher than baseline) than in diabetic patients (mean peak was only 2.1 times higher than basal value). Serum GH levels did not change after placebo administration in any groups. These data suggest the presence of diabetes-induced alterations of a GABAergic pathway mediated by B receptors in the control of GH secretion. Alternatively, the data might indicate a change in diabetic men of other baclofen-sensitive neurotransmissions, different from GABA.

Adult↗

Abnormal arginine vasopressin response to cigarette smoking and metoclopramide (but not to insulin-induced hypoglycemia) in elderly subjects.

Aging is known to reduce arginine vasopressin (AVP) response to volumetric stimulations and to increase AVP responses to osmotic stimuli and to administration of metoclopramide (MCP). In order to gain a better insight into the effect of age on AVP secretion, we evaluated AVP responses to cigarette smoking, MCP, and insulin-induced hypoglycemia in 30 male subjects aged 22-81 and divided into 3 groups by age. Basal AVP concentrations were similar in all groups. The AVP response during the insulin tolerance test had a similar pattern and magnitude (2.5-fold increase) in all groups. AVP responses to MCP and cigarette smoking were similar in the two younger groups, with plasma AVP levels increased 2 times by MCP and 2.5 times by cigarette smoking. In contrast, both MCP- and cigarette smoking-induced AVP rises were significantly higher in the oldest group, where plasma AVP concentrations increased 2.5 times after MCP and 3.25 times after smoking. When data of the MCP and cigarette smoking tests were combined, regression analyses showed a significant positive correlation between AVP peak responses to MCP and cigarette smoking in the oldest subjects. These data show that elderly humans have increased AVP responses not only to MCP but also to cigarette smoking, suggesting a common disorder for both alterations. In contrast, the lack of age-related changes in AVP response during the insulin tolerance test demonstrates that the mechanism underlying the AVP response to hypoglycemia is not affected by aging.

Adult↗

Increase by naloxone of arginine vasopressin and oxytocin responses to insulin-induced hypoglycemia in obese men.

The present study was carried out to establish whether the low arginine vasopressin (AVP) and oxytocin (OT) responses to insulin-induced hypoglycemia observed in obese men was due to alteration of the opioid control of posterior pituitary function. For this purpose, the AVP and OT releasing effect of insulin (0.15 IU/kg bw)--induced hypoglycemia was tested in eight normal weight men and in 10 age-matched obese subjects, without and with the previous treatment with the specific opioid receptor antagonist naloxone (3 mg in an iv bolus). In a control study, naloxone was given alone to the same subjects. Obese men showed similar basal glucose, AVP and OT levels, which remained unmodified after treatment with naloxone alone. Insulin induced a similar decrement of blood glucose levels in all subjects, with a nadir at 30 min. Plasma levels of AVP and OT rose strikingly in normal and obese subjects with mean peak responses at 30 min for AVP and at 45 min for OT. However, both AVP and OT responses were significantly lower in obese than in control subjects. Pretreatment with naloxone did not modify the AVP and OT responses to hypoglycemia in normal weight subjects, whereas it significantly enhanced both hormonal responses in obese subjects. In the presence of naloxone normal controls and obese subjects showed similar responses of both AVP and OT to hypoglycemia. These data indicate that an abnormal activity of endogenous opioids might account for the hypothalamic posterior pituitary dysfunction, which is responsible for the low AVP and OT responses to insulin-induced hypoglycemia in obesity.

Adult↗

Reduced sensitivity to pirenzepine-induced blockade of growth hormone responses to arginine, exercise, and growth hormone-releasing hormone in type I diabetic subjects.

The present study was performed to establish whether the mechanism by which the cholinergic system influences growth hormone (GH) release was altered in type I diabetic patients. Therefore, we investigated in a dose-response fashion the inhibitory effect of the muscarinic cholinergic receptor antagonist pirenzepine on the GH responses to arginine infusion (30 g infused intravenously (IV) in 30 minutes), exercise (bicycle ergometer test at an intensity of 75 W for 30 minutes), or 1-44 GH-releasing hormone (GHRH) (1 microgram/kg in an IV bolus). In a preliminary study, IV injection of 17.5 mg pirenzepine failed to produce modification in the GH response to arginine infusion in both diabetic (N = 4) and normal subjects (N = 4), and to exercise (diabetics, N = 4; normals, N = 4). Therefore, other subjects were tested without and with 20, 25, and 30 mg pirenzepine during arginine (diabetics, N = 7; normals, N = 7) or exercise (diabetics, N = 7; normals, N = 7) tests. Each subject was tested four times. Diabetic patients presented higher GH responses to stimulation with arginine or exercise than normal controls. In both groups, pirenzepine administered at doses ranging from 20 to 30 mg produced a dose-related inhibition of the GH response to arginine and exercise, which was almost complete when 30 mg pirenzepine was administered. However, the percent inhibition produced by 20 or 25 mg pirenzepine in the arginine test and by 20 mg in the exercise test was significantly lower in the diabetic patients than in the normal controls.(ABSTRACT TRUNCATED AT 250 WORDS)

Adolescent↗

Effect of obesity and weight loss on arginine vasopressin response to metoclopramide and nicotine from cigarette smoking.

We have previously reported an impaired arginine vasopressin (AVP) response to insulin-induced hypoglycemia in obese men, suggesting a hypothalamic-posterior pituitary disorder in obesity. In the present study, we examined the AVP response to other releasing stimuli with a central site of action. The AVP response of 10 obese men to metoclopramide (MCP) or nicotine inhaled with cigarette smoking was compared with that obtained in eight sex- and age-matched controls. The AVP increase during nicotine and MCP tests were significantly lower in the obese patients than in the normal controls. Obese men were restudied after substantial weight loss. The AVP response to nicotine and MCP administration was significantly higher than before slimming and did not differ from that observed in the normal weight subjects. These results demonstrate obesity-related alterations in the AVP responsiveness to nicotine inhaled with cigarette smoking and MCP, supporting the hypothesis for a hypothalamic-posterior pituitary disorder in obesity.

Adult↗

Luteinizing hormone and cortisol responses to naloxone in normal weight women with bulimia.

The present study was undertaken in order to establish whether alterations in the endogenous opioid control of luteinizing hormone (LH) and ACTH/cortisol secretion occur in bulimic women with normal body weight and normal menstrual cycles. For this purpose, the capability of the opioid antagonist naloxone (4 mg injected as an intravenous bolus at time 0, plus 10 mg infused over 2 hr) to increase the circulating levels of LH and cortisol was tested in nine bulimic women and in nine age- and weight-matched normal controls. All women were tested on the 22nd day of a normal menstrual cycle. Two days later, a control test with normal saline (NaCl 0.9%) instead of naloxone was performed. The basal levels of LH and cortisol were similar in the bulimic and normal subjects and were not modified by the administration of normal saline. In contrast, the administration of naloxone significantly increased plasma LH and cortisol levels in all subjects, with peak LH responses at 30 min and peak cortisol responses at 60 min. The naloxone-induced LH and cortisol increases were significantly higher in the bulimic women than in the normal controls. These data indicate the presence of an increased opioid inhibitory tone in the control of LH and ACTH/cortisol secretion in normal weight bulimic women with normal menstrual cycles.

Adult↗

Serotonergic control of TSH and PRL secretion in obese men.

To evaluate whether the inhibitory control of TSH and the stimulatory control of prolactin (PRL) secretion exerted by endogenous serotonin was altered in obesity, 22 obese men and 10 normal controls were tested with TRH (200 micrograms IV bolus) in the presence (experimental test) and absence (control test) of the serotonergic agonist fenfluramine (60 mg PO 90 min before TRH). Control and experimental tests were also performed in seven male patients with subclinical hypothyroidism and were repeated in the same obese subjects after substantial weight loss. Basal TSH levels were similar in control and obese men. Normal TSH responses to TRH (peak less than or equal to 14 mU/L) were observed in all normal controls (mean peak +/- SE 9.8 +/- 0.6 mU/L). In contrast, obese men were divided into two groups: nine in whom the TRH-induced TSH rise was higher than normal (group I: mean peak = 16.5 +/- 0.5 mU/L) and 13 in whom it was normal (group II: mean peak = 10.6 +/- 0.7 mU/L). The hypothyroid men all had elevated basal and TRH-stimulated TSH levels. Basal PRL concentrations were similar in the normal controls and both groups of obese subjects. The PRL response to TRH was lower in both group I and group II obese men than in normal controls and was similar between group I and group II.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Growth hormone responses to growth hormone-releasing hormone, clonidine and insulin-induced hypoglycemia in normal weight bulimic women.

The growth hormone (GH) responses to GH-releasing hormone (GHRH; 1 microgram/kg BW in an i.v. bolus), clonidine (150 micrograms in a single oral dose) and insulin (0.15 IU/kg BW in an i.v. bolus) induced hypoglycemia were evaluated in 7 normal weight bulimic women with regular menstrual cycles and in 7 age- and weight-matched normal women. In addition, the effect of thyrotropin-releasing hormone (TRH; 200 micrograms in an i.v. bolus) on serum thyroid-stimulating hormone (TSH) and GH levels was measured in the same subjects. Tests were carried out in random order on the 22nd days of the following menstrual cycles. A control test with the i.v. administration of normal saline instead of drugs was carried out 2 days after the TRH test. Basal GH levels were significantly higher in bulimic women than in normal controls; despite higher GH levels, bulimic women showed normal circulating concentrations of somatomedin-C (Sm-C). Serum GH levels remained unmodified during the control test. In contrast, the administration of GHRH, clonidine or insulin induced significant GH responses in all subjects. Bulimic and normal women showed comparable responses after GHRH, clonidine or hypoglycemia. The hypoglycemic response to insulin was similar in bulimic and control subjects. The administration of TRH was unable to increase the circulating levels of GH in the normal controls, whereas it significantly increased GH concentrations in 5 of 7 bulimic women.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Abnormal arginine-vasopressin responses to metoclopramide and insulin-induced hypoglycemia in type I diabetes mellitus.

Alterations in the control of arginine-vasopressin (AVP) secretion have been described in type I diabetes mellitus. In order to gain a better insight into this problem, we examined whether insulin-dependent diabetics in good metabolic conditions and without diabetic complications had an abnormal AVP responsiveness to metoclopramide (MCP), an AVP-stimulating agent with a central site of action. In addition, we tested the AVP response to insulin-induced hypoglycemia in the same subjects. Twenty insulin-dependent diabetic men without neuropathy or other diabetic complications were divided into two groups according to the duration of their illness (10 patients who had been diabetic for less than 10 years, group 1, and 10 patients who had been diabetic for more than 10 years, group 2). Eleven age- and weight-matched normal men participated as controls. All groups were tested with MCP (20 mg in an intravenous bolus) and, on a different occasion, with insulin-induced (0.15 IU/kg) hypoglycemia. Experiments started after optimization of the metabolic status of the diabetic men by 3 days of treatment with continuous subcutaneous insulin infusion. Basal concentrations of AVP were similar in all groups (diabetics of group 1: 2.2 +/- 0.2 pmol/l, mean +/- SE; group 2: 2.3 +/- 0.2 pmol/l; normal controls: 2.2 +/- 0.2 pmol/l). Administration of MCP induced a striking elevation of plasma AVP levels in the normal controls and in the diabetic subjects of groups 1 and 2. All subjects showed a mean peak response at 15 min.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

5-HT1-, but not 5-HT2-serotonergic, M1-, M2-muscarinic cholinergic or dopaminergic receptors mediate the ACTH/cortisol response to metoclopramide in man.

The possible mediation of dopaminergic, muscarinic cholinergic and/or serotonergic receptors in the response of ACTH/cortisol to metoclopramide (MCP) was evaluated in 27 normal men. All subjects were tested with MCP (10 mg in an intravenous bolus plus placebo or saline, NaCl 0.9%, control test). For the other tests (experimental tests), the men were divided into three groups of 9 subjects each. One group was tested with MCP in the presence of the dopaminergic agonist bromocriptine (5 mg p.o. 3 h before MCP), another group was tested with MCP plus the M1- and M2-muscarinic-cholinergic antagonist atropine (1.2 mg in an intravenous bolus, just before MCP) or the M1-muscarinic receptor blocker pirenzepine (40 mg in an intravenous bolus 10 min before MCP). The third group was tested with MCP after treatment with the selective 5-HT1-serotonergic receptor blocker metergoline (10 mg/day p.o. in 5 divided doses for 4 days before MCP) or the 5-HT2-serotonergic receptor antagonist ketanserin (10 mg as a slow 3-min intravenous injection, 5 min before MCP). ACTH and cortisol rose by 45 and 55%, respectively, in response to MCP. The basal levels of ACTH and cortisol were not modified by bromocriptine, atropine, pirenzepine, metergoline or ketanserin treatment. Both ACTH and cortisol responses to MCP did not change significantly after bromocriptine, atropine, pirenzepine or ketanserin administration, whereas they were completely abolished by pretreatment with metergoline. Additional experiments were performed in order to evaluate whether the effect of metergoline on the ACTH/cortisol response to MCP depends on the amount of the serotonergic antagonist (dose-response study).(ABSTRACT TRUNCATED AT 250 WORDS)

Adrenocorticotropic Hormone↗

Naloxone abolishes the inhibiting effect of somatostatin on the release of oxytocin evoked by insulin-induced hypoglycemia in humans.

The effect of somatostatin (SRIH) on the release of oxytocin (OT) in response to hypoglycemia during insulin tolerance test (ITT) was studied in seven normal men. Subjects were injected intravenously with 0.15 U/kg insulin alone (control test) or together with SRIH (4.1 micrograms/min x 90 min), naloxone (10 mg in an IV bolus), or the combination of the two substances. Plasma OT concentrations rose significantly during ITT; the OT response was significantly reduced by the treatment with SRIH and increased in the presence of naloxone. When both SRIH and naloxone were given, the OT response to hypoglycemia did not differ from that observed in the control test. These findings provide evidence that the effect of hypoglycemia on plasma OT levels is sensitive to the inhibition by SRIH and by naloxone-sensitive endogenous opioids. Because naloxone reversed the inhibiting effects of SRIH, an involvement of opioid peptides in SRIH action might be supposed. Alternatively, SRIH and naloxone-sensitive opioids might produce their inhibiting effects on OT rise in response to hypoglycemia through independent pathways.

Adult↗

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↗

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↗

Fractional hepatic extraction of insulin in man: is it constant?

The present study was designed to compare insulin extraction by the liver following oral glucose administrations of different size, in order to evaluate insulin removal by the liver in relation to the insulin exposure, and to the amount of ingested glucose. Insulin secretion by the pancreas was estimated by the measurement of peripheral C-peptide levels, and insulin extraction by the liver by the analysis of peripheral C-peptide to insulin ratios and relations. Ten healthy subjects (5 males and 5 females), aged 16 to 66 yr, with normal bw, and without family history of diabetes mellitus were investigated by means of the administration, on alternate days, of 50 and 150 g oral glucose loads. After the 150 g oral glucose load plasma glucose levels were significantly higher than after the 50 g oral glucose administration: glucose incremental areas of 1.45 +/- 0.12 vs. 0.55 +/- 0.04 mmol/l X min, respectively (p less than 0.001). Similarly, insulin concentrations were significantly higher following 150 g than after 50 g glucose ingestion: insulin incremental areas of 0.52 +/- 0.09 vs. 0.20 +/- 0.04 nmol/l X min (p less than 0.001). Also C-peptide levels were higher after 150 vs. 50 g oral glucose load: C-peptide incremental areas of 1.85 +/- 0.41 vs. 0.64 +/- 0.13 nmol/l X min (p less than 0.01). C-peptide to insulin molar ratios were similar during the two glucose challenge, and averaged 5.25 +/- 0.42 vs. 5.08 +/- 0.50 after 50 and 150 g oral glucose loads, respectively.(ABSTRACT TRUNCATED AT 250 WORDS)

Adolescent↗