Search PubMedSearch

Biomedical subjects

P Filipponi

Publications and source records attributed to P Filipponi.

At least 19 recordsLinked to original sources

Crystallization and preliminary X-ray analysis of pig kidney DOPA decarboxylase.

DOPA decarboxylase from pig kidney, an alpha 2 dimeric enzyme of Mr = 107,000, has been crystallized by the vapour diffusion method with ammonium sulphate as precipitant. The crystals belong to the space group P6(2) (or its enantiomer P6(4)) and have unit cell dimensions of a = b = 155.9 A, c = 87.7 A, alpha = beta = 90 degrees, gamma = 120 degrees. They diffract to 2.6 A resolution. There is one dimeric molecule per asymmetric unit. Rotation function studies have revealed the orientation of the non-crystallographic 2-fold axis of the dimer in the asymmetric unit.

Animals

Therapeutical concentrations of tolbutamide, glibenclamide, gliclazide and gliquidone at different glucose levels: in vitro effects on pancreatic A- and B-cell function.

In the classical model of isolated perfused rat pancreas four commonly used sulfonylureas--tolbutamide, glibenclamide, gliquidone and gliclazide--were investigated at therapeutical concentrations at three different glucose levels (with 0, 2.22 and 5 mmol/l glucose surrounding) and in the presence of a metabolic stimulus with glucose at 8.33 mmol/l. All the sulfonylureas stimulated the B-cell function. Tolbutamide, gliquidone and gliclazide produced a prompt biphasic hormone release while glibenclamide induced a delayed monophasic insulin secretion. In all cases the amount of insulin released depended on the metabolic condition. As the environmental glucose levels fell, the sulfonylureas' stimulatory effect on the B-cell function decreased. At the therapeutical concentrations we tested, no sulfonylurea influenced A-cell activity whether directly or indirectly via an insulin-mediated paracrine inhibition of glucagon release.

Animals

[Antihypertensive efficacy of nitrendipine and its effects on carbohydrate metabolism. A controlled clinical study versus placebo].

Hypertension and diabetes mellitus are both common conditions which frequently co-exist. The calcium channel blockers are potentially diabetogenic since insulin secretion may be impaired by their use. The aim of this study was to determine whether nitrendipine, a second generation dihydropyridine derivative calcium antagonist, is capable of interfering with carbohydrate metabolism and insulin secretion in hypertensive diabetics at the doses commonly used in therapy. In a 12-week double blind placebo-controlled randomized clinical trial, the effects of nitrendipine (20 mg/day) on arterial blood pressure, glycaemic homeostasis and other metabolic parameters were evaluated in 30 patients with mild to moderate essential hypertension and type II diabetes mellitus. The results showed nitrendipine to be an effective antihypertensive agent which neither impaired the overall glucose homeostasis nor caused any other potentially harmful metabolic side effect. In conclusion, these data suggest that the calcium channel antagonist nitrendipine is a metabolically safe drug to use in the treatment of hypertension, especially in patients with diabetes mellitus.

Aged

Partial gastrectomy and mineral metabolism: effects on gastrin-calcitonin release.

Bone mineral metabolism was studied in 20 male patients, between 8 and 18 years, after surgical treatment for peptic ulcer (ten Billroth 1 and ten Billroth 2 gastrectomies) and in 16 sex- and aged-matched healthy controls. The bone mineral content was statistically reduced only in the Billroth 2 group. Serum 25(OH)D was lower in all patients, but fractional calcium absorption was similar to the control value. This may be due to increases in 1,25(OH)2D and parathyroid activity (particularly in Billroth 2). Serum osteocalcin levels and hydroxyproline excretion were higher than in the controls. A positive linear correlation emerged not only between serum 1,25(OH)2D and PTH levels but also between each of these and serum osteocalcin and urine hydroxyproline. Both PTH and calcitriol were inversely correlated with the bone mineral mass in Billroth 2, confirming a trend observed in Billroth 1. Although calcitonin values were normal, basal gastrin levels were severely impaired in all patients. In response to a mixed meal, increases in gastrin and calcitonin were significantly lower than in the controls. The calcitonin response to intravenous calcium and pentagastrin infusion was not significantly different to the controls. The percentage increase in gastrin and calcitonin responses to oral calcium correlated positively with the reduction in bone mineral content only in the Billroth 2 group, suggesting a reduction in calcitonin release may contribute to gastric surgery osteopenia in these patients.

Adolescent

Effects of long-term glibenclamide administration on gastrointestinal and pancreatic hormones in normal fasting rats.

We previously reported that sulfonylurea treatment reduces insulin (IRI), glucagon (IRG) and somatostatin (SRIF) release following metabolic stimuli from the isolated perfused pancreas of normal rats and that a reduction in IRI, IRG and SRIF pancreatic content was also observed. The present work was undertaken to investigate the effects of long-term glibenclamide treatment on the gastrointestinal content of gut hormones in normal rats. Moreover, the effects of sulfonylurea treatment on IRI, IRG, and SRIF pancreatic content were also analyzed and compared to the peripheral hormone plasma levels. Two groups of male Sprague-Dawley rats received glibenclamide (1 mg/kg/day per os; n = 14) or placebo (distilled water; n = 10) for 5 months, respectively. Tissue contents of IRI, IRG and SRIF in acid-ethanol extracts of pancreas and of gastric inhibitory peptide (GIP), vasoactive intestinal polypeptide (VIP), entero-glucagon (gut-GLI) and SRIF in acid-ethanol extracts of intestine were determined. Blood glucose and plasma pancreatic hormone levels were also measured. Glibenclamide treatment lowered the levels of IRI, IRG and SRIF in the pancreatic tissue; in the same way gut-GLI, SRIF and VIP intestinal concentrations were significantly reduced, whereas no significant inhibition was detected in intestinal GIP content. Blood glucose levels and IRI and SRIF plasma concentrations were similar in the two groups. IRG plasma levels were reduced in the sulfonylurea group. These findings might suggest that sulfonylurea suppresses hormone biosynthesis in a non-specific manner.

Administration, Oral

X-ring Turner's syndrome with combined immunodeficiency and selective gonadotropin defect.

A rare association of chromosomal, immunological and endocrine defects is described in a young woman with short stature, recurrent pulmonary infections and primary amenorrhea. Cytogenetic studies showed a 45, X karyotype in 65% of peripheral blood lymphocytes and 46,Xr(X) (p22q27) karyotype in the remaining 35%. Severe immunodeficiency was revealed by phenotypical and functional studies and a selective gonadotropin defect was disclosed by endocrinological investigations. An attempt is made to explain the coexistence of the three abnormal pictures.

Adult

Pancreatic A- and D-cell response to arginine during acute alloxan-induced intra-islet insulinopenia.

This study was performed to investigate the role of pancreatic B-cell function on glucagon and somatostatin response to arginine. Isolated perfused rat pancreas was used for the experiment. Acute B-cell destruction was induced in vitro by 0.56 mM alloxan infused directly into the vascular system of the perfused pancreas. This resulted in a fall in basal insulin release and in a complete absence of hormone response to 20 mM arginine. Glucagon and somatostatin release during metabolic stimulus was superimposable on that observed in the control experiments (no alloxan infusion). We conclude that a normal B-cell function is not required for glucagon and somatostatin response to arginine.

Alloxan

Evidence for a prostaglandin-mediated bone resorptive mechanism in subjects with fasting hypercalciuria.

This study was performed to assess whether treatment with prostaglandin synthesis inhibitors decreases calcium excretion in patients with idiopathic hypercalciuria. Nineteen hypercalciuric (12 with fasting hypercalciuria (FH), 7 with nonfasting hypercalciuria (NFH) and 8 control non-hypercalciuric stone formers were treated with sodium diclofenac, 50 mg t.i.d. for 2 weeks. After a washout phase, 7 FH patients received 200 mg/day of sulindac (a nonsteroidal antiinflammatory agent (NSAID) inactive on renal prostaglandin synthetase) for 14 more days. Diclofenac reduced urine calcium excretion in subjects with idiopathic hypercalciuria with either normal or elevated fasting urinary calcium (from 387 +/- 26 to 240 +/- 23 mg/day, P less than 0.001; and from 370 +/- 39 to 246 +/- 40 mg/day, P less than 0.05, respectively), whereas it was ineffective in normocalciuric stone formers. Similar antihypercalciuric effectiveness was exerted by sulindac in the seven FH patients. The antihypercalciuric action exerted by diclofenac in subjects with FH was associated with a significant increment in serum PTH (48 +/- 4 vs, 70 +/- 9 pmol/liter, P less than 0.05), whereas in NFH subjects, the antihypercalciuric effect of diclofenac on NFH was not associated with a change in parathyroid activity. Since the major effect of NSAIDs is to decrease prostaglandin synthesis, these data suggest that prostaglandins may play a pathogenetic role in idiopathic hypercalciuria. Furthermore, they suggest that PTH is suppressed in patients with FH, possibly due to stimulation of prostaglandin-mediated bone resorption process.

Adolescent

Catecholamines and pituitary function. VI. Effect of different dopamine doses on TRH-induced prolactin release in women with pathological hyperprolactinemia.

The present study was designed to examine the effect of low-dose dopamine (DA) infusion rates (0.02 and 0.1 microgram/kg X min) on both basal and TRH-stimulated prolactin release in normal and hyperprolactinemic individuals. Sixteen normally menstruating women in the early follicular phase of a cycle and 23 hyperprolactinemic patients were studied. 0.1 microgram/kg X min DA was infused in 8 normal women and 15 patients with pathological hyperprolactinemia, while 8 normal controls and 8 patients received 0.02 microgram/kg X min DA TRH (200 micrograms, i.v.) was administered alone and at the 180th min of the 5-hour DA infusion in all controls and patients. A significant reduction in serum PRL levels, which was similar in normal women (-59.5 +/- 4.0%, mean +/- SE) and hyperprolactinemic patients (-48.2 +/- 5.5) was observed in response to 0.1 microgram/kg X min DA. In normal cycling women DA infusion significantly (P less than 0.02) reduced the PRL response to TRH with respect to the basal TRH test (delta PRL 45.0 +/- 7.0 vs. 77.9 +/- 15.4 ng/ml). On the contrary, the PRL response to TRH was significantly higher during 0.1 microgram/kg X min DA than in basal conditions in hyperprolactinemic patients, both in absolute (delta PRL 91.8 +/- 17.6 vs. 38.4 +/- 6.8, P less than 0.03) and per cent (198.5 +/- 67.6 vs. 32.1 +/- 7.5, P less than 0.02) values. A normal PRL response to TRH, arbitrarily defined as an increase greater than 100% of baseline, was restored in 11 out of 15 previously unresponsive hyperprolactinemic patients.(ABSTRACT TRUNCATED AT 250 WORDS)

Dopamine

Effects of beta non-selective and beta 1 selective adrenergic blocking agents on glucagon secretion from isolated perfused rat pancreas.

To characterize beta-receptors which affect pancreatic A-cell activity, the effects of propranolol (beta non-selective blockade) and metoprolol (beta 1 selective blockade) were evaluated on epinephrine modulated insulin (IRI) and glucagon (IRG) release both in basal state and during metabolic stimulus (arginine 20 mM). The isolated perfused rat pancreas model with the exclusion of stomach and duodenum was used. Epinephrine infusion (at 10(-7) M) caused a prompt and sustained increase in basal IRG secretion and significantly potentiated glucagon release in response to metabolic stimulus. Insulin secretion was markedly suppressed by epinephrine both in basal conditions and during metabolic stimulus. Propranolol (at 10(-7) M) and metoprolol (at 10(-7) M) infusion clearly and similarly counteracted epinephrine stimulatory effects on IRG secretion but failed to elicit any significant effect on the epinephrine inhibited IRI release either in basal state or during the metabolic stimulus. These results suggest that, at least in the rat, the adrenergic stimulation of IRG release is mediated through a beta 1 receptor.

Animals

Catecholamines and pituitary-function. V. Effect of low-dose dopamine infusion on basal and gonadotropin-releasing hormone stimulated gonadotropin release in normal cycling women and patients with hyperprolactinemic amenorrhea.

To verify the role of dopaminergic mechanisms in the control of gonadotropin secretion in normal and hyperprolactinemic women, we examined the gonadotropin response to GnRH (100 micrograms i.v.) administration in both basal conditions and during low-dose dopamine (DA, 0.1 microgram/kg/min) infusion. Hyperprolactinemic women, either with microadenoma or without radiological signs of pituitary tumor, showed significantly enhanced LH and FSH responses to GnRH in comparison with normal cycling women. 0.1 microgram/kg/min DA infusion did not result in any appreciable suppression of serum gonadotropin levels but significantly reduced the LH and FSH responses to GnRH in both normal and amenorrheic hyperprolactinemic women. Although both LH and FSH levels remained higher in hyperprolactinemic patients than in normal women after GnRH, the gonadotroph's sensitivity to DA inhibition was normal in the hyperprolactinemic group, as both control subjects and patients with hyperprolactinemic showed similar per cent suppression of GnRH-stimulated gonadotropin release during DA. These data confirm that hypothalamic DA modulates the gonadotroph's responsiveness to GnRH. The increased LH and FSH responses to GnRH in hyperprolactinemic patients and their reduction during low-dose DA infusion seem to indicate that endogenous DA inhibition of pituitary gonadotropin release is reduced rather than enhanced in women with pathological hyperprolactinemia.

Adenoma

Selective impairment of pancreatic A cell suppression by glucose during acute alloxan-induced insulinopenia: in vitro study on isolated perfused rat pancreas.

This study was performed in order to investigate the role of insulin in the modulation of pancreatic A cell response to glucose. The isolated perfused rat pancreas model was used: intraislet insulinopenia was induced in vitro by 0.56 mM alloxan infusion over 15 min. Alloxan caused a transitory insulin release but did not affect glucagon secretion. Exposure to alloxan completely abolished insulin response to 20 mM arginine, 1.6 mM glucose, and 11.1 mM glucose. Glucagon response to 20 mM arginine and 1.6 mM glucose was unchanged by alloxan pretreatment compared to control pancreata not treated with alloxan. However, the suppression of glucagon release by 11.1 mM glucose was abolished in the alloxan experiments. Twenty milliunits per ml of insulin infused during 11.1 mM glucose infusion restored glycemic suppression of glucagon release, but it produced only a slight inhibitory effect on A cell function in the presence of 3.9 mM glucose. Our study indicates that glucose is the physiological suppressor of the pancreatic A cell and that, in this regard, insulin exerts only a permissive effect.

Alloxan

Catecholamines and pituitary function. IV. Effects of low-dose dopamine infusion and long-term bromocriptine treatment on the abnormal thyrotroph (TSH) dynamics in patients with pathological hyperprolactinaemia.

In order to gain further insight into the role of dopamine (DA) in the control of TSH release and to investigate whether an increased or defective DA inhibition on pituitary thyrotrophs may be considered responsible for the abnormal TSH dynamics in pathological hyperprolactinaemia, we examined the effect of low-dose DA infusion on TRH stimulated TSH secretion in normally cycling women and in patients with pathological hyperprolactinaemia. The effect of long-term bromocriptine therapy on TSH dynamics was also evaluated in a selected group of hyperprolactinaemic women. Fifty-two hyperprolactinaemic patients with no other signs of pituitary or thyroid dysfunction had significantly higher mean TSH serum concentrations and mean TSH peak values after TRH administration than 75 healthy controls. Furthermore, the TSH rises induced by the DA-synthesis inhibitor alpha-methyl-p-tyrosine (AMPT, 500 mg orally) were enhanced in both prolactinoma and 'idiopathic hyperprolactinaemia' patients as compared with controls. There was a positive correlation between the TRH- and AMPT-induced TSH rises in the hyperprolactinaemic group. Low-dose DA infusion (0.1 microgram/kg X min) reduced TSH response to TRH in both regularly cycling women and patients with hyperprolactinaemic amenorrhoea. Longterm bromocriptine therapy (2.5 mg tid over 60-150 days) not only normalized serum Prl levels, but also reduced the TSH response to TRH in 7 hyperprolactinaemic women who had presented exaggerated TSH responses to the basal TRH test.(ABSTRACT TRUNCATED AT 250 WORDS)

Bromocriptine

Classification of idiopathic hypercalciuric patients by isotopic calcium absorption: a comparison with oral calcium tolerance test.

To test the accuracy of calcium tolerance test in estimating calcium absorption, we have measured the radioactive calcium absorption (expressed as Fx) in 27 patients with IH and renal calcium stones. The results of this test were compared with those of a standard oral calcium tolerance test. Although only seven of nine AH patients displayed normal fasting calcium excretion, they all displayed Fx values above normal and a normal parathyroid activity. Conversely, only 5 of our 18 RH patients demonstrated a hyperabsorption of radioactive calcium and an elevation in iPTH and cAMP above normal limits, yet all of them showed an increased calciuric response to an oral calcium challenge. Calcium absorption was inversely related to iPTH (r = -082; P less than 0.001) and cAMP (r = -064 P less than 0.05) in AH, but directly proportional to these parameters (r = 0.62 P less than 0.001 and r = 0.46 P less than 0.05, respectively) in RH patients. In view of these results, two ratios, iPTH/Fx and cAMP/Fx were used to discriminate between the two groups of patients. Both ratios were over normal limits in all RH patients and within normal range in all but one AH patient. Furthermore, no overlap was found between the two groups. Conversely, we were unable to completely separate AH from RH subjects on the basis of the oral calcium tolerance test, since in both groups the fasting and the absolute (or percentage) changes in urinary calcium, cAMP and blood iPTH levels following oral calcium loading, overlapped in each instance.(ABSTRACT TRUNCATED AT 250 WORDS)

Absorption

[Adrenergic activity and glycometabolic compensation in patients with diabetes mellitus].

In an assessment of the degree of adrenergic activity in the course of diabetes mellitus, plasma levels and urinary excretion of norepinephrine and epinephrine were determined in 20 normal subjects and 47 diabetics: 11 in good control (group I), 23 in poor control (group II), 13 with frank ketoacidosis (group III). The study was repeated in groups II and III once good glycometabolic control had been achieved. Slightly above normal catecholamine levels were noted in group I, while there was a marked increase in group II. Group III shaved an enormous increase by comparison with the other two groups. After medical treatment values in group III fell to within the group I range. The conclusion is drawn that a close relationship exists between adrenergic acitivity and the degree of control of diabetes. The sympathetic nervous system, therefore, interferes in the course of diabetes with blood sugar control via numerous, complex mechanisms.

Adolescent