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Biomedical subjects

M L De Feo

Publications and source records attributed to M L De Feo.

At least 19 recordsLinked to original sources

Parathyroid glands: combination of (99m)Tc MIBI scintigraphy and US for demonstration of parathyroid glands and nodules.

PURPOSE: To determine the appropriate choice of imaging techniques for localization of nodular lesions of parathyroid glands. MATERIALS AND METHODS: First, computed tomographic (CT), magnetic resonance (MR), ultrasonographic (US), and technetium 99m methoxyisobutyl-isonitrile (MIBI) scintigraphic images in 49 patients with primary hyperparathyroidism were retrospectively evaluated. A single-blind, prospective study that included 16 patients with primary hyperparathyroidism was then conducted. MR, US, scintigraphic, and color Doppler US images of the neck were obtained and analyzed. RESULTS: In the retrospective study, CT, MR imaging, and US had low sensitivity (13%, 17%, and 27%, respectively) and specificity (39%, 65%, and 65%, respectively). Scintigraphy had 57% sensitivity and 85% specificity. In the prospective study, the use of latest-generation MR and US equipment and the participation of experienced operators led to improved sensitivity and specificity for these techniques. The combination of US and scintigraphy resulted in improved sensitivity (96%), specificity (83%), and positive and negative predictive values (88% and 94%, respectively), relative to the results obtained with either method alone. Doppler US was of little help in the setting of small glands. CONCLUSIONS: The combination of (99m)Tc MIBI scintigraphy and US performed by well-trained operators with up-to-date instruments appeared to be the best diagnostic tool for the preoperative diagnosis of parathyroid disease.

Adult↗

Cardiovascular effects of parathyroid hormone: a study in healthy subjects and normotensive patients with mild primary hyperparathyroidism.

The aim of the study was to evaluate: 1) the cardiovascular function and the autonomic drive to the heart in patients affected by primary hyperparathyroidism (pHPT) with no evidence of renal and cardiovascular complications; 2) the cardiovascular effects of acute administration of PTH in normal subjects. In 14 patients affected by mild asymptomatic pHPT echocardiographic assessment of cardiovascular function and of the mechanic properties of the brachial and carotid artery, heart rate variability and the dispersion of QT interval were performed before and 6 months after successful surgery. Twenty age- and sex-matched healthy subjects were included in the study. Five healthy volunteers underwent a single blind, placebo-controlled, random order, cross-over study with infusion of PTH (hPTH 1-34, 200 U in saline over 5 min) or placebo. Echocardiographic assessment of cardiovascular function, heart rate variability, and QT interval were performed between 20 and 25 min after the start of the infusion and repeated after 15 min of tilting at 60 degrees. In pHPT patients the echocardiographic parameters were normal; left ventricular isovolumetric relaxation time was always in the normal range, but significantly shorter than in control subjects, suggesting an increased sympathetic stimulation. Arterial diameters and thickness, blood pressure, and QT interval were not significantly different with respect to normal subjects and were unchanged 6 months after surgery. pHPT patients lacked the circadian rhythm of the low frequency to high frequency ratio, suggesting an increased sympathetic drive to the heart at nighttime. In normal subjects there were no significant differences in basal echocardiographic measurements during PTH infusion with respect to placebo and in the hemodynamic response to tilt. These results suggest that cardiovascular function is substantially normal in normotensive pHPT patients with mild hypercalcemia. A modulation of the adrenergic control of circulation seems to be associated with hypercalcemia and/or chronic PTH excess, but its biological relevance needs further investigations.

Adult↗

Urinary endothelin-1 excretion is enhanced by low-dose infusion of brain natriuretic peptide in normal humans.

To evaluate the functional relationship between cardiac natriuretic peptides and endothelin-1 within the human kidney, we studied the effects exerted by infusion of brain natriuretic peptide on urinary endothelin-1 excretion. We studied twice in a single-blind manner five normal volunteers who received a constant infusion of 5% dextrose (250 mL/h) or human brain natriuretic peptide-32 at a dose of 4 pmol/kg per minute. Blood samples were drawn at intervals for measurement of hematocrit and concentrations of creatinine, electrolytes, brain natriuretic peptide, and endothelin-1. Urine was collected an intervals for measurement of flow rate and concentrations of creatinine, sodium, cGMP, and endothelin-1. Blood pressure and heart rate were measured every 15 minutes. Placebo administration did not change blood pressure, heart rate, or any of the other parameters measured in plasma and urine. As expected, brain natriuretic peptide infusion caused significant increases in its own plasma levels (basal versus peak levels [mean +/- SD], 1.45 +/- 0.20 versus 50.5 +/- 6.0 pmol/L, P < .01), in urinary cGMP (0.75 +/- 0.16 versus 1.92 +/- 0.81 fmol/min, P < .05), and in urinary sodium excretion (140.0 +/- 38.7 versus 624.2 +/- 181.6 mumol/min, P < .01). In addition, it caused an increase in urinary endothelin-1 excretion (4.32 +/- 2.11 versus 19.67 +/- 9.52 fmol/min, P < .05), without modifying plasma endothelin-1, blood pressure, heart rate, creatinine clearance, and urinary flow rate. Our data indicate that brain natriuretic peptide, at plasma levels comparable to those observed in patients with heart failure, causes a significant increase in urinary but not plasma endothelin-1, thus demonstrating a functional link between cardiac natriuretic peptides and renal release of endothelin-1.

Adult↗

Systemic hemodynamics and renal function during brain natriuretic peptide infusion in patients with essential hypertension.

We assessed the cardiovascular and renal effects of human brain natriuretic peptide (BNP) infused at a dose inducing an increase in plasma BNP to pathophysiologic levels, in eight hypertensive patients in a randomized, placebo-controlled, cross-over study. Left ventricular performance, cardiac output (echocardiography), heart rate, arterial pressure, glomerular filtration rate (GFR; creatinine clearance), sodium excretion, intrarenal sodium handling (lithium clearance method), and urine flow rate were measured in the infusion and postinfusion periods (1 h each), together with plasma BNP and the urinary excretion rate of cGMP. Plasma BNP levels increased from 2.90 +/- 0.74 to 36.43 +/- 5.51 pmol/L (P < .01) at the end of the infusion and were still elevated at the end of the postinfusion period (7.03 +/- 1.41 pmol/L, P < .05). The urinary excretion of cGMP was also significantly higher during BNP infusion. Left ventricular performance, cardiac output, arterial pressure, and peripheral vascular resistance were not affected by BNP. Peptide infusion induced a significant increase in GFR (placebo, 115 +/- 24; BNP, 147 +/- 19 mL/min), sodium excretion (placebo, 129 +/- 40; BNP, 243 +/- 60 mumol/min), and urine flow rate. All these effects were observed also in the postinfusion period. The natriuretic effect of BNP was attributable to both an increase in filtered sodium load and a reduction of distal sodium reabsorption. These results suggest that BNP may contribute to maintain renal function and sodium excretion in patients with essential hypertension.

Adult↗

Natriuretic hormone receptors and actions on bone endothelial cells.

[125I]Atrial natriuretic peptide (ANP) was used to identify ANP receptors on a clonal line of bovine bone endothelial (BBE) cells. Specific binding of [125I]ANP was saturable and of high affinity. Computer analysis of the equilibrium binding data indicated that the Scatchard plots are best fit by a straight line (Kd = 69.3 +/- 20.9 pM; binding capacity = 37.9 fmol/10(6) cells). The order of potency for competing with [125I]ANP binding was human ANP (hANP) > rat atriopeptin-1 (rAP-1) > porcine brain natriuretic peptide (pBNP) > porcine C-type natriuretic peptide. Affinity cross-linking studies indicated the presence of two major 130- and 70-kilodalton bands that specifically bound to hANP, rAP-1, pBNP, and porcine C-type natriuretic peptide. The binding of natriuretic peptides to BBE cells resulted in an increase in cGMP production and a significant decrease in Na+/K+/Cl- cotransport, without effects on cAMP intracellular accumulation. hANP, rAP-1, and pBNP at 100-nM concentrations, significantly inhibited PTH-induced cAMP production. Treatment with natriuretic hormones was also associated with an increase in 6-keto-prostaglandin F1 alpha levels in the culture medium of BBE cells and a higher cell growth rate. These studies demonstrate that bone endothelial cells bear receptors for natriuretic hormones associated with changes in PTH-induced cAMP production, prostaglandin production, and cell proliferation.

Animals↗

Plasma levels of brain natriuretic peptide in patients with cirrhosis.

Plasma levels of brain natriuretic peptide, a recently identified cardiac hormone with natriuretic activity, were measured in 11 healthy subjects, 13 cirrhotic patients without ascites, 18 nonazotemic cirrhotic patients with ascites and 6 patients with cirrhosis, ascites and functional kidney failure. Plasma levels of brain natriuretic peptide were similar in healthy subjects and cirrhotic patients without ascites (5.56 +/- 0.65 and 7.66 +/- 0.68 fmol/ml, respectively). In contrast, cirrhotic patients with ascites, with and without functional kidney failure, had significantly higher plasma concentrations of brain natriuretic peptide (19.56 +/- 1.37 and 16.00 +/- 1.91 fmol/ml, respectively) than did healthy subjects and patients without ascites (p less than 0.01); no significant difference was found between the two groups of cirrhotic patients with ascites with respect to this parameter. In the whole group of cirrhotic patients included in the study, brain natriuretic peptide level was directly correlated with the degree of impairment of liver and kidney function, plasma renin activity and plasma levels of aldosterone and atrial natriuretic peptide. The results of this study indicate that brain natriuretic peptide is increased in cirrhotic patients with ascites and suggest that sodium retention in cirrhosis is not due to deficiency of this novel cardiac hormone.

Alanine Transaminase↗

Thromboxane-receptor blockade increases water diuresis in cirrhotic patients with ascites.

This study was undertaken to investigate the role of increased renal thromboxane (TX) A2 production in modulating renal hemodynamics and sodium and water retention in cirrhotic patients with ascites. In a randomized, double-blind, placebo-controlled, crossover trial, 15 nonazotemic cirrhotic patients with ascites and elevated urinary TXB2 excretion received the thromboxane-receptor antagonist ONO-3708 (3 micrograms.kg-1.min-1) in a 4-hour continuous infusion. Administration of ONO-3708 significantly blocked TXA2 receptors; bleeding time showed a twofold increase (432 +/- 65 vs. 131 +/- 17 seconds; P less than 0.005), and platelet aggregation to U-46619 (an agonist of TXA2 receptors) was abolished in all patients studied. The drug induced a significant increase in free water clearance (3.06 +/- 0.70 vs. 1.72 +/- 0.57 mL/min; P less than 0.001) and diuresis (4.74 +/- 0.79 vs. 3.94 +/- 0.66 mL/min; P less than 0.05) compared with placebo, as well as a significant (14%) increase in renal plasma flow. The increases in both free water clearance and diuresis induced by ONO-3708 were directly related to basal urinary TXB2 excretion. These results suggest a role for renal TXA2 as a modulator of water handling in cirrhotic patients with ascites.

Aged↗

Natriuretic peptide receptors regulate endothelin synthesis and release from parathyroid cells.

Cloned rat parathyroid cells (PTr cell line) that produce parathyroid hormone-related peptide plus endothelin 1 and primary cultures of human parathyroid cells were tested for growth and differentiation responses to atrial natriuretic peptide (ANP) and brain natriuretic peptide (BNP). High- and low-affinity binding sites for ANP were found on PTr cells; BNP appeared to bind to the same receptors with similar affinities. Either ANP or BNP stimulated production of cGMP and caused a 30% decrease in Na(+)-K(+)-Cl- cotransport. Each peptide increased synthesis and secretion of endothelin 1 by PTr cells in a dose-dependent fashion, but cell growth was not affected. Human parathyroid cells (normal and pathological) also responded to ANP or BNP with an increase in cGMP production. The finding of receptors for natriuretic hormones on parathyroid cells with consequent effects on release of endothelin 1 might be of relevance in understanding the clinical association between hyperparathyroidism and hypertension.

Animals↗

Comparison of the effects of torasemide and furosemide in nonazotemic cirrhotic patients with ascites: a randomized, double-blind study.

In a randomized double-blind trial we compared the effects of torasemide, a new loop diuretic, and furosemide in nonazotemic cirrhotic patients with ascites during a 3-day period in association with potassium canrenoate (200 mg/day) administration. Doses of loop diuretics administered in this trial (10 and 25 mg/day of torasemide and furosemide, respectively) had been shown to be equipotent in healthy subjects. Torasemide induced significantly greater natriuresis than furosemide (p less than 0.02), with a twofold greater percentage increase in basal values (day 1: 130% vs. 50%; day 2: 104% vs. 42%; and day 3: 65% vs. 26%, respectively). Body weight loss was significantly higher during torasemide (p less than 0.02) administration, and the overall decrease at the end of the treatment was twice as high for furosemide (2.5 +/- 0.6 kg vs. 1.3 +/- 0.4 kg, respectively). Diuresis was also higher during torasemide administration, but the difference was not significant (p = 0.08). The extent of kaliuresis observed during the two treatments was almost identical despite the striking differences in the natriuretic response. The effects of the two treatments on plasma electrolytes, creatinine clearance, blood urea nitrogen, mean arterial pressure, heart rate and plasma arginine vasopressin concentration were similar. Both drugs caused increases in plasma renin activity at the end of the treatment, whereas plasma aldosterone concentration slightly increased only after torasemide administration. Despite the presence of a trend toward a more pronounced effect on these parameters after torasemide administration, no significant difference between the two treatments was observed.(ABSTRACT TRUNCATED AT 250 WORDS)

Ascites↗

Effects of repeated atrial natriuretic peptide bolus injections in cirrhotic patients with refractory ascites.

The renal and hormonal effects of repeated atrial natriuretic peptide (ANP) boli (1 microgram/kg of body weight) were studied in eight cirrhotic patients with refractory ascites. Under basal conditions the patients showed a striking activation of the renin-angiotensin-aldosterone system (plasma renin activity 19.3 +/- 3.0 ng/ml.h, plasma aldosterone concentration 3.87 +/- 0.58 ng/ml) and a tenfold elevation in plasma ANP levels compared to healthy subjects (131.7, range 47.0-288.6, vs. 9.8, range 5.0-15.0, fmol/ml, p less than 0.001). The first ANP injection was followed by a remarkable increase in plasma ANP levels and by a slight increase in urinary cyclic guanosine-monophosphate excretion (from 1050.8 +/- 454.8 to 1446.6 +/- 822.2 pmol/min). A significant reduction of mean blood pressure (MBP) occurred 5 min after the first injection (from 86.7 +/- 7.2 to 79.9 +/- 5.8 mmHg, p less than 0.05), but values gradually returned to the baseline after 30 min. Heart rate (HR) increased 10 min after the first bolus injection (from 83.75 +/- 4.7 to 88.1 +/- 4.6 beats/min) and reached baseline values after 30 min. Similar behaviour of MBP and HR was observed after the second, third and fourth bolus injections. Urinary sodium excretion, urinary flow, glomerular filtration rate, plasma renin activity, and plasma aldosterone concentration did not show any significant modification during ANP administration, nor did these parameters change in the following 12-h recovery period.(ABSTRACT TRUNCATED AT 250 WORDS)

Ascites↗

Measurement of catecholamines, met-enkephalin, somatostatin and substance P-like immunoreactivities in 12 human pheochromocytomas.

The present study was designed to evaluate the simultaneous presence of epinephrine (E), norepinephrine (NE), met-enkephalin (ME)-, somatostatin (SRIF)- and substance P (SP)- like immunoreactivities (LI) in extracts of 12 pheochromocytomas obtained at the time of surgery from 10 patients. Moreover, catecholamines and ME-LI levels were measured in peripheral plasma of each patient. Each pheochromocytoma was characterized by a high variability of ME-LI, SRIF-LI, SP-LI, E and NE levels. The highest E concentrations were found in tumors from patients with Multiple Endocrine Adenomatosis (MEA) IIa syndrome, whereas in sporadic pheochromocytomas NE was the main catecholamine. Among the neuropeptides ME-LI showed the highest intratumoral concentration, and SP-LI the lowest. No correlations were found between intratumoral levels of catecholamines and any of the neuropeptides or between any of the different neuropeptides measured. Plasma catecholamine levels were not correlated with intratumoral catecholamine levels. Plasma ME-LI was higher than normal in only one patient. No correlation was observed between tumoral CA or peptide content and the clinical picture. Our study confirms that human pheochromocytoma cells can synthetize different neuropeptides. The variability of the clinical picture very likely depends on the biochemical and biological heterogeneity of this chromaffin tumor.

Adrenal Gland Neoplasms↗

Endogenous dopamine (DA) and DA2 receptors: a mechanism limiting excessive sympathetic-adrenal discharge in humans.

We studied the effects of presynaptic dopamine (DA) 2 receptor blockade on the sympathetic-adrenal response to graded exercise in seven normal men. DA2 receptor blockade was achieved by means of domperidone (DMP) administration. The exercise consisted of progressive cycling activity, from 30-80% of the predetermined maximal oxygen consumption for each man. Systolic, diastolic, and mean arterial pressures; heart rate; and plasma norepinephrine (NE), epinephrine (E), PRL, glucose, lactate, FFA, sodium, potassium, cortisol, and PRA were measured at rest, during exercise, and during recovery after placebo or DMP administration. Graded exercise caused significant increases in systolic and mean arterial pressures and plasma NE, E, lactate, sodium, potassium, FFA, cortisol, and PRA. DMP administration before exercise caused a significant increase in plasma PRL (P = 0.0009), a greater increase in plasma NE at the end of the exercise (P = 0.002), and an overall increase in plasma E (P = 0.02) and FFA (P = 0.02) concentrations. These results strongly suggest that endogenous DA limits catecholamine release during sympathetic-adrenal stimulation by activating DA2 receptors.

Adrenal Glands↗

Cyclical Cushing's disease: report of a case cured by conventional cobaltotherapy.

Preliminary hormonal studies in a 18-y old man with the clinical features of Cushing's syndrome showed inconclusive and conflicting results both in basal conditions and after metyrapone and dexamethasone administration. Therefore the possibility of a cyclical or acyclical fluctuation of adrenal hypersecretion was suspected and the patient was observed for an extended period of time free of hormonal manipulations. Regular cycles of cortisol hyperproduction, with peaks occurring every 6.0 days were found. Ectopic ACTH production was ruled out and, even in the absence of radiological evidence of a pituitary adenoma, conventional cobaltotherapy was suggested after refusal of transsphenoidal pituitary surgery. About 8 months later a marked clinical improvement was evident as well as normalization of hormonal data with loss of the cyclical pattern. Remission of the disease was still persistent 15 and 28 months later. A recent control, approximately 4 1/2 yr after treatment confirmed the normalization of biochemical data, suggesting a cure of the disease.

Adolescent↗

Usefulness of basal catecholamine plasma levels and clonidine suppression test in the diagnosis of pheochromocytoma.

In the present paper we report our experience on the utility of basal plasma catecholamine (CA) measurement and of the clonidine-suppression test in the diagnosis of pheochromocytoma. Basal noradrenaline (NA) and adrenaline (A) were assayed in plasma samples of 27 subjects affected by pheochromocytoma. When compared to basal values obtained in hypertensive patients without pheochromocytoma, one or both the CA resulted pathologically elevated in all patients except one. The response to the clonidine-suppression test was evaluated in 41 hypertensive patients suspected of having a pheochromocytoma measuring plasma NA and A in basal conditions and 2 and 3 h after oral administration of 300 micrograms clonidine. Extensive laboratory and instrumental findings confirmed the presence of pheochromocytoma only in 12 patients. Among the other 29 patients basal plasma CA resulted higher than normal in 4 patients. In patients without pheochromocytoma clonidine induced a significant fall in both NA and A plasma levels. The decrease in NA was observed in each patient. The 12 patients with pheochromocytoma showed a pathological elevation of one or both the CA. In this group clonidine did not significantly suppress plasma CA. The individual responses were extremely variable. Our data confirm the validity of plasma CA measurement as a diagnostic tool for the diagnosis of pheochromocytoma. The results of the clonidine-suppression test were generally confirmatory of the basal CA plasma values but in the 4 hypertensive patients without pheochromocytoma who showed basal plasma CA higher than normal clonidine resulted a useful tool in excluding the presence of pheochromocytoma.

Adolescent↗

Intracisternal administration of pergolide, a dopamine receptor agonist, triggers the release of an inhibitor of ouabain-sensitive sodium, potassium-dependent adenosine triphosphatase and enhances vascular reactivity in anaesthetized dogs.

1. The present studies were undertaken to investigate whether intracisternal administration of pergolide, a dopamine-2 receptor agonist, triggers the release of an inhibitor of ouabain-sensitive sodium, potassium-dependent adenosine triphosphatase into the circulation and whether such an effect is associated with increases in vascular reactivity in pentobarbital anaesthetized dogs. In different groups of animals, Na+-pump activity was estimated in the plantar and dorsal branches of the lateral saphenous veins by using the 86Rb-uptake method; vascular responsiveness to noradrenaline was studied in the denervated perfused hindlimb. 2. Na+-pump activity was significantly depressed in those blood vessels which were collected at 90 min after central administration of pergolide (12.5 micrograms/kg intracisternally). In perfused hindlimb studies, vascular responses to noradrenaline were significantly enhanced between 60 and 90 min after pergolide. Since the Na+-pump activity was evaluated in the hindlimb veins, and vascular reactivity was studied on the arterial circulation, the data suggest that the changes in both these variables could have been caused by a circulating substance. 3. In separate series of experiments, plasma samples were collected before and after intracisternal administration of pergolide. The Na+-pump activity was significantly inhibited in the segments of lateral saphenous veins which were incubated in the fresh plasma and/or boiled plasma supernatants, indicating that a heat stable pump inhibitor(s) is released into the circulation after pergolide administration. 4. Effects of pergolide demonstrated in the present study are qualitatively similar to those reported to occur after acute blood volume expansion. Hence it is proposed that central dopaminergic mechanisms may play an intermediary role in the release of the Na+-pump inhibitor(s).(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Naloxone administration does not affect gonadotropin secretion in patients with Klinefelter's syndrome.

Plasma LH and FSH were measured every 20 min in a group of patients with Klinefelter's syndrome before and after placebo or naloxone administration (8 mg iv as a bolus followed by an infusion of 4 mg/h for 4 h) both in baseline conditions (N = 6) and during treatment with testosterone enanthate (200 mg im every two weeks; N = 4). The mean LH areas measured during saline infusion in baseline conditions (7888 +/- 758 IU/l per min mean +/- SEM) and during testosterone treatment (5042 +/- 2039 IU/l per min) were not significantly different from those measured during naloxone infusion (baseline 8317 +/- 818 IU/l per min; during testosterone treatment 5395 +/- 2007 IU/l per min). Similar results were obtained for FSH. These data suggest that in patients with Klinefelter's syndrome, the opioidergic inhibition of gonadotropin release is lacking and is not restored by testosterone replacement therapy.

Adult↗

Naloxone administration does not affect gonadotropin secretion in agonadal men either basally or during testosterone treatment.

Naloxone administration has no effect on plasma gonadotropin levels of agonadal men. The present study was designed to evaluate whether testosterone replacement therapy could restore LH responsiveness to naloxone in such men. We measured plasma LH and FSH levels at 15-min intervals during naloxone infusion (8 mg in 1 min followed by 12 mg in 3 h) and for the following 3 h in a group of agonadal men both before and after at least 2 months of three different schedules of testosterone replacement therapy: 1) testosterone undecanoate, 40 mg three times a day by mouth; 2) testosterone enanthate 200 mg im every 2 weeks; and 3) testosterone enanthate 100 mg im once a week. Mean plasma gonadotropin levels as well as LH pulse frequency did not vary during naloxone infusion vs. placebo either basally or during each testosterone regimen. These results suggest that long term testosterone therapy does not affect the altered opioid modulation of gonadotropin secretion which is present in agonadal men.

Adolescent↗