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A Signore

Publications and source records attributed to A Signore.

At least 37 records · Page 2Linked to original sources

CD95 and CD95-ligand expression in endocrine pancreas of NOD, NOR and BALB/c mice.

The non-obese diabetic (NOD) mouse is widely used to study the pathogenesis of insulin-dependent diabetes mellitus. However, the mechanisms responsible for beta-cell destruction, in this model, are still poorly defined. The CD95/CD95L system among other effector systems has been implicated in beta-cell death. In this study we investigated in NOD, non-obese resistant (NOR) and Balb/c mice the expression of CD95 and CD95L in alpha and beta pancreatic cells by immunohistochemistry and immunofluorescence. We demonstrate that alpha cells in the islets of Langherans constitutively express CD95L forming a natural shield around beta cells.

Animals↗

The development of technetium-99m-labelled interleukin-2: a new radiopharmaceutical for the in vivo detection of mononuclear cell infiltrates in immune-mediated diseases.

We describe here a new method for labelling interleukin-2 (IL-2) in high specific activity with 99mTc for in vivo studies in man. Labelling was performed via a two-step reaction using an N3S bifunctional chelating agent. To optimise the reaction, factors affecting the incorporation of 99mTc into the N3S ligand were studied. The conjugation of the preformed N3S chelate ligand to IL-2 was then similarly optimised. Various strategies for purifying the 99mTc-IL-2 were explored including size-exclusion, ion-exchange, and several modes of reversed-phase chromatography. The radiochemical purity of the purified protein was determined by HPLC, ITLC, TCA precipitation, and SDS-PAGE. The receptor binding capacity of 99mTc-IL-2 was studied. Biodistribution studies in normal mice were performed with 99mTc-IL-2 purified using different techniques or labelled after prolonged storage and compared to 125I-IL-2.

Animals↗

Metformin does not alter diabetes incidence in the NOD mouse.

In insulin-dependent (type 1) diabetes mellitus, increasing peripheral insulin sensitivity might be a useful approach in controlling the process leading to beta cell destruction by reducing insulin output and thereby reducing the antigenicity associated with its release. The aim of this study was to investigate whether the use of a biguanide, Metformin, which has been suggested to increase insulin sensitivity, was capable of modifying the natural history of diabetes in a model of type 1 diabetes, the non-obese diabetic (NOD) mouse. Using age-, sex- and litter-matched groups, three groups of 32 animals each were treated with Metformin in their drinking water at a high dose of 200 mg/kg body weight and at a low dose of 20 mg/kg body weight; the third group of mice acted as controls. Diabetes incidence at 30 weeks of age was similar in all groups. No significant differences in the calculated index of insulitis were observed in treated or control animals. We conclude that Metformin does not affect the disease process leading to clinical diabetes in this animal model.

Aging↗

Radiopharmaceuticals for the study of inflammatory processes: a review.

Recent advances in our understanding of the pathophysiology of inflammatory processes at the molecular level, combined with progress in radiopharmaceutical sciences, has boosted the development of nuclear medicine techniques for the diagnosis of infection/inflammation. The use of radiolabelled white blood cells has been studied and evaluated in several pathologies and is still the reference method. Several alternative approaches, however, have been developed that may, in the future, improve the specificity and the ease of use of the technique. For the first time, a radiopharmaceutical that may distinguish between sterile and septic inflammation, 99Tcm-Infecton, has been developed. Also, monoclonal antibody fragments, cytokines and a variety of new synthetic peptides that bind specifically to granulocytes have been prepared. Particularly promising appears to be the detection of the expression of adhesion molecules by activated endothelium as a first-line technique for the detection of inflammatory foci. For the diagnosis of autoimmunity and chronic inflammatory processes, important progress has also been made. Autoimmunity can now be studied by in vivo detection of tissue-infiltrating activated lymphocytes by radiolabelled interleukin-2. A radiopharmaceutical for the diagnosis of monocyte infiltration, J001X, is also available, and the commercially available Octreoscan holds promise in autoimmune and chronic inflammatory diseases. The efforts of the scientific community have given us new perspectives in diagnostic nuclear medicine: easier techniques that promise better sensitivity and specificity are now also being tested for the study of new disease conditions. The results of the clinical trials now in progress will determine the future of this challenging and fascinating field and the role of nuclear medicine in the management of patients with infection/inflammation.

Antibodies, Monoclonal↗

Vitamin E and nicotinamide have similar effects in maintaining residual beta cell function in recent onset insulin-dependent diabetes (the IMDIAB IV study)

OBJECTIVE: Protection of residual beta cell function at the time of diagnosis of insulin-dependent diabetes mellitus (IDDM) by intensive insulin therapy and the addition of nicotinamide (NA) has been established. The objective of this study was to evaluate the effect of a free oxygen radical scavenger such as vitamin E (Vit E) on residual beta cell function and parameters of metabolic control in patients with recent onset IDDM undergoing intensive insulin therapy. DESIGN: The effect of Vit E was compared with that of NA (control group) in a randomized multicentre trial. METHODS: Eighty-four IDDM patients between 5 and 35 years of age (mean age 15.8 +/- 8.4 (s.d.) years) entered a one year prospective study. One group of patients (n = 42) was treated with Vit E (15 mg/kg body weight/day) for one year; the other group (n = 42) received NA for one year (25 mg/kg body weight/day). All patients were under intensive insulin therapy with three to four injections a day. Basal and stimulated (1 mg i.v. glucagon) C-peptide secretion, glycosylated haemoglobin and insulin dose were evaluated at diagnosis and at three-monthly intervals up to one year. RESULTS: Preservation and slight increase of C-peptide levels at one year compared with diagnosis were obtained in the two treated patient groups. No statistically significant differences were observed in basal or stimulated C-peptide levels between the two groups of patients for up to one year after diagnosis. Glycosylated haemoglobin and insulin dose were also similar between the two groups; however patients receiving Vit E under the age of 15 years required significantly more insulin than NA-treated patients one year after diagnosis (P < 0.04). CONCLUSIONS: Our data indicate that Vit E and NA possess similar effects in protecting residual beta cell function in patients with recent onset IDDM. Since their putative mechanism of protection on beta cell cytotoxicity is different, combination of these two vitamins may be envisaged for future trials of intervention at IDDM onset.

Adolescent↗

Preparation and biodistribution of 99m technetium labelled oxidized LDL in man.

Radiolabelled autologous low density lipoprotein (LDL) has previously been used to study in vivo distribution and metabolism of native-LDL. Non-invasive imaging of atherosclerotic lesions using 99mTc-LDL was shown to be feasible in animal models and patients but the clinical utility remains to be assessed. Since recent reports suggest that oxidized LDL may play a major role in the pathogenesis of atherosclerosis, we developed a technique to oxidize autologous LDL and compared the biodistribution of oxidized-LDL with that of native-LDL in man. In addition, we evaluated the uptake in vivo of oxidized- and native-LDL by atherosclerotic plaques. LDL, obtained from human plasma was treated with various combinations of copper ions and H2O2 to induce oxidative modification by increasing the content of lipid peroxidation products and electrophoretic mobility. When LDL (0.3 mg/ml) was incubated with 100 microM Cu2+ and 500 microM H2O2 oxidation occurred rapidly within 1 h, and was labelled with 99mTc efficiently as native LDL. In vivo distribution studies revealed a faster plasma clearance of oxidized-LDL compared to native-LDL, and a higher uptake by the reticuloendothelial system. Tomographic scintigraphy of the neck in patients suffering from transient ischemic attacks, revealed accumulation of radiolabelled LDL preparations in the carotid artery affected by atherosclerotic lesions. We developed a technique to rapidly oxidize LDL using copper and H2O2. Biodistribution data demonstrate that oxidized-LDL is rapidly cleared from circulation, is taken up mostly by organs rich in macrophages, and can be detected at the level of carotid plaques.

Adult↗

The effect of metformin on liver blood flow in vivo in normal subjects and patients with non insulin dependent diabetes.

We previously reported that metformin improves insulin-mediated glucose liver metabolism in patients with non insulin dependent diabetes (NIDDM). It is not clear whether this is a direct effect of metformin on liver metabolism or mediated by other mechanisms such as increased liver blood flow. In this respect it has recently been reported that metformin increases hepatic blood flow (HBF) in diabetic rats. The aim of this study was to evaluate whether the administration of metformin is associated with modifications in HBF in humans. Patients affected by NIDDM (n = 11) and normal subjects (n = 6) were studied. In the first protocol HBF was investigated in six overweight (BMI 27 +/- 2 Kg/m2) NIDDM patients and six normal subjects (age and BMI matched) already on metformin treatment before and 2 h after the administration of 500 mg metformin. In the second protocol HBF was investigated in obese (BMI 32 +/- 1 Kg/m2) NIDDM patients (n = 5) in good metabolic control before and after 15 days of metformin at the dose of 1 g daily. HBF was measured by intravenous injection of 3 mCi 99mTc-phytate. In both protocols no significant changes in HBF were observed following metformin administration either in NIDDM patients or normal subjects. No significant differences were observed in HBF between diabetic patients and normal subjects. These data indicate that metformin has no effect on HBF in man. The previously reported improvement of insulin mediated liver metabolism induced by metformin is likely to be a consequence of the direct effect of the drug at hepatocyte level which is independent of HBF modifications.

Adult↗

Double blind trial of nicotinamide in recent-onset IDDM (the IMDIAB III study).

Nicotinamide has been recently introduced, in addition to intensive insulin therapy for patients with recent-onset insulin-dependent diabetes mellitus (IDDM) to protect beta cells from end-stage destruction. However, available data are conflicting. A double blind trial in 56 newly-diagnosed IDDM patients receiving nicotinamide for 12 months at a dose of 25 mg/kg body weight or placebo was designed in order to determine whether this treatment could improve the integrated parameters of metabolic control (insulin dose, glycated haemoglobin and C-peptide secretion) in the year after diagnosis. In addition to nicotinamide or placebo, patients received three to four insulin injections daily to optimize blood glucose levels. Patients treated with nicotinamide or placebo received similar doses of insulin during follow-up and 1 year after diagnosis with comparable glycated haemoglobin levels 6.7 +/- 1.8% nicotinamide vs 7.1 +/- 0.6% placebo). Basal and glucagon stimulated C-peptide secretion detectable at diagnosis were similarly preserved in the course of 12 months follow-up both in nicotinamide and placebo treated patients. No adverse effects were observed in patients receiving nicotinamide. When age at diagnosis was taken into account, nicotinamide treated older patients ( > 15 years of age) showed significantly higher stimulated C-peptide secretion than placebo treated patients (p < 0.02). These results suggest that nicotinamide can preserve and improve stimulated beta-cell function only in patients diagnosed after puberty.(ABSTRACT TRUNCATED AT 250 WORDS)

Adolescent↗

Retroviruses and diabetes in animal models: hypotheses for the induction of the disease.

This review examines the association between retroviruses and diabetes in the mouse model, the role of retroviruses in the pathogenesis of Type 1 diabetes and the mechanisms by which retroviruses can induce an autoimmune reaction. Three putative mechanisms are considered: the expression of retroviral protein(s) on the beta-cell surface as the first step in immune response against beta cells; the homology of a retroviral product with a self antigen inducing a cross-reacting autoimmune response (molecular mimicry); and a retroviral product showing homology with interleukin-2 and inducing T-cell activation against beta-cell antigens and loss of tolerance. These findings are discussed for their possible implications in the pathogenesis of human Type 1 diabetes.

Animals↗

Adjuvant therapy in recent onset type 1 diabetes at diagnosis and insulin requirement after 2 years.

Partial recovery of beta-cell function in type 1 diabetes is common after diagnosis by intensive insulin therapy. Residual beta-cell function can be improved by other therapies. Cyclosporin (CyA) and nicotinamide (NA), alone or in combination, can preserve this function, as indicated by the parameters of metabolic control (insulin dose, HbA1C). After suspension of CyA, insulin requirement returns to control values, suggesting loss of residual beta-cell function. The effects induced by withdrawal of NA after 1 year are not known. For the first time, we studied 27 type 1 diabetes patients treated with NA for 12 months and then followed up for 1 year after discontinuance of NA. Another 25 patients treated with NA + CyA and 28 control patients were followed up similarly. Insulin requirement doubled 12 months after discontinuance of NA or NA + CyA, becoming identical to that of controls. As patients showed HbA1C values similar to control subjects, it is likely that beta-cell function deteriorated after discontinuance of therapy. As NA is safer than other agents and its effects are beneficial, longer studies are warranted to investigate NA in prolonged treatments since this compound is also being considered for prevention of type 1 diabetes.

Adjuvants, Pharmaceutic↗

SPECT imaging with 111In-octreotide for the localization of pancreatic insulinoma.

We evaluated the sensitivity of 111In-Octreotide scintigraphy in the diagnosis of pancreatic insulinoma in a selected number of patients. In addition, we compared the results of scintigraphy with those of other conventional diagnostic techniques. Seven patients with surgically confirmed insulinoma (< 1.5 cm in diameter) of the pancreas were studied. Before surgery, patients underwent arteriography with Ca-gluconate, CT scan, and 111In-Octreotide scintigraphy. 111In-Octreotide scintigraphy showed a higher diagnostic specificity (85%) than selective arteriography (83%) or CT scan (57%). We conclude that 111In-Octreotide scintigraphy should always be performed before surgery in cases of pancreatic insulinoma and that a SPECT acquisition should be performed both 6 and 24 hours post-injection in order to increase the diagnostic sensitivity of the test.

Adolescent↗

111In-octreotide scintigraphy in metastatic medullary thyroid carcinoma before and after octreotide therapy: in vivo evidence of the possible down-regulation of somatostatin receptors.

We have investigated the presence of somatostatin receptors on the cell surface of metastatic medullary thyroid carcinoma in vivo using 111In-Octreotide scintigraphy. Five patients were studied before and three months after therapy with octreotide (300-600 micrograms/day). After each 111In-Octreotide scintigraphy the target/background (T/B) radioactivity ratio was calculated for each detectable metastases. A total of 14/18 metastases showed a reduction in the T/B ratio after therapy, suggesting saturation or down-regulation of the somatostatin receptors on metastases induced by octreotide therapy. Patients also showed a reduction in serum calcitonin levels after therapy. We conclude that 111In-Octreotide scintigraphy may be useful in medullary thyroid carcinoma to evaluate the rationale for somatostatin therapy and to monitor the effect of treatment.

Adult↗

Histological study of pancreatic beta-cell loss in relation to the insulitis process in the non-obese diabetic mouse.

Non-obese diabetic (NOD) mice spontaneously develop an autoimmune diabetes with higher incidence in females than in males. In order to elucidate possible factors involved in the different incidence of diabetes between male and female mice, we studied the progression of pancreatic beta-cell loss in relation to mononuclear cell infiltration of the pancreas (insulitis). We examined the pancreas of 76 NOD mice (39 males and 37 females) of different ages. The beta-cell content was assessed by immunoperoxidase staining of sections with an anti-insulin serum and the severity of insulitis was determined by haematoxylin staining of the same sections. A semi-quantitative criterion was used to grade both parameters. The results showed that females have a faster loss of beta-cell mass, which progressively decreases with the increase of severity of insulitis. In males, a medium to severe degree of insulitis is required before initial loss of beta cells occurs. Under the age of 10 weeks there was a significantly lower content of beta cells in females than males (2.84 +/- 0.03 vs 2.67 +/- 0.07; P = 0.02). Since we never observed a significant difference in the degree of mononuclear cell infiltration in age-matched males and females, these data support the hypothesis of weaker beta-cell resistance to immunological attack in female mice. Thus beta-cell sensitivity, in addition to immunological activity, is an important factor in the pathogenesis of insulin dependent diabetes.

Aging↗

New approach for in vivo detection of insulitis in type I diabetes: activated lymphocyte targeting with 123I-labelled interleukin 2.

Insulitis is considered the histopathological hallmark of type I (insulin-dependent) diabetes. In the non-obese diabetic (NOD) mouse, diabetes has never been observed in the absence of insulitis. The in vivo detection of insulitis could be of relevance for early prediction of diabetes. As approximately 15% of islet-infiltrating lymphocytes express interleukin 2 receptors, we have labelled recombinant interleukin 2 with 123I and used this radiopharmaceutical to detect insulitis by gamma camera imaging. We studied 71 prediabetic NOD and 27 normal Balb/c mice. Labelled alpha-lactalbumin was used as the control protein. In the first set of experiments we studied the tissue distribution of radiolabelled interleukin 2 in isolated organs from animals sacrificed at different time points. Higher radioactivity was detected in the pancreas of NOD mice injected with labelled interleukin 2, as compared to NOD mice receiving labelled alpha-lactalbumin (p < 0.003 at 20 min: p < 0.001 at 40 min; p < 0.001 at 60 min) or Balb/c mice injected with labelled interleukin 2 (p < 0.05 at 40 min; p < 0.001 at 60 min). In another set of experiments, gamma camera images have been acquired after injection of 123I-labelled interleukin 2. Radioactivity in the pancreatic region of prediabetic NOD and Balb/c mice showed similar kinetics to those observed by single organ counting, with higher accumulation in the pancreatic region of NOD mice (p < 0.04 after 22-45 min in NOD mice vs Balb/c mice).(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗