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Biomedical subjects

M Nobile

Publications and source records attributed to M Nobile.

At least 37 records · Page 2Linked to original sources

Long-term persistence of low bone density in orthotopic liver transplantation.

We determined bone density and metabolism in 46 patients (35 males, 11 females) who had undergone liver transplantation 1-48 months previously. Twenty-one patients were then followed for the next 24 months. At each visit, blood and urine samples for bone and liver metabolism parameters, as well as spinal and femoral dual-energy X-ray absorptiometry (DXA) scans, were obtained. Basal spinal and femoral density was low (p < 0.001). Patients with pre-transplant cholestatic diseases had lower spinal density than all the other subjects (p <0.05) and the cumulative methylprednisolone intake was an independent negative predictor of total hip density (p < 0.02). At baseline, urinary hydroxyproline and N-telopeptide were at the upper normal level and decreased only after 24 months of follow-up (p < 0.05). During the first year of follow-up, femoral density decreased (p < 0.05) and a partial recovery was observed for both spine and femur after 24 months. After 12 months, femoral bone density was negatively associated with serum cyclosporin A levels (p < 0.005) and cumulative methylprednisolone intake (p < 0.05), while the percent decrease in spinal density after the first 12 months was negatively predicted by mean daily methylprednisolone intake (p < 0.05). In patients with pre-transplant cholestatic diseases, femoral and spinal density increased after the first (p < 0.05) and second year (p < 0.05), respectively. In patients with previous post-necrotic cirrhosis, femoral density decreased after 12 months (p<0.05) and was still lower than baseline after 24 months (p < 0.05). However, at the end of the study the cumulative percentage of femoral neck osteoporosis was 43%. In conclusion, an elevated prevalence of spinal and femoral osteoporosis is present even many years after liver transplantation, with immunosuppressive treatment and pre-transplant liver disease being the most important pathogenetic factors.

Adult↗

pH modulation of an inward rectifier chloride current in cultured rat cortical astrocytes.

The effects of changes in extra- and intracellular pH in the pathophysiological range (6.0-8.0) on astroglial plasma membrane ionic currents were investigated with the whole-cell patch-clamp technique. In cultured rat neocortical type-1 astrocytes differentiated by a long-term treatment with dibutyryl cyclic-AMP, exposure to an extracellular pH of 6.4 induced, as compared with the control extracellular pH at 7.3, a sustained and reversible increase in the holding current at -60mV. The rise in current was accompanied by a decrease in the apparent input resistance. Ion substitution experiments indicated that extracellular pH 6.4 upregulated the resting Cl(-) conductance, whereas an opposite effect could be observed at extracellular pH 8.0. Recordings of isolated Cl(-) currents showed that this modulation occurred on the previously identified hyperpolarization-activated, inwardly rectifying Cl(-) current, I(Clh). Extracellular acidification to pH 6.4 shifted the voltage dependence of I(Clh) activation by approximately 20mV towards more positive potentials, whereas a approximately 20mV opposite shift was observed upon exposure to extracellular pH 8.0. These effects were paralleled by an increase (extracellular pH 6.4) or decrease (extracellular pH 8.0) in the maximal conductance. Decreasing (6.0) or increasing (8.0) the intracellular pH shifted the steady-state activation of I(Clh) towards more negative or positive potentials, respectively, leaving unchanged the current sensitivity to extracellular pH modifications. The modulation of the inward rectifier Cl(-) current expressed by differentiated cultured neocortical astrocytes indicates that extra- and intracellular changes in pH occurring in a pathophysiological range may contribute to regulating Cl(-) accumulation in astroglial cells.

Animals↗

An open trial of paroxetine in the treatment of children and adolescents diagnosed with dysthymia.

This open-label study examined the potential efficacy of paroxetine in the treatment of children and adolescents diagnosed with dysthymia over a period of 3 months. Seven subjects were evaluated by the Hamilton Depression Rating Scale (HAM-D), by the Clinical Global Impression Severity of Illness Scale (CGI-S), and the Clinical Global Impression Improvement Scale (CGI-I). Seventy-one percent of patients had a satisfactory response, suggesting the efficacy of paroxetine in children with dysthymia.

Adolescent↗

Large-conductance calcium-activated anion channel characteristics in neuroblastoma cells.

Large-conductance anion channel characteristics were investigated in neuroblastoma cells (N2A) by using different configurations of the patch-clamp technique. In excised patches, the channel was induced by depolarising potentials in 90% of experiments, had a conductance of 340 pS in symmetrical 135 mmol/l NaCl and exhibited the typical bell-shape activity. Neither the channel induction nor the channel activity was affected by rising the Ca2+ concentration on the cytopasmic side of membranes. In cell-attached configuration the maximal channel activity was shifted towards more positive potentials in comparison to that of excised patches and an increase in intracellular Ca2+, obtained by extracellular application of the Ca2+-ionophore A23187 in the presence of 0.2 micromol/l Ca2+, induced single-channel currents in 80% of patches compared to 31% of cell-attached experiments showing channel activity in normal conditions. In turn, application of 2 micromol/l Ca2+ induced channel activity in 100% of patches. The reversal potential of the channel in cell-attached patches was around -10 mV as the resting potential of cells eliciting channel activity. For cells where channel activity was not detected in cell-attached mode, the resting potential was around -45 mV. Channel activity could be restored in most whole-cell recordings in the presence of 2 micromol/l or more intracellular Ca2+ concentrations. The Ca2+-induction and the relation between channel activity and cell resting potential seem to suggest a role of the large-conductance anion channel in resting potential modulation during some basic functions of the neuroblastoma cell proliferation.

Animals↗

[Cerebral metastatis. Diagnostic and therapeutic features].

Brain metastases represent the most frequent intracranial neoplasms in adults: between 15 and 25% of patients with systemic tumors will face brain metastases along the clinical course of disease. Lung cancers, breast cancers and melanomas are the commonest causes of brain metastases (about 75%), while the primary site remains unknown inasmuch as 15% of cases. Headache, focal neurological deficits, epilepsy and intracranial hypertension are the most frequent initial symptoms and signs. Computerized Tomography and Magnetic Resonance represent the methods of choice for diagnosis. Supportive care is based on corticosteroids and antiepileptic drugs. Anticancer therapy planning must be based on prognostic factors: performance status, tumor activity and age. Surgical removal followed by external adjuvant radiotherapy is considered the best treatment in patients with single brain metastases and systemic disease under control or absent. Stereotactic radiosurgery is preferable in cases of unoperable metastatic lesions of the brain or progressive systemic disease. The usefulness of whole brain radiotherapy following surgery or radiosurgery is debated. In patients with multiple brain metastases, apart from radiotherapy, surgical excision of the symptomatic lesions, when feasible, seems advantageous. Chemotherapy is a valid option only in cases of metastases from chemosensitive neoplasms (small-cell lung tumors or breast tumors).

Brain Neoplasms↗

Dopamine receptor D4 gene is not associated with major psychoses.

We previously reported an association between dopamine receptor D4 (DRD4) gene exon 1 variants and delusional disorder. The aim of this investigation was to study the DRD4 gene exon 1 and 3 variants in schizophrenia, delusional, bipolar, and unipolar disorders. We studied 651 inpatients affected by schizophrenia (n = 229), delusional (n = 86), bipolar (n = 210), and unipolar (n = 126) disorders (DSM III-R) and 471 healthy controls; these were typed for DRD4 variants at the first and third exon using polymerase chain reaction techniques. DRD4 variants were not associated with schizophrenic and delusional subjects even when possible confounders like gender and onset were considered. A marginal association between DRD4 exon 3 variants with unipolar (excess of DRD4*2/4, p = 0.004) and bipolar (excess of DRD4*2/4, p = 0.001) disorders was observed, both associations drop to insignificance when corrected for multiple testing. Our results exclude that coding variants of the DRD4 exon 1 and 3 may play a major role in conferring susceptibility to major psychoses; moreover, we could not replicate the association of DRD4 exon 1 variant with delusional disorder.

Adult↗

Probing the modelled structure of wheatwin1 by controlled proteolysis and sequence analysis of unfractionated digestion mixtures.

We set up a method to get rapid information on the three-dimensional structure of peptide and proteins of known sequence. Both native and alkylated polypeptide is hydrolyzed with a number of proteases at different digestion times and the resulting mixtures are compared by HPLC analysis to establish the differences in the hydrolysis pathways of the folded and unfolded molecule. Then, the unfractionated digestion mixtures of the native polypeptide are submitted to automatic sequence analysis to identify the hydrolysis sites. The sequence of each fragment present in the mixtures is reconstructed and its amount determined by quantitative data of the sequence analyses. We used this approach to determine the amino acid surface accessibility of wheatwin1, a pathogenesis-related protein from wheat, and constructed a predictive three-dimensional model based on the knowledge of the tertiary structure of barwin, a highly homologous protein from barley. The procedure allowed us to quickly identify and quantify the hydrolysis at the susceptible bonds which could be classified as exposed, partially hidden, or inaccessible. The results were useful to evidentiate and discuss concordances and differences between experimental and model predicted accessibilities of amino acid residues. Proteins 1999;36:192-204.

Alkylation↗

Acute effects of moderate dietary protein restriction in patients with idiopathic hypercalciuria and calcium nephrolithiasis.

BACKGROUND: High dietary protein intake is a potential risk factor for nephrolithiasis because of its capacity to increase urinary calcium and to facilitate lithogenesis through many other mechanisms. OBJECTIVE: Our aim was to verify the effects of moderate protein restriction in hypercalciuric patients. DESIGN: We studied 18 patients (10 men and 8 women aged 45.6+/-12.3 y) with idiopathic hypercalciuria and renal calculi. Before and after 15 d of a diet with 0.8 g protein x kg(-1) x d(-1) and 955 mg Ca, all patients were evaluated for the main serum and urinary measures of calcium metabolism as well as for urinary uric acid, oxalate, citrate, and prostaglandin E2. RESULTS: Urinary excretion of urea fell after the diet (P < 0.001). Urinary calcium (P < 0.001), uric acid (P < 0.005), oxalate (P < 0.01), and hydroxyproline (P < 0.01) decreased after protein restriction, whereas urinary citrate increased (P < 0.025). Blood pH increased after the hypoproteic diet (P < 0.05). 1,25-Dihydroxycholecalciferol (calcitriol) concentration fell significantly (P < 0.025) and parathyroid hormone increased (P < 0.001). Creatinine clearance tended to decrease (106.4+/-4.8 compared with 97.5+/-5.7 mL/min) after the diet. The decrease in urinary uric acid after the diet correlated with calcitriol concentration (r = 0.57, P < 0.05) and the decrease in urinary urea correlated positively with that in hydroxyproline excretion (r = 0.58, P < 0.01). CONCLUSIONS: In hypercalciuric patients, moderate protein restriction decreases calcium excretion, mainly through a reduction in bone resorption and renal calcium loss; both are likely due to a decreased exogenous acid load. Moreover, dietary protein restriction ameliorates the entire lithogenic profile in these patients.

Calcium↗

Effects of serotonin transporter promoter genotype on platelet serotonin transporter functionality in depressed children and adolescents.

OBJECTIVE: To investigate possible associations between serotonin transporter (5-HTT) promoter genotypic variants (l/l, l/s, and s/s) and differential regulation of platelet 5-HTT functionality parameters in a group of drug-naive depressed children and adolescents and healthy controls. METHOD: Children and adolescents with major depression (n = 18) defined by DSM-III-R criteria and normal controls (n = 21) were assessed both for platelet serotonin functionality and for genotypic variants on 5-HTT promoter region. Four parameters were considered: (1) serotonin uptake rate (Vmax); (2) serotonin dissociation constant (K(m)); (3) paroxetine binding and density of site (Bmax); and (4) paroxetine dissociation constant (Kd). RESULTS: Depressed children had lower Vmax and K(m). Control subjects with l/l genotype had significantly higher Vmax than control subjects with l/s and s/s genotype. Control subjects with l/l genotype also had significantly higher Vmax than their depressed homologs. In contrast, Vmax was not significantly different between depressed and nondepressed subjects who carried the other 2 genotypes. The 5-HTT promoter genotype, diagnoses, or their interaction had no effect on the other serotonin parameters. CONCLUSIONS: While showing a significant decrease of Vmax and K(m) in a group of drug-naive depressed children and adolescents, these data suggest that l/l genotype has a substantial effect on the decrease of Vmax during a depressive episode.

Adolescent↗

Basolateral sorting of furin in MDCK cells requires a phenylalanine-isoleucine motif together with an acidic amino acid cluster.

Furin is a subtilisin-related endoprotease which processes a wide range of bioactive proteins. Furin is concentrated in the trans-Golgi network (TGN), where proteolytic activation of many precursor proteins takes place. A significant fraction of furin, however, cycles among the TGN, the plasma membrane, and endosomes, indicating that the accumulation in the TGN reflects a dynamic localization process. The cytosolic domain of furin is necessary and sufficient for TGN localization, and two signals are responsible for retrieval of furin to the TGN. A tyrosine-based (YKGL) motif mediates internalization of furin from the cell surface into endosomes. An acidic cluster that is part of two casein kinase II phosphorylation sites (SDSEEDE) is then responsible for retrieval of furin from endosomes to the TGN. In addition, the acidic EEDE sequence also mediates endocytic activity. Here, we analyzed the sorting of furin in polarized epithelial cells. We show that furin is delivered to the basolateral surface of MDCK cells, from where a significant fraction of the protein can return to the TGN. A phenylalanine-isoleucine motif together with the acidic EEDE cluster is required for basolateral sorting and constitutes a novel signal regulating intracellular traffic of furin.

Amino Acid Sequence↗

Expression and characterization of a dopamine D4R variant associated with delusional disorder.

Multiple genetic polymorphisms of the human dopamine D4 receptor (hD4R) have been identified including a 12 bp repeat in exon 1 associated with a psychotic condition called delusional disorder. Competition binding assays revealed minor pharmacological differences between the recombinant A1 (normal) and A2 (delusional) proteins with respect to quinpirole and the antipsychotic clozapine, however no functional differences were detected for receptor activation by dopamine, epinephrine, or norepinephrine. Our results suggest that this polymorphism may only confer susceptibility to delusional disorder in combination with other genetic or environmental factors.

Animals↗

Identifying human platelet glycoproteins IIb and IIIa by capillary electrophoresis.

Glanzmann thrombasthenia (GT) is an inherited hemorrhagic defect due to a failure of the platelet membrane glycoprotein (GP) IIb-IIIa complex. Capillary electrophoresis (CE) analysis of solubilized platelet membranes from normal individuals showed the presence of two peaks with a migration time of 27 and 29 min, respectively. An excellent run-to-run and day-to-day reproducibility of the technique (< 1% variation of the retention time) was documented. Using an automated Ferguson method, the apparent molecular masses were 100.0 kDa and 138.5 kDa, respectively. Immunoprecipitation with monoclonal antibodies anti-GP IIIa (B59.2.1) and anti-IIb (61.9.1.3) showed the two peaks as IIIa and IIb, respectively. Electropherograms of a GT young man showed the lack of both peaks. Less than 50% of each peak was present in his parents. Polyacrylamide gel electrophoresis (PAGE), immunoblotting, and flow cytometry analyses showed that GP IIb and IIIa were undetectable in the platelet membranes from the propositus, half of the normal amount being present in both parents. These findings indicate CE to be a rapid, sensitive and reliable tool to investigate patients with abnormalities of the GP IIb-IIIa complex.

Blood Platelets↗

A discriminant block among K+ channel types by phenytoin in neuroblastoma cells.

The action of the anticonvulsant drug phenytoin on K+ channels was investigated in neuroblastoma cells (N2A) by using the single-channel patch-clamp technique. N2A cells expressed three types of delayed rectifier K+ channels, which were found to have a conductance of 10-20 pS in a 'physiological' K+ gradient. When added to the external solution at concentrations ranging between 1 and 200 microM, phenytoin decreased single channel activity, whereas the unitary current amplitude was unaffected in all three types of channels. The open probability of the biggest channel decreased, according to an exponential distribution of open and closed times, from 40% in control conditions to 10% in the presence of 50 microM phenytoin (Vm=40 mv). The reduction in the open-channel probability was concentration-dependent with a IC50 = 27.2+/-0.9 microM. A transient type of K channel was identified that was affected by cumulative inactivation and had a conductance of a mean value equal to 26 pS. Finally, a voltage-and Ca2+-dependent K+ channel with a unitary conductance of 95 pS was recorded. Both the channel's amplitude and kinetics were unaffected by phenytoin. These results confirm the phenytoin effect on K+ currents and suggest that the drug may be considered a selective blocker of delayed rectifier K+ channels.

Animals↗

Bone density and skeletal metabolism are altered in idiopathic hypercalciuria.

OBJECTIVE: To study bone density in hypercalciuric patients, when classified according to the main metabolic defect. METHODS: We studied 49 patients, aged 19-60 years with calcium stones and idiopathic hypercalcuria. All subjects underwent an evaluation of mineral metabolism and a spinal and femoral DEXA measurement. Then, patients were classified as having Fasting (FH, 31 subjects) or Absorptive (AH, 18 patients) Hypercalciuria according to a standard oral calcium load. RESULTS: Spinal bone density was lower only in FH patients as compared to controls (p <0.001). Bone alkaline phosphatase and urine hydroxyproline were higher with respect to controls only in patients with FH (p <0.005 and p <0.015, respectively). After low calcium diet, hydroxyproline excretion continued to be higher in FH patients (p <0.05). Although in the normal range, serum and urine uric acid were higher in hypercalciuric subjects (p <0.03 and p <0.005, respectively); blood pH was lower in hypercalciuric patients than in controls (p <0.01). In FH patients urine hydroxyproline negatively correlated with spinal and femoral density (p <0.001 and p <0.005, respectively), and blood pH positively correlated with spinal density. CONCLUSIONS: a disordered bone metabolism and bone loss are present only in patients with fasting hypercalciuria. An excessive acid load, possibly of dietary origin, might be involved as a pathogenetic factor.

Absorptiometry, Photon↗

Characterization of an inwardly rectifying chloride conductance expressed by cultured rat cortical astrocytes.

The biophysical and pharmacological properties of the inwardly rectifying Cl- conductance (IClh), expressed in rat type-1 neocortical cultured astrocytes upon a long-term treatment (1-3 weeks) with dibutyryl-cyclic-AMP (dBcAMP), were investigated with the whole-cell patch-clamp technique. Using intra- and extra-cellular solutions with symmetrical high Cl- content and with the monovalent cations replaced with N-methyl-D-glucamine, time- and voltage-dependent Cl- currents were elicited in response to hyperpolarizing voltage steps from a holding potential of 0 mV. The inward currents activated slowly and did not display any time-dependent inactivation. The rising phase of the current traces was best fitted with two exponential components whose time constants decreased with larger hyperpolarization. The steady-state activation of IClh was well described by a single Boltzmann function with a half-maximal activation potential at - 62 mV and a slope of 19 mV that yields to an apparent gating charge of 1.3. The anion selectivity sequence was Cl- = Br- = I- > F- > cyclamate > or = gluconate. External application of the putative Cl- channel blockers 4,4 diisothiocyanatostilbene-2,2 disulphonic acid or 4-acetamido-4-isothiocyanatostilbene-2,2-disulphonic acid did not affect IClh. By contrast, anthracene-9-carboxylic acid, as well as Cd2+ and Zn2+, inhibited, albeit with different potencies, the Cl- current. Taken together, these results indicate that dBcAMP-treated cultured rat cortical astrocytes express a Cl- inward rectifier, which exhibits similar but not identical features compared with those of the cloned and heterologously expressed hyperpolarization-activated Cl- channel ClC-2.

4,4'-Diisothiocyanostilbene-2,2'-Disulfonic Acid↗

Simulation of action potential damping produced by anticonvulsant drugs.

Anticonvulsant drugs reduce the ability of central neurones to sustain high-frequency repetitive firing of action potentials. In recent years, it has been demonstrated that this effect is primarily due to a Na+ conductance reduction. We have simulated the electrical behaviour of a neurone, including Ca2+ and various K+ conductances. Although a reduction of Na+ conductance produces a progressive reduction until a complete suppression of the action potential bust, a smaller reduction of this conductance is necessary to produce the same effect when the delayed-rectifier K+ conductance and the Ca2+ conductance are concomitantly reduced . The results indicate that the drugs action on conductances other than Na+ is important for determining their anticonvulsant effect on neurones at therapeutic concentrations.

Action Potentials↗

Fast inactivation of Shaker K+ channels is highly temperature dependent.

The energy profile of the interaction between the NH2-terminal inactivation domain and the internal mouth of the Shaker H4 K+ channel has been investigated. Macroscopic currents from channels normally inactivating (Shaker H4) and with the inactivation removed (Shaker H4-IR) were recorded at different temperatures using the cut-open oocyte technique. Changes in temperature had a dramatic effect on the inactivation phase. The following parameters were obtained in Shaker H4, lowering the temperature from 20 degrees C to 5 degrees C: (1) the peak amplitude decreased with the temperature coefficient Q10 equal to 1.51; (2) the activation time constant increased with a Q10 equal to 3.14; (3) the decay time constant increased with a Q10 of 7.20, while the recovery from inactivation was less temperature-dependent (Q10=1.57) than the installation of the inactivation phase. At 0 mV, the ratio between the steady state level and the peak amplitude of the current increased with a Q10 of 2.95. These findings indicate that the installation of a fast inactivation process has a strong temperature dependence, while the recovery phase from inactivation is less temperature dependent. These observations support the idea of an NH2-terminal blocking mechanism for inactivation and flexible conformation of the blocking particle.

Animals↗