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M Giorgi

Publications and source records attributed to M Giorgi.

At least 19 recordsLinked to original sources

Cytochrome P450-dependent monooxygenase activities and their inducibility by classic P450 inducers in the liver, kidney, and nasal mucosa of male adult ring-necked pheasants.

In this study, several P450-dependent monoxygenase activities in the liver, kidney, and nasal mucosa of ring-necked pheasants were examined. In addition, the presence and inducibility of P450 isoenzymes in the hepatic and renal tissues of pheasants were examined by using typical substrates and inducers of P450s along with polyclonal antibodies raised against mammalian isoforms. Anti-rat P450 1A1 recognized in microsomes of both pheasant liver and kidney a protein that was markedly induced by beta-naphthoflavone and accompanied by an increase of various monooxygenases, in particular, methoxyresorufin-O-demethylase (MROD) activity. Anti-rat P450 2E1 revealed in microsomes of the pheasant liver but not in kidney an immunoreactive protein that was slightly induced by acetone but not accompanied by an increase of para-nitrophenol hydroxylase activity. On the other hand, acetone treatment caused an induction of other hepatic monoxygenases including MROD, erythromycin N-demethylase, and 6beta-testosterone hydroxylase. These two latter activities, known to be markers for 3A isoenzymes in rodents, were also enhanced in pheasant liver by phenobarbital but not by dexamethasone. The treatment with these two inducers also lacked to point out hepatic and renal proteins immunorelated to P450 3A or 2B subfamily, suggesting that these isoforms may be not expressed in pheasant. On the other hand, anti-rat P450 2C11 recognized two immunorelated proteins in the liver of both control and treated pheasants. The treatment with clofibrate, a mammalian inducer of 4A subfamily, induced both in liver and kidney of pheasant: i) a protein that cross-reacted with anti rat P450 4A1 and ii) the (omega) and (omega-1) lauric acid hydroxylase activities, known to be associated in mammals to this P450 subfamily. In the nasal mucosa of pheasant, a protein immunorelated to P450 2A and some monooxygenase activities (i.e., 7-ethoxycoumarin O-deethylase) linked, in mammals, to this isoform have been found; by contrast a protein immunoreactive with anti P450 2G1 was not found. In conclusion, the immunochemical properties and monooxygenase activities of constitutive and inducible P450s in pheasants were different not only from those of mammals but also from those of chickens. The findings of the present work also suggest that the P450 induction profiles might provide a potential biomarker of pheasant exposure to chemicals or environmental pollutants in the wild-field or in the stock-farm.

Acetone↗

beta-galactosidase gene mutations affecting the lysosomal enzyme and the elastin-binding protein in GM1-gangliosidosis patients with cardiac involvement.

GM1-gangliosidosis is a lysosomal storage disorder caused by deficiency of acid beta-galactosidase (GLB1). We report five new beta-galactosidase gene mutations in nine Italian patients and one fetus, segregating in seven unrelated families. Six of the eight patients with the infantile, severe form of the disease presented cardiac involvement, a feature rarely associated with GM1-gangliosidosis. Molecular analysis of the patients' RNA and DNA identified two new RNA splicing defects, three new and three previously described amino acid substitutions. Interestingly, all patients with cardiac involvement were homozygous for one of these mutations: R59H, Y591C, Y591N, or IVS14-2A>G. In contrast, all other patients were compound heterozygous for one of the following mutations: R201H, R482H, G579D, IVS8+2T>C. Although we could not directly correlate the presence of cardiac abnormalities with specific genetic lesions, the mutations identified in patients with cardiomyopathy fell in the GLB1 cDNA region common to the lysosomal enzyme and the Hbeta-Gal-related protein, also known as the elastin binding protein (EBP). Consequently, both molecules are affected by the mutations, and they may contribute differently to the occurrence of specific clinical manifestations.

Amino Acid Sequence↗

Lymphocyte mRNA analysis of the ornithine transcarbamylase gene in Italian OTCD male patients and manifesting carriers: identification of novel mutations.

A new simple, non-invasive method using ornithine transcarbamylase (OTC) mRNA isolated from peripheral blood (PBL) or lymphoblastoid cell lines has been performed. This approach based on reverse transcription and nested PCR to obtain a double strand PBL OTC cDNA allowed the identification of genetic lesions in five Italian families affected by OTC deficiency (OTCD). In the PBL OTC mRNA two new mutations, T262K and W265L, have been detected in three unrelated male OTCD patients with mild symptoms. One known mutation, T264A, has been identified in one manifesting carrier. The known mutation E310X, detected on genomic DNA of another manifesting carrier, failed to be detected in her PBL OTC mRNA because of the presence of a STOP codon. All mutations have been confirmed in the patients' and their relatives' genomic DNA. In three patients the mutations have also been confirmed in the mRNA isolated from frozen liver biopsy. The T262K amino acid substitution has been detected in a male's PBL OTC mRNA at homozygous state while a heterozygous pattern has been detected at the genomic DNA level, suggesting that the patient is a somatic mosaic for this mutation. Here we show that PBL OTC mRNA analysis is useful to detect genetic lesions in male and female OTCD patients.

Cell Line, Transformed↗

TANAX(T-61): an overview.

In this overview the authors describe the use of Tanax (T-61) for euthanasia. Tanax is a solution with three components (embutramide, mebenzonium iodide and tetracaine hydrochloride) used for painless death in pets and laboratory animals. It is also used for malicious intoxication in animals and for suicide attempts in humans. After a description of the modality and outcome of intoxication, the authors report the secondary toxic effects evoked by N, N -dimethyl-formamide, the solvent employed to dissolve the three components of Tanax. Finally, the analytical methods used to identify Tanax components in biological fluids and tissues are described.

Amides↗

Genotoxic and mono-oxygenase system effects of the fungicide maneb.

The in vivo effects of a commercial preparation of maneb on mono-oxygenase activities of hepatic microsomes of basal and induced rats were examined. In vitro experiments with the D7 strain of yeast Saccharomyces cerevisiae were also performed. In both basal and induced rats maneb caused a decrease in cytochrome P-450 content and aniline hydroxylase. Immunoblotting analysis using anti-P-450 IIE1 antibodies confirmed the data obtained for aniline hydroxylase activity. Maneb was toxic in cells of S. cerevisiae. On the basis of in vivo and in vitro experiments it can be concluded that maneb possesses a toxic activity attributable to its main metabolite ethylene thiourea. Immunoblotting analysis indicates that maneb biotransformation influences the IIEI P-450 isoform.

Aniline Hydroxylase↗

A critical role of the nitric oxide/cGMP pathway in corticostriatal long-term depression.

High-frequency stimulation (HFS) of corticostriatal glutamatergic fibers induces long-term depression (LTD) of excitatory synaptic potentials recorded from striatal spiny neurons. This form of LTD can be mimicked by zaprinast, a selective inhibitor of cGMP phosphodiesterases (PDEs). Biochemical analysis shows that most of the striatal cGMP PDE activity is calmodulin-dependent and inhibited by zaprinast. The zaprinast-induced LTD occludes further depression by tetanic stimulation and vice versa. Both forms of synaptic plasticity are blocked by intracellular 1H-[1,2,4]oxadiazolo[4, 3-a]quinoxalin-1-one (ODQ), a selective inhibitor of soluble guanylyl cyclase, indicating that an increased cGMP production in the spiny neuron is a key step. Accordingly, intracellular cGMP, activating protein kinase G (PKG), also induces LTD. Nitric oxide synthase (NOS) inhibitors N(G)-nitro-L-arginine methyl ester hydrochloride (L-NAME) and 7-nitroindazole monosodium salt (7-NINA) block LTD induced by either HFS or zaprinast, but not that induced by cGMP. LTD is also induced by the NO donors S-nitroso-N-acetylpenicillamine (SNAP) and hydroxylamine. SNAP-induced LTD occludes further depression by HFS or zaprinast, and it is blocked by intracellular ODQ but not by L-NAME. Intracellular application of PKG inhibitors blocks LTD induced by HFS, zaprinast, and SNAP. Electron microscopy immunocytochemistry shows the presence of NOS-positive terminals of striatal interneurons forming synaptic contacts with dendrites of spiny neurons. These findings represent the first demonstration that the NO/cGMP pathway exerts a feed-forward control on the corticostriatal synaptic plasticity.

Animals↗

cAMP-dependent induction of PDE5 expression in murine neuroblastoma cell differentiation.

The present study demonstrates, in both hybrid NG108-15 and mouse neuroblastoma N18TG2 cells, the presence and regulation of PDE5 mRNA during cell differentiation. PDE5 cDNA probes in Northern blot analysis recognize a approximately 9 kb transcript in bovine lung as well as in mouse neuroblastoma cells. Hybridization on total RNA extracted from dibutyryl-cAMP-treated NG108-15 cells shows a 5-fold increase of PDE5 9 kb mRNA: such an increase is not observed in N18TG2 although we observed a similar increase in the enzymatic activity of both cell lines. Our data demonstrate that PDE5 gene expression can be regulated by cAMP and suggest the existence of a complex regulatory system for PDE5 activity.

3',5'-Cyclic-GMP Phosphodiesterases↗

Susceptibility of human and non-human cell lines to HCV infection as determined by the centrifugation-facilitated method.

The centrifugation-facilitated inoculation method was used to test 51 human and non-human cell lines for ability to support HCV replication. As determined by nested RT-PCR, one fifth of the cell lines tested were virus positive 15 days post inoculation suggesting that the centrifugation-facilitated inoculation is an efficient method for cell infection with HCV. However, virus production by infected cultures remained of low grade, thus showing that the unknown factors which limit HCV replication in vitro are not overcome by the procedure.

Amino Acid Sequence↗

Aflatoxin B1 is an inhibitor of cyclic nucleotide phosphodiesterase activity.

Aflatoxin B1 (AFB1) action on cyclic nucleotide phosphodiesterase (PDE) activity has been tested on tissue extracts of various organs. In the presence of 100 microM AFB1 a significant inhibition of cAMP and cGMP hydrolytic activity is observed in all tested tissue extracts. However, cGMP hydrolytic activity appears more sensitive to AFB1 inhibition than cAMP hydrolytic activity and a considerably higher inhibition is observed in lung and spleen, than in liver, brain, kidney, and heart. When cGMP is used as substrate, the inhibitory response reaches 72% in lung and spleen extracts. We have also tested AFB1 effects on lung and liver PDE activity peaks separated by DEAE-cellulose chromatography. These data confirm the poor sensitivity to the toxin of all PDE activities present in liver, while the lung peak (where PDE V in present) shows a higher sensitivity to AFB1. In order to establish whether PDE V is in fact more sensitive to AFB1, we have used mouse neuroblastoma cells, in which cGMP hydrolytic activity has been shown to be due to PDE V only. In this case, the calculated IC50 is 24 microM and Dixon plot analysis shows a competitive inhibitory effect with a Ki of 16.7 microM. We have also used aflatoxin B2 and M2, and they proved to be much less effective than AFB1: AFB2 inhibits PDE V with an IC50 of 117 microM, while AFM2 does not show any effect. These results provide the first evidence of a competitive inhibition of AFB1 on an enzymatic activity and suggest that an alteration of cellular cyclic nucleotide levels may play a role in the mechanism of aflatoxin action.

3',5'-Cyclic-AMP Phosphodiesterases↗

Detection and quasispecies analysis of hepatitis C virus in the cerebrospinal fluid of infected patients.

Hepatitis C virus (HCV) is a leading cause of liver damage and has also been implicated in extrahepatic pathologies. We examined for HCV RNA paired CSF and plasma samples from 12 viremia positive patients using PCR. The CSF from 5/5 HIV-infected patients and 5/7 HIV-negative patients were HCV RNA positive. Branched DNA analysis showed that HCV loads in CSF were much lower than in plasma. Several HCV-positive CSF showed no evidence of blood contamination, impaired blood-brain barrier, or intrathecal IgG production. Comparison of HCV quasispecies in three sets of samples suggested that the virus in CSF was of plasma origin.

Adult↗

Divergent evolution of hepatitis C virus in liver and peripheral blood mononuclear cells of infected patients.

In infected individuals, hepatitis C virus (HCV) exists as a variably complex population of related genetic variants known as quasispecies. The quasispecies of HCV were studied previously in 10 chronically infected patients by single-strand conformation polymorphism analysis of a segment of the envelope gene E2/NS1 containing the hypervariable region 1 and it was found that certain variants (LC variants) were present both in the liver and in peripheral blood mononuclear cells (PBMC), others (L variants) were present in the liver but not in the PBMC, and still others (C variants) showed the opposite distribution. The sequence data obtained from nine such patients are reported, indicating that, within individual subjects, L and C variants are distinct phylogenetically. Results are described on the growth of HCV in stimulated healthy donor PBMC cultures supporting the concept that genetic divergence might stem, at least in part, from virus adaptation to growth in different cell types. This information may help to understand how HCV persists and produces disease in infected patients, especially with regard to extrahepatic pathology.

Cells, Cultured↗

Comparative bioavailability of two sustained-release theophylline formulations in the dog.

The kinetics of two sustained-release theophylline formulations, Theo-Dur (Recordati, Milano, Italy) and Diffumal (Malesci, Firenze, Italy) were studied in eight beagle dogs. In a first part of the study each animal was injected intravenously with aminophylline dihydrate, Aminomal (Malesci, Firenze, Italy), in order to determine the absolute bioavailability of the two sustained-release theophylline formulations orally administered to the dogs in the second experimental phase, over a period of 9 days, following a balanced two-period cross-over design. Assays for theophylline were performed by high performance liquid chromatography and the pharmacokinetic analysis was performed using the non-compartmental method. The principle of superposition was then applied to predict multiple dose plasma concentrations from experimental single dose data. No significant differences between the two preparations were found with respect to the main pharmacokinetic parameters, showing that the two preparations are bioequivalent. The fact that the differences between experimental and predicted results were not statistically significant allows us to conclude that multiple dose steady state plasma theophylline concentration in the dog can be predicted from experimental single dose data. Furthermore, after repeated treatment, both Diffumal and Theo-Dur, given twice daily are able to maintain therapeutic (5-20 mg ml-1) plasma theophylline concentrations in the dog.

Animals↗

Calmodulin-dependent cyclic nucleotide phosphodiesterase in adult and developing chick spinal cord.

We investigated the level and characteristics of "low Km" 3'-5' cyclic nucleotide phosphodiesterase (PDE) activity in adult and embryo chick spinal cord. The DEAE cellulose chromatography elution profile of Triton X-100 extracts showed a single peak of calmodulin-dependent cAMP/cGMP PDE activity. After two additional purification steps, this activity showed a five-fold activation by calmodulin (Ka = 1.5 nM) for cGMP hydrolysis, and a linear kinetic behaviour with a Km of 1.3 microM. Conversely, the activity showed a biphasic behaviour for cAMP hydrolysis, with Km values of 3.1 and 18.5 microM. The enzyme showed a Stokes radius of 4.5 nm. Western blot analysis of the purified enzyme revealed two immunoreactive bands with molecular mass of 59 and 65 kDa, respectively. Immunohistochemical staining showed motoneuron decoration both on cell soma and fibres. The developmental pattern of Ca2+-calmodulin-dependent PDE expression in spinal cord was also studied; the hydrolytic activity for both substrates has been found to increase constantly from E5 to post-hatching stages, when it appears 5.6-fold higher as compared to the early embryo levels. Furthermore, in cultured spinal cord neurons from E8 embryos, muscle extract has been shown to induce a two-fold increase of Ca2+-calmodulin-dependent cGMP activity. In conclusion, the studies reported here present three relevant findings: (1) the presence in adult and embryo chick spinal cord of PDE activities with characteristics similar to those of the mammalian PDE I enzyme; (2) its localization in the ventral horn motoneurons; (3) its regulated expression during embryogenesis that is possibly related to soluble epigenetic factors produced by the target cells.

Animals↗

Comparative evaluation of five rapid methods for identifying subtype 1b and 2c hepatitis C virus isolates.

A panel of 61 HCV isolates belonging to five different subtypes were used to evaluate five methods for rapid typing of HCV RNA: an in-house type-specific polymerase chain reaction based on the core region (type-specific PCR), a commercial amplification of the core region followed by hybridisation to probe coated wells (DEIA), a commercial amplification of the 5'-UTR region followed by hybridisation to probes immobilised on strips (LiPA), an in-house restriction fragment polymorphism analysis of the 5'UTR (RFLP), and a commercial serological method using synthetic peptides from the NS4 region (serotyping). The correct viral type was identified in 90% of cases by DEIA, in 82% of cases by type-specific PCR, in 80% of cases by LiPA and RFLP, and in 67% of cases by serotyping. Correct identification of the virus subtype was much less frequent and was beyond the performance characteristics of some assays. Major problems were found in the identification of isolates belonging to type 2. This was probably at least partly due to the fact that all type 2 isolates in the viral panel were of subtype 2c, which has been considered rare until recently.

Enzyme-Linked Immunosorbent Assay↗

Induction of cyclic AMP and cyclic GMP 3':5'-cyclic nucleotide phosphodiesterase activities in neuroblastoma lines under differentiating conditions.

It is now widely accepted that cyclic nucleotide phosphodiesterases (PDEs) play fundamental roles in signal transduction pathways; they show a remarkable molecular complexity, different tissue distribution and complex regulatory mechanisms. Here we report PDE isoforms expression in two dibutyryl cyclic AMP differentiated murine cell lines: the hybrid neuroblastoma-glioma 108CC15 and the parental neuroblastoma N18TG2. They differ in the ability to establish functional synapses, a feature present only in the former. Ionic exchange chromatography elution profiles of N18TG2 and 108CC15 undifferentiated cell extracts show two main peaks of activity. The first one hydrolyzes cyclic GMP and is specifically inhibited by Zaprinast, thus representing a member of the PDE5 family. The second peak hydrolyzes cyclic AMP and is significantly inhibited by rolipram, as all the PDE4 family members. The induction of differentiation by dibutyryl cyclic AMP in both clonal lines results in an increase of PDE activities only after 3 hr of treatment, suggesting that protein neosynthesis is involved. Interestingly in both clones, besides the increase in cyclic AMP hydrolyzing specific activity (3.1-fold in 108CC15 and 2.5-fold in N18TG2), we also observed an increase in cyclic GMP hydrolyzing activity (1.7-fold in 108CC15 and 4.3-fold in N18TG2). While the induction of PDE4, previously reported also in other cellular systems, could be considered as a feedback response to the higher cyclic AMP levels, this is not true for the isoform that hydrolyzes cyclic GMP. These data suggest that the induction of PDE isoforms in neuroblastoma cells could be related to the activation of neuronal differentiative pathway.

3',5'-Cyclic-AMP Phosphodiesterases↗

Phosphodiesterase specific inhibitors control cell growth of a human neuroepithelioma cell line.

The effects of cyclic nucleotide phosphodiesterase (PDE) inhibitors on cell proliferation of SK-N-MC human neuroepithelioma cell line was studied. Clonal density experiments in the presence of 100 microM rolipram and zaprinast showed respectively 27% and 91% inhibition. The effects of PDE inhibitors were then investigated on crude cell extracts; the calculated IC50 were 32 microM for zaprinast and 16 nM for DC-TA-46; the latter inhibitor was used instead of rolipram for its higher efficacy. Dose-response experiments in clonal density conditions showed IC50 of 5 microM and 1.8 microM in the presence respectively of zaprinast and rolipram. These data show that both inhibitors are effective in reducing cell growth, although the response was quantitatively different.

Cell Division↗

Differences in hepatitis C virus quasispecies composition between liver, peripheral blood mononuclear cells and plasma.

Hepatitis C virus (HCV) exists in vivo as a highly variable mixture of closely related genomes (quasispecies), but the pathogenetic significance of such heterogeneity is still largely unknown. To investigate this issue, we compared the composition of HCV quasispecies found in the liver, peripheral blood mononuclear cells (PBMC) and plasma of ten patients by single-strand conformation polymorphism analysis of the E2/NS1 region and sequencing of the variants detected. We found considerable quasispecies differences between the liver and PBMC in all the patients, involving variant numbers, relative quantities and relative electrophoretic mobilities, but no apparent tissue-specific trend. Genome variants present in the liver and/or PBMC were not detected in the corresponding plasma samples, while certain HCV variants were present only in plasma. No dominant amino acids or amino acid pattern characteristic of variants present solely in the PBMC were detected in the E2/NS1 region sequenced.

Amino Acid Sequence↗