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Biomedical subjects

M Magnani

Publications and source records attributed to M Magnani.

At least 109 records · Page 6Linked to original sources

FIV infection of macrophages: in vitro and in vivo inhibition by dideoxycytidine 5'-triphosphate.

We have evaluated in vitro and in vivo whether it is possible to protect cat macrophages from feline immunodeficiency virus (FIV) infection by the administration of dideoxycytidine 5'-triphosphate (DDCTP). Since cell membranes are impermeable to phosphorylated drugs we have encapsulated DDCTP into autologous erythrocytes and modified erythrocyte membranes to target these drug-loaded cells to macrophages. DDCTP-loaded erythrocytes reduced FIV production by macrophages infected in vitro or obtained from naturally or experimentally infected cats. The same treatment protected the majority of peritoneal macrophages during a 7 month experimental FIV infection and reduced the percentage of circulating lymphocytes stained with an anti-p24 antibody. These results suggest that the administration of nucleoside analogues in phosphorylated form is feasible and their targeting to macrophages reduces FIV infection in vitro and in vivo.

Animals↗

Lactate catabolism by enzyme-loaded red blood cells.

Two different enzymes that metabolize lactate in the presence of oxygen, either to acetate plus CO2 (lactate 2-mono-oxygenase; Lmox) or to pyruvate plus H2O2 (lactate oxidase; Lox) were encapsulated in human and murine red blood cells (RBCs). Lmox shows a low affinity for lactate (Km 22 mM) and thus works at a low rate at the lactate concentrations found in hyperlactataemia (5-20 mM). Encapsulation of Lox provides a constant catabolic rate under the same range of blood lactate concentrations, but generates H2O2, which is toxic to the enzyme-loaded RBCs. Co-encapsulation of both enzymes at a ratio of 20 units of Lmox/unit of Lox results in significant rates of lactate metabolism over a wide range (1-30 mM) of lactate concentrations with modest methaemoglobin formation (5-8.5%) and normal cellular ATP concentrations (1.1-1.23 mM). In vitro experiments with [1-14C]glucose and [U-14C]glucose have shown that Lmox/Lox-loaded RBCs counteract the production of H2O2 by increasing the amount of glucose metabolized in the pentose phosphate pathway. In vivo attempts to prove the efficacy of these engineered RBCs in removal of blood lactate in mice have failed because of the high aerobic capacity and high lactate metabolism of these animals. However, the results obtained in vitro suggest that the encapsulation of lactate-catabolizing enzymes may be useful in the treatment of hyperlactataemia.

Acetates↗

The soluble but not mitochondrially bound hexokinase is a substrate for the ATP- and ubiquitin-dependent proteolytic system.

Intracellular protein degradation is highly selective, however, the mechanism(s) underlying this selectivity are not fully understood. We have previously shown that purified rabbit hexokinase type I, an enzyme present in mammalian brain both in soluble and mitochondrial bound form, is conjugate to ubiquitin and then degraded by a rabbit reticulocyte fraction II. In the present study we report that the mitochondrial bound hexokinase is stable for several hours in the same proteolytic system both in the presence or absence of ATP. E1, E2 and E3, the enzymes of the ubiquitin conjugating system, are able to incorporate 125I- or biotin-labelled ubiquitin in an ATP-dependent manner in soluble hexokinase as well as in a number of mitochondrial proteins. Furthermore, the mitochondria by themselves have a pronounced ATP-dependent ability to conjugate 125I-ubiquitin. However, Western blotting experiments, using a specific antibody against hexokinase, or against ubiquitin, showed that the mitochondrial bound enzyme is neither ubiquitinated nor degraded. This result has been confirmed by purification of bound hexokinase from the brain mitochondrial fraction or following the incubation of intact mitochondria with ATP, 125I-ubiquitin and E1, E2 and E3. Thus, mitochondrial bound hexokinase is not recognized by the ubiquitin conjugating system while the soluble enzyme is conjugate to ubiquitin and then degraded. Furthermore, the soluble hexokinase from rabbit brain was isolated by immunoaffinity chromatography and shown to be recognized by an anti-ubiquitin antibody. These results suggest that the intracellular distribution of protein is an important feature of a protein which determines its susceptibility to ubiquitin-dependent degradation.

Adenosine Triphosphate↗

Red blood cell phagocytosis following hexokinase inactivation.

Hexokinase inactivating antibodies were loaded into human erythrocytes using an encapsulation procedure based on hypotonic haemolysis, isotonic resealing and reannealing. Red blood cells loaded with anti-hexokinase IgG showed 20 percent residual hexokinase activity and reduced glycolytic activity. Incubation of these cells in the presence of an oxidizing agent such as terbutyl hydroperoxide (TBH) and then in autologous plasma, promoted opsonization by autologous IgG and complement deposition, but not haemolysis. Furthermore, the antihexokinase IgG loaded cells treated with TBH were actively recognized and phagocytosed by macrophages. Thus, metabolic impairment of human erythrocytes promotes autologous IgG binding, C3 deposition and phagocytosis, a mechanism already reported for the removal of senescent erythrocytes.

Complement System Proteins↗

Localization and age-dependent expression of hexokinase mRNA in the rat brain.

Localization of mRNA encoding for the enzyme hexokinase and its regulation in aged animals was carried out in rat brain using the in situ hybridization technique. The highest levels of the hybridization signal were observed in the olfactory bulb, piriform cortex, tenia tecta, hippocampus and granular cells of the cerebellum. Other brain areas and nuclei including cerebral cortex, thalamus, hypothalamus, substantia nigra, subiculum, choroid plexus and superior colliculus displayed moderate to low density of transcripts. Correlation between relative hexokinase content and levels of its mRNA was found only for some brain regions such as caudate-putamen, geniculate nucleus, ventral and lateral thalamic nuclei, superior colliculus and granular cells of the cerebellum. In the cerebral cortex and hippocampus of old animals the expression of hexokinase was significantly increased at 18 and 24 months of age. From the present data we conclude that although hexokinase is an ubiquitous enzyme, sites of synthesis display a discrete and uneven localization in rat CNS and expression, in the aging brain, might be regulated to compensate for reduced oxidative phosphorylation in the brain tissue.

Aging↗

Feline immunodeficiency virus infection of macrophages: in vitro and in vivo inhibition by dideoxycytidine-5'-triphosphate-loaded erythrocytes.

Although HIV-1 and other mammalian lentiviruses infect macrophages, they are not cytopathic. Consequently, these infected long-lived cells serve as major virus reservoirs with a key role in the propagation of the virus throughout the body as well as in the pathogenesis of AIDS. Furthermore, well-differentiated macrophages possess low abilities to phosphorylate the most common reverse transcriptase inhibitors of the nucleoside analog family. In an attempt to overcome these problems we have evaluated in vitro and in vivo in a feline immunodeficiency animal model whether it is possible to protect macrophages from FIV infection by direct administration of dideoxycytidine-5'-triphosphate (ddCTP). Because the cell membranes are impermeable to phosphorylated drugs we have encapsulated ddCTP into autologous erythrocytes. The drug-loaded erythrocyte membranes were then modified to target these carrier cells to macrophages. ddCTP-loaded erythrocytes were able to reduce FIV production by macrophages infected in vitro or obtained from naturally or experimentally infected cats. Furthermore, the administration of ddCTP-loaded erythrocytes protected the majority of peritoneal macrophages during a 7-month experimental FIV infection and reduced the percentage of circulating lymphocytes stained by an anti-p24 antibody. These results suggest that the administration of nucleoside analogs in phosphorylate form is feasible and their targeting to macrophages reduces FIV infection both in vitro and in vivo.

Animals↗

Preparation and characterization of biotinylated red blood cells.

Biotinylation of intact mammalian red blood cells (RBC) was performed either by attachment to the amino groups by means of biotin N-hydrosuccinimide ester (NHS-biotin) or by oxidation of the induced aldehyde groups of the RBC membrane by biotin hydrazide. Comparison of these different procedures showed that biotinylation by NHS-biotin provided the highest cell recovery (> 90%), the binding of approximately 1000 biotin molecules/cell (on mouse RBC) and the 24 h survival in circulation was unaffected. In contrast, biotin hydrazide produced cell recovery in the 5-30% range (depending on the extent of oxidation), an undetectable number of molecules of biotin/cell and negligible 24 h survival. Among the NHS derivatives of biotin, further studies were performed on those containing a spacer arm of 2.2 nm (22 A) [sulphosuccinimidyl-6-(biotinamido)-hexanoate]. In vitro this derivative was similar to, or better than, the NHS-biotin in terms of cell recovery and the number of molecules/cell. In vivo this derivative showed a 24 h circulation survival similar to that of NHS-biotin. Unfortunately, biotin bound with such a spacer arm is lost after a few days of RBC circulation, probably due to plasma biotinidase. Possible applications of biotinylated RBCs include the in vivo measurement of RBC volume, the RBC survival and the delivery of enzyme and antigens.

Animals↗

Factors related to drug consumption during pregnancy.

A survey on drug intake during pregnancy was carried out in a sample of 3268 women who delivered live-born infants in 11 hospitals located throughout Italy. A large questionnaire on drug use and other aspects of maternal life-style was administered within five days of delivery to 3112 women who consented to the interview. An overall mean consumption of 2.17 drugs per woman was reported. Apart from dietary supplements, the most used drugs were tocolytics, analgesics, and antibiotics. The proportion of women who did not use any drug was 17.3%. The role of some non-medical determinants of drug intake was evaluated as well. Geographic and socio-economic factors were seen to increase drug intake up to 44%, while the presence of anxiety provoked a 60% higher consumption of drugs other than dietary supplements. Other factors influencing drug use during pregnancy were rural vs. urban residence and smoking habits. The need for the recording of these socio-economic factors in surveys on drug use during pregnancy is emphasized.

Adult↗

A p12 gag gene homologue is present in the mouse genome.

A replication-defective virus (BM5d) of approximately 4.9 kb, is responsible for a retrovirus induced immunodeficiency syndrome in mice (MAIDS) that shares many features with AIDS. BM5d is characterized by deletions in env and pol genes, furthermore its gag gene differs markedly from gag of other BM5 ecotropic viruses, particularly in its p12 sequence. The p12 region of the gag gene has been shown to account for the pathogenicity of the BM5d retrovirus. During our studies of BM5d integration in mice we found that p12-like sequences are present in the mouse genome of uninfected healthy C57BL/6 mice. Cloning and sequencing of this p12 gag homologue has revealed a high (63% to 89%) amino acid derived sequence identity with other retroviruses and shown that the major differences among p12 of pathogenic viral strains compared to non-pathogenic ones consist of a four amino acids deletion and a high abundance of proline and basic amino acids in their p12 region.

Amino Acid Sequence↗

Synthesis and pharmacological activity of a series of dihydro-1H-pyrrolo[1,2-a]imidazole-2,5(3H,6H)-diones, a novel class of potent cognition enhancers.

A series of dihydro-1H-pyrrolo[1,2-a]imidazole-2,5(3H,6H)-diones were synthesized. These bicylic derivatives contain both the 2-pyrrolidinone and 4-imidazolidinone nuclei, already recognized as important for cognition enhancing activity. In addition, these structures maintain the backbone of piracetam and oxiracetam with the acetamide side chain restricted in a folded conformation. Their ability to reverse scopolamine-induced amnesia was assessed in a one trial, step-through, passive avoidance paradigm. The main features observed are a potent antiamnestic activity after ip administration (minimal effective dose being between 0.3 and 1 mg/kg ip for most compounds), the presence of a bell-shaped dose-response curve and, generally, a reduction of biological activity after po administration. However, the unsubstituted compound (15, dimiracetam) shows no evidence of a bell-shaped dose-response curve and completely retains activity when given orally, being 10-30 times more potent than the reference drug oxiracetam.

Amnesia↗

The female longevity phenomenon. Hypotheses on some molecular and cell biology aspects.

The most relevant theories on the sex-dependent longevity at population level are critically re-examined in the light of the knowledge available today on the aging process at cellular and molecular level. The aim of this perspective is to help in the understanding of the cellular and molecular bases of longevity and to indicate the most suitable biological models of investigation.

Animals↗

Intracellular distribution of hexokinase in rabbit brain.

Hexokinase in mammalian brain is particulate and usually considered to be bound to the outer mitochondrial membrane. Investigation of rabbit brain mitochondria prepared either by differential centrifugation and discontinuous density gradient centrifugation has provided evidence that this particulate fraction also contains endoplasmic vesicles and synaptosomes. Solubilization of the bound hexokinase by different combinations of detergents and metabolites has proved the existence of different hexokinase binding sites. Electron microscopic examination of hexokinase location by immuno-gold labelling techniques confirmed that hexokinase is indeed predominantly bound to mitochondria but that a significant proportion is also bound to non-mitochondrial membranes. Attempts to quantify this distribution were unsuccessful since different figures were obtained using anti-hexokinase IgG affinity purified on immobilized native or denatured hexokinase. Binding studies of the purified rabbit brain mitochondrial hexokinase to rabbit liver mitochondria and microsomes confirmed that in addition to a binding site on mitochondria there is another binding site on microsomes. The N-terminal sequence of hexokinase has been shown to be important for mitochondria binding and also for microsome binding. These results suggest that the intracellular localization of hexokinase in rabbit brain is not exclusively mitochondrial and that the metabolic role of this enzyme should be reconsidered by including a binding site on the endoplasmic reticulum.

Animals↗

Direct observation of hexokinase translocation in stimulated macrophages.

1. Fluorescence imaging of antibodies was used to show that phorbol 12-myristate 13-acetate (PMA) induces a 4-fold increase in the amount of hexokinase relative to the control in the cortical shell of rat peritoneal macrophage cytosol adjacent to the plasma membrane, and a corresponding depletion in the amount of hexokinase in the central core of the cytosol. However, there was no significant PMA-dependent change in the distribution of glucose-6-phosphate dehydrogenase. 2. Cytochalasin D, an inhibitor of actin microfilament polymerization, prevented the PMA-induced hexokinase translocation and also reduced the PMA-dependent increases in 2-deoxy-D-glucose transport and glucose-dependent PMA-stimulated superoxide production. 3. PMA caused a contraction of the width of the cortical F-actin zone. Cytochalasin D caused some dispersal of F-actin within the cell, increasing the density of F-actin within the central cytosolic core and causing aggregation of the F-actin within the cortex. These data are consistent with the view that PMA induces attachment of hexokinase to microfilaments within the cortical zone adjacent to the cell membrane of macrophages, and cytochalasin D prevents this attachment. This is the first direct demonstration of the translocation of hexokinase to the plasma membrane in activated cells, and supports the view that enhanced hexokinase activity in the cortical region of the cytosol is an important early component of the macrophage activation process.

Actins↗

Moderate maternal drinking and outcome of pregnancy.

The adverse effect of light or moderate maternal drinking during pregnancy on the well being of the newborn has been investigated. The study group included 2145 live births in the obstetric units of 11 Italian cities between February 1989 and July 1990. A detailed life style questionnaire was administered to the mothers. Information on the newborn was collected from clinical records as well as from a clinical examination. Both univariate and multivariate analyses were suggestive of a decrease in mean birth weight associated with maternal drinking pregnancy, especially in women who also smoked during pregnancy. This effect was higher in male newborns. The occurrence of low birth weight (< 2500 g.) was more frequent in women drinking during pregnancy in both smokers and non-smokers (for this latter group an effect is suggested only for a daily consumption of more than 10 grams of absolute alcohol). Maternal alcohol drinking of more than 20 grams of absolute alcohol per day also increased the risk of preterm delivery (OR = 2.35; 95% CI: .98-5.59). Finally, an increase in the rate of early jaundice was found, also associated with maternal drinking (OR = 3.30; 95% CI: 1.03-10.54).

Adult↗

Molecular analysis of G6PD variants in northern Italy: a study on the population from the Ferrara district.

In the Ferrara district, an area south of the Po delta, four different variants of glucose-6-phosphate dehydrogenase (G6PD;E.C.1.1.49) have been described as a result of biochemical characterization of the enzyme protein: one was G6PD Mediterranean (G6PD Med) and three were local variants named Ferrara I, II, and III. The Ferrara I variant was recently analysed at the DNA level and shown to correspond to G6PD A376G/202A, while the mutations causing the variants II and III, still remain unknown. We analysed the G6PD coding region of 18 apparently unrelated G6PD deficient subjects, whose families have lived in the Ferrara district for at least three generations: 12 subjects had G6PD Med563T/1311T, 3, G6PD Santamaria376G/542T and 2, G6PD A-376G/202A. In one subject we found a new mutation, a G-->A transition at nucleotide 242 causing an Arg-->His amino-acid replacement at position 81. We named this new variant G6PD Lagosanto242 A. Phenotypically the enzyme has nearly normal kinetic properties and appears different from the variants Ferrara II and III.

Child↗

Red blood cell age dependent modifications of inositol 1,4,5-trisphosphate.

The level of inositol 1,4,5-trisphosphate (Ins1,4,5P3) was determined in human and rabbit red blood cells of different ages. In human erythrocytes, fractionated by discontinuous density gradient centrifugation, Ins1,4,5P3 was 290 nM in the 0.3% low density (youngest) cells compared to values of 107 nM in the whole red blood cell population. A progressive increase in Ins1,4,5P3 was then observed during erythrocyte aging from values of 63 nM in mature erythrocytes to 128 nM in the oldest cells. Determinations of Ins1,4,5P3 in rabbit erythrocytes provided values of 180 nM. Phenylhydrazine was administered to three animals to induce reticulocytosis. Ins1,4,5P3 in rabbit reticulocytes was significantly lower than in the whole red cell population, remained lower in young red blood cells and then increased to normal values during cell maturation. These results provide evidence for an increase of Ins1,4,5P3 during red blood cell aging and could contribute to explain the age-dependent loss of deformability and of Ca2+ homeostasis of these cells.

Animals↗

The bone marrow in murine AIDS.

In order to increase the understanding of blood cytopenias in HIV infection we have investigated the bone marrow in murine AIDS. C57BL/6 mice infected with the LP-BM5 retrovirus show a decrease in cellularity, numerous haemophagocytic histiocytes, a reduction of all erythroid precursor cells, an increase in eosinophil number and an increase in lymphocytes. Immunostaining with an anti-Pr60gag antibody shows that the majority of bone marrow cells express the viral protein. Thus, the bone marrow in MAIDS has many similarities with the bone marrow from patients with advanced AIDS and may prove useful as a model for therapy aimed at treating blood cytopenias.

Animals↗