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G Bellomo

Publications and source records attributed to G Bellomo.

At least 73 records · Page 4Linked to original sources

Neonatal and maternal levels of lipid-soluble antioxidants.

Lipid peroxidation plays an important role in the pathogenesis of several neonatal complications. To improve the knowledge on the antioxidant lipid-soluble defenses in neonatal age, we investigated a group of healthy full-term infants and their mothers measuring by high-pressure liquid chromatography the levels of vitamin E and carotenoids. Our data demonstrate that neonatal levels of lipid-soluble anti-oxidants are lower than the maternal ones. Moreover we show that neonatal Vitamin E and carotenoid concentrations are respectively unrelated and strictly related to maternal levels of the same lipid-soluble anti-oxidants.

Adult↗

Suitability of chemical in vitro models to investigate LDL oxidation: study with different initiating conditions in native and alpha-tocopherol-supplemented LDL.

Isolated human LDL, used in the native form or supplemented with alpha-tocopherol (alpha T), were oxidized with Cu2+, 2,2'-azobis-(2-amidino propane) hydrochloride (AAPH), and H2O2 plus horseradish peroxidase (HRP). The oxidation kinetics were measured spectrophotometrically at 234 nm to follow the formation of conjugated dienes and evaluated as resistance to oxidation (lag phase, LP) and maximal oxidation rate (propagation rate, PR). The duration of LP in nonsupplemented LDL was different with the three prooxidant stimuli (LP, in min: 96 +/- 19 for Cu2+, 28.7 +/- 6.7 for HRP, and 67.1 +/- 11.2 for AAPH). No correlation was found between the values obtained with Cu2+ and AAPH or HRP, but a significant correlation was found with AAPH and HRP (r = 0.798, P < 0.002). In vitro alpha T supplementation prolonged the LP and decreased the PR with all the stimuli. The extent of increase in LP was highly correlated (r = 0.872, P < 0.001 for Cu2+ and HRP; r = 0.603, P < 0.03 for Cu2+ and AAPH; r = 0.749, P < 0.005 for AAPH and HRP). Although the evaluation of ex vivo LDL oxidation is dependent on the prooxidant stimulus, the three prooxidant conditions used detect equally well the efficiency of alpha T supplementation in preventing LDL oxidation.

Amidines↗

Inhibition of Cu2+-induced LDL oxidation by nitric oxide: a study using donors with different half-time of NO release.

The incubation of low density lipoproteins with Cu++ promotes oxidative modifications that make them atherogenic. Comparable alterations occur in vivo and are modulated by the generation of nitric oxide by endothelial cells or macrophages. Here we report that two donors (NOC-9 and NOC-18) with different half times of NO release (2.7 and >500 min, respectively) inhibit in vitro lipoprotein oxidation promoted by Cu++. Both donors increase the duration of the lag-phase and decrease the maximum rate of conjugated diene formation, prevent the loss of tryptophan in Apo B100, and decrease the formation of fluorescent adducts. The protective effect of NOC-9 was rapidly exhausted and its overall efficacy in preventing LDL oxidation was two orders of magnitude lower than that exhibited by NOC-18. These findings suggest that a continuous flux of NO generation, even at lower concentrations, is more efficient than considerably higher doses released as a burst in protecting both the lipid and the protein moiety of LDL from oxidation.

Copper↗

Disruption of actin microfilament organization by cholesterol oxides in 73/73 endothelial cells.

Various cholesterol oxides generated during the oxidation of low-density lipoproteins have been reported to exert cytotoxic effects on cultured endothelial cells and to decrease their barrier function. The cytoskeleton, and in particular the actin microfilament meshwork, is one of the preferential targets in oxidative stress-and thiol-depleting agent-induced cell injury. The alterations occurring in the microfilament network were investigated using the endothelial cell line 73/73 treated with increasing concentrations (0.5-10 micrograms/ml) of cholestane-3 beta, 5 alpha, 6 beta-triol, CH, 5-cholesten-3beta-ol-7one, KC, and 25-OH-cholesterol, COH, for up to 6 h. The distribution of microfilaments was visualized using immunofluorescence and laser scanner confocal microscopy. All cholesterol oxides caused a progressive disruption of actin microfilaments that was characterized by the disappearance of the stress fibers within the cell body and, in selected cells, by a complete marginalization and clustering of the filaments to one edge of the cell. In addition, COH promoted F-actin fragmentation, as revealed by the presence of scattered fragments of F-actin in various cell regions. The redistribution of actin microfilaments was associated with a similar redistribution of alpha-actinin, an actin-binding protein involved in bundle formation and in the anchorage of actin filaments to the adhesion plaques. Concomitantly, cholesterol oxides promoted a loss of vinculin, another actin-binding protein, from the focal adhesion plaques located under the cell body and their marginalization and thinning. These alterations preceded cell detachment and cell death by apoptosis as revealed by the subsequent leakage of cytosolic enzymes and nuclear fragmentation. These results suggest that cytoskeletal (microfilament) alterations caused by cholesterol oxides may be one of the cytopathological events involved in the detachment of endothelial cells from the inner vascular surface promoted by cholesterol oxides.

Actin Cytoskeleton↗

Modifications of vimentin filament architecture and vimentin-nuclear interactions by cholesterol oxides in 73/73 endothelial cells.

Among the different targets of the cytodamaging effects of cholesterol oxides in endothelial cells, cytoskeleton is one of the most relevant, due to the large variety of biological events controlled by this subcellular structure. The modifications of the intermediate filament network caused by three cholesterol oxides (cholestane-3beta,5alpha,6beta-triol, CH, 7-keto-cholesterol, KC, and 25-OH-cholesterol, COH) was investigated in the endothelial cell line 73/73 using immunofluorescence and laser scanner confocal microscopy. All three cholesterol oxides promoted a redistribution of vimentin filaments that took place well before cell detachment and the occurrence of any detectable sign of cell death. CH-induced alterations were characterized by the polarization of vimentin to the edges of the cell and a concomitant destruction of its interaction with the nucleus. In KC-treated cells, vimentin filaments appeared cross-linked and formed a sort of circular network ring between the nucleus and the cell periphery. COH promoted the aggregation of vimentin filaments in thick and irregular bundles that delimited apparently empty regions. All these changes occurred independently of gross modifications in microtubule organization, which was generally retained except for the appearance of immunoreactive tubulin spots throughout the cytoplasm. These results indicate that the organization of the intermediate-size filament protein vimentin is markedly affected by cholesterol oxides. The different rearrangements caused by CH, KC, and COH may derive from different pathobiochemical processes triggered by these compounds.

Animals↗

4-Hydroxynonenal triggers Ca2+ influx in isolated rat hepatocytes.

Addition of micromolar concentrations of 4-hydroxynonenal (4-HNE), a reactive end-product of lipid peroxidation, to isolated rat hepatocytes was found to cause an early and transient increase in cytosolic Ca2+ concentration followed by a more pronounced and progressive elevation. Such a late effect of 4-HNE was prevented by chelation of extracellular Ca2+ with EGTA or by the addition of GdCl3, which is known to block the activity of store operated Ca2+ channels in the hepatocyte plasma membrane. Moreover, the preincubation of isolated hepatocytes with the phospholipase C inhibitor U73122 resulted in a complete inhibition of both the early increase of cytosolic Ca2+ and the subsequent Ca2+ inflow. When 4-HNE was added to the hepatocytes 5 min after the emptying of intracellular Ca2+ pools by thapsigargin, the aldehyde caused a further increase in the accumulation of Ca2+ which was prevented in the presence of GdCl3. Taken together these results indicate that in hepatocytes 4-HNE causes Ca2+ inflow across GdCl3-sensitive Ca2+ channels. The mechanism responsible for such an effect is triggered by the emptying of intracellular Ca2+ pools likely resulting from 4-HNE mediated stimulation of phospholypase C, but 4-HNE also appears to interfere with the channel protein(s) or with the mechanism(s) regulating capacitative Ca2+ inflow.

Aldehydes↗

Protective effects of carvedilol, a vasodilating beta-adrenoceptor blocker, against in vivo low density lipoprotein oxidation in essential hypertension.

Low density lipoprotein (LDL) oxidation plays a crucial role in the development and progression of atherosclerosis and is enhanced in patients with essential hypertension. This finding has stimulated a search for antihypertensive drugs with high intrinsic antioxidant properties. We investigated the antihypertensive and antioxidant effects of carvedilol, a new vasodilating beta-adrenoceptor blocking agent in a group of patients with mild to moderate essential hypertension after 4-month treatment. Carvedilol administration markedly increased the resistance to oxidation of LDL isolated from treated patients to values comparable to those of control, nonhypertensive subjects. This effect was achieved despite a significant loss in LDL-associated vitamin E. The increased resistance of LDL to oxidation promoted by carvedilol was not related to the normalization of previously increased blood pressure (BP). Indeed, the administration of other conventional antihypertensive drugs, capable of decreasing arterial BP but without high intrinsic antioxidant properties, to a control group of matched hypertensive patients failed to ameliorate LDL oxidation parameters. Carvedilol treatment also reduced the extent of in vivo LDL oxidation, as reflected by the decrease in antioxidized LDL autoantibody titer. This effect as well was detected only in the group of carvedilol-treated hypertensive patients and not after the simple reduction in BP obtained with antihypertensive drugs different from carvedilol.

Adrenergic beta-Antagonists↗

Hepatic glutathione deficiency in chronic hepatitis C: quantitative evaluation in patients who are HIV positive and HIV negative and correlations with plasmatic and lymphocytic concentrations and with the activity of the liver disease.

OBJECTIVES: Reduced glutathione (GSH) is decreased in patients affected by chronic hepatitis C (CHC) as well as in patients who are HIV positive. Because the liver is the most important source of plasmatic GSH, we measured the concentrations of GSH in the liver (H-GSH) of patients with CHC who were either HIV positive or negative, correlating it to the concentrations of GSH in plasma (P-GSH) and in peripheral blood mononuclear cells (PBMCs) (L-GSH), to the replication activity of hepatitis C virus (HCV) in PBMCs, to the activity of the liver disease, and to the state of immunodeficiency in patients who were HIV positive. METHODS: One hundred, five patients with serologically and histologically demonstrated CHC (55 HIV positive and 50 HIV negative) entered the trial. Fifty-one healthy individuals made up a control group for P-GSH and L-GSH concentrations. H-GSH concentration was determined by high performance liquid chromatography on liver specimens obtained by ultrasound-guided biopsy according to the method described by Reed et al. The concentrations of P-GSH and L-GSH were determined according to the method described by Suarez et al. The detection of HCV RNA strands in PBMCs was performed according to the method described by Qian et al. Histological findings and degree of fibrosis were scored according to the numerical scoring system proposed by Scheuer and by Knodell et al. RESULTS: H-GSH, P-GSH, and L-GSH were significantly reduced in patients affected by CHC compared with healthy controls (p < 0.001). H-GSH and particularly L-GSH were more significantly reduced in patients who were HIV positive compared with those who were HIV negative (p < 0.001), without significant correlation with the values of the T cell subset CD4+. The reductions in H-GSH, P-GSH, and L-GSH were significantly correlated to the replication activity of HCV in PBMCs (p < 0.001) and to the grade of activity of the liver disease assessed by the values of ALT (p < 0.001) and by histological and fibrosis scores of CHC (p < 0.001). In both groups of patients with CHC, H-GSH, P-GSH, and L-GSH were more reduced in patients addicted to drugs than in patients who were not addicted. CONCLUSIONS: In patients with CHC, particularly those who are HIV positive, a systemic depletion of GSH is present. This depletion may be a factor underlying the resistance to interferon therapy and, in patients who are HIV positive, to antiretroviral drugs, fostering HCV and/or HIV replication. This may represent the biological basis for GSH replacement therapy.

Adult↗

Carotid intima-media thickening and in vivo LDL oxidation in patients with essential hypertension.

Low density lipoproteins (LDL) from hypertensive patients are more prone to in vitro oxidation and undergo a more pronounced oxidation in vivo. Due to the pro-atherogenic activity of oxidatively modified LDL, the correlation between the carotid intima-media thickening (IMT) and the markers of in vivo LDL oxidation was investigated in hypertensive patients. A cross-sectional study on 101 normocholesterolemic patients with newly diagnosed and untreated essential hypertension was performed. The occurrence of in vivo LDL oxidation was evaluated by measuring the titers of autoantibodies against Cu(2+)-oxidised LDL (oxLDL) and malondialdehyde-derivatised LDL (MDA-LDL). The extent and degree of atherosclerosis and the IMT were measured by means of carotid and femoral ultrasonography with a duplex scanner equipped with a high resolution probe. We did not find significant correlations between in vivo LDL oxidation parameters and the extent of atherosclerotic lesion in the entire group of hypertensive patients. However, a significant direct correlation was detected between the carotid IMT and the titer of autoantibodies against both oxLDL and MDA-LDL in hypertensive patients without advanced atherosclerotic plaques. The results obtained support the hypothesis that enhanced LDL oxidation may be one of the pathophysiological events related to the formation and progression of early atherosclerotic lesions (IMT) in carotid arteries of hypertensive patients.

Adult↗

The operation of Na+/Ca2+ exchanger prevents intracellular Ca2+ overload and hepatocyte killing following iron-induced lipid peroxidation.

Stimulation of lipid peroxidation by incubating isolated rat hepatocytes with ADP/FeCl3 caused a time dependent increase in cytosolic free Ca2+ levels, without influencing cellular Na+ content. Omission of Na+ from the incubation medium greatly increased the accumulation of Ca2+, which was partially reverted upon transferring the cells in a Na+ containing medium. This suggested that a Na(+)-dependent Ca2+ transporter was activated upon the elevation of cytosolic Ca2+ and partially counteracted the influx of Ca2+ promoted by lipid peroxidation. In the presence of Na+ cell death was not associated with the increase of Ca2+ induced by peroxidative injury; however, decrease of mitochondrial membrane potential and loss of cell viability followed by massive accumulation of Ca2+ occurring in hepatocytes incubated with ADP/FeCl3 in a Na(+)-free medium. Both these effects were completely prevented by chelation of extracellular Ca2+ with EGTA. Thus, we conclude that Na(+)-dependent Ca2+ transporter is involved in controlling excessive accumulation of Ca2+ induced by stimulation of lipid peroxidation and can prevent hepatocyte death caused by Ca(2+)-dependent alterations of mitochondrial activity.

Animals↗

[Oxidation of low-density lipoproteins. Correlation between reduced resistance in vitro and increased oxidation in vivo].

OBJECTIVES: The oxidation of low-density lipoproteins has been recently proposed as one of the critical factors in promoting atherogenesis. This process results from the balance between the prooxidant stimuli and the endogenous antioxidants present in LDL and strictly depends on the concentration of oxidizable substrates, namely unsaturated fatty acids. METHODS: Twelve male hypertriglyceridaemic patients were investigated before and after oral supplementation with omega-3 polyunsaturated fatty acids (PUFA) and compared with eighteen untreated healthy matched control subjects. The plasma lipid profile was measured in all patients. LDL oxidation was evaluated as both the susceptibility to in vitro oxidation and the presence of plasma anti-oxidized LDL antibodies (as a marker for in vivo oxidation). RESULTS: Omega-3-fatty acid supplementation caused a significant reduction in plasma triglyceride level (267 +/- 38 vs 375 +/- 33 mg/dl, p < 0.01) and decreased the resistance of LDL to oxidation as revealed by an early and accelerated generation of conjugated dienes following exposure to CuSO4 (105.3 +/- 7 vs 133 +/- 9.3 min, p < 0.01). Moreover, the concentration of the antioxidant vitamin E in LDL was slightly but significantly decreased at the end of the treatment (2.59 +/- 0.19 vs 2.89 +/- 0.17 nmol/mg LDL, p < 0.05), but its efficiency in preventing LDL oxidation was unaltered. Furthermore, a marked increase of the plasma anti-oxidised LDL antibody titre was found in nearly all patients at the end of the treatment (2.08 +/- 0.48 vs 1.37 +/- 0.2 anti-oxidised/anti-native LDL antibody ratio, p < 0.001). CONCLUSION: These results indicate that PUFA supplementation decreases the resistance of LDL to in vitro oxidation and that this decreased resistance is accompanied by an enhanced LDL oxidation in vivo.

Adult↗

Sodium-mediated cell swelling is associated with irreversible damage in isolated hepatocytes exposed to hypoxia or mitochondrial toxins.

Incubation of isolated rat hepatocytes under hypoxic conditions or in the presence of inhibitors of mitochondrial functions such as KCN or carbonylcyanide m-chlorophenylhydrazone (CCCP) causes an increase of intracellular Na+ content and cell swelling. Both these effects precede the appearance of irreversible damage as measured by trypan blue staining of non-vital hepatocytes. When the increase of cellular Na+ is prevented by substitution of NaCl in the incubation medium with equimolar amount of choline chloride both cell swelling and loss of viability are greatly reduced. Thus, we propose that osmotic stress induced by an uncontrolled accumulation of Na+ might be associated with the ultimate events precipitating irreversible membrane lesions in hepatocyte undergoing metabolic inhibition.

Analysis of Variance↗

Detection of antibodies against proteins modified by hydroxyethyl free radicals in patients with alcoholic cirrhosis.

BACKGROUND/AIMS: We have previously shown that hydroxyethyl free radicals produced during cytochrome P4502E1-mediated oxidation of ethanol covalently bind to microsomal proteins. The present study examined whether alkylation of proteins by hydroxyethyl radicals induces an immunologic response in alcoholic patients. METHODS: A microplate enzyme-linked immunosorbent assay was developed using as antigen human serum albumin or bovine fibrinogen reacted with chemically produced hydroxyethyl radicals. RESULTS: This assay showed that the sera of alcoholic cirrhotics contained both immunoglobulin (Ig) Gs and IgAs that recognized proteins modified by hydroxyethyl radicals, whereas practically no reaction was observed in the sera of healthy controls or cirrhotics without evidence of alcohol abuse. The reactivity of the sera from alcoholic patients was not influenced by the protein to which hydroxyethyl radicals were bound. The sera of alcoholic cirrhotics also contained antibodies directed against acetaldehyde-modified albumin. However, the reaction of alcoholic sera with hydroxyethyl radical epitopes was not inhibited by increasing concentrations of acetaldehyde-modified albumin produced under either reducing or nonreducing conditions. CONCLUSIONS: The results indicate that a new group of antigens that do not cross-react with antibodies against acetaldehyde-derived epitopes is formed by the alkylation of protein by hydroxyethyl radicals and is involved in the development of immunologic reactions in alcoholic patients.

Adult↗

Low density lipoprotein oxidation is inhibited in vitro by olive oil constituents.

Oxidation of low density lipoproteins maybe a factor in the development of atherosclerosis. The Mediterranean diet rich in vegetables, grains, legumes, fruits, and oils, mainly olive oil, has been suggested to reduce the incidence of coronary heart disease, because of its low saturated and high monounsaturated fatty acids content. It is also possible that the natural antioxidants in the oil help to prevent lipid oxidation, e.g. that of low density lipoproteins, thus retarding the formation of atherosclerotic plaques. First-pressed, extra-virgin olive oil contains appreciable amounts of polyphenolic compounds that prevent its autoxidation and are responsible for its high stability. We tested these compounds on low density lipoprotein oxidation and found an inhibitory effect, at low concentrations, on various indexes of lipid oxidation (vitamin E content, formation of thiobarbituric acid-reacting substances, lipid peroxides, levels of polyunsaturated fatty acids, protein modification, conjugated diene formation). Our data suggest that natural antioxidants could play a role in inhibiting the formation of cytotoxic products such as lipid peroxides thus retarding the onset of the atherosclerotic damage.

Arteriosclerosis↗

Autoantibodies against oxidatively modified low-density lipoproteins in NIDDM.

Diabetes is an independent risk factor in the development of atherosclerosis, although the pathophysiological processes underlying this association are poorly understood. The oxidation of low-density lipoprotein (LDL) is considered a key event in the development and progression of atherosclerosis because it generates molecular epitopes that are more atherogenic than parent LDL. A total of 138 patients suffering from non-insulin-dependent diabetes mellitus (NIDDM) and 80 matched control subjects were investigated. LDL oxidation was evaluated as the presence of autoantibodies against oxidatively modified LDL, since they mirror the in vivo occurrence of oxidative processes. NIDDM patients had an antibody ratio (calculated as the ratio of antibodies against modified versus native LDL) significantly higher than control subjects for Cu(2+)-oxidized LDL (1.88 +/- 0.6 vs. 1.05 +/- 0.3, P < 0.01, for IgG), malondialdehyde-modified LDL (2.54 +/- 0.73 vs. 2.04 +/- 0.11, P < 0.01, for IgG and 3.96 +/- 1.51 vs. 2.90 +/- 0.15, P < 0.01, for IgM), and malondialdehyde-modified human serum albumin (1.79 +/- 0.54 vs. 1.46 +/- 0.1, P < 0.05 for IgG). The possible role played by glycation in sensitizing LDL to oxidation was investigated by measuring autoantibodies against both glycated LDL (glycLDL) and glycoxydated LDL (glycoxLDL). NIDDM patients had an antibody ratio significantly higher than control subjects for anti-glycLDL and anti-glycoxLDL IgG (1.79 +/- 0.38 vs. 1.12 +/- 0.23, P < 0.01 and 2.55 +/- 1.03 vs. 1.39 +/- 0.44, P < 0.01, respectively) but not anti-glycLDL and anti-glycox-LDL IgM.(ABSTRACT TRUNCATED AT 250 WORDS)

Aged↗

Alteration of Na+ homeostasis as a critical step in the development of irreversible hepatocyte injury after adenosine triphosphate depletion.

The exposure of isolated hepatocytes to the redox-cycling quinone menadione caused an early loss of mitochondrial membrane potential, adenosine triphosphate (ATP) depletion, and decreased intracellular pH. These alterations were followed by an increase in intracellular Na+ and, ultimately, cell death. If HCO3- was omitted from the incubation buffer, or the hepatocytes were incubated in an acidic medium (pH 6.5) the accumulation of Na+ was markedly reduced. Inhibition of the Na+/H+ exchanger and of the Na+/HCO3- cotransporter by, respectively, amiloride and 4,4'-di-isothiocyano-2,2'-disulfonic acid stilbene (DIDS) suppressed the initial Na+ influx but did not prevent subsequent Na+ accumulation, because amiloride and DIDS inhibited the Na+/K+ pump. The omission of HCO3- from the extracellular medium or the incubation in acidic conditions also prevented menadione toxicity, without interfering with the loss of mitochondrial membrane potential and with ATP depletion. A similar protection was evident when hepatocytes were incubated with menadione in a medium without Na+. The preservation of adequate levels of ATP by supplementing hepatocytes with fructose allowed the initial Na+ load to be recovered and provided partial protection against menadione toxicity. These effects were suppressed if Na+/K(+)-ATPase was inhibited with ouabain. Taken together, these results indicated that the activation of the Na+/HCO3- cotransporter and of the Na+/H+ exchanger in response to the decrease of intracellular pH stimulated an enhanced influx of Na+. When the activity of the Na+/K+ pump was not able to control Na+ levels because of ATP depletion, such an uncontrolled Na+ influx precipitated irreversible injury and caused hepatocyte death.

Adenosine Triphosphate↗