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Maternal selenium deficiency increases hydrogen peroxide and total lipid peroxides in porcine fetal liver.

To investigate the role of selenium (Se) in the developing porcine fetus, prepubertal gilts (n = 42) were randomly assigned to either Se-adequate (0.39 ppm Se) or Se-deficient (0.05 ppm Se) gestation diets 6 wk prior to breeding. Maternal and fetal liver was collected at d 30, 45, 70, 90, and 114 of pregnancy. Concentrations of Se in maternal liver decreased during gestation in gilts fed the low-Se diet. The activity of cellular glutathione peroxidase (GPx) was decreased at d 30 and 45 of gestation in liver of gilts fed the low-Se diet. Concentrations of malondialdehyde (MDA) and hydrogen peroxide (H2O2) were greater in liver homogenates from gilts fed the low-Se diet. Within the fetuses, liver Se decreased in those fetuses of gilts fed the low-Se diet. Although the activity of GPx in fetal liver was not affected by the maternal diet, concentrations of H2O2 and MDA in fetal liver were greater in fetuses from gilts fed the low-Se diet. Maternal liver GPx activity was approx 12-fold greater than fetal liver GPx activity regardless of dietary treatment. These results indicate that maternal dietary Se intake affects fetal liver Se concentration and feeding a low-Se diet during gestation increases oxidative stress to the fetus, as measured by fetal liver H2O2 and MDA.

Animals↗

[Initiation of lipid peroxidation (LPO) in blood during intraoperative mechanical autotransfusion--is hepatotoxicity of lipid peroxidation products of clinical significance?].

Machine autotransfusion using cell-saver is a well-established method of saving homologous blood during extensive surgical procedures. The processing of blood may induce the initiation of lipid peroxidation (LPO) with the release of hepatotoxic products. A series of 42 patients undergoing primary (n = 20) or revision (n = 22) hip arthroplasty comprised the study group. Patients received an average of 1,260 ml of autologous blood and 2.2 units of homologous packed cells. The concentration of thiobarbituric acid reactive substances (TBARS) as LPO metabolites was measured in the patients' plasma, in the autologous packed cells as well as in the supernatants of the cell-saver-processed blood. Additionally, parameters of iron metabolism, haemoglobin levels, haematocrit as well as the activities of so-called liver enzymes aspartate aminotransferase, alanine aminotransferase, gamma-glutamyltranspeptidase and cholinesterase were determined. An initiation of LPO was detectable during the process of machine autotransfusion, but this took place mainly ex vivo. High concentrations of TBARS were detectable in the supernatants after cell-separation processing. We observed a decline in haemoglobin concentration and haematocrit during the perioperative period. Postoperatively, we found a significant iron deficiency as a consequence of the perioperative blood loss. There was not sufficient evidence of a postoperative liver disorder induced by toxic metabolites of LPO. To sum up, there is only a low contamination of the organism with LPO products during the process of machine autotransfusion. Therefore, an induction of liver damage seems to be improbable.

Adult↗

Exhaled hydrogen peroxide, nitrite and nitric oxide in healthy children: decrease of hydrogen peroxide by atmospheric nitric oxide.

Hydrogen peroxide (H2O2) and nitrite (NO2-) in exhaled breath condensate have recently been suggested as non-invasive markers of airway inflammation. The goal of this study was to clarify the role of factors that may potentially influence the measurement of H2O2 and nitrite and to look for possible correlations among these inflammatory markers. H2O2 and nitrite values were assessed fluorometrically in breath condensate of 102 healthy children (age 4-18 years) and a detailed status of atopy (including history, lung function and skin prick test) was taken in all children. To find out the role of atmospheric nitric oxide, eNO and envNO were measured via chemiluminescence in association with the sampling of the breath condensate. Median (interquartile range) H2O2 was 0.51 (0.26 - 0.74) microM and nitrite was 3.3 (2.7 4.1) microM. A significant negative correlation between H2O2 and envNO was observed (r = -0.50; p < 0.0001). ENO was independent of envNO at our envNO range up to 56 ppb. No further correlation was found. The inflammatory markers in exhaled breath condensate H2O2, nitrite and eNO are not interrelated to each other in healthy children. Whereas eNO was not dependent on envNO values, high envNO values must be taken into account when measuring H2O2 in exhaled breath condensate.

Adolescent↗

Dietary fiber and lipid peroxidation: effect of dietary fiber on levels of lipids and lipid peroxides in high fat diet.

Effect of feeding coconut and blackgram fiber isolated as neutral detergent fiber (NDF) on the levels of lipids and lipid peroxides was studied in rats given a high fat diet. Concentration of cholesterol, free falty acid and phospholipids showed significant decrease in the serum, liver aorta and intestine of coconut and blackgram fiber groups. Concentration of malondialdehyde (MDA) and conjugated dienes was significantly decreased in liver and intestine of both fiber groups, while hydroperoxides showed significant increase in liver and heart of both the fiber groups. SOD and catalase activity was found to be increased in liver, intestine, heart proximal colon and distal colon of both the fiber groups. Serum ceruloplasmin levels showed a slight increase in animals fed coconut and blackgram fiber groups. Glutathione levels in liver, intestine proximal colon, distal colon and heart also showed a significant decrease in the animals of both the fiber groups.

Animals↗

[Peroxides as plant constituents. 8. Guaianolide-peroxides from yarrow,Achillea millefolium L., a soluble component causing yarrow dermatitis].

From the ether extract of the blossoms of yarrow, Achillea millefolium L., two guaianolides (1, 2) with a peroxide bridged cyclopentane ring and an alpha-methylene-gamma-butyrolactone structure have been isolated. For these compounds the names alpha-peroxyachifolid (1) and beta-peroxyisoachifolid (2) are proposed. 1 is responsible for the allergic contact dermatitis caused by yarrow.

Anti-Bacterial Agents↗

Powder and single-crystal electron paramagnetic resonance studies of yeast cytochrome c peroxidase and its peroxide and its peroxide compound, Compound ES.

Electron paramagnetic resonance absorption spectrum of ferric cytochrome c peroxidase exhibited a mixture of high- and low-spin compounds. The principal values and the eigenvectors of the g-tensor for the low-spin species were determined by single-crystal EPR spectroscopy at 77 K. The powder EPR spectra of the peroxide compound, Compound ES, were measured at S-, X-, and Q-band microwave frequencies. Careful examination at 77 K showed a narrow free radical-like signal at g = 2.004 with hyperfine structures accompanied by a broad signal spreading on both low- and high-field sides. Single-crystal EPR analyses of Compound ES clearly demonstrated that there exist at least two different radical species: one is isotropic with hyperfine structure at g = 2.004 and the other exhibits an axially symmetric signal at 5 K and broad signal centered at g = 2.004 at 77 K, respectively. The principal values and the eigenvectors of the g-tensor for the axially symmetric signal were determined: g(parallel) = 2.034 and g(perpendicular) = 2.006, 1.999. The orientation of the unique axis (g(parallel)) was found to be identical to that of the heme normal. A new radical signal with complicated hyperfine structures in the g = 2.004 region was observed upon illumination of Compound ES at both 5 and 77 K. The photoinduced species grew effectively by the illumination light around 500 nm. On warming to -80 degrees C, the photoinduced signal was reversibly brought back to the original radical species of Compound ES via an intermediate species. From these results, we have proposed the possible sites for the free radical centers in Compound ES.

Crystallization↗

Diffusion of extracellular hydrogen peroxide into intracellular compartments of human neutrophils. Studies utilizing the inactivation of myeloperoxidase by hydrogen peroxide and azide.

It is well known that catalase is transformed to nitric oxide-Fe2+-catalase by hydrogen peroxide (H2O2) plus azide. In this report, we show that myeloperoxidase is also inactivated by H2O2 plus azide. Utilizing this system, we studied the presence and source of intracellular H2O2 generated by activated neutrophils. Stimulation of neutrophils with phorbol myristate acetate (PMA, 100 ng/ml) plus azide (5 mM) for 30 min completely inactivated intragranular myeloperoxidase and reduced cytosolic catalase to 35% of resting cells. This intracellular inactivation of heme enzymes did not occur in normal neutrophils incubated with either PMA or azide alone or in neutrophils from patients with chronic granulomatous disease (CDG) which cannot produce H2O2 in response to PMA. Incubation of neutrophils with azide and a H2O2 generating system (glucose-glucose oxidase) inactivated 41% of neutrophil myeloperoxidase. Glutathione-glutathione peroxidase (GSH-GSH peroxidase), an extracellular H2O2 scavenger, totally protected neutrophil myeloperoxidase from inactivation by azide plus glucose-glucose oxidase. In addition, when a mixture of normal and CGD cells was stimulated with PMA in the presence of azide, 90% of the myeloperoxidase in CGD neutrophils was inactivated. Therefore, H2O2 released extracellularly from activated neutrophils can diffuse into cells. In contrast, myeloperoxidase in normal polymorphonuclear leukocytes stimulated with PMA in the presence of azide and GSH-GSH peroxidase was 75% inactivated. Thus, the results indicate that a GSH-GSH peroxidase-insensitive pool of H2O2 is also generated, presumably at the plasma membrane, and this pool of H2O2 can undergo direct internal diffusion to inactivate myeloperoxidase.

Animals↗

[Lipid peroxides and atherosclerosis. The enzymatic detoxication of lipid peroxides in the blood in ischemic heart disease due to coronary artery arteriosclerosis].

It was established that in blood of patients with ischemic heart disease due to atherosclerosis of the coronary arteries (the diagnosis was verified in selective coronaroangiography) the content of acylhydroperoxides grows while the activity of glutathione-peroxidase II decreases. In blood of patients with no damage to the coronary vessels (according to the results of angiography), glutathione-peroxidase II activity does not differ significantly from the values in the control group. The decrease of glutathione-peroxidase II activity was most marked in patients with ischemic heart disease and hypercholesterolemia. It is suggested that the increase in the peroxide content in blood of patients with ischemic heart disease may be due to the sharp decrease in the activity of glutathione-peroxidase II.

Adult↗

[Modification of an enzymic system of Ca2+ transport in sarcoplasmic reticulum membranes during lipid peroxidation. Induction and regulation systems of lipid peroxidation in skeletal and heart muscles].

The enzymic and non-enzymic systems which induce and control lipid peroxidation (LPO) in muscle cells were studied. The maximal activity of enzymic NADH- and NADPH-dependent LPO was observed in sarcoplasmic reticulum (SR) membranes. It was found that an essential role in enzymic LPO induction belongs to superoxide radical anions and to hydroxyl radicals. The maximal concentration of the natural LPO inhibitor, alpha-tocopherol, was detected in SR membranes. The glutathione peroxidase and superoxide dismutase activities were determined in the cytosol fraction of myocytes. The role of compartmentation of enzymic and non-enzymic systems of LPO induction in muscle cells is discussed.

Animals↗

Characterization of hydrogen peroxide-potentiating factor, a lymphokine that increases the capacity of human monocytes and monocyte-like cell lines to produce hydrogen peroxide.

A study was made of a lymphokine produced by human T lymphocytes that mediates activation of human monocytes and monocyte-like cell lines, measured by increased production of H2O2. The lymphokine was produced either by stimulation of human nonadherent peripheral blood mononuclear cells with concanavalin A (Con A) or by stimulation of a human T cell line, HSB2, with Con A and phorbol myristic acetate (PMA). When incubated with freshly isolated peripheral blood monocytes for 48 to 72 hr, the H2O2-potentiating factor (HPPF) stimulated increased production of H2O2, measured in a PMA-triggered assay for H2O2 secretion. Because variations occurred in the response of normal blood donors to the HPPF, human monocyte-like cell lines were used as homogeneous and consistently responsive targets for the lymphokine to facilitate biochemical characterization studies of the factor. Two cell lines were studied: HL60, a human promyelocytic cell line, and U937, a human histiocytic cell line. When target cells of either type were incubated in the presence of the HPPF for 48 to 72 hr, they produced increased amounts of H2O2 in a dose-dependent fashion. H2O2 levels were assessed by means of a microassay that measures peroxide-mediated oxidation of phenol red after an oxidative burst triggered with PMA. By using this assay, HPPF was found to have an apparent m.w. of 54,000 and an isoelectric point of 5.5. The bouyant density was determined to be 1.307, indicating that HPPF is a protein. The utilization of cell lines for both the production and assay of HPPF should facilitate the purification of this lymphokine and the subsequent evaluation of its relationship to other lymphokines known to affect macrophage microbicidal and tumoricidal function.

Adjuvants, Immunologic↗

Graft polymerization from a silica surface initiated by adsorbed peroxide macroinitiators. I. Adsorption and structure of the adsorbed layer of peroxide macroinitiators on a silica surface.

The adsorption features of two peroxide macroinitiators (PMIs) with various functionalities from their semi-dilute solutions on the silica surface were thoroughly investigated in the present work. These investigations include the study of the adsorption kinetics of PMI in diverse solvents and a detailed examination of the adsorbed layer structure with the aid of ellipsometry, scanning force microscopy (SFM), and contact angle measurements. Rearrangements of PMI macromolecules at the solid surface are supposed to be the main reason for the appearance of extremes on the kinetic curves and, besides, have a more pronounceable effect on adsorption rate than their diffusion rate to the surface even at the initial stage of the process. Both island-like and densely packed structures of absorbed layers were revealed by combining contact angle measurements and SFM. Surprisingly, even in the case when saturation of the adsorbed layer is reached, PMI does not completely occupy the substrate surface which is at least particularly reachable for the wetting liquids. PMIs adsorbed at the solid surface are intended for the formation of tethered polymer "brushes" via the initiation of "grafting from" polymerization.

Journal Article↗

Influence of Hydrogen Peroxide upon Carbon Dioxide Photoassimilation in the Spinach Chloroplast: I. HYDROGEN PEROXIDE GENERATED BY BROKEN CHLOROPLASTS IN AN "INTACT" CHLOROPLAST PREPARATION IS A CAUSAL AGENT OF THE WARBURG EFFECT.

Photosynthesis and the Warburg effect (O(2) inhibition of photosynthesis) were evaluated in preparations of intact spinach chloroplasts enriched with varying amounts of lysed chloroplasts. Increasing the ratio of broken to intact plastids resulted in decreased rates of CO(2) assimilation.Hydrogen peroxide when added at 10 or more micromolar also inhibited photosynthesis in these preparations. Inhibition of the photosynthetic rate by both factors was eliminated by addition of catalase. These findings indicate that H(2)O(2) presumably generated by the broken chloroplasts was the causal agent of this inhibition.The Warburg effect also became more pronounced by increasing the level of broken to intact chloroplasts. This effect was examined as a function of added catalase, pH, and O(2) concentration. At 21% O(2) and 0.44 to 0.68 millimolar CO(2), catalase relieved the effect almost completely at pH 7.5, but at pH 8.3, the rate was restored only to about half or less of the control. At pH 7.6, 0.44 millimolar CO(2), and 100% O(2), the effect was only slightly overcome by catalase.A rise in glycolate synthesis by the isolated spinach chloroplast has been shown previously to be coupled to an increase in pH and O(2) (Kow, Robinson, Gibbs 1977 Plant Physiol 60: 492-495; Robinson, Gibbs, Cotler 1977 Plant Physiol 59: 530-534). At 21% O(2), glycolate synthesis was not affected by the addition of catalase at pH 7.5 or 8.3. It is proposed that at 21% O(2) and without some means of removing H(2)O(2), that portion of the Warburg effect attributed to glycolate synthesis has been overestimated at pH values in the order of 7.5. In contrast, that portion of the Warburg effect which was, at alkaline pH, insensitive to catalase represented the stress placed upon the photosynthetic carbon reduction cycle which resulted from an enhanced synthesis of glycolate. At 100% O(2) aeration and pH 7.5 to 8.5, the Warburg effect may also represent O(2)-mediated inhibition of a Calvin cycle enzyme within the intact plastid.

Journal Article↗

[A study on lipid peroxidation in neonates--(2). Perioperative changes in serum lipid peroxide and superoxide dismutase activity].

Pre-, intra-, and post-operative changes in serum lipid peroxide: malondialdehyde (MDA) level and superoxide dismutase (SOD) activity were studied in 10 neonates aged from 15 hours to 26 days. The results are summarized as follows: 1) Preoperative serum MDA levels were significantly lower than those of normal neonates. No significant difference was found between pre- and post-operative values, although much fluctuations were observed in neonates within 7 days of age. All the individual values returned to the normal range during the early postoperative period with different respiratory management. 2) Changes in serum SOD activity were similar to those in MDA values. The activity seemed to be higher and more sensitive to oxygen concentration in younger neonates, which may suggest the specific antioxidant properties of the neonates. 3) Postoperatively, serum MDA levels tended to increase following intravenous administration of lipid emulsion. 4) There was a positive correlation between the values of serum MDA and SOD activity, especially in neonates within 7 days of age.

Female↗