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[Catalysis by enzymes entrapped into reversed micelles of surfactants in organic solvents. Peroxidase in the aerosol OT-water-octane system].

Spectral and catalytic parameters of peroxidase solubilized in the aerosol OT-water-octane system have been studied. The spectrum of peroxidase solubilized in octane with AOT reversed micelles, a degree of surfactant hydration being above 12, is actually identical to that of the enzyme aqueous solution. On the other hand, significant spectral changes have been detected when transferring the enzyme from water to the reversed micelle medium at low degrees of surfactant hydration, precisely [H2O]/[AOT] less than 12. The reversed micelle-entrapped peroxidase catalyses the oxidation of pyrogallol with hydrogen peroxide much more actively (at [H2O]/[surfactant] approximately 13) than that in aqueous solution. The entrapment of peroxidase into surfactant reversed micelles increases precisely the catalytic constant of the reaction, i.e. the virtual reactivity of the enzyme increases ten and hundred times depending on degrees of surfactant hydration and concentration. The systems of reversed micelles may be considered as models of biomembranes. Our findings hence show that enzymes in vivo can be much more catalytically active then it appears possible to reveal in conventional experiments in vitro in aqueous solutions.

Catalysis↗

Free oxygen radicals: necessary contributors to tumor promotion and cocarcinogenesis.

The two stage model of carcinogenesis postulates that agents which lead to tumor formation are either initiating or promoting agents. Initiating agents induce chemical modifications of DNA. Promoting agents have been assumed to induce cell proliferation and thereby establish a milieu in which the initiated cells can express their irreversibly altered genotype. Promoters can induce both the migration of leukocytes to the skin and stimulate their respiratory activity leading to the formation of active O2 species which cause lipid peroxidation and thereby change membrane properties. However, it was recently found that the O2 species emanating from promoter-activated leukocytes also cause formation of strand breaks both in the DNA of the leukocytes themselves and in the DNA of cells cocultivated with such leukocytes. The contribution of activated O2 species to tumor promotion has been confirmed by the finding that antioxidants and copper containing superoxide dismutase (SOD)-mimetic compounds, protease inhibitors and retinoids (which block free radical formation) inhibit promotion. Furthermore, cocarcinogens such as gossypol and pyrogallol may also cause conversion of O2 to the superoxide anion radical. The heritable change caused by initiators may render the cell more vulnerable to promoter-mediated DNA damage. Experimental investigation of these hypotheses may elucidate our understanding of the contribution of promoter-mediated DNA damage in tumorigenesis and identify preventive agents for carcinogenesis.

Animals↗

[Ubiquinone-9 of the flagellates Crithidia oncopelti and Astasia longa].

The content of ubiquinones (Co Q) of the Astasia longa and Crithidia oncopelti protozoa was studied. The protozoa were grown on an artificial nutrient broth. The cells were separated, washed, freeze-dried, and refluxed with KOH and pyrogallol in ethanol media. The hydrolyzate was concentrated. The residue was stored at -20 degrees and filtered. An ubiquinone fraction was isolated from the filtrate by TLC on silica gel. Identification of the ubiquinone homologues was carried out by reverse phase TLC and mass spectrometry. Ubiquinones were quantitated with respect to the difference in the density between the oxidized and reduced forms of Co Q at 275 nm. The A. longa and C. oncopelti flagellates were shown to contain ubiquinone-9 (Co Q9) at a concentration of 0.48 and 1.14 mumole/g dry cells, respectively. The higher Co Q level in zooflagellates as compared to that in phytoflagellates is discussed.

Chromatography, Thin Layer↗

[Mechanisms of mixed-function oxidase system breakdown in the hepatic endoplasmic reticulum. The role of membrane phospholipid peroxidation].

It has been shown that endogenous lipid peroxidation (LPO) is an effective mechanism participating in the destruction of endoplasmic reticulum membranes (cytochrome P450) in liver. Antioxidants are able to control the rate of degradation of cytochrome P450 in vivo. Stock of the constitutive cytochrome P450 as compared with induced P450 is more resistive to LPO in vivo and in vitro. Spontaneous as well as induced by Fe2+--ADP+ +NADPH system destruction of cytochrome P450 due to accumulation of LPO products malonic dialdehyde (MDA) occurs during incubation of isolated rats hepatocytes. The LPO inhibitors (4-methyl-2,6- ditretbutilphenol , pyrogallol) stabilize cytochrome P450 preventing accumulation MDA hepatocytes. Degradation of cytochrome P450 in microsomes during trypsin proteolysis has been found to be enhanced by PLO induction. Efficiency of proteolysis depends on the way of induction and decreases in such an order: NADPH-- HNDH --ascorbate-dependent LPO. LPO may be considered as a trigger mechanism that makes some forms of cytochrome P450 available for endogenous proteases.

Animals↗

Carcinogenicity of hair dye components.

The available animal carcinogenicity data on hair dye components was reviewed. From this review it became clear that certain hair dye components, some of which are still in hair dye formulations now on the market, are animal carcinogens. The compounds of concern that are still in use are: 3-amino-4-methoxyaniline, 2-nitro-4-aminoaniline and 3-nitro-4-hydroxyaniline. Certain azo dyes formerly used, and related compounds still in use, contain the benzidine moiety. Two of these compounds, Direct Blue 6 and Direct Black 38, have been shown to be metabolized in animals to the human carcinogen benzidine. Furthermore, skin absorption studies carried out with radiolabeled hair dye components applied to animal or human skin have conclusively shown that these compounds are systemically absorbed and excreted. Known cocarcinogens such as catechol and pyrogallol, which enhance benzo(a)pyrene carcinogenicity on mouse skin, are used as hair dye components. It is not known whether such compounds will enhance the carcinogenicity of substituted aniline hair dye chemicals. The available epidemiologic data are not sufficient to link hair dye use with an increased incidence in human cancer.

Animals↗

Influence of extraction techniques on determination of alpha-tocopherol in animal feedstuffs.

Methods were compared for alpha-tocopherol determination involving saponification in the preparation of feed extracts for high performance liquid chromatography. The effects of antioxidant and saponification times used were also examined. The data obtained showed that saponification before solvent extraction more efficiently released natural alpha-tocopherol from the feedstuffs than extraction before saponification. Increases in alpha-tocopherol content of 0--144% were obtained for the range of feedstuffs examined. Ascorbic acid and pyrogallol used as antioxidants gave similar results, and extraction efficiency was independent of the time of saponification within the range 5--40 min.

Animal Feed↗

[Clinical investigation of erythrocyte function in patients with lung cancer].

With a yeast-erythrocyte-SPA rosette method, the function of erythrocyte immune adherence was determined in 49 cases of lung cancer, 20 cases of benign pulmonary diseases and 60 healthy persons. By means of simple morphologic method and pyrogallol autoxication method, the function of erythrocyte enhancing neutrophils phagocytosis and the activity of RBC-CuZnSOD were measured in some of these subjects. It was found that both the function of red cell immune adherence and the effect of erythrocyte enhancing phagocytosis in the patients with lung cancer were significantly weaker than in the cases of benign pulmonary diseases and the healthy subjects. The function of erythrocyte immune adherence tended to recover after effective surgical treatment. In comparison with the healthy persons, the activity of RBC-CuZnSOD was significantly lower in the patients with lung cancer. The mechanism and clinical significance of the changes in erythrocyte function were discussed.

Adult↗

[Study of oxidative enzymes of the lignin-degrading fungus Pleurotus ostreatus].

The elctrophoretic separation in polyacrylamide gel of laccase and peroxidase isoenzymes of the lignin-degrading fungus Pleurotus ostreatus was investigated. The optimal electrophoretic conditions were found: in the electrode buffer tris-diethyl barbituric acid pH 7.0 in the gradient gel-4-10% acrylamide. Seven peroxidase isoenzymes oxidizing base benzidine and guaiacol were identified and five laccase isoenzymes reacting with specific substrates-p-phenylene diamine, alphs-naphthol, pyrogallol, hydroquinone were determined.

Agaricales↗

Vasorelaxing effect of S-nitrosocaptopril on dog coronary arteries: no cross-tolerance with nitroglycerin.

S-Nitrosocaptopril (S-NO-Cap) produced dose-dependent relaxation in isolated dog coronary arteries. This relaxation consisted of two parts: an initial phasic relaxation and a subsequent sustained relaxation. Relaxation was potentiated by superoxide dismutase but was suppressed by pyrogallol, methylene blue or oxyhemoglobin. The relaxant responses of coronary artery to vasoactive agents were reexamined after the development of nitrate tolerance induced by a 1-hr treatment with 4.4 x 10(-4) M nitroglycerin (NTG). NTG tolerance was verified by a 40-fold increase in the EC50 values. The relaxant response to nitroprusside was only marginally suppressed in NTG-tolerant arteries. NTG-tolerant arteries were not tolerant to nitric oxide (NO) or 8-bromo-cyclic guanosine monophosphate (cGMP) and did not show a significant change in the concentration-response curves. Similarly, the concentration-response curves for S-NO-Cap in NTG-tolerant coronary arteries were not significantly different from those in nontolerant coronary arteries. Captopril (5 x 10(-4) M) did not enhance the vasodilative effect of NTG or reverse NTG tolerance. The NTG-induced increase in cGMP was abolished after NTG tolerance was established. On the other hand, the S-NO-Cap-induced increase in cGMP was unaffected by NTG tolerance. In conclusion, these findings indicate that (1) S-NO-Cap is an NO-like substance, (2) an impaired formation of NO or S-nitrosothiol is responsible for the formation of NTG tolerance and (3) S-NO-Cap, which does not show cross-tolerance with NTG, may serve as a therapeutic alternative to current nitrovasodilators.

Animals↗

[The change of filtration-index of erythrocyte malonyldialdehyde and superoxide dismutase in patients with pregnancy induced hypertension].

OBJECTIVE: To observe the relationship between the filtration-index of erythrocytes and concentration of erythrocytic superoxide dismutase (SOD), plasma malonyldialdehyde (MDA) in cases of pregnancy induced hypertension (PIH). METHODS: We have measured the level of MDA and filtration-index, SOD content of erythrocytes in maternal and cord blood of 31 cases with PIH (group A) and 25 cases of normal pregnancy (group B) using TBA method, nucleopore membraned cell deformability meter and pyrogallol self-oxidizing method. RESULTS: The mean filtration-index level and erythrocytic SOD were significantly higher in group A than those of group B (P < 0.01 and P < 0.05). The mean content of plasmatic MDA in group A increased markedly (P < 0.01) compared to that of group B. There was no difference of these parameters in cord blood between group A and group B. CONCLUSION: The decrease of red cell deformability due to the increase of plasma MDA level may be the underlying mechanism of PIH.

Adult↗

[Superoxide dismutase activity in microsomes of functionally different rat tissues in vitamin E deficiency].

Comparative investigation of microsome superoxide dismutase activity in functionally different rat tissues such as lung and liver has been carried out. Modification of superoxide dismutase fraction isolated from lung and liver microsomes and SOD-activity evaluation by means of superoxide radical-dependent pyrogallol autooxidation method have been described in detail. SOD-activity has been shown to be connected with the degree of lipid peroxidative oxidation (LPO) and total condition of tissue antioxidative system in case of different E-vitamin security in various functional types of cells (alveolocytes and hepatocytes).

Animals↗

[Effect of prooxidants on nitric oxide formation in murine liver, treated with bacterial lipopolysaccharide].

Coinjection of citrate iron complex (7.5-10 mg iron/kg) with Escherichia coli lipopolysaccharide (LPS) inhibited generation of nitric oxide in the liver of mice caused by LPS-dependent synthesis of inducible NO-synthase (iNOS). Coinjection of hydroquinone, pyrogallol, or CCl4 with LPS also inhibited NO generation in the liver. Inhibition of LPS-dependent of NO synthesis in the liver by all these agents and iron can be due to their pro-oxidant effects on metabolism of this tissue. These pro-oxidants rapidly activate synthesis of low molecular weight antioxidants; LPS-dependently generated active oxygen forms in the liver of treated animals, which causes iNOS synthesis, are inactivated by the antioxidants; thus, accumulation of active oxygen species is decreased and iNOS synthesis is inhibited.

Animals↗

Dimerization of recombinant horseradish peroxidase in a reversed micellar system.

Recombinant horseradish peroxidase reactivated from E. coli inclusion bodies was studied in a reversed micellar system of AOT in octane. The ability of the recombinant enzyme, in contrast to native horseradish peroxidase, to form a dimeric structure was found. The existence of the dimer was proved by results of sedimentation analysis. Dimer/monomer ratio in the enzyme-containing micelles and dimer catalytic activity were found to depend on the substrate used (pyrogallol, guaiacol, o-dianisidine, o-phenylenediamine). Computer modelling was used to describe possible structures of the dimeric recombinant horseradish peroxidase.

Dimerization↗

Poly(ADP-ribose) synthetase activation mediates mitochondrial injury during oxidant-induced cell death.

Reactive oxidant species are important mediators of tissue injury in shock, inflammation, and reperfusion injury. The actions of a number of these oxidants (e.g., hydroxyl radical and peroxynitrite, a reactive oxidant produced by the reaction of nitric oxide and superoxide) are mediated in part by the activation of the nuclear nick sensor enzyme, poly(ADP)-ribose synthetase (PARS), with consequent cellular energy depletion. Here we investigated whether PARS activation contributes to the mitochondrial alterations in cells exposed to oxidants. Authentic peroxynitrite (20 microM), the peroxynitrite-generating compound 3-morpholinosidnonimine, the combination of pyrogallol and S-nitroso-N-acetyl-D,L-penicillamine, as well as hydrogen peroxide induced a time- and dose-dependent decrease in mitochondrial transmembrane potential (delta psi(m)) in thymocytes, as determined by flow cytometry using the mitochondrial potential sensitive dyes DiOC6(3) and JC-1. A time- and dose-dependent increase in secondary reactive oxygen intermediate production and loss of cardiolipin, an indicator of mitochondrial membrane damage, were also observed, as measured by flow cytometry using the fluorescent dyes dihydroethidine and nonyl-acridine orange, respectively. Inhibition of PARS by 3-aminobenzamide or 5-iodo-6-amino-1,2-benzopyrone attenuated peroxynitrite-induced delta psi(m) reduction, secondary reactive oxygen intermediate generation, cardiolipin degradation, and intracellular calcium mobilization. Furthermore, thymocytes from PARS-deficient animals were protected against the peroxynitrite- and hydrogen peroxide-induced functional and ultrastructural mitochondrial alterations. In conclusion, mitochondrial perturbations during oxidant-mediated cytotoxicity are, to a significant degree, related to PARS activation rather than to direct effects of the oxidants on the mitochondria.

Animals↗

Effects of beta-carotene on doxorubicin-induced cardiotoxicity in rats.

AIM: To study the effects of beta-carotene (Car) reducing the cardiotoxicity induced by doxorubicin (Dox). METHODS: The pathological changes of rat myocardium were observed with photomicroscopy. The malondialdehyde (MDA) value of rat heart was measured with thiobarbituric acid method. The pyrogallol autoxidation method was used for determination of superoxide dismutase (SOD) activity. The activities of glutathione peroxidase (GSH-Px) were quantitatived with DTNB method. Electron spin resonance (ESR) technique was used to measure the level of the semiquinone free radicals. RESULTS: Car 10 or 30 mg.kg-1.d-1 i.g. reduced the cardiotoxicity induced by Dox, diminished the myocardial MDA production (P < 0.01), and protected the activities of SOD and GSH-Px. ESR revealed that Car scavenged semiquinone free radicals induced by Dox in vitro. The inhibitory rates of semiquinone free radicals formation by Car 0.02, 0.1, and 1.0 mmol.L-1 were 47.7%, 76.6%, and 82.5%, respectively. CONCLUSIONS: Car, with abilities of anti-lipid peroxidation and scavenging semiquinone free radicals, possessed effects of reducing Dox-induced cardiotoxicity.

Animals↗