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Biomedical subjects

C Ioannides

Publications and source records attributed to C Ioannides.

At least 91 records · Page 5Linked to original sources

Selective induction of rat hepatic CYP1 and CYP4 proteins and of peroxisomal proliferation by green tea.

Rats were exposed to freshly prepared aqueous extracts of green tea (2.5% w/v) as the sole source of drinking water for 4 weeks. Hepatic cytochrome P450 activity was determined using chemical probes, showing selectivity for particular isoforms, and by immunoblot analysis employing polyclonal antibodies. Exposure to green tea gave rise to increases in the O-demethylation of methoxyresorufin and, to a lesser extent, in the dealkylations of ethoxyresorufin and pentoxyresorufin. An increase was also seen in lauric acid hydroxylation but, in contrast, the N-demethylation of erythromycin was inhibited. p-Nitrophenol oxidase activity was unaffected by the same treatment. Immunoblot analysis revealed increases in the apoprotein levels of CYP1A2 and CYP4A1 following treatment with green tea. A significant increase was also noted in the CN(-)-insensitive palmitoyl CoA oxidation and this was paralleled by an increase in the levels of the peroxisomal trifunctional protein determined immunologically. Hepatic S9 and microsomal preparations from tea-treated animals were more effective than controls in activating 2-amino-3-methylimidazol[4,5-f]quinoline and 2-aminoanthracene to mutagens in the Ames test. When N-nitrosopyrrolidine served as the promutagen, tea did not influence its mutagenicity when isolated microsomes comprised the activation system but a significant inhibition was observed when hepatic S9 was used. The above findings are discussed within the context of the established anticarcinogenic and anti-mutagenic properties of green tea.

Animals↗

Mutagenicity and CYP1A induction by azobenzenes correlates with their carcinogenicity.

The genotoxicity of six azobenzenes was evaluated in the Ames test, in the presence of an activation system derived from Aroclor 1254-treated rats. Moreover, the ability of these azobenzenes to induce rat hepatic CYP1A activities and apoprotein levels, and stimulate their own bioactivation to mutagens, was also determined. In the presence of the Aroclor 1254-activation system, o-aminoazotoluene and 3-methoxy-4-aminoazobenzene were potent mutagens, whereas 4-amino-azobenzene and 4-diethylaminoazobenzene failed to elicit a positive mutagenic response. A very weak mutagenic response was induced by 2-methyl-4-dimethylaminoazobenzene and by azobenzene. o-Aminoazotoluene and 3-methoxy-4-aminoazobenzene were potent inducers of CYP1A activities and apoprotein levels, whereas the remaining four compounds displayed either very weak or no induction capability. None of the azobenzenes studied could induce its own activation to mutagens in the Ames test. All six azobenzenes displaced [3H]tetrachlorodibenzo-p-dioxin from the cytosolic Ah receptor, with o-aminoazotoluene and 3-methoxy-4-aminoazobenzene being the most effective. A correlation appears to exist between carcinogenic activity of azobenzenes in the rat on one hand, and of their mutagenic potential and hepatic CYP1 induction on the other. Possible mechanisms accounting for this relationship are discussed.

Animals↗

Bioactivation of 6-aminochrysene by animal and human hepatic preparations: contributions of microsomal and cytosolic enzyme systems.

6-Aminochrysene was converted into mutagen(s), in the Ames test in the presence of Aroclor 1254-induced hepatic S9, microsomal and cytosolic fractions, the first being the least and the last the most efficient activation system. The cytosolic activation of 6-aminochrysene decreased in the presence of increasing amounts of microsomes. The Aroclor 1254-induced rat microsomal and cytosolic systems differed markedly in a number of properties, including their cofactor requirements and responses to prototype inducers of the cytochrome P450-dependent mixed-function oxidase system. The cytosolic activation system could also convert 2-aminochrysene to mutagens but not 2- and 6-methylchrysene. Human hepatic cytosol could convert 6-aminochrysene and 2-aminoanthracene to mutagens in the Ames test. It is concluded that a hepatic cytosolic oxygenase exists, totally different from the microsomal oxygenases, which metabolizes aminopolycyclic aromatic hydrocarbons to mutagens, presumably through N-oxidation. This oxygenase activity appears to be present in human hepatic cytosol.

Animals↗

Marked antimutagenic potential of aqueous green tea extracts: mechanism of action.

In the present study aqueous extracts of green tea, at the concentrations customarily consumed by humans, were evaluated for their antimutagenic activity against major classes of dietary and occupational carcinogens. Green tea extracts caused a very marked and concentration-dependent inhibition of the Aroclor 1254-hepatic S9-mediated mutagenicity of heterocyclic amines (IQ and Glu-P-1) and polycyclic aromatic hydrocarbons (benzo[a]pyrene and 7,12-dimethylbenz[a]anthracene) and of the isoniazid-induced S9-mediated mutagenicity of nitrosamines (nitrosopiperidine and nitrosopyrrolidine). Similar inhibition was seen in the mutagenicity of the two aromatic amines, namely 2-amino-fluorene and 2-aminoanthracene, whether Aroclor 1254-S9, isolated microsomes or cytosol served as the activation system. Finally, the mutagenicity of the direct-acting mutagens 9-aminoacridine and MNNG was also suppressed by green tea extracts, but the effect was less pronounced when compared with the indirect-acting mutagens. Green tea extracts caused a marked and concentration-dependent decrease in the O-dealkylation of methoxyresorufin, ethoxyresorufin and pentoxyresorufin. A similar inhibition of the NADPH-dependent reduction of cytochrome c was also observed. Following the termination of the microsomal metabolism of the various promutagens, incorporation of green tea extracts into the activation system resulted in a comparatively modest inhibition of their mutagenic response. It is concluded that aqueous extracts of green tea possess marked antimutagenic potential against a variety of important dietary and environmental mutagens. Two mechanisms appear to be responsible. The first involves a direct interaction between the reactive genotoxic species of the various promutagens and nucleophilic tea component(s) present in the aqueous extracts.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Effect of high fat diet on liver microsomal oxygenations in ferret.

1. Ferret on a high fat diet accumulated large amounts of fat in its liver and had blood acetoacetate and beta-hydroxybutyrate concentrations 250 and 375% of those in control animals. 2. The high fat diet alone increased ferret liver microsomal 7-ethoxyresorufin O-deethylase (EROD) activity by 90%, but had no effect on 7-methoxy-, 7-pentoxy-, or 7-benzyloxy-resorufin, O-dealkylase activities. Administration of 3-methylcholanthrene (MC) increased only liver EROD activity, by 5- to 6-fold, in ferret on both high fat and control diets. Induction of EROD, but not MROD activity, in ferret on the high fat diet indicates that P4501A1, but not P4501A2, is induced. 3. Activation of 3H-paracetamol, measured by covalent tissue binding to ferret liver microsomal fractions, was increased three-fold in ferret on the high fat diet, nine-fold by MC administered to ferret on a control diet, and 13-fold by MC given to ferret on the high fat diet. Similar results were obtained with activation of the cooked-food amine, Glu-P-1, by ferret liver microsomes. 4. Western blots with antibodies to rat liver P450s showed that ferret liver contains proteins orthologous with rat liver P4504A1 and bifunctional protein. However, whereas clofibrate, similar to high fat diets, induced these two proteins in rat liver, no increase of these proteins occurred in liver of ferret fed a high fat diet. Western blots also showed that ferret liver contains no P4501A1 or 1A2, and although these two proteins were induced by MC, no induction occurred when ferret was fed the high fat diet alone. Ferret liver microsomes also contain a protein recognized by rat anti-P4502E1 but of a lower molecular weight. 5. Immunosorbent (ELISA) analyses of ferret liver for P4501A1 and 4A1 showed that the high fat diet increased a protein orthologous to rat P4501A1 but did not increase any protein orthologous to rat P4504A1. 6. These findings indicate that the high fat diet does not induce ferret liver bifunctional protein or P4504A1 enzyme protein, but may enhance liver P4501A1 and 1A2 activities through the hyperketonaemia resulting from the high dietary fat. The conflicting P450 results, namely Glu-P-1 activation but no MROD activity for P4501A2, high EROD activity and ELISA quantification of P4501A1, but no positive Western blot, are probably due to differences in substrate specificity and immunological characteristics between rat and ferret enzymes.

Acetaminophen↗

Interaction of a series of nitriles with the alcohol-inducible isoform of P450: computer analysis of structure-activity relationships.

1. Structural studies are reported on a series of 20 nitriles of varying rates of P4502E-mediated oxidative metabolism. 2. Parameters of molecular and electronic structure have been calculated for the generation of quantitative structure-activity relationships (QSARs) with the rates of oxidative metabolism of the nitriles, and with their acute toxicity. 3. Correlations between molecular polarizability, excitation energy and biological activity are presented as a result of QSAR analysis.

Biotransformation↗

Inhibition of rat hepatic aryl hydrocarbon hydroxylase activity by a series of 7-hydroxy coumarins: QSAR studies.

1. Molecular orbital calculations, by the Modified Intermediate Neglect of Differential Overlap (MINDO/3) method, of a series of twenty-five 8-acyl-7-hydroxy coumarins show that the inhibition of aryl hydrocarbon hydroxylase (AHH) activities (cytochrome P4501, CYP1 activity, primarily CYP1A1) for 23 of these compounds is related to their structural parameters. The two remaining compounds are the only chlorinated derivatives; these are inactive towards the AHH system and were excluded from the quantitative structure-activity relationship (QSAR) analysis. 2. The results of multiple regression analyses show that AHH activity is dependent on the energy of the highest occupied molecular orbital, E(HOMO), in a single variable expression for the 23 compounds. However, a three-variable expression involving superdelocalizabilities provides a more significant correlation with biological activity. 3. The inactivity of the two chlorinated derivatives can be rationalized in terms of their low degree of molecular planarity, as estimated by the area/depth2 parameter, which presumably precludes them from interaction with CYP1.

Animals↗

Mutagenicity of chrysene, its methyl and benzo derivatives, and their interactions with cytochromes P-450 and the Ah-receptor; relevance to their carcinogenic potency.

The genotoxicity in the Ames test of chrysene, of its six methyl and of two benzo-derivatives, and their ability to induce rat hepatic CYP1A and epoxide hydrolase activities, and stimulate their own bioactivation were determined. The primary objective is to provide a rationale for the higher carcinogenic potency of 5-methylchrysene when compared to that of the parent compound and the other methyl isomers. In the presence of Aroclor 1254-induced hepatic microsomes chrysene, its 5- and 4-methyl derivatives and to a lesser extent the 2- and 3-methyl derivatives and benzo[c]chrysene elicited a positive mutagenic response. Chrysene, all derivatives studied and especially benzo[c]chrysene were potent inducers of rat hepatic CYP1A1 activity as exemplified by the O-deethylation of ethoxyresorufin (30-180-fold when activities are expressed per nmol of total cytochrome P-450). All compounds studied displaced [3H]TCDD from the cytosolic Ah receptor at a concentration of 10(-10)-10(-9) M. Benzo[c]chrysene and to a lesser extent 6-methylchrysene were the only compounds capable of stimulating epoxide hydrolase activity, but the effect was modest. None of the compounds studied could induce its own activation to mutagens in the Ames test. The present findings indicate that the higher carcinogenic potency of 5-methylchrysene cannot be related to its mutagenic potential or its ability to enhance its own activation through induction of CYP1A1 and epoxide hydrolase activities.

Animals↗

The metabolism and activation of 15,16-dihydrocyclopenta[a]phenanthren-17-one by cytochrome P-450 proteins.

The in vitro metabolism and activation to mutagens of 15,16-dihydrocyclopenta[a]phenanthren-17-one (CPP-17-one) were investigated using hepatic preparations from rats pretreated with prototype inducers of the cytochrome P-450-dependent mixed-function oxidases. Aroclor 1254-induced microsomes were the most effective metabolisers of this compound, the major metabolites being oxidation products of the bay region A ring. To a lesser extent hydroxylation of the non-aromatic D ring occurred, the products being the 15- and 16-hydroxyderivatives. Oxidation of the A ring was also achieved with microsomes from benzo[a]pyrene-treated rats but not with those from rats treated with clofibrate, phenobarbitone, isoniazid, dexamethasone and CPP-17-one itself, where the metabolites were primarily the oxidation products of the D ring. When CPP-17-one was used as a promutagen in the Ames test, only microsomes from Aroclor 1254-treated rats could elicit a positive mutagenic response. When 3,4-dihydrodihydroxy-CPP-17-one, the precursor of the ultimate mutagen, was used as the promutagen, a positive response was observed with microsomes from Aroclor 1254- and benzo[a]pyrene-treated rats.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Effects of ether anaesthesia and fasting on various cytochromes P450 of rat liver and kidney.

Fed and fasted, male, Wistar albino rats exposed to light ether anaesthesia and killed immediately or after 30 or 120 min recovery were compared with non-anaesthetized rats for changes in liver and kidney cytochrome P450 (CYP) activities. In fed rats, liver total CYP (nmol/mg protein) decreased by 30% immediately after ether, but was restored to normal levels after 30 min recovery; in fasted rats, liver total CYP increased by 20% by fasting alone, then decreased by 65% immediately after ether, and recovered to only 70% of control at 2 hr after ether. Rat liver cytochrome P4501A (CYP1A; 7-ethoxyresorufin O-deethylase or EROD activity) and cytochrome P4502B (CYP2B; 7-pentoxyresorufin O-dealkylase or PROD activity) were decreased after ether anaesthesia, similar to those for total CYP. In contrast, rat liver cytochrome P4502E1 (CYP2E1), determined by p-nitrophenol hydroxylation, increased by 40% by ether anaesthesia alone, 70% by fasting alone and 140% by ether plus fasting; these increases were confirmed by the CYP2E1-mediated activation of nitrosopyrrolidine and by immunoblot analysis using antibody to CYP2E1. In rat kidney, losses of total CYP, CYP1A and CYP2B, and increases of CYP2E1, induced by ether anaesthesia, were much more marked in fasted (90% loss in total CYP, 30% increase in CYP2E1) than in fed rats (slight loss in total cytochrome P450, 30% increase in CYP2E1). As maximum losses of total CYP in liver of fasted rats exposed to ether occurred at the time of maximum increase of CYP2E1 and maximum rate of generation of reactive oxygen species (ROS), it is suggested that the increase of CYP2E1, resulting from its stabilization by fasting and ether, leads to generation of ROS, increase in lipid peroxidation and consequent loss of total CYP, associated with the hepatic and renal necrosis seen in ether intoxication and surgical trauma.

Anesthesia, General↗

Sex differences in the diabetes-induced modulation of rat hepatic cytochrome P450 proteins.

Sex differences in the diabetes-induced changes in hepatic cytochrome P450 proteins were investigated in rats treated with streptozotocin. Changes in specific cytochrome P450 proteins were monitored using diagnostic substrates and immunologically utilizing specific polyclonal antibodies. When expressed in terms of nmoles of total cytochrome P450, ethoxyresorufin O-deethylase activity was increased by treatment with streptozotocin, the extent of induction being the same in the two sexes. In contrast, lauric acid hydroxylase and ethylmorphine N-demethylase activities were induced only in the male rat. Finally, p-nitrophenol hydroxylase and pentoxyresorufin O-dealkylase were enhanced by the same treatment in both sexes, the effect being more pronounced in the male. These findings indicate that sex-specific changes in certain cytochrome P450 proteins exist in response to insulin-dependent diabetes but these cannot, however, be ascribed to sex differences in the severity of diabetes induced by streptozotocin since the degrees of hyperketonaemia and hyperglycaemia were the same in the two sexes. These are likely to reflect sex-specific differences in growth hormone and triglyceride levels in the diabetic animals.

Animals↗

Fractures of the frontal sinus: a rationale of treatment.

There is still controversy on the management of frontal sinus fractures, as the optimal method of treatment has not been developed yet. Based on experience with 71 patients we formed a protocol, the basic principles of which are outlined here. In cases of posterior wall fractures the sinus was either cranialised or it was obliterated down to the nasofrontal duct. Anterior table fractures were reduced, defects were reconstructed and the sinus was drained via the nose for 4-6 weeks. Autologous graft material was always used for all reconstructive purposes. Meningitis occurred directly after the operation in 2 patients and a mucopyocele of the sinus with osteomyelitis of the frontal bone 1.5 years postoperatively in another. No further early or long term sequelae originating from the sinus were seen.

Adolescent↗

Validation of a novel molecular orbital approach (COMPACT) for the prospective safety evaluation of chemicals, by comparison with rodent carcinogenicity and Salmonella mutagenicity data evaluated by the U.S. NCI/NTP.

The molecular dimensions and electronic structures of 100 chemicals of structural diversity have been determined from molecular orbital calculations and molecular mechanics. From these parameters of molecular structure, those chemicals that are likely substrates of cytochromes P4501 and P4502E have been identified by the computer-optimized molecular parametric analysis of chemical toxicity (COMPACT) programme, and their potential toxicity, mutagenicity and carcinogenicity evaluated. The degree of correlation between COMPACT prediction of toxicity and rodent two species life-span carcinogenicity data is estimated to be 92%, and between COMPACT and Salmonella mutagenicity (Ames test) data is 64%. Anomalous rodent carcinogens are rationalized on the basis of biochemical mechanisms of metabolism, genotoxicity and carcinogenicity. Correlation of the Ames test data with rodent carcinogenicity data was 64%, but correlation of COMPACT plus Ames data versus rodent carcinogenicity data provided the highest correlation of 94%.

Animals↗

Contribution of phenolic and quinonoid structures in the mutagenicity of the edible mushroom Agaricus bisporus.

The objectives of this work were to establish the contribution of agaritine in the mutagenicity of ethanolic extracts from Agaricus bisporus and to examine the possible involvement of phenolic and quinonoid compounds in the mutagenic response to mushrooms. The mutagenic profile of agaritine in the Ames test, in the absence of an activation system, was different from that of the mushroom ethanolic extracts. Incorporation of rat hepatic cytosolic fractions as the activation system increased the mutagenicity of the mushroom ethanolic extracts in Salmonella typhimurium strain TA 104 but did not influence the mutagenicity of agaritine. It was concluded that agaritine is not the principal mutagenic component in the mushroom. The cytosol-induced mutagenicity of the mushroom extracts required NADPH, and was inhibited by dicoumarol and menadione. Moreover, the mutagenic response in the presence of cytosolic fractions was inhibited by superoxide dismutase, catalase, glutathione and dimethyl sulfoxide, thus implicating reactive oxygen species. Finally, tyrosinase, the enzyme converting mushroom phenols to quinones, increased the mutagenicity of the mushroom extracts. Collectively, the above results indicate that phenolic and quinonoid compounds, presumably through the generation of reactive oxygen species, may play a significant role in the mutagenicity of mushroom extracts.

Animals↗

The in vitro metabolic activation of the 11-trifluoromethyl analogue of the potent carcinogen 15,16-dihydro-11-methyl-cyclopenta[a]-phenanthren-17-one to mutagens.

A strongly electronegative, bay-region analogue of the potent carcinogen 15,16-dihydro-11-methylcyclopenta[a]phenanthren-17-one, namely 15,16-dihydro-11-trifluoromethylcyclopenta[a]phenanthren-17-one, is mutagenic to Salmonella typhimurium TA100. Also it is metabolized at the 1,2- and 3,4-positions in the A-ring as well as C-15 in the D-ring to give 3,4-dihydroxy-3,4,15,16-tetrahydro-11-trifluoromethyl- cyclopenta[a]phenanthren-17-one as the only mutagenic metabolite. In these respects its behaviour is closely similar to that of the 11-methyl compound, suggesting that the electronic nature of the bay-region substituent is rather less critical than its spatial configuration in influencing metabolism to genotoxic intermediates. It remains to be seen, however, whether the trifluoromethyl compound is also a carcinogen.

Animals↗