Search PubMed⌕ Search

Biomedical subjects

C Ioannides

Publications and source records attributed to C Ioannides.

At least 127 records · Page 7Linked to original sources

Nasolabial flap for the reconstruction of defects of the floor of the mouth.

Nasolabial flaps can be used for local reconstruction of moderate defects of the anterior oronasal structures. In a 10-year period 59 flaps were used in 43 patients to cover defects of the nose, lip and anterior structures of the oral cavity (floor of mouth, tongue, alveolar process). The fate of 26 of the flaps used for reconstruction of defects of the floor of the mouth in 16 patients, were reviewed. All flaps, 6 uni- and 10 bilateral, were inferiorly based. Dehiscence, which occurred twice, and loss of one flap were the main complications. The indications and the technique are discussed. The nasolabial flap is a good alternative for the reconstruction of moderate defects of the floor of the mouth, especially in older patients and even after high doses of preoperative radiotherapy.

Aged↗

Agaritine does not mediate the mutagenicity of the edible mushroom Agaricus bisporus.

Ethanolic extracts of the edible mushroom Agaricus bisporus displayed a direct-acting mutagenic response in various Salmonella typhimurium strains, TA104 being clearly the most sensitive. Incorporation of an activation system derived from the liver of mice, hamsters or Aroclor 1254-induced rats failed to increase the mutagenic response. The mutagenic response of ethanolic extracts from various types of mushroom, containing different levels of agaritine (range 0.3-6.5 g/kg fresh weight), was very similar and did not correlate with the agaritine levels. Moreover, use of gamma-glutamyl transpeptidase, the enzyme catalysing the activation of agaritine, as an activation system did not enhance the mutagenicity of the mushroom ethanolic extracts. It is concluded that agaritine is not responsible for the mutagenicity of mushroom extracts.

Animals↗

The 1990 Pharmaceutical Manufacturers Association of Canada keynote lecture. The role of the cytochromes P450 in the detoxication and activation of drugs and other chemicals.

The roles of the cytochromes P450 are reviewed, with emphasis on their involvement in the detoxication of drugs and chemicals, the activation of carcinogens, and the toxicity of drugs. Cytochromes P450 have different characteristics. P450I mostly activates carcinogens and other chemicals by forming oxygenated reactive intermediates, which are also associated with the formation of neoantigens and immunotoxicity. P450IIE has a propensity to form oxygen radicals, which are cytotoxic and carcinogenic; other cytochromes generate oxygen radicals by futile cycling when activated by difficulty metabolized substrates. Novel procedures for the safety evaluation of chemicals are described; COMPACT is based on the computer graphic determination of the spatial conformation and electronic structure of chemicals to enable their activating cytochromes P450, and hence their toxicity, to be established; ENACT is based on quantifying the induction of individual cytochromes P450, since the extent of induction of P450I, and possibly other activating cytochromes, is directly related to the carcinogenic potential of the chemical.

Animals↗

["Quadrangular" Le Fort II osteotomy for hypoplasia of the midface. Apropos of 28 cases].

In 1971, Kufner described the "quadrangular" osteotomy of the midface, which he used to correct asymmetry in patients with recession of the midface and a normal nasal skeleton. We have used this method in 28 patients, 5 women and 23 men. The surgical technique is described and the indications, the approach and the stability of the postoperative results are discussed. The conclusion is that the "quadrangular" osteotomy is a very satisfactory method for the aesthetic and functional rehabilitation of a certain group of midfacial anomalies.

Adult↗

Haloalkylamine-induced renal papillary necrosis: a histopathological study of structure-activity relationships.

The haloalkylamine 2-bromoethanamine (BEA) causes necrosis of renal papillae of rats within 24 h of a single intraperitoneal dose greater than or equal to 100 mg/kg. Nine structural analogues of BEA, differing by halide substitution, alkyl chain elongation or amine substitution, were tested for their ability to induce renal papillary lesions in rats. Three compounds (2-chloroethanamine, 3-bromopropanamine and 2-chloro-N,N-dimethylethanamine) induced lesions which were morphologically indistinguishable from those of BEA. All the molecular structural variations investigated reduced papillotoxicity compared with BEA, the parent compound. A variety of non-renal lesions including hepatic, adrenal, testicular and lymphoid necroses were also encountered. The most toxic compound was 2-fluorethanamine, a 5 mg/kg dose of which was lethal and induced renal corticomedullary mineralization and centrilobular hepatic necrosis. One analogue, 3-bromo-2-hydroxypropanamine, caused rapid and extensive necrosis of the adrenal pars fasciculata and reticularis, simulating human Waterhouse Friderichsen syndrome. The three newly identified renal papillotoxins are all theoretically capable of generating direct-acting alkylating species in solution and their activity as direct-acting mutagens in the Ames bacterial mutagenicity test with TA100 (indicating base pair substitution) closely correlated with their potency as papillotoxins. We therefore hypothesize that non-enzymically formed direct-acting alkylating species mediate these papillary lesions, and that the target selectivity of haloalkylamine toxicity most probably results from the accumulation of these alkylating species in papillary tissue.

Animals↗

A retrospective study of the molecular toxicology of benoxaprofen.

The molecular and electronic structural characteristics of the hepatotoxic and phototoxic anti-rheumatic drug, benoxaprofen, indicate that it falls in the interface between the area of parametric space associated with substrates of cytochrome P450I and that associated with substrates of other cytochromes P450, combining fairly planar molecular geometry (area/depth2 = 2.5) with relatively low activation energy (delta E = E(LEMO) - E(HOMO) = 12.0). Benoxaprofen may therefore be a substrate for cytochrome P450I so that, like many other P450I substrates, it may be oxygenated to a reactive intermediate, thereby causing hepatotoxicity. Benoxaprofen also has a molecular structure closely similar to that of clofibrate and may thus be a possible substrate for cytochrome P450IV and result in hepatic peroxisomal proliferation. The structural similarity of benoxaprofen with the furocoumarin, psoralen, is associated with its known phototoxicity. QSAR analysis of the acute toxicities and anti-inflammatory activities of 16 analogues of benoxaprofen has been undertaken to identify a drug candidate likely to have similar anti-inflammatory activity to benoxaprofen but with lower toxicity.

Liver↗

Induction of cytochrome P450III and P450IV family proteins in streptozotocin-induced diabetes.

The effect of insulin-dependent diabetes on the hepatic microsomal activity of cytochrome P450III and P450IV family proteins was investigated in rats pretreated with streptozotocin. In order to discern between the effects of the diabetogen per se and those of the ensuing diabetes, streptozotocin-treated rats received in addition either nicotinamide to prevent the onset of diabetes or daily treatment with insulin to antagonize the effects of diabetes. Streptozotocin-treated rats displayed higher ethylmorphine and erythromycin N-demethylase activities and lauric acid hydroxylase activity. Increases were also detected immunologically by using monospecific polyclonal antibodies against the P450III and P450IV families. All effects were prevented by nicotinamide and effectively antagonized by insulin. In order to evaluate the role of the ketone bodies in the diabetes-induced increases in the above activities, rats were rendered hyperketonaemic by dietary administration of medium-chain triacylglycerols. These hyperketonaemic animals displayed high laurate hydroxylase activity and P450IV apoprotein levels, similar to those seen in the diabetic animals. Hyperketonaemia induced by dietary means caused a modest increase in the demethylation of erythromycin and had no significant effect on the N-demethylation of ethylmorphine. Furthermore, no marked increases were evident in the P450III apoprotein levels in the hyperketonaemic animals. It is concluded that insulin-dependent diabetes induces proteins of the P450III and P450IV families, and that the hyperketonaemia that accompanies diabetes is largely responsible for the changes in the latter family.

Animals↗

Feprazone: an inducer of the P450 II B family of proteins in the rat.

The ability of feprazone to induce the hepatic microsomal mixed-function oxidases was investigated in the rat, with emphasis being placed on the nature of the cytochrome P-450 family induced. Treatment with feprazone enhanced the p-hydroxylation of aniline and the dealkylations of benzphetamine and pentoxyresorufin but had no effect on the O-deethylation of ethoxyresorufin. The same treatment had no major effect on total cytochrome P-450 levels but increased the spectral interaction of metyrapone with reduced cytochrome P-450. Immunoblots employing monospecific polyclonal antibodies revealed that feprazone induces the apoprotein levels of the P450 II B, but not of the P450 I, family. It is concluded that feprazone is an inducer of the rat hepatic mixed-function oxidase system showing selectivity toward the P450 II B family.

Animals↗

Hyperketonaemia markedly modulates the metabolic activation of chemical carcinogens.

Male Wistar albino rats were rendered hyperketonaemic by oral administration of medium chain triacylglycerols or by a single intraperitoneal injection of the diabetogenic agent streptozotocin. Hepatic post-mitochondrial preparations from these animals were employed as activation systems in the Ames mutagenicity test. Activation systems from both groups of hyperketonaemic rats were more efficient than those of control rats in metabolically converting the precarcinogens Glu-P-1, Trp-P-1, Trp-P-2, N-nitrosopiperidine and N-nitrosopyrrolidine to mutagens. In contrast, when 2-aminofluorene was used as the precarcinogen, the preparations from the hyperketonaemic animals were less efficient than controls in activating this carcinogen. In all cases, the preparations from streptozotocin-treated rats displayed a more pronounced effect than those from triacylglycerol-treated rats, possibly reflecting the greater extent of hyperketonaemia in the former group. It is concluded that hyperketonaemia modulates the bioactivation of chemical carcinogens.

3-Hydroxybutyric Acid↗

The induction of P450 I proteins by aromatic amines may be related to their carcinogenic potential.

The hypothesis has been put forward that genotoxic aromatic amines which induce the P450 I family of haemoproteins, the major enzyme involved in their bioactivation, are more likely to be carcinogenic when compared to those chemicals that fail to do so. Induction of the hepatic P450 I family of proteins by carcinogenic aromatic amines and their non-carcinogenic isomers and analogues was investigated in the rat and correlated to their carcinogenic potential. The activity of the P450 I A1 protein was monitored by the O-deethylation of ethoxyresorufin and of the P450 I A2 by the activation of the premutagen Glu-P-1 to mutagenic intermediates in the Ames test. Results were always confirmed immunologically in Western blots employing antibodies to rat P450 I A1 which recognize both proteins of the P450 I family. With all groups of chemicals used in the present study, the members displaying carcinogenicity were always the more potent inducers, while the non-carcinogenic isomers or analogues displayed little or no induction. It appears that a relationship exists between the carcinogenicity of aromatic amines and their ability to induce hepatic P450 I activity.

Amines↗

Mechanism of the in vitro antimutagenic action of retinol.

The antimutagenic action of retinoids against three amino-imidazoazaarene pre-carcinogens, i.e. 2-amino-3-methylimidazo(4,5-f)quinoline (IQ), 2-amino-3,4-dimethylimidazo(4,5-f)quinoline (MeIQ) and 2-amino-3,8-dimethylimidazo(4,5-f)quinoxaline (MeIQx), was investigated using the Ames test and hepatic activation systems derived from rats pretreated with Aroclor 1254. Both retinol and retinal, when incorporated into the S9 activation system, gave rise to a concentration-dependent decrease in the mutagenicity of all three mutagens, retinol being generally the more effective. Retinol suppressed the mutagenic activity of IQ even when isolated microsomes were used as activation systems. Moreover, retinol gave rise to a concentration-dependent inhibition of the microsomal dealkylations of pentoxy- and benzyloxy- and, especially, ethoxy-resorufin, but had no effect on the NADPH-dependent reduction of cytochrome c. Exposure of the bacteria to retinol with subsequent removal of the vitamin did not influence the mutagenicity of IQ. It is concluded that retinoids suppress the mutagenicity of aminoimidazoazaarenes and this is achieved through inhibition of their cytochrome P450-dependent metabolic activation. Retinol is a non-selective in vitro inhibitor of the hepatic cytochrome P450-dependent mixed function oxidase system as predicted by a computer graphic analysis of its molecular shape.

Animals↗

A prospective toxicity evaluation (COMPACT) on 40 chemicals currently being tested by the National Toxicology Program.

The computer-optimized molecular parametric analysis of chemical toxicity (COMPACT) procedure has been used to determine the molecular conformation and electronic structure of a series of 40 chemicals (out of a total of 44). The procedure can evaluate whether they interact with the active site of cytochrome P450 I or to the binding site of the Ah receptor, and hence to manifest carcinogenicity/toxicity. This is in response to the recent publication by Tennant et al. and their invitation to participate in a prospective identification of potential mutagenicity/carcinogenicity of these 44 chemicals. Correlation of COMPACT with potential genotoxicity was 25/40 (63%); COMPACT also predicted toxicity/carcinogenicity in 10 chemicals (25%) considered to be potentially non-genotoxic (naphthalene, promethazine, resorcinol, p-nitrophenol, tricresyl phosphate, bis(bromoethyl) propanediol, 3,4-dihydrocoumarin, theophylline, triamterene and chloramine), and predicted the absence of toxicity in four chemicals (10%) considered to be potentially genotoxic (methyl bromide, hydrazoic acid, 2,3-dibromo-1-propanol and 1,2,3-trichloropropane).

Binding Sites↗

Current problems in the evaluation of chemical safety.

Current problems in the safety evaluation of chemicals, including species differences in chemical toxicity, the difficulty in predicting whether metabolism will result in detoxication or activation, the different metabolic roles of tissue cytochromes P-450, and the significance of oxygen radical formation, are reviewed. A number of specific chemical problems are discussed, including the safety evaluation of benzene, methylene dichloride, DDT, dieldrin, TCDD, the PCBs, and the hepatotoxic drugs: benoxaprofen and tienilic acid. Two novel methods for the prospective evaluation of chemical toxicity are described, namely (i) computer optimized parametric analysis for chemical toxicity (COMPACT) based on the computer graphic determination of chemical structure and its relationship to specific cytochromes P-450 and hence toxicity, and (ii) enzyme activation in chemical toxicity (ENACT) based on the induction of specific cytochromes P-450 by the chemical, from which toxicity can be predicted.

Animals↗