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F Feo

Publications and source records attributed to F Feo.

At least 37 records · Page 2Linked to original sources

Modulatory mechanisms of chemical carcinogenesis: the role of the NADPH pool in the benzo(a)pyrene activation.

Human lymphocytes and human skin fibroblasts isolated in vitro from subjects carrying the Mediterranean variant of glucose-6-phosphate dehydrogenase (G6PD) exhibit an 86-87% decrease of this enzymatic activity. This is coupled with 51% and 61% decreases of the NADPH/NADP+ ratio in the G6PD-deficient human lymphocytes (HL) and human skin fibroblasts (HSF), respectively. There also occurs a 63-67% decrease of the hexose monophosphate shunt (HMS) in the deficient cells. Incubation with 0.1 mM methylene blue stimulates the HMS of normal HL 15-fold and that of deficient lymphocytes only 2.4-fold. These figures are, respectively, 7 and 2.2 in the case of HSF. This behavior of G6PD-deficient HL and HSF is coupled with an increase of the resistance to the cell death induced by benzo(a)pyrene (BP). This effect is mimicked by the incubation of normal HSF with dehydroepiandrosterone (DEA) which strongly inhibits G6PD. In contrast, no differences between normal and deficient HSF occur as a result of the effect of methylnitrosourea (MNU), a carcinogen that does not need metabolic activation. The NADPH-cytochrome c (P450) reductase of G6PD-deficient HL and HSF homogenates becomes lower than that of controls when endogenous G6PD and exogenous glucose 6-phosphate (G6P) and NADP+ are used as a hydrogen donor system in place of NADPH. Normal and G6PD-deficient HL, having comparable BP-hydroxylating activities, in the presence of exogenous G6P, NADP+, and G6PD, were studied to determine the effect of the absence of exogenous G6PD in the reaction system.(ABSTRACT TRUNCATED AT 250 WORDS)

Benzo(a)pyrene

Modulatory effect of glucose-6-phosphate dehydrogenase deficiency on benzo(a)pyrene toxicity and transforming activity for in vitro-cultured human skin fibroblasts.

Human skin fibroblasts isolated in vitro from subjects carrying the Mediterranean variant of glucose-6-phosphate dehydrogenase exhibit an 85% decrease of this enzymatic activity. There is a 26% and a 94% decrease of the hexose monophosphate shunt and of the reduced nicotinamide adenine dinucleotide phosphate/nicotinamide adenine dinucleotide phosphate ratio, respectively. Incubation with 0.1 mM methylene blue activates the hexose monophosphate shunt 7 times that of normal fibroblasts and only 2.2 times that of glucose 6-phosphate-deficient cells. This behavior is coupled with an increase of the resistance to cell death induced by benzo(a)pyrene, a carcinogen, the activation of which proceeds through a reduced nicotinamide adenine dinucleotide phosphate-dependent arene oxide formation. In contrast, no difference between the normal and the deficient fibroblasts exists as regards the toxic effect of methylnitrosourea, a carcinogen that does not need metabolic activation. A growth-retarding effect of benzo(a)pyrene was observed in both normal and deficient cells during 9 days in vitro. This effect is lower in the fibroblasts carrying the Mediterranean glucose-6-phosphate dehydrogenase variant. Glucose-6-phosphate dehydrogenase deficiency protects human fibroblasts against the benzo(a)pyrene-induced in vitro transformation. This effect is mimicked by the incubation of normal fibroblasts with dehydroepiandrosterone, a strong inhibitor of glucose-6-phosphate dehydrogenase. The deficiency of this enzymatic activity, either genetically transmitted or induced by dehydroepiandrosterone, is coupled with a reduced rate of benzo(a)pyrene conversion to water-soluble metabolites by human skin fibroblasts.

Benzo(a)pyrene

The subcellular distribution and properties of aldehyde dehydrogenase of hepatoma AH-130.

Aldehyde dehydrogenase subcellular distribution and activity were studied in the Yoshida hepatoma AH-130 and rat liver. NAD+- and NADP+-dependent dehydrogenase activities were lower in all hepatoma subfractions (except the cytosol) than in liver subfractions. In the presence of 0.025 mM substrate 78-80% of the liver NAD+- or NADP+-dependent aldehyde dehydrogenase was found in the mitochondria. With 10 mM substrate the enzyme activity was primarily in the mitochondria and microsomes. In the hepatoma a sharp increase of the soluble aldehyde dehydrogenase (either NAD+- or NADP+ dependent) was observed at all substrate concentrations. The Km of the different isoenzymes (either identified by their localization or coenzyme dependency) were of the same order for liver and hepatoma. However, a high Km enzyme was present in liver mitochondria outer membranes but not in hepatoma. Hepatoma acetaldehyde dehydrogenase was inhibited, as was the liver enzyme, by diethyldithiocarbamate. The return of activity was slower for the hepatoma and neonatal liver than for the adult liver enzyme.

Acetaldehyde

Effect of glucose-6-phosphate dehydrogenase deficiency on the benz(a)pyrene toxicity for in vitro cultured human skin fibroblasts.

Human skin fibroblasts, isolated in vitro, from donors carrying the Mediterranean variant of glucose-6-phosphate dehydrogenase, exhibit a sharp decrease of hexose monophosphate shunt and NADPH/NADP+ ratio when compared to the fibroblasts from normal donors. This behavior is coupled to an increase of the resistance to cell death and growth inhibition induced by benz(a)pyrene, whose activation proceeds through the NADPH-dependent arene oxide formation. No differences were observed in the toxic effects of methylnitrosourea, a carcinogen that does not need metabolic activation, on normal and variant fibroblasts.

Benzo(a)pyrene

Phospholipid composition of inner and outer mitochondrial membranes isolated from Yoshida hepatoma AH-130.

Outer and inner membranes isolated from hepatoma AH-130 and rat liver mitochondria were used to study phospholipid composition. The phosphatidylethanolamine content increased and that of phosphatidylcholine decreased in ;whole mitochondria and isolated membranes. The ratio between the 2 phospholipids increased 47% and 117% in the inner and outer membranes respectively. A small decrease of diphosphatidylglycerol also occurred in the hepatoma mitochondria inner membrane. In contrast to the results of previous work, no sphingomyelin was found in hepatoma mitochondria and isolated membranes.

Animals

[Malnutrition].

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Deficiency Diseases