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F Antoni

Publications and source records attributed to F Antoni.

At least 19 recordsLinked to original sources

Accumulation of S-D-lactoylglutathione and transient decrease of glutathione level caused by methylglyoxal load in isolated hepatocytes.

Methylglyoxal is converted to D-lactic acid through a conjugation with glutathione and S-D-lactoylglutathione is an intermediate of this pathway. In isolated hepatocytes prepared from fed mice incubated without nutrients (glucose, pyruvate and amino acids) the formation and release of S-D-lactoylglutathione and also a continuous lowering of cellular glutathione were demonstrated upon addition of methylglyoxal (20 mM). Under these incubation conditions, the glutathione content of the cells decreased in the controls. On the other hand, in hepatocytes incubated in a medium supplemented with the above-mentioned compounds an accumulation of S-D-lactoylglutathione and a transient decrease of glutathione were shown after addition of methylglyoxal. Under these experimental circumstances the glutathione content of the cells was preserved. Buthionine sulfoximine--an inhibitor of glutathione synthesis--prevented the restoration of glutathione level in hepatocytes observed in the presence of methylglyoxal; emetine--an inhibitor of protein synthesis--was ineffective. It is suggested that increased methylglyoxal formation may have a role in alterations of glutathione metabolism under conditions when serum acetone is increased and methylglyoxal production from acetone is elevated.

Acetone

[The effect of low density lipoprotein (LDL) on NO formation and on arginase activity in mouse peritoneal macrophages].

A large body of the evidence is available to the causative relationship between the elevated blood plasma concentrations of LDL and the atherogenesis. The oxid-LDL (modified LDL) is internalized more rapidly by the macrophages, and there is now substantial evidence that the modified LDL is actually present in atherosclerotic lesions. Recently it has been proved that the endothel cells and monocyta/macrophages generate nitric oxide (NO) from arginine, and that the LDL inhibits the formation of NO in endothel cells. The authors found that the human LDL in vitro exerts an inhibitory effect on the formation of NO in murine PED (peritoneal exudate cells) and synchronously severalfold increasing of the arginase activity in the culture media. Both effects of LDL proved to be dose dependent and the oxid-LDL has been found to be more effective. The increased activity of arginase provides a very likely explanation for the reducing of NO production in macrophage treated by LDL. The reducing or blocking of NO-formation causes a local vasocontraction which induces clinical symptoms.

Animals

[The role of endogenous free radicals of nitric oxide (NO)].

The role of endothelium in vasodilatation has only emerged in the last ten years. It was observed that many endogenous substances from endothelial cells triggered the release of a substance which was named endothelium-derived relaxing factor (EDRF). Later has been showed that NO accounted for most if not all of the biological activity of EDRF. The endothelial synthesis of NO originates from L-arginine and could be blocked by the methyl analogue (e.g. NG-mono-methyl-L-arginine). Beside endothelial cells NO could be identified in several mammalian tissues including brain, hepatocytes, lung and macrophages. NO mediated the control of vascular tone and blood pressure via vascular smooth muscle cells which exert relaxation and constriction of blood vessels. It is considered NO represents signal for the guanylate cyclase system which regulates the intracellular concentration of Ca2+ ions. It is well known that the concentration of Ca2+ ions play discern direct role in the relaxation and contraction of smooth muscle, respectively.

Endothelium

The effect of A23187 on glucose production from methylglyoxal and pyruvate in isolated murine hepatocytes.

1. A23187 increased the glucose production from methylglyoxal in isolated hepatocytes, and maximal stimulation was obtained at 10(-6) M. The effect of A23187 was dependent on the presence of Ca2+. 2. Glucose production from pyruvate (less than 1 mM) in isolated hepatocytes was stimulated by A23187 in the presence of 2.5 mM Ca2+ and was depressed at pyruvate concentrations above 1 mM. Both the virtual Km and the virtual Vmax of glucose production from pyruvate were decreased by A23187.

Animals

Inhibition of gluconeogenesis, ureogenesis and drug oxidation by redox cycler quinone in isolated mouse hepatocytes.

1. The effect of a redox cycler and arylator (menadione) and a pure arylator quinone (benzoquinone) was studied on different NADPH generating and consuming processes in isolated mouse hepatocytes. 2. Menadione inhibited gluconeogenesis from alanine but not from fructose or glycerol. 3. Drug oxidation measured as aniline hydroxylation and aminopyrine N-demethylation could be inhibited by menadione in microsomal membrane and in isolated hepatocytes both from fed or fasted animals. 4. Ureogenesis in isolated hepatocytes from fed mice could not be inhibited even by high concentration of menadione, while in cells from fasted animals menadione was inhibitory at high concentration in the presence of gluconeogenic precursor and at lower concentration in the absence of it. 5. Benzoquinone did not inhibit the above mentioned processes.

Aniline Hydroxylase

Inverse relation in the de novo arginase synthesis and nitric oxide production in murine and rat peritoneal macrophages in long-term cultures in vitro.

1. The de novo synthesis of arginase was much higher in murine than in rat peritoneal macrophages. This process was inhibited irreversibly by protein synthesis inhibitors and reversibly by glycolysis blockers. 2. Rat macrophages produce more nitric oxide (NO) than murine cells. NO production was inhibited by the inhibitors of protein synthesis or glycolysis. 3. The loading of macrophages by exogenous arginine for 24 hr in vitro resulted in the increase of arginase and nitrite in macrophages to different extents. 4. No great differences in lysozyme production was observed. 5. The proportion of arginine taken up and incorporated is contrasted in murine and rat macrophages.

Amino Acids

Differences and similarities in the sensitivity of lymphocytic and macrophage plasma membrane to deoxycholate.

Human tonsillar lymphocytes separated on nylon wool and rat macrophages showed different sensitivity to deoxycholate (DOC) treatment at a low (0.24 mM, 0.01%) concentration for 3 h. The T cell-enriched fraction was stimulated more readily by PHA whereas the B-cell enriched fraction lost its adherence and a decrease of chromium binding capacity was observed after the detergent treatment. Rat peritoneal macrophages under the same conditions lost their chromium label and lysozyme content, whereas their adherence and phagocytic capacity decreased dramatically without affecting their binding capacity. Higher sensitivity to the detergent was observed in peritoneal macrophages compared to tonsillar lymphocytes when various DOC concentrations were used. These findings proved that this low concentration DOC treatment, at least in macrophages, touched mainly the adhesive proteins and the dynamics of the membrane and not its receptor-associated properties.

Animals

Effect of methylglyoxal on glucose formation, drug oxidation and glutathione content in isolated murine hepatocytes.

The first stage in the formation of glucose from acetone involves two oxidation steps catalyzed by isozymes of the cytochrome P-450 II E1 gene subfamily; methylglyoxal formed this way is further converted to pyruvate by a reversible conjugation with reduced glutathione. The effect of methylglyoxal on glucose formation, oxidation of aminopyrine, aniline and on reduced glutathione content was investigated in isolated hepatocytes prepared from (i) fasted or (ii) fasted and acetone (known to induce isozymes of P-450 II E1 gene subfamily) pretreated mice. Glucose formation and drug oxidation were increased by methylglyoxal at concentrations below 1 mM, but were severely decreased above 1 mM. Methylglyoxal also decreased protein synthesis at concentrations above 1 mM. If the addition of methylglyoxal was combined with that of other gluconeogenic precursors and glucose the initial increasing effect on drug oxidation was moderated or diminished and the decreasing effect (at high concentrations) was enhanced. The glutathione content of the cells was decreased by methylglyoxal in a concentration dependent manner. Acetone pretreatment of mice also resulted in a decreased glutathione content of the liver. Based on these observations it is assumed that methylglyoxal has contrasting effects in hepatocytes, and can contribute to the disturbed metabolism under circumstances when the acetone production is elevated.

Acetone

The 38 kDa Ca2+/membrane-binding protein of pig granulocytes needs a high Ca2+ concentration to be phosphorylated by protein kinase C.

The 38 kDa Ca2+/membrane-binding protein reported to be the dominant substrate of protein kinase C in the extracts of pig neutrophil granulocytes was purified partially and its phosphorylation was investigated. In pig granulocytes type II protein kinase C was the major isoform, while type III isoenzyme was present only as a minor activity. Phosphorylation of the 38 kDa protein was performed with rat brain protein kinase C. Each of the three isoenzymes purified from rat brain was able to phosphorylate this protein, though on the conditions used in our experiments it was phosphorylated most intensively by type II protein kinase C. A phospholipid-dependent, but Ca2(+)-independent, form of protein kinase C was demonstrated with the aid of a synthetic oligopeptide substrate. Phosphorylation of the 38 kDa protein by the Ca2(+)-independent enzyme proceeded exclusively in the presence of Ca2+. The Ca2+ concentration necessary for the phosphorylation of the 38 kDa by either form of protein kinase C was by orders of magnitude higher than that required for the activation of protein kinase C.

Amino Acid Sequence

Cytometric analysis of DNA replication inhibited by emetine and cyclosporin A.

DNA staining methods based on aspecific interactions with dye molecules have been replaced by an immunofluorescent approach to measure DNA replication. Biotin-11-dUTP was incorporated into permeable thymocytes isolated after emetine or cyclosporin A treatment of mice. Active sites of DNA replication were amplified based on biotin-avidin interaction and verified under fluorescent microscope. Cytometry of fluorescent images allow the direct measurement of replicating DNA without aspecific detection of total cellular DNA. Cytometric analysis of replication revealed that emetine acts at the early S phase, while cyclosporin A blocks in vivo DNA synthesis at mid S phase.

Animals

Differences in the arginase activity produced by resident and stimulated murine and rat peritoneal macrophages.

1. Murine macrophages showed a considerably higher in vitro arginase production in short time cultures than rat peritoneal cells. 2. The in vivo stimulation with casein or thioglycollate resulted in an enhanced in vitro enzyme production in mice. 3. The adherence is not the condition of the enzyme production. 4. The difference between the two species cannot be explained by the lack of bivalent ions, the absence of energy supply, proteolysis, the low number of macrophages or by the different cell types of the peritoneal exudate of mouse and rat. 5. The lysozyme production of murine and rat peritoneal macrophages was also investigated and no difference was observed between the two species.

Animals

Accumulation of phenols in isolated hepatocytes after pretreatment with methylglyoxal.

The effects of a single intraperitoneal injection of methylglyoxal (50-800 mg/kg body wt.) in mice were investigated in the liver after 24 h. The administration of methylglyoxal (400 mg/kg body wt.) resulted in an increase in aniline hydroxylase activity in liver microsomes. At the same time an accumulation of p-amino-phenol, the hydroxylated product of aniline, was observed in isolated hepatocytes upon addition of aniline similarly to conditions (starvation, diabetes mellitus, pyrazole pretreatment) when aniline hydroxylase was induced. Methylglyoxal also decreased the reduced glutathione content in the liver, while the activity of serum glutamate pyruvate transaminase was increased, suggesting the onset of liver injuries. It is assumed that the increased oxidation of aniline hydroxylase combined with decreased glutathione levels after methylglyoxal treatment favours the formation of potentially hazardous phenol derivatives in the liver.

Aminophenols

Morphological studies on the effect of L-leucine methyl ester on mouse peritoneal macrophages in vitro.

Mouse peritoneal macrophages (MO) were treated in culture with 5 mM L-leucine methyl ester (L-Leu-OMe), for 5, 10, 20, 40, and 60 min. The treatment resulted in rapid vacuolisation of the cytoplasm due to the dilatation and disruption of lysosomes. Autophagy caused by lysosomal enzymes destroyed most of the cytoplasmic organelles by 40 minutes after L-Leu-OMe treatment, but the cell membrane and nucleus were in many MOs resistant to the damage. 60 min after L-Leu-OMe treatment most of the MOs were killed. It is supposed that the disruption of the lysosomes is caused by formaldehyde produced by the hydrolysis of L-Leu-OMe.

Animals

[DNA-based diagnosis].

DNA diagnostics is rapidly developing and gaining ground especially in the identification of genetic, malignant and infectious diseases as well as in the identification of individuals by means of DNA finger-printing. Present review deals with these and with the technical aspects of DNA diagnostics. The rapidly expanding field of diagnostics is contrasted by gene therapy which is recently not yet adaptable for human use.

Antibodies, Antinuclear

Effect of emetine on the plasma cell population of chicken's gland of Harder.

The emetine effectively abolished the plasma cell population in the chicken's gland of Harder by day 3 of treatment. The plasma cell content regenerated by day 5 following emetine injection, possibly from a metabolically inactive, resting B cell population which was resistant to the emetine treatment. By day 7 extracellular substance in a very large quantity appeared among the plasma cells and epithelial cells which might represent a hyperactive plasma cell secretion. The changes in the circulating antibodies measured by hemagglutination well-correlated with the plasma cell content in the gland of Harder. The gland of Harder (GH) is an accessory lacrimal gland. Its main function is to lubricate the nictitating membrane and keep the surface of the eyeball wet. The presence and regulatory function of cAMP dependent histone kinase was showed. Since it has been published that in chicken the interstitium of this gland contains a proper amount of plasma cells, this observation called the attention of many investigators to study the role of GH in the immune response. The B cell maturation in the chicken GH has been studied. The surface marker studies have proved that beside the B cells the gland contains functionally adequate number of T cell which exert stimulatory effect on B cells to promote their transformation to plasma cells. In addition to T and B cells small number of macrophages also occur. In the 9 H the number of plasma cells is age dependent. At hatch only a few plasma cells occur in the interstitium of the gland but by 3 weeks of age they become predominant. Different isotypes of immunoglobulins are secreted by these plasma cells.

Animals

Bilirubin and morphine glucuronidation is not inhibited by a cyclic-AMP mediated mechanism in murine liver.

Several reactions of the Ist and IInd phase of biotransformation have been reported to be under a negative cyclic-AMP dependent control. Conjugation of bilirubin and glucuronidation of morphine were investigated in isolated mouse hepatocytes and in mouse hepatocyte microsomes, respectively. N6,O2-dibutyryl cyclic-AMP did not inhibit conjugation of bilirubin in isolated hepatocytes. ATP and the dissociated catalytic subunit of the cyclic-AMP dependent protein kinase did not influence the glucuronidation of morphine, while inhibited the formation of p-nitrophenol glucuronide in microsomes prepared from isolated mouse hepatocytes.

Animals

The role of the neuroendocrine system in determining genetic susceptibility to experimental allergic encephalomyelitis in the rat.

Experimental allergic encephalomyelitis (EAE) can be induced in some strains of rat but not others, by the injection of guinea-pig myelin basic protein in Freund's complete adjuvant. In the susceptible Lewis strain, spontaneous recovery from paralysis occurs and previous studies have shown that this recovery is dependent on the production, during the course of the disease, of high levels of corticosterone from the adrenal glands. Adrenalectomy completely abrogates the recovery phase and the disease becomes uniformly fatal unless steroid replacement therapy is given, which reproduces the serum levels of hormone that develop in intact animals with EAE. The PVG strain is not susceptible to EAE, but here it is shown that PVG rats that had been adrenalectomized developed severe disease from which they do not recover. As in the adrenalectomized Lewis rat, steroid replacement therapy could prevent the fatal outcome and in this case the disease course resembled that seen in intact Lewis animals. By a number of parameters PVG rats appear to make a more vigorous steroid response to stress than do Lewis. A comparison of the ratio of adrenal weight to body weight between these strains indicated that this ratio is larger in PVG, and serum corticosterone levels, in response to stress, were also found to be higher in this strain. Furthermore, basal levels of corticosterone were much more labile in PVG rats and had a higher mean value than those found in the age- and sex-matched Lewis animals with which they were compared. Genetic analysis using congenic rat strains showed that a high adrenal weight to body weight ratio was not linked to the major histocompatibility complex (MHC). It appears that the resistance to EAE of PVG rats depends on an enhanced stress response that mediates its immunosuppressive effect via the adrenal glands. While this stress response plays an essential part in the recovery of Lewis strain rats from EAE, it is sufficiently potent in PVG rats to virtually completely prevent signs of disease. Resistance to the induction of EAE could not be abrogated by adrenalectomy in all strains of rats studied. In particular, congenic PVG.RT1u rats, with the same background genes as PVG but with RT1u rather than the RT1cMHC genes of PVG, did not develop EAE when the adrenal glands were removed.(ABSTRACT TRUNCATED AT 400 WORDS)

Adrenalectomy