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Biomedical subjects

D Couri

Publications and source records attributed to D Couri.

At least 19 recordsLinked to original sources

Relationship between the depletion of O6-methylguanine-DNA methyltransferase by O6-methylguanine and the stimulation of DNA synthesis and growth of cultured chick hepatocytes.

O6-Methylguanine-DNA methyltransferase (O6-MT) has been described as a DNA repair enzyme that reverses alkylation damage at the O6 position of guanine in DNA. We demonstrate that the concentration of this protein decreases immediately prior to DNA synthesis in cultured chick hepatocytes. If intracellular levels are experimentally depleted by treatment of cultures with O6-methylguanine, DNA synthesis occurs as an associated resultant. This effect is dose dependent and can be followed by discernible morphological changes of organoids in culture. Increased and altered growth caused by O6-methylguanine was quantified and was also found to be dose dependent. Therefore, O6-MT may play a role in the regulation of DNA synthesis.

Animals↗

Pretreatment with paracetamol inhibits metabolism of enflurane in rats.

We studied the interaction between paracetamol (acetaminophen U.S.P.) and enflurane. Sixteen rats were assigned to four groups (n = 4) to receive: paracetamol 7.5 mg/100 g body weight; paracetamol plus 1% enflurane; 1% enflurane alone, or no treatment (controls). Animals were killed 6 h later. A second series of 16 were treated identically, but were killed after 24 h. Measurements were made of fluoride concentrations in serum, liver and urine (indicators of biotransformation of enflurane), paracetamol concentrations in urine, pathological changes in liver samples, and concentrations of the enzymes aspartate aminotransferase (AST) and alanine aminotransferase (ALT) in serum. Pretreatment with paracetamol significantly decreased urinary fluoride at 6 and 24 h after exposure to enflurane, but decreased fluoride concentrations in serum and liver only at 6 h after exposure to enflurane. Paracetamol concentrations in urine did not change after exposure to enflurane. Exposure to paracetamol alone increased AST and ALT. At 24 h after exposure to enflurane, serum concentrations of enzymes in rats pretreated with paracetamol were similar to those of control rats. Pretreatment with paracetamol may therefore inhibit metabolism of enflurane. Although no hepatic damage was observed, the increased in AST and ALT suggested subclinical liver damage in rats given only paracetamol.

Acetaminophen↗

Aroclor 1254 treatment and fasting influences on rat liver mitochondrial carbamoyl phosphate synthesis with ADP and ATP.

Previous studies have shown that the polychlorinated biphenyl mixture, Aroclor 1254 (ARO), -induced wasting in male rats is associated with increased permeability of hepatic mitochondria. This was correlated with hyperuremia and stimulated urea synthesis, hypoglycemia and suppressed glucogenesis after an ammonium acetate injection, and decreased retention of assimilated nitrogen and food intake. For ARO-toxic rats (100 mg/kg, ip, for 1, 2, and 4 days) versus Tween 80-treated, ad libitum-fed controls, mitochondrial carbamoyl phosphate (CP) formation (the initial step in urea synthesis from NH4+) was progressively stimulated for the duration of treatment from NH4+ and ATP but not from NH4+ and ADP. ARO maximal stimulation of CP formation also correlated with significant loss in body weight. Mitochondrial ornithine transcarbamoylase synthesis of citrulline from ornithine and carbamoyl phosphate was also stimulated. In comparison to fasted rats (24 hr), mitochondrial CP synthesis from NH4+ was enhanced with ADP but not with ATP. This ARO uncoupling of mitochondrial NH4+ metabolism and stimulation of CP formation with exogenous ATP and citrulline synthesis may have resulted from increased availability of substrates and cofactors in the matrix space, leakage of enzymes from the matrix, or a combination of these effects. These results are consistent with an increased inner membrane permeability and fragility during isolation and assays. In agreement with our previous studies, the data show that ARO exposure poises hepatic mitochondria toward the synthesis of urea intermediates.

Adenosine Diphosphate↗

Plasma lidocaine concentrations in conscious horses after cervicothoracic (stellate) ganglion block with 1% lidocaine HCl solution.

Arterial and/or central venous plasma concentrations of lidocaine were determined in 12 nonmedicated adult horses (422 +/- 59 kg of body weight, mean +/- SD) after injecting a 1% lidocaine HCl solution into the cervicothoracic ganglion (CTG). A mean dosage of 2.9 +/- 0.5 mg of lidocaine/kg of body weight was used to induce unilateral CTG blockade in 8 horses and 4.8 +/- 0.8 mg was used to induce bilateral CTG blockade in 4 horses. Blood samples were collected before and at 5, 15, 30, 45, 60, 75, 90, 105, and 120 minutes after injection. The plasma lidocaine concentrations were determined by use of gas chromatography (sensitivity less than 0.01 microgram/ml). Cervicothoracic sympathetic blockade was characterized by Horner's syndrome and by profuse sweating over the face, neck, and thoracic limbs. Mean maximal venous concentrations of lidocaine were 0.86 +/- 0.33 microgram/ml at 26.3 +/- 6.9 minutes after unilateral CTG blockade, and 1.14 +/- 0.25 micrograms/ml at 31.2 +/- 18.9 minutes after bilateral CTG blockade. The mean venous and arterial concentrations of lidocaine were not significantly different at 45 and 120 minutes after injection. Venous concentrations of lidocaine were consistently higher than were concentrations in simultaneously collected arterial blood samples in 2 horses in which the right CTG and brachial plexus were temporarily anesthetized after repeated administration of 100 ml of lidocaine into the right CTG.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Decreased enkephalinase activity following postnatal treatment with phenobarbital.

The effect of postnatal administration of phenobarbital on enzymes degrading enkephalin was examined. Daily subcutaneous injections (45 mg/kg) of phenobarbital were given to male and female rats from postnatal day 1 to 19. Brains from rats treated with saline and phenobarbital were used to prepare aminopeptidases (high speed supernatant) and enkephalinase A (synaptosomal membrane preparation). Incubation of methionine enkephaline (ME) with aminopeptidases from rat brain liberated tyrosine (T), while incubating with enkephalinase A resulted in the formation of tyrosylglycylglycin (TGG). Separation and quantification of tyrosine, tyrosylglycylglycin and methionine enkephalin was performed using a high performance liquid chromatograph, coupled to electrochemical and ultraviolet detectors in series. The treatment of the rats with phenobarbital resulted in a significant inhibition of enkephalinase A when measured in vitro, using methionine enkephalin as substrate. Preliminary studies with secobarbital show similar results to those obtained with phenobarbital.

Aminopeptidases↗

The effects of selenium on the emergence of aflatoxin B1-induced enzyme-altered foci in rat liver.

The effects of selenium on the emergence of aflatoxin B1 (AFB1)-induced enzyme-altered foci were studied in male Sprague-Dawley rats. Animals were fed a selenium-deficient diet and supplemented with 5.0, 2.0, and 0.2, or 0 ppm selenium in drinking water for 3 weeks prior to initiation with 2.0 mumol/kg AFB1. After a 1-week period of selenium normalization, the animals were placed on a diet of ordinary rat chow, and were administered a promoting regimen of 500 ppm phenobarbital in drinking water for 1 week, after which time each rat received a two-thirds partial hepatectomy. The promoting regimen of phenobarbital in tap water was then reduced to 100 ppm and continued for 7 weeks. Subsequently, the rats were sacrificed, their livers excised, and fresh frozen sections prepared and stained histochemically to demonstrate areas of gamma-glutamyl transpeptidase (GGT) activity. Selenium supplementation was observed to diminish the induction of GGT-positive foci, especially at the 5.0-ppm level. These data suggest that selenium is able to protect against the hepatocarcinogenic effects of AFB1 in the rat, and that the enzyme-altered foci bioassay may be a useful technique in assessing the interaction of selenium on the process of hepatocarcinogenesis.

Aflatoxin B1↗

The effects of the quinone type drugs on hydroxyl radical (OH.) production by rat liver microsomes.

The quinone drugs are known to be metabolized to semiquinone free-radical intermediates and to enhance NADPH oxidation in microsomal system. The effect of adriamycin and mitomycin C on the decarboxylation of [14C] carboxyl benzoate via hydroxyl radical (OH.) production in the microsomal system was examined. The activity of these drugs was compared to 5-fluorouracil, cyclophosphamide, and methotrexate, which are inactive in oxygen consumption experiments and are non-quinone-type drugs. Adriamycin and mitomycin C stimulated decarboxylation of benzoate 100 and 50% above the controls, respectively, while 5-fluorouracil, cyclophosphamide, and methotrexate were not different from controls. Addition of superoxide dismutase increased benzoate decarboxylation with or without the drugs present, while catalase was inhibitory in both circumstances. These results suggest that the quinone drugs enhanced hydroxyl radical (OH.) production by liver microsomes, and offer a possible mechanism of cellular toxicity by these agents.

Animals↗

Hexacarbon neuropathy: tracking a toxin.

This paper will present the progression of hexacarbon studies which followed the investigation of circumstances surrounding the occurrence of peripheral neuropathy in an occupational setting. The identification of methyl n-butyl ketone as the neurotoxin led to systematic studies of the biotransformation and mechanism of neurotoxicity. A consistent line of evidence showed that the neurotoxic potential of hexacarbons is directly related to the formation of the gamma-diketone metabolite, 2,5-hexanedione. The precise nature of the chemical interaction at the neurofilament is the subject of continuing investigation.

Animals↗

Binding of chloroform to the cysteine of hemoglobin.

The products of the covalent binding of chloroform to rat hemoglobin during microsomal metabolism were isolated and identified by gas chromatography (GC) and mass spectroscopy (MS). After isolation by Proteinase K hydrolysis, amino acid analysis and cellulose thin-layer chromatography (TLC), the major product was identified by GC/MS as N-hydroxymethyl cysteine and a minor product as 2-hydroxythiazolidine-4-carboxylic acid. N-Hydroxymethyl cysteine is proposed to be formed during isolation from the 2-oxothiazolidine-4-carboxylic acid present in the intact hemoglobin.

Amino Acids↗

Prenatal alcohol exposure alters enkephalin levels, without affecting ethanol preference.

Pregnant dams were pair-fed a liquid diet containing 35% ethanol derived calories or isocaloric sucrose during the last two trimesters of pregnancy. No differences were observed in adult ethanol preference between fetal alcohol exposed (FAE) animals and pair-fed controls. However, Met- and Leu-enkephalin levels were significantly elevated in globus pallidus of adult FAE animals. Pituitary levels were unaffected.

Alcohol Drinking↗

Trichloroethylene effects on the formation of enzyme-altered foci in rat liver.

The initiating and promoting effects of trichloroethylene in rat liver were investigated using the enzyme-altered foci bioassay. The incidence of gamma-glutamyl transpeptidase (GGT)-positive foci was used as an early histochemical marker of putative preneoplastic hepatocytes. A single PO dose of trichloroethylene (490 mg/kg) was administered in corn oil to rats which had been partially hepatectomized 24 h previously. Three days following gavage with the chlorinated hydrocarbon the rats were promoted with an 8-week regimen of 500 ppm phenobarbital in drinking water. This protocol is known to induce enzyme-altered foci in the livers of animals which have received an initiating dose of a genotoxic carcinogen. Trichloroethylene was not found to induce GGT-positive foci under these conditions. Additionally, groups of rats were partially hepatectomized, initiated with N-nitrosodiethylamine (30 mg/kg; PO) and administered five times weekly doses of 200 mg trichloroethylene per rat in order to investigate the promoting activity of the chlorinated hydrocarbon in rat liver. No significant promoter effects were observed with trichloroethylene, although the results in this case were somewhat equivocal. The findings of these investigations are taken as partially supportive of an epigenetic, cytotoxic mechanism of tumorigenic action of trichloroethylene.

Animals↗

An electrophysiological study of 2-hexanone and 2,5-hexanedione neurotoxicity in rats.

n-Hexane and its metabolites are neurotoxic to animals and man. Studies have revealed a progressive neuropathy which affects the distal regions of motor and sensory peripheral nerves. This paper describes efforts to determine whether 2-hexanone or 2,5-hexanedione is more neurotoxic than 2-hexanone and that it first affects the distal axon. Concentrations of 20 mM produced no effects after 3 weeks but 40 mM increased distal latency after 2 weeks.

Administration, Oral↗

Analysis of enkephalins, beta-endorphins and small peptides in their sequences by highly sensitive high-performance liquid chromatography with electrochemical detection: implications in opioid peptide metabolism.

Sensitivity in the 10-100 pg range for enkephalins, beta-endorphin, tyrosine (T), 12 tyrosylglycine (T-G) and tyrosylglycylglycine (T-G-G) was attained by using a high-performance liquid chromatographic (HPLC) method with electrochemical detection which is at least 100 times more sensitive than HPLC with UV detection. The chromatographic conditions on a reversed-phase C18 silica column were 50 mM sodium phosphate buffer (pH 2.1) (A) in acetonitrile-methanol (1:1) (B), isocratic mixture, flow-rate 0.6-1 ml/min, UV detection at 205 nm, electrochemical oxidation potential + 1.25 V. The separation of T, T-G and T-G-G was obtained by using 10% B while the separation of the pentapeptide, enkephalins required 40% B. Separation of enkephalins from beta-endorphin was attained at a shorter retention times did not exceed 15 min. This method can be used to determine tissue levels and pharmacodynamics of enkephalins and beta-endorphin. A highly specific measurement of the different enzymes involved in the metabolism of enkephalin has been achieved.

Adrenal Cortex Hormones↗

Prolonged intermittent footshock stress decreases Met and Leu enkephalin levels in brain with concomitant decreases in pain threshold.

The influence of a 21 day intermittent footshock regimen upon enkephalin levels in brain and adrenals was examined in the rat. Changes in pain sensitivity as well as analgesic and hyperthermic responsiveness to morphine (7.5 mg/kg) were also monitored. Following the stress regimen, Met and Leu enkephalin levels were decreased by 40 to 50% in brain, but were unchanged in adrenals. Post-stress pain thresholds were markedly decreased in stressed animals while the analgesic properties of morphine were enhanced. Core body temperature of stressed animals was significantly raised, but the hyperthermic response to morphine was unchanged.

Animals↗

Dexamethasone and stress-induced analgesia.

Analgesia induced in rats by cold-water swim stress and measured by the tail-flick and hot-plate methods was significantly antagonized after IP pretreatment for 3 days with 8 mg/kg dexamethasone. The analgesia developed by the cold-water swim stressor was also attenuated by 1 mg/kg naloxone. These results suggest that the corticosteroids may have a role in modulating stress-induced analgesia and that the adrenal-pituitary axis modulates the endogenous opiate system. These conclusions are based on recent reports that indicate the release of the opiate-like peptide beta-endorphin and adrenocorticotropin (ACTH) from the pituitary are increased by acute stress and inhibited by administration of the synthetic glucocorticoid dexamethasone.

Animals↗

Toxicity and metabolism of the neurotoxic hexacarbons n-hexane, 2-hexanone, and 2,5-hexanedione.

Human exposure to hexacarbon compounds is quite pervasive, including occupational exposures to industrial solvents as well as unintentional and sometimes deliberate exposures to hexacarbon solvents contained in innumerable commercial products. The exact mechanism of hexacarbon neurotoxicity has not yet been identified, but an interference with neuronal axoplasmic flow seems most likely. Metabolism of n-hexane and 2-hexanone to 2,5-hexanedione is a prominent feature which appears to be causally related to the neuropathologic syndrome, and mixed solvent effects have been noted in regard to potentiation of hexacarbon neurotoxicity. Continued effort in investigating the chemically induced peripheral neuropathy is essential not only to define the precise molecular mechanism, but to advance our basic understanding of other polyneuropathies as well. Ultimately, progress in these areas should yield such benefits as early diagnosis of potential neuropathology, better measures for the prevention of neurotoxicities, and more effective modalities of treatment. Indeed, sustained research efforts are imperative in maintaining human health and safety throughout our current era of advancing global technology.

Animals↗

Toxicological effects of chlorine dioxide, chlorite and chlorate.

Review of the available literature obtained from both acute and chronic experiments utilizing rats, mice and chickens treated with ClO2, ClO2- and ClO3-in drinking water has demonstrated alterations in hematologic parameters in all species tested. The effects were usually dose related and marked changes occurred only at the higher dosages (up to 1000 mg/l.). In chronic studies, rats have been given ClO2 at doses of up to 1000 mg/l., and NaClO2 or NaClO3 at up to 100 mg/l., in their drinking water for one year. Treatment groups receiving ClO2, ClO2- or ClO3- showed alterations in erythrocyte morphology and osmotic fragility; at higher dosages mild hemolytic anemia occurred. An examination of blood glutathione content and RBC enzymes involving glutathione formation showed a dose-related diminution of glutathione in chlorine compound treated groups. The higher oxidative capacity of the chlorine compounds resulting in the decreased erythrocytic glutathione might well be the principal biochemical event leading to the other hematological alterations. More recent data show that ClO2, ClO2- and ClO3- alter the incorporation of 3H-thymidine into the nuclei of various organs of the rat. These data suggest the possibility of increased turnover cells of the gastrointestinal mucosa and inhibited DNA synthesis in several organs. In the latter category, most concern revolves around whether or not the apparent depression of DNA synthesis in the testes is associated with depressed spermatogenesis and reproductive toxicity in the male rat.

Animals↗