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Biomedical subjects

H Hughes

Publications and source records attributed to H Hughes.

At least 91 records · Page 5Linked to original sources

Quantitation of lipid peroxidation products by gas chromatography-mass spectrometry.

A method for the quantitation of lipid peroxidation products in total hepatic lipid has been developed. Lipid extracts are reduced and subsequently transmethylated with sodium methoxide. The hydroxy fatty acid methyl esters are isolated by silicic acid chromatography and derivatized to their trimethylsilyl ethers prior to analysis by gas chromatography-mass spectrometry. Three isomers, 11-, 12-, and 15-hydroxyeicosatetraenoic acid (HETE), are quantitated using selected ion monitoring techniques relative to the internal standard, methyl 15-hydroxyarachidate. In mice treated with carbon tetrachloride (2 ml/kg), the HETE levels in total hepatic lipid were 20-fold greater than those found in control animals. HETE levels were also elevated (5- to 10-fold) in hepatic lipid from rats treated with the same dose of carbon tetrachloride. Studies on subcellular fractions with this methodology show that these lipid peroxidation products are 5- to 6-fold higher in hepatic plasma membrane vesicles isolated from rats treated with carbon tetrachloride when compared with those isolated from control animals.

Animals↗

Liquid-chromatographic determination of 4-hydroxyproline in urine.

In this method for 4-hydroxyproline in urine, hydroxyproline is derivatized with 4-chloro-7-nitrobenzofurazan, with subsequent estimation by reversed-phase "high-performance" liquid chromatography. The ranges for excretion of free and total hydroxyproline while the subjects were ingesting unrestricted diets were 2-29 and 122-374 mumol/24 h (n = 21), respectively, with no significant sex-related difference. A comparison with results by colorimetry indicated no significant differences: mean (n = 18) concentrations (mumol/L) of hydroxyproline in urine were 180 (SD 149) by the present method, 163 (SD 166) by colorimetry. For protein hydrolysate the respective values were 5.9 (SD 2.7) and 6.7 (SD 2.9).

Chromatography, High Pressure Liquid↗

Rabbit photoreceptor outer segments contain high levels of docosapentaenoic acid.

Docosapentaenoic acid (22:5 omega 6), a minor constituent (less than 4%) of photoreceptor outer segment membranes in all vertebrate species examined to date, comprises 23% of the fatty acids in total lipids from rabbit outer segment membranes. This fatty acid is a significant constituent of each of the three major phospholipid classes in these membranes. The levels of docosahexaenoic acid (22:6 omega 3), the major polyunsaturated fatty acid of most other vertebrate outer segments, was 20%. The sum of 22:5 omega 6 and 22:6 omega 3 in rabbit outer segment membrane lipids is similar to the amount of 22:6 omega 3 usually found in membranes from other vertebrate species.

Animals↗

Oxidant stress and hepatic necrosis in rats treated with diquat.

Although diquat produces massive oxidant stress in both Fischer and Sprague-Dawley rats, the Fischer rats sustain hepatic necrosis and the Sprague-Dawley rats do not. A previous example of probable hepatic necrosis produced by an oxidant stress-generating compound was demonstrated in animals in which glutathione peroxidase activity had been decreased by a dietary deficiency of selenium. In the present study the susceptible Fischer rats had hepatic peroxidase activities equal to the resistant Sprague-Dawley rats. Hepatotoxic doses of diquat did not diminish hepatic glutathione peroxidase or reductase activities or hepatic content of ascorbic acid, NADPH or protein sulfhydryls. Hepatic nonprotein sulfhydryls were decreased by 50% but recovered to control values by 6 h. Biliary excretion of oxidized glutathione in the Fischer rat after administration of diquat was 4 times that observed after administration in Sprague-Dawley rats. The diquat-induced peroxidation of hepatic lipids was indicated by small increases in the 11-, 12-, and 15-hydroxyeicosatetraenoic acids, as quantitated by a new gas chromatography-mass spectrometry assay. Thus, acute lethal injury caused by redox cycling compounds that generate reactive oxygen species does not exhibit a number of the biochemical alterations in vivo that occur with cell death produced by similar compounds in isolated hepatocyte systems.

Alanine Transaminase↗

Effects of N-acetylcysteine on the disposition and metabolism of acetaminophen in mice.

N-acetylcysteine is the drug of choice for the treatment of acetaminophen poisoning, yet the mechanism of protection in vivo is unknown. Prevention of liver injury could result from decreased production of the toxic intermediate(s), from increased capacity to detoxify the toxic intermediate(s) or from increased ability of the tissue to withstand or even repair the molecular damage caused by the toxic species. Treatment of mice with N-acetylcysteine (1200 mg/kg p.o.) was found to prevent the hepatic damage caused by 1000 mg/kg p.o. of acetaminophen. Possible mechanisms for this hepatoprotective effect were examined by measurement at different time points of acetaminophen and its metabolites in plasma, urine, bile and whole-body homogenates and by evaluation of the changes in these parameters caused by treatment with N-acetylcysteine. A high-pressure liquid chromatographic method was developed to measure the majority urinary metabolites of acetaminophen and was validated by desorption chemical ionization mass spectral analysis of individual metabolites. Minimal differences in the concentration of unchanged acetaminophen and metabolites in whole-body homogenates at 4, 6 and 24 hr postdose were noted for N-acetylcysteine-treated vs. vehicle-treated mice. These results are incompatible with a decreased formation of the toxic species secondary to delayed acetaminophen absorption from the gastrointestinal tract or with an increased clearance of acetaminophen via nontoxic pathways such as sulfation as plausible mechanisms for the observed hepatoprotection.(ABSTRACT TRUNCATED AT 250 WORDS)

Acetaminophen↗

Metabolic fate of (E)-5-(2-bromovinyl)-2'-deoxyuridine in herpes simplex virus- and mock-infected cells.

(E)-5-(2-Bromovinyl)-2'-deoxyuridine is a potent antiherpes compound with far better activity against herpes simplex virus type 1 than type 2. To understand the role of drug metabolism in this differential antiviral activity, we examined the metabolic fate of this drug in virus-infected and mock-infected Vero cells by high-pressure liquid chromatography. After 8 h of incubation in which cells were exposed to 10 micrograms of the drug per ml, 63 pmol/10(6) cells of the parent compound was detected in acid-soluble extracts of mock-infected cells. Herpes simplex virus-infected cells, however, incorporated or metabolized, or both, up to 11,310 pmol/10(6) cells. Type 1-infected cells metabolized the drug to the triphosphate where as many as 5,565 pmol/10(6) cells were detected. In contrast, three strains of type 2-infected cells metabolized the drug to the monophosphorylated nucleotide and no further. The amount of drug getting into the cells was virus strain and inoculum dependent. These studies indicate that poor substrate acceptance of (E)-5-(2-bromovinyl)-2'-deoxyuridine monophosphate by herpes simplex virus type 2-specified thymidylate kinase is an important factor in situ in infected cells, preventing anabolism of the parent compound to its active triphosphorylated form. This may account for its type specificity.

Antiviral Agents↗

Biliary excretion of glutathione and glutathione disulfide in the rat. Regulation and response to oxidative stress.

Regulation of the biliary excretion of reduced glutathione (GSH) and glutathione disulfide (GSSG) and responses to selected model toxins were examined in male Sprague-Dawley rats. In control and phenobarbital-pretreated rats in which the intrahepatic concentration of GSH was modulated by the administration of diethyl maleate or acetaminophen, the biliary concentration of GSH was consistently lower than, but directly proportional to, the intrahepatic concentration of GSH. Furthermore, increments in bile flow produced by the infusion of sulfobromophthalein (BSP)-glutathione were associated with proportional increases in the biliary excretion of GSH, suggesting that GSH passes into bile passively along a concentration gradient. In contrast, GSSG appears to be secreted into bile against a steep concentration gradient. An increased hepatic production and biliary excretion of GSSG resulted from the administration of t-butyl hydroperoxide. Measurement of biliary GSSG and BSP during a constant infusion of the GSH adduct of BSP indicated that GSSG shares a common excretory mechanism with GSH adducts. Diquat, nitrofurantoin, and paraquat also markedly stimulated the biliary excretion of GSSG. On a molar basis, these compounds generated much more GSSG than a direct substrate for glutathione peroxidase such as t-butyl hydroperoxide, indicating that the compounds undergo redox-cycling with concomitant production of hydrogen peroxide. Aminopyrine (0.8 mmol/kg) also significantly increased biliary GSSG. This increase, however, was associated with a proportional increase in bile flow and in the biliary excretion of GSH such that the GSSG/GSH ratio in bile did not change. Acetaminophen and chloroform, two compounds generating electrophilic metabolites that deplete intrahepatic GSH, led to a progressive decrease in the biliary excretion of GSH and GSSG. Furosemide and dimethylnitrosamine, the electrophilic metabolites of which do not deplete hepatic GSH, minimally altered biliary GSH and GSSG. Similarly, carbon tetrachloride and iproniazid, which yield organic radical metabolites that can peroxidize membrane lipids, did not increase the biliary excretion of GSSG. This finding indicates that membrane-bound lipid hydroperoxides may not be good substrates for glutathione peroxidases. The measurement of the biliary excretion of GSSG and of the GSSG/GSH ratio in bile is a sensitive index of oxidative stress in vivo and thus complements other in vivo parameters for the study of reactive intermediates of xenobiotics such as the determination of covalent binding, the formation of lipid hydroxy acids, and the depletion of intracellular GSH.

Acetaminophen↗

Free radicals in vivo. Covalent binding to lipids.

As one means of determining the extent to which free radical metabolites are involved in the interaction of hepatotoxic drugs with target tissues, we have measured the covalent binding to hepatic lipids of carbon tetrachloride, acetaminophen, 2-furamide, furosemide, dimethylnitrosamine, and bromobenzene. Transesterification of the Folch lipid fraction was required to distinguish radioactive label present but not covalently bound to alkyl residues through radical addition or combination reactions. Although all hepatotoxins were covalently bound to hepatic protein in the range of 1-2 nmoles/mg, thereby confirming tissue alkylation by reactive metabolites under the present experimental conditions, only carbon tetrachloride gave significant covalent binding to the alkyl residues of hepatic lipids (4.34 nmoles/mg). Thus, although these data further support the already well-documented role of a free radical in the reaction of carbon tetrachloride with target tissue molecules, none of the other hepatotoxins gave similar indications. Dimethylnitrosamine did give significant covalent binding to lipids, but the removal of the binding by transesterification indicates that the binding apparently resulted from electrophilic attack on nucleophilic centers present in phospholipids rather than from radical attack on electroneutral alkyl residues of the lipids.

Acetaminophen↗

High-performance liquid chromatography and gas chromatography-mass spectrometry determination of specific lipid peroxidation products in vivo.

Peroxidation of membrane lipids has been implicated in the toxicity of reactive oxygen intermediates and of several hepatotoxins, but the specific products of this peroxidation in vivo have not been chemically identified. A method for the isolation, identification, and quantitation of specific lipid hydroperoxy and hydroxy acids formed in vivo has been developed. Hydroxylated derivatives of linoleic, arachidonic, and docosahexaenoic acids formed in mouse liver phosphatidylcholines following carbon tetrachloride administration were isolated by high-pressure liquid chromatography and identified as the trimethylsilyl ether methyl ester derivatives by gas chromatography-mass spectrometry. This methodology should be important for the investigation of the role of lipid peroxidation in a variety of normal physiologic and pathologic processes.

Animals↗

Treatment of acne vulgaris by biofeedback relaxation and cognitive imagery.

A multielement intervention involving biofeedback-assisted relaxation and cognitive imagery treatment of acne vulgaris was investigated in this study with 30 patients receiving medical dermatological treatment. Patients were matched on age, sex, and pre-treatment acne severity and randomly assigned to groups. Treatment consisted of 12 sessions over six weeks and resulted in a significant reduction in acne severity as compared to the attention-comparison and medical control groups. Treatment group patients continuing home practice until follow-up maintained their gains, whereas those who discontinued failed to maintain gains.

Acne Vulgaris↗

The effect of frontal EMG biofeedback training on the behavior of children with activity-level problems.

N = 1 withdrawal designs were employed with three children evidencing activity-level problems. Tutoring sessions occurred daily over a 2 1/2-month period. Each child was reinforced for decreasing frontalis muscle tension during auditory feedback while working arithmetic problems. Feedback was faded while tension reduction reinforcement was maintained. These procedures were repeated with reinforcement for increasing, rather than decreasing, muscle tension. Frontal EMG level, percent time on task, and motoric activity rate were obtained during sessions. Parent ratings of problem behavior in the home were recorded daily. Biofeedback with reinforcement was effective in both raising and lowering muscle tension. Effects were maintained by reinforcement. Results suggest a direct relationship between tension and activity levels. Academic performance and problem behavior improved significantly with reductions in EMG activity, although individual exceptions to these findings were present. Results lend support to the efficacy of frontal EMG biofeedback training in reducing activity, increasing attention to an academic task, and reducing problem behaviors.

Biofeedback, Psychology↗