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Biomedical subjects

H Hughes

Publications and source records attributed to H Hughes.

At least 73 records · Page 4Linked to original sources

Lipid hydroperoxy and hydroxy derivatives in copper-catalyzed oxidation of low density lipoprotein.

Oxidation of low density lipoprotein (LDL) causes changes in the biological properties of LDL that may be important in atherogenesis. That LDL oxidation is accompanied by lipid peroxidation has been demonstrated, but previous analyses of the products of LDL oxidation have not included measurement of specific lipid hydroperoxy and hydroxy derivatives. In this study, LDL was isolated from plasma of normal volunteers and exposed to oxygenated buffer and 5 microM CuSO4 for 24 h. Oxidized LDL showed decreased linoleate (18:2) and arachidonate (20:4) content with increased concentrations of thiobarbituric acid reactive substances (TBARS) and hydroxy and hydroperoxy 18:2 and 20:4. The electrophoretic mobility of the LDL protein also was increased by oxidation. After reduction, the hydroxy fatty acids were characterized by gas chromatography-mass spectrometric analysis of the trimethylsilyl ether methyl ester derivatives. The hydroperoxy and hydroxy derivatives accounted for approximately 70% of the linoleate consumed during LDL oxidation and represented 45-fold more product than was measured by TBARS analysis. Numerous biological properties, including cytotoxic and chemoattractant activities of hydroperoxy and hydroxy fatty acids, have been reported, but the manner in which they may contribute to atherogenesis requires further study.

Arachidonic Acids↗

Glutathione disulfide formation and lipid peroxidation during cardiac ischemia and reflow in the dog in vivo.

The content of glutathione disulfide (GSSG) in tissue, coronary sinus blood plasma, and in cardiac lymph was measured in a well-characterized model of regional cardiac ischemia and reflow in dogs in vivo in order to assess the magnitude of the oxidant stress produced. No increase in GSSG content was observed during 60 min of occlusion of the circumflex or left anterior descending arteries, or during up to 70 min of reflow. The contents of 11-, 12-, and 15-hydroxyeicosatetraenoates (HETEs) in total lipids also were not increased following 60 min of regional ischemia and up to 60 min of reflow. In addition, global ischemia produced by aortic crossclamping and cardiopulmonary bypass did not increase HETE content. In contrast, infusion of tertiary butyl hydroperoxide (tBHP) into the left atrium produced readily measurable increases in GSSG content with or without prior induction of myocardial ischemia. Infusion of tBHP also increased tissue contents of the HETEs. These findings indicate that the canine myocardium subjected to ischemia-reflow conditions does not generate large amounts of reactive oxygen and does not form significant amounts lipid peroxidation products.

Animals↗

Quantitation of leukotriene B4 in human serum by negative ion gas chromatography-mass spectrometry.

Leukotriene B4 (LTB4) is a potent chemotactic agent formed via the 5-lipoxygenase pathway from arachidonic acid. To understand the role LTB4 plays in several pathological processes it is essential that endogenous concentrations of LTB4 be accurately quantitated. We have developed a method based on electron capture negative ion mass spectrometry for the analysis of LTB4 in serum at low picogram per milliliter concentrations. Blood is collected into the 5-lipoxygenase inhibitor nordihydroguaiaretic acid (NDGA) to suppress ex vivo formation. Serum is isolated, equilibrated with the internal standard [2H4]LTB4, and extracted using octadecyl-silica (C-18) cartridges. After conversion of the carboxylic acids to their pentafluorobenzyl esters the extract is purified by straight-phase HPLC. Gas chromatographic-mass spectrometric analysis is accomplished on the tert-butyldimethylsilyl ether derivatives using dual-selected ion monitoring of m/z 431 and 435. These ions correspond to loss of tert-butyldimethylsilanol from the (M-PFB)- ion of endogenous and [2H4]LTB4, respectively. The concentration of LTB4 in human serum samples was 10.0 +/- 4.0 pg/ml (n = 5). The assay exhibited satisfactory precision, with an intraassay coefficient of variation of 17% and a high degree of accuracy. The concentration of LTB4 in serum collected with (NDGA) was less than 10% of that observed in blood collected without the lipoxygenase inhibitor. Ex vivo formation can therefore be a major obstacle in assessing circulating levels of LTB4.

Chromatography, High Pressure Liquid↗

A study of the vaginal contraceptive sponge used with and without the fertility awareness method.

The actual effectiveness rates of natural and barrier methods of family planning are lower than the theoretical ones. If couples accurately defined the limits of the fertile phase and used barriers at that time, then actual effectiveness might increase. A randomized, controlled clinical trial was initiated to determine the effectiveness of the contraceptive sponge used only during the fertile time and to compare this with sponge use at every intercourse. Recruitment problems and discontinuation forced the early termination of this study, but qualitative information about compliance and acceptability was collected. Common sponge problems were reported as were misuses of the sponge, but problems and misuse were not related. Determination of the fertile phase was reportedly easy, but complaints of and discontinuation for inconvenience occurred. For unplanned pregnancies, contraceptive behaviors around the time of conception are presented.

Adolescent↗

Characterization of glutathione conjugates by fast atom bombardment/tandem mass spectrometry.

The collisionally activated decomposition of [M + H]+ ions, generated by fast atom bombardment (FAB) of glutathione conjugates, has been studied by tandem mass spectrometry (MS/MS) using hybrid sector/quadrupole instruments. Abundant fragments of diagnostic utility were present in the daughter ion spectra. Common fragmentation modes were observed but their relative importance was strongly dependent on the nature of the conjugated species. As an example of a general approach to the characterization of glutathione conjugates in biological samples, the acetaminophen-glutathione conjugate was identified in rat bile, following coadministration of (2H0)- and (2H3)acetaminophen, using the experimental sequence: (i) conventional FAB mass spectrometric analysis, (ii) MS/MS using constant neutral loss (129 u) scanning to identify parent ions corresponding to glutathione conjugates, (iii) MS/MS to yield daughter ion spectra of parents so identified and corresponding to (2H0)- and (2H3)-labeled conjugates.

Animals↗

Alkylation of the liver plasma membrane and inhibition of the Ca2+ ATPase by acetaminophen.

Acetaminophen is activated metabolically to yield reactive species that bind covalently to liver cell macromolecules. The extent of covalent binding correlates with the occurrence and severity of hepatic necrosis. We reported previously [J. O. Tsokos-Kuhn, E. L. Todd, J. B. McMillin-Wood and J. R. Mitchell, Molec. Pharmac. 28, 56 (1985)] that active Ca2+ accumulation of isolated liver plasma membranes is decreased 60-75% after a hepatotoxic dose of acetaminophen in vivo. We now report that the protein of isolated liver plasma membranes was substantially labeled with drug metabolites after administration of [3H]acetaminophen. There was no increase in passive membrane permeability that might cause diminished Ca2+ accumulation. Intravesicular volume and relative purity of the vesicle preparations after acetaminophen were not different from controls. However, (Ca2+,Mg2+)-ATPase, a possible biochemical expression of the Ca2+ pump, was decreased 31% (P less than 0.025) after acetaminophen treatment. ATPase activity in both control and treated groups was enhanced by isolating membranes in the presence of 5 mM reduced glutathione (GSH), but the effects of drug treatment were not reversed. A similar effect of GSH on Ca2+ accumulation was observed previously [J. O. Tsokos-Kuhn, E. L. Todd, J. B. McMillin-Wood and J. R. Mitchell, Molec. Pharmac. 28, 56 (1985)]. These data are consistent with a hypothesis wherein alkylation of membrane proteins by reactive acetaminophen metabolites is a factor in the onset of hepatic necrosis after acetaminophen. They are not consistent with an oxidative stress hypothesis where thiol S-thiolation of membrane components is postulated to produce altered membrane permeability or thiol-reversible alterations in membrane protein structure and enzymatic function.

Acetaminophen↗

Selected reaction monitoring during gas chromatography/mass spectrometry of eicosanoids.

Gas chromatography/electron capture negative ion mass spectrometry of eicosanoids, as pentafluorobenzyl (PFB) ester, methyl oxime (where applicable), trimethylsilyl (TMS) ether derivatives, is reported using a double-focusing instrument of trisector configuration. Sub-picogram detection limits were observed for prostaglandins E1, E2 and F2 alpha during selected ion monitoring (SIM) of [M-PFB]- ions. Selected reaction monitoring (SRM) of [M-PFB]-----[M-PFB-TMSOH]-, occurring in the first field-free region, was of modest sensitivity, reflecting the stability of the [M-PFB]- ions. The leukotriene B4 (LTB4) derivative was successfully analyzed by SIM at the low-picogram level. In this instance, the fragmentation [M-PFB]-----[M-PFB-TMSOH] occurred in high yield in the first field-free region. The advantageous improvement in selectivity of detection that may be achieved with SRM was evident during the analysis of a serum extract for LTB4.

Chromatography, High Pressure Liquid↗

Practice effects in backward masking.

In two experiments we demonstrate that much larger practice effects occur in a backward masking paradigm where patterned masks are used than in similar visual processing paradigms, such as lateral masking and whole report. In additional experiments we examine four possible explanations for the large practice effects: increased familiarity with the paradigm in general, learning about the targets, learning about the masks, and enhanced sensory processing. Because of failure to observe similar practice effects in related paradigms not involving backward masking and because of the sustained nature of the improvement, we reject the first explanation as a source of practice effect. Experiment 3 allowed us to reject target learning as a source of improvement as well; target sets were switched at the end of training, but no decrement in performance was observed. In Experiment 4, mask sets were switched at the end of training, revealing a significant decrement in performance. Learning about the specific masks, then, does contribute to the observed improvement. However, it is responsible for only about one third of the overall improvement in performance. The final experiment provides evidence that the residual improvement is due to enhanced sensory processing. In that experiment, training on backward masking led to a lowered threshold in a two-flash paradigm but not to a significant change in whole-report performance.

Attention↗

Prenatal diagnosis and perinatal management of frontoethmoidal meningoencephalocele.

Frontoethmoidal meningoencephaloceles (FEM) are exceedingly rare in the western hemisphere, Australia, and Europe with an estimated frequency of 1 in 40,000 live births. Among the inhabitants of Thailand, Burma, Malaysia, Indonesia, and parts of the Soviet Union, however, the frequency is as high as 1 in 5000, accounting for 15% of all neural tube defects (NTD). Normal maternal serum alpha-fetoprotein (MSAFP) values usually will be found in these cases since most encephaloceles are closed, skin covered defects. Correct interpretation of the sonographic findings is crucial in establishing a diagnosis as well as giving prognostic and recurrence risk information. To our knowledge, this is the first reported case of prenatally diagnosed FEM. Perinatal management, differential diagnosis for disorders associated with this malformation, and epidemiologic information regarding this rare condition are discussed. It is anticipated that the prenatal sonographic findings may be applied to establish this diagnosis in similarly affected fetuses.

Adult↗

Liver membrane calcium transport in diquat-induced oxidative stress in vivo.

Hepatic necrosis is produced rapidly by 0.1 mmol/kg diquat in male Fischer-344 rats but not Sprague-Dawley rats, yet massive oxidant stress is caused by diquat in both strains of rat. Liver plasma membrane calcium uptake was unaltered by diquat treatment in either strain. However, diquat inhibited ATP-dependent calcium sequestration by hepatic microsomes from Fischer rats by 33% (33 +/- 2 versus 50 +/- 2 nmol/mg/20 min), whereas liver microsomal calcium uptake in Sprague-Dawley rats was not decreased by diquat treatment. Microsomes of diquat-treated Fischer rats showed marked increases in calcium efflux versus controls (k efflux = 0.115 +/- 0.027 versus 0.051 +/- 0.005 min-1; p less than 0.025), but microsomes of diquat-treated Sprague-Dawley rats exhibited no significant change in efflux rate. Calcium uptake by the endoplasmic reticulum of saponin-permeabilized isolated hepatocytes was diminished in parallel with diquat cytotoxicity. Significant increases in 11-, 12-, and 15-hydroxy 20:4 fatty acids were found in liver microsomes isolated after diquat treatment in vivo and administration of desferrioxamine (0.24 mmol/kg, intraperitoneally) administered before diquat significantly protected against the inhibition of microsomal calcium uptake. These data suggest a possible role for Fenton chemistry and lipid peroxidation in this feature of diquat-generated hepatic damage in vivo.

Animals↗

The heterogeneity of the non-aggregating proteoglycans of the human intervertebral disc.

Non-aggregating proteoglycans of differing average hydrodynamic volumes were prepared from nuclei pulposi and anuli fibrosi of three human lumbar spines and characterized by biochemical and immunochemical analyses. The hexose-to-hexuronate and protein-to-hexuronate ratios increased with decreasing hydrodynamic volume. Analysis by composite agarose/polyacrylamide-gel electrophoresis has demonstrated two aggregating subpopulations [McDevitt, Jahnke & Green (1982) Trans. Annu. Meet. Orthop. Res. Soc. 7, 50]. In the present study, electrophoresis of the non-aggregating pools has shown three additional subpopulations, here named bands III, IV and V. The two smallest proteoglycan pools from each tissue contained two and three components respectively. These components were isolated by preparative electrophoresis and analysed. Band III was a proteoglycan richer in keratan sulphate than in chondroitin sulphate; band IV was a proteoglycan richer in chondroitin sulphate than in keratan sulphate; band V contained only chondroitin sulphate. Unsaturated disaccharides prepared from the chondroitin sulphate of all bands were predominantly 6-sulphated, with only 5-15% 4-sulphated. The molecular masses of the chondroitin sulphate and keratan sulphate did not differ between the bands. The amino acid composition of band III differed from that of band IV. Thus three distinct subpopulations of non-aggregating proteoglycan were demonstrated in the human intervertebral disc.

Amino Acids↗

Abnormal carotid arteries in the velocardiofacial syndrome: a report of three cases.

Internal carotid arteries of unusual size and tortuosity were found before or at the time of pharyngeal flap surgery in three children who had the velocardiofacial syndrome with velopharyngeal insufficiency. In two cases, medial displacement of the arteries prevented surgery, and in the other, hypernasality persisted because only a narrow, asymmetrical flap could be raised. Medial displacement of the internal carotid arteries inhibits surgical treatment of velopharyngeal insufficiency, necessitating treatment with a prosthetic speech device in such children. Since displacement and tortuosity may be associated findings in the velocardiofacial syndrome, the exact location of the internal carotids should be ascertained when pharyngeal flap surgery is planned.

Abnormalities, Multiple↗

Protection by verapamil of mitochondrial glutathione equilibrium and phospholipid changes during reperfusion of ischemic canine myocardium.

Pretreatment of the ischemic myocardium with verapamil protects against mitochondrial respiratory depression observed during ischemic arrest as well as during reperfusion. Since ischemic mitochondrial function appears not to be altered further by reperfusion, the purpose of this study is to identify a biochemical event affecting mitochondria that is specifically associated with reperfusion injury. It has been proposed that increased cellular Ca2+ influx and oxygen toxicity may result from reintroduction of coronary flow. Increased cytosolic Ca2+ is transmitted to the mitochondria with subsequent activation of Ca2+-dependent events, including phospholipase A2. Net production of lysophospholipids (and loss of total diacylphospholipids from the mitochondria) will proceed when reacylation mechanisms are inhibited. Since acyl-CoA:lysophospholipid acyltransferase is a sulfhydryl-sensitive enzyme and since increased activity of glutathione peroxidase shifts the levels of the mitochondrial sulfhydryl buffer, glutathione, towards oxidation, levels of glutathione and its oxidation state were measured during reperfusion in the absence or presence of verapamil pretreatment. Ischemia lowers total glutathione and reduces the redox ratio (reduced glutathione: oxidized glutathione) by 85%. Reperfusion partially returns the redox ratio to control by causing oxidized glutathione to disappear from the matrix. Verapamil maintains both the concentration and the redox potential of glutathione at control levels. Concomitant with alterations in reduced glutathione:oxidized glutathione is a decrease in ischemic mitochondrial phospholipid content. During reperfusion, phosphatidylethanolamine and its major constituent fatty acids (C 18:0 and C 20:4) are specifically lost from the mitochondrial membrane. Accompanying the significant loss of arachidonic acid during reperfusion is the decreased content of 11-OH, 12-OH, and 15-OH arachidonate. These lipid peroxidation products are not increased in ischemia. It is proposed that oxidation of matrix glutathione to glutathione disulfide during ischemia results in formation of glutathione-protein mixed disulfides and inhibition of sulfhydryl-sensitive proteins, including acyl-CoA lysophosphatide acyltransferase. Thus, metabolic events occurring within the ischemic period set the stage for prolonged dysfunction during reperfusion.

Acetyl-CoA C-Acyltransferase↗

No evidence for reactive oxygen damage in ischemia-reflow injury.

The present studies show that ischemia and reperfusion cause severe injury without evidence of generation of large amounts of reactive oxygen. Calculations show that it is necessary that amounts of reactive oxygen several orders of magnitude greater than that measured during ischemia-reflow injury be generated intracellularly by redox-cycling compounds such as diquat or by direct oxidants such as t-butyl hydroperoxide before endogenous cellular antioxidant systems in ischemia-reperfused rat liver or canine heart are overwhelmed. Thus, our data are incompatible with the hypothesis that oxygen radicals cause ischemia-reflow injury by lipid peroxidation or tissue thiol oxidation as postulated in Figure 1. How might one reconcile these results with the important experiments documenting protection against ischemia-reflow injury by treatment with antioxidants, antioxidant enzymes, allopurinol, cyclooxygenase/lipoxygenase inhibitors, cobra venom factor, and antisera against leukocytes (Table 1)? It seems most likely that the small amounts of reactive oxygen that can be generated in a reduced, acidic environment, such as occurs in tissue ischemia, could only be playing a catalytic function and not producing a massive oxidative attack on tissue membranes. Thus, future studies might best be directed at the catalytic function of superoxide/hydrogen peroxide in modulating the availability of substances such as lipoxygenase and cyclooxygenase products and of endothelium-derived relaxing factor during ischemia-reflow injury.

Animals↗