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Biomedical subjects

T F Slater

Publications and source records attributed to T F Slater.

At least 37 records · Page 2Linked to original sources

Studies on cervical intraepithelial neoplasia: the level of octadeca-9,11-dienoic acid and measurement of free radical content by electron spin resonance spectroscopy.

The efficacy of electron spin resonance spectroscopy (a technique that measures free radicals) in detecting cervical intraepithelial neoplasia was evaluated in 68 women. In addition, electron spin resonance spectroscopic data were correlated with the phospholipid-esterified octadeca-9,11-dienoic acid (18:2(9,11]/octadeca-9,12-dienoic acid (18:2(9,12] molar ratio, a suggested marker of free radical damage to linoleic acid. Incubation of cervical epithelial cells with the spin-trap N-tert-butyl-alpha-phenylnitrone and subsequent examination by electron spin resonance spectroscopy gave signals from a nitroxide radical, which has been tentatively assigned to an adduct from either a carbon-centered lipid radical or a lipid alkoxyl radical; no significant differences in either the type of radical detected or the intensity of the signals was found between patients with cervical intraepithelial neoplasia and normal control subjects. There was no significant correlation between the intensity of the electron spin resonance signal and the phospholipid-esterified 18:2(9,11)/18:2(9,12) molar ratio. This finding provides no support for the classification of 18:2(9,11) as a "free radical product."

Cervix Uteri↗

Biochemical studies on bile duct epithelial cells isolated from rat liver.

In the present paper we provide a basic enzymatic characterization of biliary epithelial cells (BEC) that have been isolated from normal rat liver. When compared with liver parenchymal cells, BEC display the following major features: (a) a very high specific activity of gamma-glutamyltranspeptidase (approx. 200-times higher than the value usually found in hepatocytes); (b) a lack of enzymes that are usually associated with the endoplasmic reticulum in hepatocytes such as cytochrome P-450, aminopyrine demethylase, glucose 6-phosphatase and NADPH cytochrome-c reductase; (c) the presence of enzymes related to the glutathione redox cycle (e.g., GSH-peroxidase, GSSG-reductase and different isozymes of GSH-transferase), but accompanied by a very low content in reduced glutathione. The enzyme pattern of BEC correlates well with histochemical and immunohistochemical studies, as well as with biochemical studies on bile ductular cells isolated from rat liver during cholestasis.

Aminopyrine N-Demethylase↗

In vitro transformation induces abnormal protein thiol levels in rat liver cells.

Cells from an established line of normal rat hepatocytes (IAR 20) were irradiated with 3 Gy gamma-radiation from a cobalt source to generate transformed clones. Cells from four transformed colonies were compared with the parent cell line by flow cytometry following staining with ortho-phthalaldehyde and propidium iodide to quantitate protein thiols and DNA respectively. Transformed cells exhibited an increased variability in cellular protein thiols which was most evident in G1 and S phase. The altered pattern of macromolecular thiol distribution implies early changes in redox state and/or modification of the amounts or types of sulphur-containing proteins in transformed cells.

Animals↗

Application of deuterated alpha-tocopherols to the biokinetics and bioavailability of vitamin E.

alpha-Tocopherol, a superior chain-breaking, peroxyl radical-trapping antioxidant and the most active component of vitamin E, is elevated in liver tumor cells, contributing to their greater resistance towards lipid peroxidation compared to cells from normal tissues. Also, in regenerating rat liver the level of vitamin E has been found to fluctuate in phase with the rate of cell division. In order to study the biokinetics and mechanisms of the distribution of vitamin E in organs and within tissues of animals, deuterated forms of alpha-tocopherol have been synthesized and their uptake into blood and tissues has been measured by gas chromatography-mass spectrometry. Measurement of the competitive uptake from a mixture of the RRR- and SRR-alpha-tocopherol stereoisomers labelled with different amounts of deuterium shows that the liver exerts a strong preference for secretion of the natural (RRR) stereoisomer into the plasma. It is suggested that a tocopherol-binding protein plays a key role in this process.

Animals↗

Studies on the effects of antioxidants and inhibitors of radical generation on free radical production in the reperfused rat heart using electron spin resonance spectroscopy.

Reperfusion of the heart after a period of ischaemia can precipitate ventricular arrhythmias and lead to an exacerbation of tissue injury. Direct evidence to suggest the involvement of free radicals has been obtained using electron spin resonance (esr) spectroscopy and the spin trap N-tert. butyl-alpha-phenyl nitrone (PBN). In the present study, we have used esr spectroscopy and PBN to examine the individual effects of superoxide dismutase (SOD), catalase, allopurinol or desferal on radical production in the isolated, reperfused rat heart. A burst of radical production was observed in the control group during the first 5 minutes of reperfusion; the peak occurred during the first minute, when signal intensity had increased by almost 300%, but returned to the baseline by 15 minutes of reperfusion. The esr signals were consistent with the trapping of either alkoxyl or carbon-centered radicals (aN = 13.6 and aH = 1.56 G). In the desferal-treated group, a burst of radical production was observed during the first five minutes of reperfusion; this was maximal during the second minute, when signal intensity had increased by almost 200%, but had returned to the baseline value by 30 minutes of reperfusion. In the SOD-treated group, a burst of radical production was observed during the first 10 minutes of reperfusion; signal intensity was maximal during the tenth minute of reperfusion, when signal intensity had increased by almost 200%, but had returned to the baseline value by 30 minutes of reperfusion. In the allopurinol- and catalase-treated groups, no significant burst of radical production could be detected. These data further support the concept that cytotoxic, oxygen-derived species are formed upon reperfusion and that hydrogen peroxide and/or hydroxyl radicals, are likely to be involved.

Allopurinol↗

Myocardial tissue preparation for ESR spectroscopy: some methods may cause artifactual generation of signals.

It has been suggested that some techniques of tissue preparation for esr spectroscopy may artifactually generate radicals. We have investigated this, together with the possibility that the susceptibility of the tissue to preparation artifacts may be altered by ischaemia and reperfusion. Three different methods of tissue processing have been assessed: (i) freeze-clamping (-196 degrees C), using grooved, aluminium tongs which produce frozen cylinders of tissue (3 mm diameter) which fit directly into esr tubes; (ii) grinding of freeze-clamped tissue with a porcelain pestle and mortar; (iii) lyophilization of ground, freeze-clamped, tissue. Isolated rat hearts (n = 7 or n = 5/group) were subjected to aerobic perfusion (10 min, 37 degrees C), total, global ischaemia (15 min) and reperfusion (30 sec). Hearts were freeze-clamped at the end of each period. Tissue was prepared by each of the three methods and esr spectra recorded at -100 degrees C. In spectra from tissue which had been freeze-clamped only, broad high- and low-spin iron III signals (g = 1.9, g = 2.2-2.9 and g = 4.6) were seen together with a narrow, well-defined signal (g = 2.005), possibly from a semiquinone radical.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Histophotometry of protein thiols and disulphides in tissue samples from the human uterine cervix and the skin reveals a "field effect" as well as an "extended field effect" of malignant tumours.

Fresh frozen and fixed serial sections were stained with 2,2'-dihydroxy-6,6'-dinaphthyldisulfide (DDD) and Fast blue B for reactive protein thiols (PSHr) and total reactive protein sulfur (TRPS). The mean optical densities of PSHr and TRPS determined histophotometrically at a distinct part of a tissue were related to each other (PSHr: TRPS). If this quotient has been determined, e.g. for normal epithelium and the adjacent stroma, both quotients can be related to each other by a double quotient (Q PSHr: TRPS). With the aid of the double quotient highly significant differences could be found between tumours and normal tissue from patients without tumour of the human uterine cervix. Similar differences exist between normal skin from healthy patients and skin tumours. Q PSHr: TRPS revealed similar differences to exist between normal tissue of patients without tumour and apparently normal tissue in the neighbourhood of tumours of the uterine cervix and of skin ("field effect" of tumours). Histophotometric investigations on abdominal skin (and skin of breast) showed highly significant differences between normal skin of patients without tumour and patients with various kinds of tumours of the uterine cervix, ovaries, liver and breast ("extended field effect" of tumours).

Cervix Uteri↗

Promethazine inhibits the formation of aldehydic products of lipid peroxidation but not covalent binding resulting from the exposure of rat liver fractions to CCl4.

Promethazine is known to have protective activity in relation to CCl4-induced liver necrosis. This hepatoprotective property has been investigated with regard to the free radical scavenging and antioxidant properties of promethazine using isolated hepatocytes and microsomal suspensions. CCl4 is activated in both systems to free radical metabolites that bind covalently to lipid and protein, and initiate lipid peroxidation. A large number of carbonyl products is produced during CCl4-induced lipid peroxidation; promethazine strongly inhibits the production of all classes of carbonyl compounds in both microsomal suspensions and isolated hepatocytes. In contrast, promethazine is a very weak inhibitor of the covalent binding of metabolites of CCl4. We conclude that promethazine acts by scavenging the trichloromethylperoxyl radical and lipid peroxyl radicals, and is a weak scavenger of the trichloromethyl radical. These data, when considered together with the hepatoprotective effects of promethazine, suggest that lipid peroxidation is of relatively more importance than covalent binding in the pathogenesis of CCl4-induced liver necrosis.

Aldehydes↗

Nonesterified fatty acids inhibit iron-dependent lipid peroxidation.

The effect of various fatty acids on lipid peroxidation of liver microsomes induced by different methods in vitro was studied using oxygen uptake and malonaldehyde (MDA) production. It was observed that fatty acids with a single double bond are effective inhibitors of peroxidation. Stereo and positional isomers of oleic acid were equally effective as oleic acid. There was an absolute requirement for a free carboxyl group, since methyl esters of fatty acids and long-chain saturated and unsaturated hydrocarbons could not inhibit peroxidation. Saturated fatty acids with a chain length of 12-16 carbon atoms showed inhibition, whereas more than 18 carbon atoms reduced the inhibitory capacity. Fatty acids of lower chain length such as capric and caprylic acids did not show inhibition. Fatty acid inhibition was partially reversed by increasing the concentration of iron in the system. Peroxidation induced by methods which were independent of iron was not inhibited by fatty acids. It was observed that intestinal microsomes which were resistant to peroxidation due to the presence of nonesterified fatty acids in their membrane lipids were able to peroxidise by methods which do not require iron. These results suggest that certain fatty acids inhibit peroxidation by chelating available free iron. In addition, they may also be involved in competing with the esterified fatty acids in the membrane lipids which are the substrates for peroxidation.

Adenosine Diphosphate↗

Flow cytometric analysis of protein thiol groups in relation to the cell cycle and the intracellular content of glutathione in rat hepatocytes.

The relationship between protein thiols (PSH) and cell proliferation was examined in ethanol-fixed rat hepatocytes. A new protocol was developed for simultaneous measurement of protein thiol vs. DNA content by flow cytometry. The fluorescent dye o-phthalaldehyde (OPT) was used for flow cytometric measurements of protein thiol groups. The influence of nonprotein thiols was examined by monitoring the cell cycle of cells in which the glutathione content (GSH) was modified by treatment with buthionine sulphoximine (BSO). Three rat liver cell lines (IAR 20, IAR 6.1, IAR 6.1RT7) were used: these cell lines possess different growth characteristics and degrees of tumorigenicity, which made it possible to analyse changes in PSH during normal and deranged cell proliferation. The effects on the cell cycle of the changes in PSH due to the depletion of GSH were measured by 5-bromo-2'-deoxyuridine (BrdUrd) incorporation and flow cytometry. The data obtained can be summarised as follows: a) OPT fluorescence increases with increasing DNA content in all rat liver cell lines examined; b) the greatest variation in PSH content occurs in G1. There is a smaller variation in G2 + M, and PSH levels are relatively invariant throughout S-phase; c) a higher content of PSH is found in the tumorigenic cell lines; d) the amount and distribution of PSH is not affected by BSO treatment; e) kinetic studies indicate that BSO treatment has no effect on the ability of the IAR rat liver cell lines to progress through the cycle.

Animals↗

Histophotometric quantification of the field effect and the extended field effect of tumors.

Histophotometric investigations have been made on samples of human skin. Fresh frozen serial sections were fixed and stained for either reactive protein thiols (PSHr) or total reactive protein sulphur (TRPS) using modifications of the DDD-Fast blue B-method. In addition, total protein thiols (PSHt) were stained with the Mercurochromcyanide-method, and proteins were stained using a modified amido-black procedure. Significant differences were found between the different tumours investigated and normal tissue, and also between apparently normal tissue adjacent to the tumours and normal tissue from patients without tumour. To reveal such tumour-related changes of apparently normal tissue, termed the field effect of tumours, a double quotient had to be calculated from the PSHr-and TRPS-values determined from both epithelium (epidermis) and connective tissue. In addition, abdominal skin was investigated from patients without tumour and patients with tumours of the female genital tract, liver or breast. With the aid of the double quotient procedure, highly significant differences were found between normal abdominal skin of patients without tumours versus similar samples taken from patients with tumours. The tumour-related changes found with abdominal skin distant from the tumours have been termed the extended field effect of tumours. These general tumour-related changes, independent of the size, state or degree of malignancy of the distant tumour, could be shown to be due to changes in abdominal dermis.

Female↗

Studies on lipid peroxidation in normal and tumour tissues. The Yoshida rat liver tumour.

Reduced rates of lipid peroxidation have been observed in Yoshida hepatoma cells and microsomes when compared with appropriate control tissue (normal rat liver) under the same pro-oxidant conditions. The pro-oxidant conditions used were incubation with NADPH+ADP+iron or ascorbate+iron or exposure to gamma-irradiation. As previously shown with the Novikoff hepatoma, the relative concentrations of alpha-tocopherol and polyunsaturated fatty acids are important in conferring resistance to lipid peroxidation in the Yoshida hepatoma. Furthermore, NADPH-cytochrome c reductase and the NADPH-cytochrome P-450 electron transport chain, which are involved in the initiation and propagation of certain types of lipid peroxidation, are found at very much reduced levels in the Yoshida hepatoma. The relative importance of these aberrations are discussed.

7-Alkoxycoumarin O-Dealkylase↗

Lipid peroxidation in purified plasma membrane fractions of rat liver in relation to the hepatoxicity of carbon tetrachloride.

Preparations of rat liver sinusoidal plasma membrane have been tested for their ability to metabolize the hepatotoxin carbon tetrachloride (CCl4) to reactive free radicals in vitro and compared in this respect with standard preparations of rat liver microsomes. The sinusoidal plasma membranes were relatively free of endoplasmic reticulum-associated activities such as the enzymes of the cytochrome P450 system and glucose-6-phosphatase. CCl4 metabolism was measured as (i) covalent binding of [14C]-CCl4 to membrane protein, (ii) electron spin resonance spin-trapping of CCl3. radicals and (iii) CCl4-induced lipid peroxidation. By all of these tests, purified sinusoidal plasma membranes were found unable to metabolize CCl4. The fatty acid composition of the plasma membranes was almost identical to that of the microsomal preparation and both membrane fractions exhibited similar rates of the lipid peroxidation that was stimulated non-enzymically by gamma-radiation or incubation with ascorbate and iron. The absence of CCl4-induced lipid peroxidation in the plasma membranes seems to be due, therefore, to an absence of CCl4 activation rather than an inherent resistance to lipid peroxidation. We conclude that damage to the hepatocyte plasma membrane during CCl4 intoxication is not due to a significant local activation of CCl4 to CCl3. within that membrane.

Animals↗

12-Lipoxygenase activity in human uterine cervix.

Homogenates prepared from sections of human uterine cervix or endometrium were incubated with [1-14C]arachidonate and the products examined by radio-TLC. A major product chromatographing with 12-hydroxyeicosatetraenoic acid (12-HETE), and a number of more polar metabolites which were unaffected by 50 microM indomethacin but decreased to the same extent as 12-HETE by 50 microM nordihydroguaiaretic acid, were demonstrated by this technique. The addition of glutathione to the incubation mixture increased the production of 12-HETE, with a proportional decrease in the polar products. There was a large variation in 12-lipoxygenase activity measured in different cervix samples. The levels of the enzyme in the cervix were similar in two groups of uterine samples classified by the histological appearance of the endometrium as proliferative and secretory. However activity was significantly lower in samples taken from post-menopausal patients compared with pre-menopausal patients.

Arachidonate 12-Lipoxygenase↗

Isolation and characterization of biliary epithelial cells from normal rat liver.

A cell fraction enriched in biliary epithelial cells (BEC) has been isolated from the liver of normal rats. The procedure involved proteolytic digestion by trypsin and mild mechanical disruption of biliary ductular and connective tissue that remained undigested after collagenase-hyaluronidase perfusion. An adherence procedure removed the large majority of contaminating Kupffer cells. The majority (87.4 +/- 3.5%) of the cells were positive to an indirect immunofluorescence staining that used an antiserum against bovine hoof prekeratin that specifically recognizes intermediate filaments of biliary epithelium. Similar results were obtained by histochemical staining for gamma-glutamyltranspeptidase activity. The contamination of the BEC fraction with Kupffer cells and hepatocytes was approximately 7% and 2%, respectively. The viability of the BEC population was always more than 90%. The BEC and hepatocytes were analysed for their lipid composition; the BEC were found to have a cholesterol content approximately 6-times higher than hepatic parenchymal cells, with a cholesterol/phospholipid molar ratio of 0.53 in comparison to a value of 0.11 for hepatocytes. No detectable evidence of cytochrome P-450 or cytochrome P-450-related enzymatic activities was found in the BEC.

Animals↗

Studies on the metal-ion and lipoxygenase-catalysed breakdown of hydroperoxides using electron-spin-resonance spectroscopy.

The breakdown of cumene hydroperoxide and peroxidized fatty acids by iron is shown, by use of the spin trap 5,5-dimethyl-l-pyrroline-N-oxide, to be sensitive to (a) the oxidation state of the metal and (b) the nature of the chelating ligands. The initial step in the Fe2+-catalysed breakdown is the production of an alkoxyl radical by one-electron reduction, and this type of radical has been successfully trapped from each substrate. Subsequent reactions of this alkoxyl species produce both carbon-centred and peroxyl radicals, depending on the concentrations of the reagents present. The use of the same spin trap in microsomal systems undergoing either NADPH-supported or Fe2+-induced peroxidation led to the detection of low concentrations of radical adducts, among which are signals that are believed to be due to lipid alkoxyl radicals. Reaction of polyunsaturated fatty acid hydroperoxides with both Fe2+ and lipoxygenase under anaerobic conditions gives rise to signals not only from the alkoxy-radical adduct, but also from a further species which is tentatively identified as being due to an acyl [RC(O).]-radical adduct; chemical studies lend support to this assignment.

Aldehydes↗

Effects of the lipid peroxidation product 4-hydroxynonenal on the aggregation of human platelets.

The stimulation by ADP or arachidonic acid of the aggregation of human platelets in plasma was inhibited by 4-hydroxynonenal (HNE). This reduction of aggregation was time related, and was increased by prolonged preincubation of the platelets with the aldehyde. HNE was more potent than its homologue 4-hydroxypentenal (HPE). HNE was less active in decreasing the aggregation induced by calcium ionophore A23187 or collagen in comparison with ADP. HNE was inactive against aggregation of platelet-rich plasma (PRP) stimulated by thrombin whereas it potently inhibited the aggregation of washed platelets in response to both thrombin and collagen. Platelets were found to degrade HNE, and mechanisms additional to covalent binding to glutathione are indicated by the results obtained. The aldehydes, including HNE, generated by platelets originated principally from arachidonic acid metabolism.

Adenosine Diphosphate↗