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A F Rowley

Publications and source records attributed to A F Rowley.

At least 37 records · Page 2Linked to original sources

Effects of dietary fatty acids on eicosanoid-generating capacity, fatty acid composition and chemotactic activity of rainbow trout (Oncorhynchus mykiss) leucocytes.

Rainbow trout, Oncorhynchus mykiss, were maintained on isocalorific diets in which either sunflower, menhaden or Fosol oils were used as the dietary source of fatty acids. At intervals over a period of 6 months, head kidney leucocytes were isolated and used for the analysis of their fatty acid composition and eicosanoid-generating capacity. Major changes in fatty acid composition were apparent within 4 weeks on the diets, with fish fed sunflower oil diets showing a 2.1-fold increase in total n-6 fatty acids and a 2.3-fold decrease in n-3 fatty acids, compared with the original basal levels. By week 8 the fatty acid composition changes were greater in the sunflower-fed fish, but thereafter remained relatively stable to the end of the experiment at week 24. Leucocytes from the fish maintained for > 8 weeks on the sunflower oil containing diet produced significantly lower percentages of 5-series lipoxygenase products derived from eicosapentaenoic acid including 12-hydroxyeicosapentaenoic acid, leukotriene B5 and lipoxin A5 compared with those cells from fish fed either menhaden or Fosol based diets. Unlike the fatty acid composition, differences in lipoxygenase product profiles between the dietary groups increased throughout the experiment and by week 24 the arachidonic acid/eicosapentaenoic acid derived product ratios were approx. 14:1 in the sunflower oil-fed fish compared with approx. 1:1.5 in the menhaden oil-fed fish. A functional consequence of these differing ratios was seen in the ability of supernatants containing these products to cause the in vitro locomotion of trout neutrophils. Supernatants from sunflower oil-fed fish were less chemo-attractive than supernatants from menhaden or Fosol oil-fed fish.

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Lipoxin biosynthesis by trout macrophages involves the formation of epoxide intermediates.

Rainbow trout macrophages incubated with calcium ionophore A23187 or zymosan synthesize a range of lipoxygenase products, including lipoxins from endogenous arachidonic and eicosapentaenoic acids. The profile of products formed was consistent with the presence of 5- and 12-lipoxygenase activity in intact cells, whereas freeze-thaw disruption of macrophages revealed a further 15-lipoxygenase activity. To examine the mechanism of lipoxin biosynthesis in these cells, macrophages from the hemopoietic head kidney were incubated with potential intermediates and substrates, including 5-hydroxyeicosatetraenoic acid (5-HETE), 5-hydroperoxyeicosatetraenoic acid (5-HPETE), 15-HETE, 15-HPETE, 5,15-dihydroperoxyeicosatetraenoic acid (5,15-diHPETE), 5,15-dihydroxyeicosatetraenoic acid (5,15-diHETE), and LTA4. Only 5-HPETE caused an increase in LXA4 formation, while incubation with 15-HETE resulted in the appearance of LXB4, a product not formed from endogenous substrates. Alcohol trapping experiments were conducted to evaluate the formation of epoxide-containing intermediates during lipoxin biosynthesis. Both 12-O-methoxy and 6-O-methoxy derivatives of LTA4/5 were formed, together with three groups of tetraene-containing trapping products, one of which co-chromatographed with the methanol trapping products generated from a synthetic 5(6)-epoxy tetraene. The time course of the appearance of tetraene and triene trapping products was similar. Preliminary results are also consistent with the presence of epoxide hydrolase activity in trout macrophages that converted the 5(6)-epoxy tetraene to LXA4. The results of this series of experiments suggest that lipoxin biosynthesis in trout macrophages involves the cooperation of 5- and 12-lipoxygenases to yield an epoxy tetraene-containing intermediate, or its equivalent, that is specifically converted to LXA4.(ABSTRACT TRUNCATED AT 250 WORDS)

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The effect of eicosanoids on rainbow trout, Oncorhynchus mykiss, leucocyte proliferation.

Proliferation of rainbow trout head kidney leucocytes in response to the mitogen phytohaemagglutinin-P (PHA-P) was modulated in the presence of inhibitors of eicosanoid synthesis and by exogenous eicosanoids. The presence of indomethacin, a cyclooxygenase inhibitor, resulted in a stimulatory effect, whereas the presence of nordihydroguiaretic acid, a lipoxygenase inhibitor, resulted in an inhibitory effect on mitogenicity. The addition of prostaglandins and lipoxins was also found to be inhibitory, whilst the addition of leukotrienes was stimulatory. Some class/series effects of the eicosanoids were also apparent. Prostaglandin E2 was a more potent inhibitor than prostaglandin E3, and proliferation was more sensitive to the effects of leukotriene B4 than to leukotriene B5. Whilst PHA-P was able to directly induce the release of prostaglandins from head kidney leucocytes, it did not induce the release of lipoxygenase products.

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Detection, isolation and characterization of multiple lectins from the haemolymph of the cockroach Blaberus discoidalis.

Three agglutinins (lectins), designated BDL1, BDL2 and BDL3, were identified in the haemolymph of the cockroach Blaberus discoidalis by erythrocyte cross-adsorption and sugar inhibition tests. With the use of (NH4)2SO4 fractionation, anion-exchange and affinity chromatography, BDL1 and BDL2 have been purified to homogeneity, and BDL3 has been partially purified to three bands on SDS/PAGE. BDL1 has a molecular-mass estimate of 390 kDa by gel filtration and approx. 158 kDa by SDS/PAGE under non-reducing conditions, further reduced to subunits of 36 kDa under reducing conditions. BDL2 has a molecular mass of approx. 140 kDa and is composed of subunits of 67 kDa which can be further reduced to identical subunits of 23 kDa. Isoelectric focusing in agarose gels revealed that BDL1 and BDL2 both focused as single bands at pH 6.0 and pH 5.2 respectively. The purified forms of BDL1 and BDL2 were stained by the periodic acid/Schiff's reagent showing that both lectins are glycoproteins. In addition, BDL1 was deglycosylated by endo-beta-N-acetylglucosaminidase H. Immunological tests showed that these three lectins are not structurally related. All three lectins bind galactose but have different specificities for binding other sugars and for a range of vertebrate erythrocytes. BDL1 is specifically inhibited by D-(+)-glucose, D-(+)-mannose and N-acetyl-D-mannosamine, but not by N-acetyl-D-glucosamine, and BDL2 is inhibited by N-acetyl-D-glucosamine, but not by D-(+)-glucose, D-(+)-mannose or N-acetyl-D-mannosamine. BDL3 is strongly inhibited by N-acetyl-D-galactosamine, but not by any of the other above-mentioned sugars. Erythrocyte specificities showed that BDL1 is more specific for rabbit than mouse erythrocytes, whereas BDL2 and BDL3 are more specific for mouse than rabbit erythrocytes. The haemagglutinating activities of both the serum and isolated lectins are Ca(2+)-dependent. Localization of BDL1 and BDL2 with fluorescein isothiocyanate-labelled antibodies showed that both lectins are associated with the granules and other areas of the cytoplasm of all blood cell types.

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Effect of lipoxins and other eicosanoids on phagocytosis and intracellular calcium mobilisation in rainbow trout (Oncorhynchus mykiss) leukocytes.

Rainbow trout (Oncorhynchus mykiss) macrophages generated lipoxin (LX) A4, LXA5, leukotriene (LT) B4, LTB5 and 12-hydroxyeicosatetraenoic acid (12-HETE) during the phagocytosis of zymosan and Escherichia coli, but not of the yeast Saccharomyces cerevisiae. Prostaglandin (PG) E2 was also detected in supernatants from macrophages incubated with either zymosan or calcium ionophore A23187. LXA4 (10(-8)-10(-6) M) and LTB4 (10(-9)-10(-7) M) provoked rapid and transient dose-dependent increases in intracellular calcium ([Ca]i) concentrations in leukocyte suspensions containing 40-60% macrophages. EC50 values were 14.9 and 1.2 nM, respectively. PGE2 and 12-HETE had no effect on [Ca]i at concentrations up to 30 microM. PGE2 and 12-HETE (10(-5)-10(-10) M) enhanced the in vitro phagocytosis of yeast test particles by trout macrophages, whereas LXA4 and LTB4 had no demonstrable effect on the responses of these cells at concentrations up to 10(-5) M. In conclusion, the processes involved in trout macrophage stimulation are complex but involve generation of both cyclooxygenase and lipoxygenase products. The increase in [Ca]i caused by LXA4 and LTB4 may form part of the chemotactic transduction mechanism that recruits granulocytes and macrophages to sites of inflammation. The effects of eicosanoids on phagocytosis appear to be independent of changes in [Ca]i.

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Biosynthesis of eicosanoids by blood cells of the crab, Carcinus maenas.

Blood cells from the crab, Carcinus maenas, stimulated with calcium ionophore A23187, in the presence of exogenous fatty acid, produced cyclooxygenase, lipoxygenase and monooxygenase derivatives of eicosatetraenoic (20:4(n - 6)) and eicosapentaenoic (20:5(n - 3)) acids. Isolation, identification and quantification of these products was achieved using chiral and reverse phase-high performance liquid chromatography, gas-chromatography, radioimmunoassay and gas chromatography-mass spectrometry. The principle metabolites observed were 8-hydroxy fatty acids and 'E' series prostaglandins. Smaller amounts of thromboxane B2, 6-keto-prostaglandin F1 alpha and 5-, 9-, 11-, 12- and 15-hydroxy-eicosatetraenoic acids were also synthesised. Lipoxygenase, cyclooxygenase and cytochrome P-450 inhibitors were used to investigate the mode of product formation. Mixtures of hydroxy-fatty acid enantiomers were produced and the dominant chiral form varied with the position of the hydroxyl group. No leukotrienes or lipoxins were detected.

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Lipoxin-induced migration of fish leukocytes.

The migration-inducing abilities of both synthetic lipoxin A4 (LXA4) and leukotriene B4 (LTB4) for rainbow trout neutrophils were examined with an in vitro assay. LXA4 caused enhanced migration of these cells with a three- to fourfold greater response than that observed toward LTB4 at most concentrations tested. Checkerboard assays showed that synthetic LXA4 was chemokinetic for trout leukocytes, while LTB4 was chemotactic. The chemokinetic ability of LX synthesized by rainbow trout macrophages maintained in short-term culture was also determined. These cells produced both 4-and 5-series LX, namely LXA4, LXA5, 11-trans-LXA4, 11-trans-LXA5, 7-cis-11-trans-LXA4 and 6(S)-LXA4. Although greater migration was found to LXA4 than to most of the other 4-series positional isomers, at least at some concentrations, this did not exhibit the degree of stereospecificity previously reported in some studies for mammalian leukocytes. Little difference was found between the chemokinetic responses of rainbow trout leukocytes to 4- and 5-series LX. These findings suggest that LXs are important migration-inducing molecules in trout and have a relatively long evolutionary history.

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Lipoxin formation in fish leucocytes.

Adherent leucocytes, consisting of mainly macrophages, isolated from the haemopoietic head kidney of five species of fish were challenged with calcium ionophore and the resulting lipoxygenase products were separated and identified by reverse-phase high performance liquid chromatography. Of the fish examined, only adherent leucocytes from the Atlantic salmon and mirror carp generated lipoxins. Atlantic salmon leucocytes synthesized mainly lipoxin (LX) A4/LXA5 and 11-trans-LXA4/11-trans-LXA5, while mirror carp produced both LXA4 and LXB4 and their isomers but no 5-series lipoxins. This variation in lipoxin generation suggests that there are differences in the mode(s) of biosynthesis of these compounds between the two species of fish.

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Synthesis of lipoxins and other lipoxygenase products by macrophages from the rainbow trout, Oncorhynchus mykiss.

Rainbow trout macrophages maintained in short term culture when incubated with either calcium ionophore, A23187, or opsonized zymosan synthesize a range of lipoxygenase products including lipoxins and leukotrienes. These cells are unusual in that they generate more lipoxin than leukotriene following such challenge. The main lipoxin synthesized was lipoxin (LX) A4. This compound was identified by cochromatography with authentic standard during reversephase high performance liquid chromatography, by ultra violet spectral analysis, radiolabeling following incorporation of [14C]arachidonic acid substrate into macrophage phospholipids, and gas chromatography electron impact mass spectrometry of the methyl ester, trimethylsilyl ether derivative. Other 4-series lipoxins synthesized by trout macrophages were identified as 11-trans-LXA4, 7-cis-11-trans-LXA4, and 6(S)-LXA4. These cells also produced 5-series lipoxins tentatively identified as LXA5, 11-trans-LXA5 and possibly 6(S)-LXA5. No LXB4 or LXB5 was, however, detected. The dynamics of leukotriene and lipoxin release were also determined. Lipoxin generation was slower than leukotriene generation the latter reaching a maximum after 30 min of exposure to ionophore (5 microM, 18 degrees C) compared with 45 min for the former.

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Activation of the prophenoloxidase cascade and initiation of nodule formation in locusts by bacterial lipopolysaccharides.

The activation of the prophenoloxidase (proPO) system of the locusts, Schistocerca gregaria and Locusta migratoria, by several bacterial lipopolysaccharides (LPS) is described. Activation of proPO by LPS occurred only in the presence of whole blood homogenates and not with hemocyte lysate preparations alone. Levels of phenoloxidase generated by the different LPSs in vitro were also correlated with numbers of nodules formed in vivo by injection of these LPSs. This further strengthens the evidence for the involvement of proPO activation in the insect cellular defenses. Finally, the wisdom in using anticoagulants in order to stabilize fragile hemocytes in studies on the proPO system is discussed.

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Fatty acid composition and lipoxygenase metabolism in blood cells of the lesser spotted dogfish, Scyliorhinus canicula.

1. The fatty acid composition of erythrocytes and leucocytes of the elasmobranch, Scyliorhinus canicula, was determined so as to indicate substrate availability for eicosanoid formation. 2. Leucocytes showed a greater degree of fatty acid unsaturation than the erythrocytes, with particularly high levels of docosahexaenoic acid (22:6,n-3). 3. The major eicosanoid precursors, arachidonic acid (20:4,n-6) and eicosapentaenoic acid (20:5,n-3), represented 13.9% and 5.2% of the total fatty acid, respectively, in erythrocytes compared with 10.7% and 6% in leucocytes. 4. Whole blood and isolated leucocytes were stimulated with calcium ionophore, A23187 and the resulting lipoxygenase products separated by reverse phase high performance liquid chromatography. 5. The main lipoxygenase products formed were 6-trans-leukotriene B4, 6-trans-12-epi-leukotriene B4, 5(S),6(R) dihydroxyeicosatetraenoic acid and 5- and 15-hydroxyeicosatetraenoic acid. 6. No leukotriene B4, leukotriene B5, or lipoxins were detected.

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Studies on the cellular defense reactions of the madeira cockroach, Leucophaea maderae: in vitro phagocytosis of different strains of Bacillus cereus and their effect on hemocyte viability.

Monolayers of Leucophaea maderae hemocytes, consisting of mainly plasmatocytes and coagulocytes, were incubated with three strains of Bacillus cereus of differing pathogenicities, and the levels of phagocytosis and hemocyte viability were determined. Incubation with viable B. cereus strains NCTC 2599, NCIB 3329, and B1 resulted in a significant drop in hemocyte viability after 60 min of incubation compared with the saline-only controls. The greatest effect, however, resulted from incubation with B. cereus B1 which is the most pathogenic of the three strains studied. The killing effect of the three B. cereus strains was abolished following their UV irradiation. Incubation of monolayers with viable B. cereus B1 resulted in a level of phagocytic activity at all time periods lower than that with the other two strains. The highest levels of phagocytosis were achieved with UV-killed B. cereus, although no significant differences were found in these values between the three strains at any of the incubation times. Phospholipase C, a lytic enzyme shown to be released by all three strains of B. cereus, although in varying amounts, also caused hemocyte death following its incubation with the monolayers. These data suggest that the hemocyte killing and resistance to phagocytosis by B. cereus are caused by the release of phospholipase C, or some other related toxin(s) by the bacteria.

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Lipoxins are major lipoxygenase products of rainbow trout macrophages.

Rainbow trout macrophages synthesize lipoxins as major lipoxygenase products entirely from endogenous fatty acids. High-performance liquid chromatographic analysis of the supernatants from macrophages challenged with calcium ionophore A23187 revealed a range of lipoxygenase products including mono-hydroxy fatty acids, leukotrienes B4 and B5 and four major peaks with retention times and UV spectra characteristic of lipoxins (lambda max 302 nm). Cochromatography with authentic standards, UV spectroscopy and radiolabeling with [14C]arachidonate and eicosapentaenoate allowed tentative identification of the two largest peaks as lipoxin A4 and A5.

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Synthesis of leukotriene B and other conjugated triene lipoxygenase products by blood cells of the rainbow trout, Salmo gairdneri.

Stimulation of whole blood from rainbow trout with the calcium ionophore, A23187 (20 microM), produced leukotrienes B4 and B5 at concentrations in the range 22-30 ng.ml-1 and 8-24 ng.ml-1, respectively. Their identification and quantification was achieved using reverse-phase high-performance liquid chromatography, combined capillary column gas chromatography-electron capture chemical ionization mass spectrometry and ultraviolet spectroscopy. A number of other lipoxygenase products were also detected, but only partially analysed. The fatty acid composition of the leucocytes, which are presumed to be the site of leukotriene synthesis, was determined by thin-layer and gas-liquid chromatography to enable a comparison of the relative levels of the polyunsaturated fatty acids, which act as substrates for the synthesis of these lipoxygenase products. Arachidonic (20:4(n - 6)), eicosapentaenoic (20:5(n - 3)) and docosahexaenoic (22:6(n - 3)) acids represented approx. 6, 5 and 40%, respectively, of the total fatty acid content.

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Studies on the cellular defense reactions of the Madeira cockroach, Leucophaea maderae: nodule formation in response to injected bacteria.

Nodules were formed in the Madeira cockroach, Leucophaea maderae, in response to injections of low doses (3 x 10(4) bacteria/insect) of three strains of Bacillus cereus and Escherichia coli K12 D31. The most pathogenic strain of bacteria used, B. cereus B1, produced the greatest cellular response, while the least pathogenic, E. coli K12 D31, injected at the same dose, caused little nodule formation. Similarly, nodules were generally found to be larger following injection of pathogenic bacteria such as B. cereus B1 than to the weak pathogen, E. coli K12 D31. There was, however, no difference in the extent of nodule formation with the four bacterial strains/species if they were heat killed prior to injection. Histologically, the nodules formed in response to all bacterial species employed were similar, with a central necrotic core enclosing cell debris and occasional bacteria, and an outer, thin sheath of plasmatocyte-like hemocytes. Possible reasons for the enhanced cellular reactivity observed in L. maderae to pathogenic bacteria are discussed.

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Effect of exposure of Pieris brassicae larvae to 2,4,5-trichlorophenoxyacetic acid on the natural antibacterial activity of serum.

Larvae of the cabbage white butterfly, Pieris brassicae, were reared on a semisynthetic diet with or without 20 ppm of the herbicide 2,4,5-trichlorophenoxyacetic acid (2,4,5-T) and using three assays the sera were subsequently tested for natural antibacterial activity against Bacillus cereus, Escherichia coli K12, and Micrococcus luteus. These assays showed that exposure of larvae to 2,4,5-T lowered the antibacterial activity of the serum against E. coli and M. luteus compared with control animals. Spectrophotometric tests for the presence of a lysozyme-like principle in the serum also revealed similar trends with a significant loss of enzyme activity in 2,4,5-T-treated insects. Overall total serum protein levels of control and 2,4,5-T-treated insects were similar, suggesting a specific effect of the herbicide on certain serum components such as lysozyme. The possible mode of action of the herbicide on production of antibacterial factors is discussed.

2,4,5-Trichlorophenoxyacetic Acid↗