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Biomedical subjects

J Masliah

Publications and source records attributed to J Masliah.

At least 19 recordsLinked to original sources

Modulation of arachidonic acid metabolism and cyclic AMP content of human alveolar macrophages.

The exposure of human alveolar macrophages to inflammatory mediators such as PAF (1 microM), fMLP (1 microM) or the calcium ionophore A23187 (1 microM) induced a rapid decrease in their intracellular concentration of cAMP. Inhibition of TXA2 synthesis by the specific thromboxane synthase inhibitor ridogrel (1-10 microM) or by non-specific inhibitors as indomethacin (1-10 microM), the cyclooxygenase inhibitor, or BW A4C (1-10 microM), the 5-lipoxygenase inhibitor, partially prevented the decrease in cAMP induced by the different inflammatory stimuli. Evidence for an indirect control of cAMP levels in human alveolar macrophages by inflammatory mediators through the production of arachidonic acid derivatives from the cyclooxygenase pathway is supported by this study.

Adult

Type II phospholipase A2 recombinant overexpression enhances stimulated arachidonic acid release.

The coding sequence of type II phospholipase A2 from human placenta was cloned in a bovine papilloma virus-derived eukaryotic expression vector under the control of the metallothionein promoter. Stably transfected C127 mouse fibroblast lines were obtained with this vector. These transfected cells overexpressed a functional 14 kDa phospholipase A2, which was bulky secreted. However, a significant phospholipase A2 activity was measured in cell homogenates. The involvement of this 14 kDa phospholipase A2 in mechanisms related to stimulated arachidonic acid release was investigated. We could parallel the overexpression of phospholipase A2 with an increase in phorbol ester and fluoroaluminate-stimulated arachidonic acid release. Pertussis toxin inhibited this stimulation. These results suggest that the 14 kDa type II phospholipase A2 might contribute to stimulation of arachidonic acid release, and therefore to eicosanoid production.

Animals

Activation of guinea pig alveolar macrophages by endothelin-1.

Endothelin-1 (ET-1) induced a concentration- and time-dependent increase in arachidonic acid release from guinea pig alveolar macrophages, a maximum being reached at 1 nM ET-1. Regarding the time-course study, maximal release of arachidonic acid was observed after 30 s of incubation with ET-1 and then followed by a marked decrease, suggesting a reuptake of free arachidonic acid. ET-1 (0.1-10 nM) induced a concentration- and time-dependent release of TXB2, the stable metabolite of TXA2, evaluated by an ELISA technique. Maximum release was also obtained with 1 nM ET-1 but only after a 1-min incubation period. By contrast, ET-1 (1 pM-1 microM) did not stimulate the release of superoxide anion at any time point of the kinetic study. These results suggests that ET-1 may activate guinea pig alveolar macrophages, probably through a mechanism involving the arachidonic acid pathway.

Animals

Extended haplotypes and linkage disequilibrium between 11 markers at the APOA1-C3-A4 gene cluster on chromosome 11.

One hundred fifty-four unrelated French Caucasian subjects were typed for 11 RFLPs at or near the APOA1-C3-A4 gene cluster on the long arm of chromosome 11. All subjects belonged to families having lived in the Toulouse area (in the southwest of France) for over three generations. Allele frequencies for each RFLP were in agreement with previous studies in Caucasian populations for the APOA1/SstI marker. Pairwise linkage disequilibrium was determined. Among the 55 pairs studied, 30 are newly reported. Only three significant nonrandom associations were found: APOA1/MspI-3'APOC3/SstI, APOA1/MspI-3'APOA4/XbaI, and APOA4/DraI-APOA4/XbaI. Extended 11-marker haplotypes were constructed. Haplotype frequencies were estimated by the maximum-likelihood procedure and compared to expected frequencies calculated under the assumption of equilibrium. Among the 37 estimated haplotypes, seven containing at least four nonrandomly associated alleles showed markedly increased frequencies. These results, obtained in a geographically homogeneous population, confirm the existence of disequilibrium in the apolipoprotein cluster, but to a lower extent than previously reported in Caucasian populations, which were geographically more heterogeneous.

Apolipoprotein A-I

Toxic effects of oxygen on cultured alveolar epithelial cells, lung fibroblasts and alveolar macrophages.

Exposure to hyperoxia results in endothelial necrosis followed by type II cell proliferation. This suggests that type II cells are resistant to hyperoxia. Oxygen-induced lung injury may result from an overproduction of oxygen metabolites normally scavenged by antioxidants such as superoxide dismutase (SOD), glutathione peroxidase, catalase and reduced glutathione (GSH). Therefore, resistance of type II cells to hyperoxia may be linked to high antioxidant activities. To test this hypothesis we compared in vitro the effects of a 24 h exposure period to 95% O2 on cultured type II cells, lung fibroblasts and alveolar macrophages isolated from rats. We show that type II cells, when compared with other cell types, are highly sensitive to hyperoxia as shown by increased lactate dehydrogenase (LDH) release, decreased deoxyribose nucleic acid (DNA) and protein content of Petri dishes and decreased thymidine incorporation into DNA. Synthesis of dipalmitoylphosphatidylcholine was also significantly reduced. Antioxidant enzyme activities as well as glutathione content were not higher in type II cells than in other cell types. However, hyperoxia results in a decreased SOD activity and glutathione content in type II cells which was not observed in fibroblasts. We conclude that adaptative changes in SOD and glutathione metabolism could be important defence mechanisms in cells exposed to hyperoxia.

Animals

[Cellular phospholipases A2, structure-function relationship].

Two PLA2 are involved in cell signaling and in phospholipid homeostasis in mammalian cells. The first one is a 14 kDa protein whose cDNA was cloned in 1989. This enzyme exhibits a strong homology with pancreatic PLA2 but is more related to type II PLA2. This PLA2 is secreted by different tissues in response to inflammatory processes. Their main function seems to be the hydrolysis of membranes of altered cells or of bacteria and the stimulation of lipid mediator synthesis. The first cDNA of an another important PLA2 group was cloned in 1991. The protein deduced is a 88 kDa cytoplasmic protein. It is involved in cell signaling by stimulating the production of free fatty acids and of their oxygenated products. These products might in turn either activate transducing proteins or stimulate membrane receptors.

Cytoplasm

Antigen-dependent activation of alveolar macrophages from ovalbumin-sensitized guinea-pigs: relevance of the route of administration and the amount of antigen provided.

Alveolar macrophages from guinea-pigs sensitized by different amounts of ovalbumin, administered either by subcutaneous injection or aerosol exposure, liberate increased amounts of arachidonic acid and thromboxane B2 when challenged in vitro with ovalbumin. This antigen-dependent activation of macrophages was immunospecific. The comparison between different sensitization procedures showed that the aerosol exposure was the most efficient with respect to the activation of macrophages, as cells from guinea-pigs sensitized subcutaneously were poorly activated by the antigen unless high doses were used for sensitization. The antigen-dependent activation of macrophages was affected by acid and neutral washings, suggesting the involvement of a loosely bound antibody that could not be identified. These observations suggest that, as mast cells and basophils, alveolar macrophages from actively sensitized guinea-pigs contribute to the allergic reaction by an antibody-mediated mechanism.

Aerosols

Mechanism of N-formyl-methionyl-leucyl-phenylalanine- and platelet-activating factor-induced arachidonic acid release in guinea pig alveolar macrophages: involvement of a GTP-binding protein and role of protein kinase A and protein kinase C.

Various pharmacological effectors were used to investigate the mechanism of arachidonic acid release by N-formyl-methionyl-leucyl-phenylalanine (fMLP) and platelet-activating factor (PAF) in guinea pig alveolar macrophages. The fMLP- and PAF-stimulated arachidonic acid release (i) was mimicked by sodium fluoride and inhibited by Bordetella pertussis toxin, suggesting the participation of a guanine nucleotide-binding protein; ii) was mimicked by A23187 but was insensitive to the calmodulin inhibitor R24571, making the involvement of a calmodulin-dependent pathway unlikely; and (iii) was mimicked by 12-O-tetra-decanoyl phorbol 13 acetate (TPA) and was, like the TPA-stimulated release, markedly decreased when protein kinase C (PKC) had been down-regulated by TPA (65% decrease) or inhibited by sphingosine, a diacylglycerol-competitive PKC inhibitor shown to completely abolish the enzyme activity from alveolar macrophages at 40 microM. Moreover, PAF and fMLP, under conditions where they stimulated arachidonic acid release, promoted an appreciable, albeit transient, translocation of PKC, suggesting a possible involvement of the enzyme in the agonist-stimulated process. However, staurosporine, another PKC inhibitor decreasing PKC activity from alveolar macrophages by 60% at 20 nM, failed to alter fMLP- and PAF-stimulated release. These data lead us to suggest that fMLP- and PAF-stimulated arachidonic acid release is mediated by mechanisms involving either a staurosporine-insensitive PKC isoform or a sphingosine-sensitive coupling between a pertussis toxin-sensitive guanine nucleotide-binding protein and phospholipase A2. Finally, the fMLP- and PAF-stimulated arachidonic acid release was inhibited by cholera toxin and was, like A23187-stimulated release, potentiated by N-[2-(methylamino)ethyl]-5-isoquinolinesulfonamide dihydrochloride (H8), an exclusive protein kinase A inhibitor in alveolar macrophages, suggesting a negative regulation by protein kinase A.

Alkaloids

Phospholipase A2-mediated release of arachidonic acid in stimulated guinea pig alveolar macrophages: interaction with lipid mediators and cyclic AMP.

The stimulation of cultured guinea pig alveolar macrophages by the chemotactic peptide N-formyl-L-methionyl-L-leucyl-L-phenylalanine, or by the phospholipid inflammatory mediator platelet activating factor (PAF) induced an increase in arachidonic acid release and its cyclooxygenase products. This release, which was mimicked by the association of threshold concentrations of the calcium ionophore A 23187 and of the protein kinase C activator tetradecanoyl phorbol acetate arose mainly from diacyl- and alkyl-acyl-phosphatidylcholine and phosphatidylinositol. Using [1-14C]arachidonic acid-labeled membranes as an endogenous substrate as well as dioleoyl-phosphatidyl [14C]ethanolamine as an exogenous substrate, we showed that phospholipase A2 activity of stimulated macrophages increases upon stimulation. Treatment of macrophages by prostaglandin E2 decreased the arachidonic acid release elicited by the chemotactic peptide and PAF. Furthermore, prostaglandin E2 increased and PAF decreased the cellular content in cyclic AMP. From these results we suggest that an initial stimulation of alveolar macrophages by a bacterial signal initiates the sequential activation of a phospholipase C and of phospholipase A2, leading to the release of PAF and eicosanoids. These mediators may in turn modulate the cell response by increasing or decreasing cyclic AMP, Ca2+, or diacyglycerol macrophage content.

6-Ketoprostaglandin F1 alpha

Reduced responsiveness of bronchoalveolar cells from sensitised guinea-pigs to the cyclic AMP--stimulating effect of prostaglandin E2 and beta-adrenoceptor agonists.

Prostaglandin E2 and the beta-adrenoceptor agonist salbutamol were less effective in increasing the intracellular cAMP content of bronchoalveolar cells and adherent alveolar macrophages from ovalbumin-sensitised as compared to control guinea-pigs. This refractoriness to the cyclic AMP-stimulating effects of PGE2 and salbutamol induced by the sensitisation procedure may be relevant to the altered bronchopulmonary responsiveness in asthma.

Adrenergic beta-Agonists

Interaction between PAF-acether and drugs that stimulate cyclic AMP in guinea-pig alveolar macrophages.

The PAF-acether (1-alkyl-2-acetyl-sn-glycero-3-phosphocholine)-induced arachidonate release from alveolar macrophages was significantly reduced by prostaglandin E2 (PGE2) and by the beta-adrenoceptor agonist salbutamol. In addition, PAF-acether markedly reduced the increase in intracellular cyclic AMP (cAMP) concentrations induced by PGE2 and salbutamol. Our data indicate an inverse relationship between intracellular cAMP levels and free arachidonate availability in alveolar macrophages treated with PAF-acether. A rise in intracellular cAMP therefore represents an important alternative route for controlling the effects of PAF-acether and the resulting inflammatory alterations in the respiratory system.

Albuterol

Mobilization of arachidonic acid from diacyl and ether-linked phospholipids in FMLP stimulated alveolar macrophages.

Exposure of [1 14C]AA labeled guinea-pig alveolar macrophages to FMLP for 15 min induced an extensive mobilization of AA from phospholipids. PC and PI mainly contributed to the AA release, and labeled PE remained unchanged. Analysis of ether-linked phospholipids showed a significant breakdown of labeled diacyl and alkyl-acyl PC and an increase in labeled alkenyl-acyl PE.

Animals

Spontaneous hemolytic activity of rat alveolar lining material.

During assays of the complement hemolytic activity in lavage fluids (LF) from humans and various laboratory animals (hamsters, rabbits, rats, guinea pigs), we have observed that rat bronchoalveolar lavages had a spontaneous, complement-independent, hemolytic activity to sheep red blood cells (SRBC). Rat lavage fluids were able to lyse sheep and autologous red blood cells at 2 degrees C as well as at 37 degrees C. Together with these observations, the inverse relationship that existed between the LF hemolytic activity and the calcium concentration in the incubation medium suggested that lysis could be due to the presence of large amounts of lysophospholipids in rat lavage fluid. However, thin layer chromatography did not reveal any abnormal amount in lysoderivative, whereas the free fatty acid (FFA) content was very high. Pure palmitic acid, at a concentration similar to that observed in LF from rat, was able to lyse SRBC (8.5 micrograms lysed 50% of 10(8) SRBC); lytic activity decreased when Ca++ or bovine serum albumin was added to the incubation mixture. FFA through their detergent effect, appear to account for the hemolytic activity of the rat alveolar lining material.

Animals

Antigenic relatedness between phospholipases A2 from Naja naja venom and from mammalian cells.

Polyclonal antiserum was prepared against phospholipase A2 from Naja naja and used to prepare a purified antibody. It cross-reacted with the antigen, and with intracellular mammalian PLA2. This antibody was immunoreactive and inhibited the PLA2 activity of Naja naja and of guinea pig alveolar macrophages or rat lymphocytes. By immunoblotting, this antiserum revealed one band of PLA2 from Naja naja (14 kDa) and 3 bands for guinea pig alveolar macrophages and rat lymphocytes (30, 45 kDa and a minor band of 14 kDa). These results show an antigenic relatedness between an extracellular PLA2 and membrane-bound PLA2 from two different mammalian species and cell types.

Animals

A controlled study of oxygen metabolite release by alveolar macrophages from children with interstitial lung disease.

The ability of alveolar macrophages (AM) to release O2 metabolites was studied in 8 children with interstitial lung disease (ILD), and in 11 children without lung parenchyma disorder. AM were collected by bronchoalveolar lavage. The experiments were performed on unstimulated AM and on AM stimulated by phorbol myristate acetate (PMA) or zymosan. Our results indicated that, with or without triggering agent, the amount of O2 metabolites release was a linear function pattern with time. The accumulation of superoxide anion (O2-) and hydrogen peroxide (H2O2) into the extracellular medium differed depending on the triggering agent used: with PMA, the amount of O2- released was threefold the amount of H2O2 detected in the medium, whereas with zymosan the O2- accumulation was tenfold higher than the amount of H2O2 measured. In patients with ILD, a significant increase in the amount of H2O2 release was observed for both unstimulated and stimulated AM (p less than 0.001). In this group, the measurement was repeated after a 2-month steroid treatment: prednisone had markedly improved the clinical, radiologic, and functional status of the patients, and this improvement was in good correlation with the decrease of O2 metabolite production. The amount of H2O2 release in each case was within the range of control values. Evaluation of O2 metabolite release by AM could be a useful parameter in the assessment of the activity of ILD.

Adolescent