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Biomedical subjects

B B Vargaftig

Publications and source records attributed to B B Vargaftig.

At least 19 recordsLinked to original sources

Expression of the type-II phospholipase A2 in alveolar macrophages. Down-regulation by an inflammatory signal.

We have shown previously that guinea pig alveolar macrophages (AM) synthesize a secretory phospholipase A2 (PLA2) during in vitro incubation. Here, we report the molecular cloning of this enzyme and show that it has structural features closely related to all known mammalian type-II PLA2. The mRNA and PLA2 activity were undetectable in freshly collected AM, but their levels increased dramatically to reach maximal values after 16 h of culture. Thereafter, the PLA2 activity remained constant with a parallel secretion in the medium, in contrast to mRNA level which returned to near basal values after 32 h. Incubation of AM for 16 h with the inflammatory secretagogue peptide f-Met-Leu-Phe (fMLP) markedly reduced the PLA2 activity and mRNA levels. This inhibition was prevented by preexposure of AM to pertussis toxin, an inhibitor of G-protein. In contrast, when AM were first cultured for 16 h and then incubated with fMLP, no significant change was observed in their PLA2 activity. In conditions where the type-II PLA2 was completely abrogated by fMLP, the latter did not alter the lipopolysaccharide-induced accumulation of tumor necrosis factor alpha mRNA or the release of arachidonic acid induced by the subsequent addition of the calcium ionophore A23187. These studies show that the inflammatory peptide fMLP down-regulates the expression of the type-II PLA2 by AM through a process mediated by G-protein. A possible negative control of the type-II PLA2 expression during AM activation is suggested.

Amino Acid Sequence

Interleukin-5 and eosinophil cationic protein in nasal lavages of rhinitis patients.

The production of interleukin-5 and eosinophil cationic protein (ECP) in the nasal cavity was examined in 24 patients with rhinitis who were allergic to the house dust mite. During a double-blind placebo-controlled cross-over study, fluticasone propionate aqueous nasal spray (200 micrograms) was administered twice daily for 2 weeks. After four basal nasal lavages provocation with house dust mite extract was performed and nasal lavages were collected every hour for 9.5 h. Interleukin-5 was present in detectable amounts in nasal lavages from patients allergic to house dust mite. Nasal challenge with house dust mite extract caused immediate nasal symptoms and increased levels of interleukin-5. Between 3.5 and 8.5 h after the challenge symptoms recurred and interleukin-5 levels increased, reflecting a late phase reaction. Eosinophil cationic protein, a marker of activated eosinophils, was released between 6.5 and 9.5 h after challenge. Treatment with fluticasone propionate (as an aqueous nasal spray) significantly decreased the evoked interleukin-5 and ECP levels in the late phase reaction. This response was correlated with an improved symptom score. This could indicate that the number and activity of eosinophils are increased during the late phase allergic reaction, a response that is inhibited by corticosteroids.

Adult

Enhanced arachidonic acid metabolism in alveolar macrophages from wheezy infants. Modulation by dexamethasone.

To test the hypothesis that alveolar macrophages (AM) from wheezy infants release increased amounts of eicosanoids, as do AM from adults with asthma, we compared eicosanoid release by unstimulated- and ionophore-A23187-stimulated AM from 13 wheezy and six nonwheezy infants and analyzed its regulation by dexamethasone in vitro. Alveolar macrophages from wheezy infants released greater amounts of thromboxane A2 (TxA2) and leukotriene B4 (LTB4) under resting conditions and of TxA2 upon stimulation than did those from control subjects. Dexamethasone induced a dose-dependent inhibition of the spontaneous and A23187-stimulated release of TxA2, but not of the A23187-stimulated release of lipoxygenase products. The inhibition of TxA2 formation was maintained when free arachidonic acid was added during A23187 stimulation, demonstrating that dexamethasone acted mainly at a postphospholipase A2 site. AM exposed to acetylsalicylate and then incubated overnight exhibited de novo cyclooxygenase synthesis, suggesting the presence of the inducible cyclooxygenase as a target for inhibition by dexamethasone. In conclusion, our findings suggest that AM from wheezy infants are activated in vivo to release eicosanoids, as are AM from asthmatic adults, and they support the therapeutic indications of glucocorticoids in severe recurrent wheezing of infancy.

Adult

Interleukin-10 inhibits antigen-induced cellular recruitment into the airways of sensitized mice.

This report examines the effect of recombinant murine (rm) IL-10 on antigen-induced cellular recruitment into the airways of sensitized Balb/c mice. The intranasal instillation of 10 micrograms ovalbumin induced an early (6-24 h) increase in the number of neutrophils, and a late rise (24-96 h) in that of eosinophils in the bronchoalveolar lavage (BAL) fluid and bronchial tissue. A single intranasal instillation of 0.01-0.1 microgram of rmIL-10, administered concurrently with ovalbumin, but not 1 or 3 h thereafter, dose-dependently inhibited both airway neutrophilia and eosinophilia. This phenomenon was suppressed by treating the sensitized mice with 1 mg/mouse of a neutralizing anti-IL-10 mAb, which increased significantly ovalbumin-induced neutrophil and eosinophil accumulation in the BAL fluid. These results suggest that antigen stimulation may trigger the in vivo generation of IL-10, which, in turn, participates in the leukocyte infiltration into the airways. rmIL-10 also reduced TNF-alpha release in the BAL fluid observed 1 and 3 h after antigen challenge. Furthermore, the intranasal instillation of an anti-TNF-alpha antiserum to sensitized mice markedly reduced ovalbumin-induced neutrophil and eosinophil accumulation in the BAL fluid. These findings indicate that leukocyte infiltration into the airways of antigen-challenged mice is regulated by IL-10. Furthermore, inhibition of TNF-alpha production by rmIL-10 suggests that allergic airway inflammation and TNF-alpha formation are parallel events in this model.

Administration, Intranasal

Modulation of the bronchial inflammation in sensitized guinea-pigs by FK506, nedocromil sodium and dexamethasone.

Guinea-pigs sensitized by a subcutaneous injection of ovalbumin in Al(OH)3 and boosted 2 weeks later exhibit marked bronchial hyperresponsiveness to various agonists and intense bronchial wall infiltration by CD4+ T-lymphocytes and eosinophils. We have compared the effect of FK506, a novel immunosuppressive agent, on the mucosal infiltration by T-cells and eosinophils with the well established drugs, nedocromil sodium and dexamethasone. Sensitized Hartley guinea-pigs were treated subcutaneously for 5 days with FK506 (100 micrograms.kg-1 daily), nedocromil sodium (30 micrograms.kg-1 daily), or dexamethasone (200 micrograms.kg-1 daily). On the day of the experiment, i.e. one week after the booster injection of antigen, the animals were killed, the lungs dissected, frozen and cryostat sections stained by immunohistochemical methods using monoclonal antibodies specific for total T-lymphocytes, CD4+ and CD8+ T-cells. Cyanide-resistant eosinophil peroxidase activity was used to stain the eosinophils. Sections were coded and positive cells enumerated in the lamina propria and adventitia of the bronchi. Sensitized and antigen-stimulated vehicle-treated guinea-pigs showed marked infiltration of the bronchial wall by CD4+ T-lymphocytes and eosinophils compared with sensitized, non-antigen stimulated animals. As compared to vehicle, FK506 or dexamethasone abolished the T-cell/eosinophil invasion in the bronchial wall, whereas nedocromil sodium was ineffective in protecting the lungs from T-lymphocyte or eosinophil infiltration. We conclude that both FK506 and dexamethasone are effective in curtailing bronchial inflammation in allergic guinea-pigs, whereas nedocromil sodium did not resolve the inflammation associated with T-lymphocytes or eosinophils.

Animals

Strain-dependency of leukotriene C4 generation from isolated lungs of immunized mice.

1. The antigen-induced leukotriene C4 (LTC4)-like-material release from isolated perfused lungs of actively sensitized Swiss, Balb/C and CBA/J mice was compared. The intra-tracheal (i.t.) instillation of 1 and 100 micrograms ovalbumin to lungs from Swiss mice was followed by a dose-dependent generation of LTC4-like material into the effluent, as detected by radio-immunoassay and h.p.l.c., followed by an enzyme-immunoassay. In contrast, lungs from sensitized Balb/C and CBA/J mice failed to exhibit LTC4-like-material release in amounts above the basal values. No histamine secretion was observed when lungs of the three strains of mice were challenged with ovalbumin. 2. The i.t. instillation of 1 or 10 micrograms platelet-activating factor (PAF) or of 100 micrograms arachidonic acid to lungs from non-sensitized mice, induced the release of comparable amounts of LTC4-like-material in the effluent, irrespective to the strain. However, N-formyl-L-methionyl-L-leucyl-L- phenylalanine (fMLP, 0.1, 10 micrograms), was more effective in inducing the release of LTC4-like-material from lung from Swiss and CBA, than from Balb/C, mice. 3. The intraplantar injection of 0.01 microgram ovalbumin to sensitized Swiss mice induced an intense oedema formation, as measured plethysmographically, while Balb/C mice required a dose of antigen at least 10 fold higher for a similar response. CBA/J mice did not respond to antigen challenge in terms of oedema formation. The intraplantar injection of PAF or fMLP to non-immunized mice induced an oedema of similar intensity in all the strains considered. Accordingly, the different responses to ovalbumin of the three strains of mice is not accounted for by different paw responsiveness to inflammatory mediators.4. Swiss and CBA/J mice exhibited higher titers of circulating IgG antibodies, as measured by passive cutaneous anaphylaxis (PCA), than Balb/C mice. Conversely, lower IgE titers were measured in the serum of sensitized Swiss and CBA/J mice, as compared to Balb/C.5. Our results demonstrate a strain-dependency of antigen-induced LTC4 release from lungs from sensitized mice. This difference is related to the ability of sensitized animals to develop immediate hypersensitivity responses, such as paw oedema formation, but not to the antibody subclass involved in the immunization. Strain-dependent factors may influence the intensity of the response to antigen stimulation. It is thus essential to characterize the different components of the immune response when mouse models for studying hypersensitivity reactions are developed.

Animals

Compound PCA-4248 interferes with bronchopulmonary anaphylaxis and with in vitro hyperresponsiveness to platelet-activating factor.

The intravenous (i.v.) or oral administration of the platelet-activating factor (PAF) antagonist, PCA-4248, to guinea-pigs blocked selectively the bronchoconstriction induced by PAF, as well as the accompanying thrombocytopenia and leucopenia. In addition, PCA-4248 i.v. or intratracheal (i.t.) administration blocked the bronchoconstriction caused by the i.t. instillation of PAF. As in the case of other PAF antagonists, bronchoconstriction caused by the i.t. instillation of antigen was only inhibited by PCA-4248 in guinea-pigs that did not receive a booster injection of antigen during sensitization whereas the booster injection of antigen made anaphylactic bronchoconstriction resistant to the compound. In vitro, when lungs from non-sensitized guinea-pigs were perfused with Krebs-bovine serum albumin (BSA) solution supplemented with PCA-4248, bronchoconstriction and the formation of thromboxane A2 by PAF were blocked. In this in vitro model of perfused lungs, active sensitization with a booster injection of antigen leads to bronchopulmonary hyperresponsiveness to PAF and failure of other PAF antagonists to inhibit the effects of PAF itself. Surprisingly, in lungs isolated from actively sensitized and boosted guinea-pigs, PCA-4248 blocked the effects of PAF, indicating that this compound possesses additional original properties in this model.

Anaphylaxis

Lung responsiveness to antigen in sensitised mice of different strains.

A new model of the isolated perfused lung from different strains of mice was developed. Lungs from Swiss, Balb/C and CBA mice actively sensitised to ovalbumin were challenged intratracheally (i.t.) by antigen on day 14. In Swiss mice instillation of ovalbumin led to the release of leukotriene (LT) C4 significantly above basal values. Conversely, lungs from Balb/C and CBA mice were unresponsive to ovalbumin in terms of production of LTC4. All strains failed to release histamine when challenged with antigen. Intratracheal instillation of platelet-activating factor (PAF), to lungs from non-sensitised animals, induced the release of comparable amounts of LTC4, irrespective of the strain. In contrast, i.t. administration of fMLP to lungs from Swiss mice elicited release of significantly higher amounts of LTC4 as compared to Balb/C and CBA mice. In separate experiments, ovalbumin was injected into the paws and anaphylactic oedema was evaluated. Balb/C and CBA required 1 microgram to show an oedema formation, whereas the dose of ovalbumin for Swiss mice to develop a similar response was at least 30-fold lower. In conclusion, antigen provocation induced release of LTC4 from lungs from Swiss mice but not from Balb/C or CBA. This difference may be accounted for by strain-dependent factors, such as antibody production and requires further investigation.

Animals

Inhibition by nedocromil sodium of recombinant human interleukin-5-induced lung hyperresponsiveness to platelet-activating factor in actively sensitized guinea pigs.

BACKGROUND: The intratracheal instillation of recombinant human interleukin-5 (rhIL-5) into isolated lungs from sensitized and antigen-boosted guinea pigs is followed by enhanced responses to platelet-activating factor (PAF). METHODS: Modulation by nedocromil sodium of rhIL-5-dependent hyperresponsiveness to PAF was investigated. Perfused lungs from guinea pigs actively sensitized to ovalbumin were injected intratracheally with 300 ng rhIL-5 followed by PAF (10 and 100 ng intraarterially). RESULTS: No inhibition of rhIL-5-induced increased bronchoconstriction and release of thromboxane (TX)B2 and histamine by PAF was observed when nedocromil sodium (10 mumol/L) was perfused into the lungs. In contrast, when guinea pigs were treated for 2 days (30 mg/kg twice a day), eosinophil recruitment into the bronchoalveolar lavage fluid and hyperresponsiveness to PAF were markedly reduced (100% [p < 0.001]; around 70% [p < 0.05] and around 90% [p < 0.001] inhibition for bronchoconstriction, TXB2 and histamine release, respectively). CONCLUSION: Our results indicate that nedocromil sodium prevents the rhIL-5-induced lung hyperresponsiveness to PAF and the eosinophil migration into the airways only when it is administered in vivo. It is thus suggested that nedocromil sodium interferes with the development of airway inflammation by inhibiting the recruitment in the lung of a target on which PAF and IL-5 interact.

Animals

Immunoglobulin-G-dependent stimulation of guinea pig lung mast cells and macrophages.

Alveolar macrophages and mast cells isolated from guinea pig lung were passively sensitized with IgG1, IgG2, or serum obtained from guinea pigs actively sensitized with ovalbumin. The release of histamine by mast cells and of thromboxane A2 by alveolar macrophages upon ovalbumin challenge indicated that both antibodies and serum were capable of sensitizing these cells with similar effectiveness. Heating the serum at 56 degrees C for 4 h to inactivate IgE did not modify the antigen-dependent response of lung cells. These results suggest a predominant role for IgG in the allergic response of the guinea pig through the activation of different cell types such as lung mast cells and alveolar macrophages.

Animals

Interference of a neutrophil recruitment inhibitory factor upon the accumulation of inflammatory cells and airway hyperreactivity in sensitized guinea-pigs after intranasal antigen challenge.

1. A neutrophil recruitment inhibitory factor (NRIF) recovered from the crude supernatant of lipopolysaccharide (LPS)-stimulated macrophages inhibited neutrophil migration following both intratracheal and intravenous administration of LPS, but did not alter the pattern of leukopenia/leucocytosis induced by intravenous LPS. 2. The correlation between airway infiltration by inflammatory cells and hyperreactivity in lungs from actively sensitized and challenged guinea-pigs was investigated by use of NRIF. 3. Increased eosinophil counts were found in the bronchoalveolar lavage fluid from guinea-pigs sensitized with 10 micrograms ovalbumin and challenged at day 14 by the intranasal administration of the antigen. The increase was evident 5 h after challenge and persisted at 24 h. Neutrophil numbers were also increased at this time. Pretreatment with NRIF suppressed the leucocyte increase in the bronchoalveolar lavage fluid. 4. Bronchoconstriction and histamine release induced by 3 ng PAF injected into the isolated lungs were increased in challenged guinea-pigs as compared to sensitized but unchallenged controls. Pretreatment of the animals with NRIF did not interfere with this response, but significantly reduced the bronchoconstriction induced by ovalbumin injection. 5. Even though the increased number of inflammatory cells in bronchoalveolar lavage and airway hyperresponsiveness were concomitant, NRIF inhibited cellular infiltration but failed to alter airway hyperreactivity to PAF, demonstrating that these events may occur independently. Conversely, the inhibition of antigen-induced bronchoconstriction by NRIF suggests that this response is dependent upon the emigration of granulocytes.

Administration, Intranasal

Characterization and pharmacological modulation of antigen-induced peritonitis in actively sensitized mice.

1. The intraperitoneal (i.p.) injection of 1 or 10 micrograms ovalbumin to sensitized Balb/c mice led to an acute histamine release, firstly evidenced 1 min after the challenge and returning to basal levels 30 min thereafter. This phenomenon was unaccompanied by protein extravasation. A dose-dependent increase in the amounts of immunoreactive leukotriene (LT) C4 and LTB4 was observed in the peritoneal washing from sensitized mice 6 h after 1 or 10 micrograms ovalbumin administration. In separate experiments, the i.p. administration of 1 mg activated zymosan to non-immunized mice was followed by a marked protein extravasation, and by immunoreactive LTC4 and LTB4, but not histamine, release in mouse peritoneum 1 h after its injection. 2. Mediator release in the mice peritoneal cavity was concomitant with a transient neutrophil infiltration, which peaked at 6 h and returned to basal levels therefore. An intense eosinophil accumulation starting at 24 h, peaking at 48 h and returning to basal values at 164 h, was also observed. 3. Ovalbumin (1 microgram)-induced eosinophilia, observed at 24 h, was reduced by the pretreatment of the animals with dexamethasone (1 mg kg-1, s.c.) or with the 5-lipoxygenase inhibitor, BWA4C (20 mg kg-1, s.c.), whereas indomethacin (2 mg kg-1, s.c.) and the platelet-activating factor (PAF)-antagonist SR 27417 (10 mg kg-1, s.c.) were ineffective. These results indicate that metabolites of arachidonic acid of lipoxygenase pathway, but not cyclo-oxygenase derivatives or PAF, mediate antigen-induced eosinophil accumulation in the mouse peritoneum. 4. The histamine HI receptor antagonist drug, cetirizine (15-30 mg kg-1, s.c.) markedly reduced ovalbumin-induced eosinophil accumulation under conditions where terfenadine was ineffective, suggesting that the effect of cetirizine was not related to the inhibition of the H1 receptor effects of histamine.5. The immunosuppressive agent, FK-506 (1-2 mg kg-1, s.c.) and the protein synthesis inhibitor,cylcoheximide, when administered either in situ (0.06 ng/cavity) or systemically (5 mg kg-1, s.c.),prevented antigen-induced eosinophil accumulation in the mouse peritoneum, contributing to the concept that substances (probably cytokines) originating from lymphocytes may be involved in the modulation of the eosinophilotactic response in this model.6. The results of the present study indicate that the i.p. administration of ovalbumin to actively sensitized mice induced late eosinophil accumulation in the peritoneal cavity. This phenomenon, which may be in part mediated by the release of lipoxygenase metabolites and/or by newly generated factors,such as T-lymphocytes-derived eosinophilotactic cytokines, offers an interesting tool to investigate the mechanism of action of anti-allergic and anti-inflammatory drugs.

Animals

Activation and damage of cultured airway epithelial cells by human elastase and cathepsin G.

Accumulation of polymorphonuclear neutrophils (PMN) and epithelium damage have often been described during airway inflammation. We studied the effects of two PMN-derived proteinases, namely elastase and cathepsin G, on guinea-pig tracheal epithelial cells in culture. Both proteinases activated tracheal epithelial cells in terms of prostaglandin (PG) E2 production. A concentration- and time-dependent effect was observed with 10 micrograms/ml and 6 h as the optimal conditions for both enzymes. Optical microscopic studies confirmed an effect on tracheal epithelial cells as intercellular gaps were observed upon incubation of the monolayers with proteinases. A small cytotoxic effect was observed after 1 h incubation but remained stable up to 6 h. This cytotoxic effect, more pronounced with elastase than with cathepsin G, was dissociated from PGE2 formation.

Animals

Suppression by cetirizine of pleurisy triggered by antigen in actively sensitized rats.

The efficacy of cetirizine in comparison with meclizine, another piperazine H1 receptor antagonist, in rat pleurisy caused by allergen or autacoid was investigated. Sensitization was achieved by subcutaneous injection of a mixture of ovalbumin and aluminium hydroxide. Fourteen days later, the animals were challenged with an intrathoracic injection of ovalbumin (12 micrograms/cavity), which caused drastic mast cell degranulation, followed by pleural oedema and leucocyte influx. Cetirizine and meclizine (2.5-30 mg/kg i.p.), 1 h before challenge, inhibited the exudatory response evoked by antigen, under conditions where neutrophil and eosinophil accumulation was affected only by the former. When administered intrathoracically 22 h after allergen, i.e. using a curative approach, cetirizine (15 micrograms/cavity) drastically reduced the pleural eosinophilia noted 24 h post-challenge, indicating that this drug can reverse an already established eosinophilia. Cetirizine (15 mg/kg i.p.) also restored, to about 39% (P < 0.001), the number of uninjured mast cells recovered from the pleural cavity following allergen stimulation. In normal rats, cetirizine (5-15 micrograms/cavity) completely inhibited the pleural exudation elicited by histamine and only partially the exudation caused by 5-hydroxytryptamine or bradykinin, but was quite inactive against platelet-activating factor. We conclude that the pleural exudation triggered by allergen, vasoactive amines or bradykinin is clearly sensitive to cetirizine. In addition, the ability of the drug to interfere with pleural neutrophil or eosinophil mobilization and mast cell degranulation seems not to be associated with its ability to block the histamine H1 receptor.

Animals

Inhibition of phospholipase A2 activity in guinea pig eosinophils by human recombinant IL-1 beta.

The effect of human rIL-1 beta on the release of arachidonic acid (AA) and on the phospholipase A2 (PLA2) activity in guinea pig eosinophils was investigated. Stimulation of [3H]AA-labeled eosinophils with the ionophore A23187 resulted in a time and concentration-dependent release of AA in parallel to hydrolysis of endogenous phosphatidylcholine (PC). Both events were abrogated by the chelation of intracellular free calcium, but not by its depletion from the medium, suggesting that the ionophore-induced AA release involves a PLA2 activity dependent on the mobilization of intracellular calcium. Addition of human rIL-1 beta (0.01 to 100 ng/ml) to eosinophils for 15 min had no effect on the release of AA induced by the ionophore. However, prolonged incubation with human rIL-1 beta (30 to 180 min) inhibited in a concentration- and time-dependent manner the release of AA and the hydrolysis of phosphatidylcholine in ionophore-stimulated eosinophils. Our results also showed that eosinophil homogenates contain a calcium-dependent PLA2 whose activity was markedly reduced when eosinophils were pretreated with human rIL-1 beta. The inhibition was time and concentration dependent and was observed in the presence of calcium and phospholipid excess. Finally, studies with Fura-2-loaded eosinophils showed that the ionophore A23187 stimulated an increase in intracellular calcium concentration that was not altered by pretreating the eosinophils with human rIL-1 beta. These results suggest that human rIL-1 beta inhibits the release of AA by eosinophils via the inhibition of a PLA2 activity and through a calcium-independent mechanism. Inhibition by human rIL-1 beta required a prolonged incubation (30 to 180 min) and was observed after its removal from the medium, suggesting that human rIL-1 beta did not interact directly with the PLA2 itself, but with a metabolic process involved with the regulation of its activity in eosinophils.

Animals