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Biomedical subjects

P Sirois

Publications and source records attributed to P Sirois.

At least 19 recordsLinked to original sources

Pharmacological characterization of Sephadex-induced oedema in rat paws: predominant role of serotonin and platelet-activating factor.

An intravenous injection of Sephadex beads has been used to induce lung inflammation and bronchial hyperreactivity in small animals. In the present study, we injected Sephadex beads (0.3-5.5 mg/paw) into rat paws and followed the resulting inflammation plethysmometrically. Our results show that Sephadex beads induced a significant and dose-dependent increase in the hindpaw volume at 5 min; it was maximal at 30-60 min and declined at 4 h. However, the paw volume remained significantly increased for up to 21 days. The initial 4-hour-oedema was confirmed by histopathology of the paw tissues, but the persistent increase in paw volume was related to a chronic inflammatory (granulomatous) response. The Sephadex-induced oedema was predominantly due to serotonin (5-HT) release since specific antagonists such as methysergide (1 mg/kg) and pizotifen (0.1-2 mg/kg) administered both systemically and locally were able to inhibit the oedema (10-100 microgram/paw) as could pretreatment with compound 48/80. In addition, platelet-activating factor (PAF) was also shown to be involved, since systemic pretreatment using the specific PAF antagonist BN 52021 (1 mg/kg) was able to inhibit the increase in paw volume induced by Sephadex. Effective doses of indomethacin (2 mg/kg), L-NAME (1 mg/kg), pyrilamine (1-2 mg/kg), ondansetron (1 mg/kg) and HOE 140 (1 mg/kg) did not affect the Sephadex-induced oedema, thus ruling out the participation of prostaglandins, nitric oxide, histamine, 5-HT3 receptors and bradykinin in its development. Since the late increases in paw volume induced by Sephadex were reduced by pretreatment of the animals with the immunosuppressive drugs rapamycin and dexamethasone but not cyclosporin, our results also suggested that distinct immunological pathways may be involved in the modulation of the chronic phase of inflammation induced by Sephadex beads in rat paws.

Animals

Guinea pig Clara cells secrete endothelin 1 through a phosphoramidon-sensitive pathway.

We have developed a method to harvest and culture Clara cells isolated from guinea pig lungs. Their identity was confirmed by the presence of CC16kD protein specific for these cells; we studied their capacity to generate endothelin 1 (ET-1). Using monoclonal antibody and immunofluorescence techniques, ET-1 was localized in these cultured Clara cells. The basal release of immunoreactive endothelin (ir-ET), measured by radioimmunoassay, from cultured Clara cells incubated for 2, 6, and 10 h was 74.8 +/- 11.1, 230.0 +/- 32.0 and 331.0 +/- 22.9 pg/ml, respectively. Treatment of Clara cells with phosphoramidon (100 microM), an inhibitor of the endothelin-converting enzyme, caused a significant reduction of the ir-ET release by 40% after a 6-h incubation period (P<0.01). Following treatment with 1 mM phosphoramidon, ir-ET was decreased by 73% and 76% after 6- and 10-h incubation periods, respectively (P<0.01). In contrast, treatment with thiorphan (1 mM), an inhibitor of neutral endopeptidase, increased the levels of ir-ET in the cell supernatant. High-performance liquid chromatography of supernatants from cultured Clara cells revealed one peak corresponding to the retention time of synthetic ET-1. This peak was greatly reduced following treatment of the cells with phosphoramidon (1 mM) but not with thiorphan (1 mM). Our results suggest that Clara cells release ET-1, a potent bronchoconstrictive agent. Furthermore, the synthesis of ET-1 is dependent on a phosphoramidon-sensitive endothelin-converting enzyme. Secretion of this peptide by Clara cells may play a role, directly or indirectly, in lung pathophysiology.

Animals

Biological and molecular analyses of structurally reduced analogues of endothelin-1.

Structurally reduced analogues of endothelin-1 (ET-1) were synthesized through linking with an aliphatic spacer [aminocaproic acid (Aca)], segment 3-11 of ET-1 to carboxyl-terminal fragments of various lengths (16-21, 17-21,...,21). The peptides were prepared in their linear or cyclic form, and a formyl group was or was not introduced on the Trp21 side chain. Pharmacological studies were carried out with the guinea pig lung parenchyma paradigm and the rat thoracic aorta bioassay. In the rat aorta, an ET(A) receptor preparation, all of the analogues were inactive. However, in the lung parenchyma, we observed that among the linear formylated derivatives, [Cys(Acm)3,11,Trp(For)21]-(3-11)-Aca-(17-21)ET was a partial agonist. In this series, the presence of His16, as in [Cys(Acm)3,11,Trp(For)21]-(3-11)-Aca-(16-21)ET, caused a decrease in contractile activity, suggesting that the imidazole group disfavors the proper interaction of the linear molecule with the ETB receptors of the lung parenchyma. The loss of biological activity of the deformylated linear analogues strongly suggested that the formyl group played a stabilizing role in the structure of the linear molecules. Interestingly, molecular modeling studies indicated the adoption of different conformations by the formylated and the nonformylated analogues. In contrast, the stabilizing effect of the formyl group was not observed with the cyclic compounds. Furthermore, the presence of His16 favored the contractile activity of the cyclic peptides. Finally, the results demonstrated that the carboxyl-terminal residues 18-21 are required for the activity in the guinea pig lung parenchyma ETB receptors.

Animals

Increased permeability of bovine aortic endothelial cell monolayers in response to a thromboxane A2-mimetic.

The present study was designed to investigate the ability of thromboxane to modulate the clearance rate of 125I-albumin through bovine aortic endothelial cell (BAEC) monolayer grown on polycarbonate micropore membrane. Stimulation of BAEC with the TXA2 mimetic U44069 (10(-8), 10(-7) and 10(-6) M) elicited a dose-dependent increase of labeled albumin passage across BAEC monolayers. This effect was markedly reduced by the TXA2 antagonist L655240 (10(-7) and 10(-6) M). Our results suggest that TXA2 may modulate the permeability of endothelial cells directly through activation of specific receptors.

Animals

Effect of tumor necrosis factor receptor binding protein on cell infiltration induced by lipopolysaccharide and Sephadex beads in guinea pig lung.

In the present study, the effect of a tumor necrosis factor receptor binding protein (TNFbp) on the cell infiltration induced by lipopolysaccharide (LPS) and Sephadex beads in guinea pig lung was examined. The intratracheal injection of LPS (2.5 micrograms) induced a six-fold increase in total cell number recovered in bronchoalveolar lavage (BAL) fluid at 24 hr. This increase in bronchopulmonary inflammation was mainly due to a neutrophil and macrophage infiltration, representing 60% and 35% of the total cells, respectively. The intravenous or intratracheal injection of Sephadex beads to guinea pigs induced a three-fold increase in total cell number recovered in BAL at 24 h and was characterized by a prominent eosinophil, macrophage, and neutrophil infiltration representing 36%, 42%, and 16% of the total cells, respectively. In addition, bronchial tissues isolated from Sephadex-treated guinea pigs showed an increased in vitro reactivity to both histamine and acetylcholine. TNFbp (1-50 micrograms) induced a dose-dependent inhibition of cell infiltration induced by LPS. In contrast TNFbp neither attenuated the bronchopulmonary cell infiltration observed 24 h following intravenous or intratracheal administration of Sephadex beads nor inhibited the increase in bronchial reactivity. These results show that TNF plays an important role in cell infiltration induced by LPS, but not that induced by Sephadex, in the guinea pig lung.

Animals

Relaxant effects of pituitary adenylate cyclase activating polypeptide (PACAP) on epithelium-intact and -denuded guinea-pig trachea: a comparison with vasoactive intestinal peptide (VIP).

The effect of pituitary adenylate cyclase activating peptide (PACAP 1-27) was examined on epithelium-intact and -denuded guinea-pig tracheal strips (GPT) and compared to vasoactive intestinal peptide (VIP) and salbutamol. PACAP (10(-11)-10(-8) moles) induced dose-dependent relaxations of the basal tone of both epithelium-intact and -denuded GPT. PACAP was approximately three times less potent than either VIP or salbutamol in relaxing epithelium-intact GPT. The relaxant effects of both peptides and salbutamol were markedly attenuated following removal of the epithelial layer. L-NAME (10(-4) M), a nitric oxide synthase inhibitor, did not affect the responses induced by either PACAP or VIP demonstrating that the relaxant effect is independent of nitric oxide synthesis. Phosphoramidon (5 x 10(-6) M) potentiated the relaxant responses of epithelium-intact GPT to both PACAP and VIP but did not affect the responses of epithelium-denuded GPT. PACAP and VIP also induced relaxations of the guinea-pig upper bronchus. In addition, PACAP (10(-6) M), as well as VIP, significantly inhibited the release of TxB2 induced by LTD4 (10(-7) M) from chopped guinea-pig lung suggesting that this newly isolated peptide, which has 68% homology with VIP, may possess anti-inflammatory action in the lung.

Adrenergic beta-Agonists

Studies on the mechanism of PAF-induced vasopermeability in rat lungs.

The present study evaluated the effect of platelet activating factor (PAF) instilled into rat airways on vascular permeability assessed in isolated lung tissues by Evans blue (EB)-labelled plasma protein extravasation. It was found that intratracheal instillation of PAF induces a dose-dependent increase of EB extravasation in the bronchi (upper and inner) but not in the lung parenchyma. The contribution of eicosanoids to PAF-induced increase of vascular permeability was investigated by treating the animals with selected inhibitors prior to PAF administration. Mepacrine (5 mg/kg), L-663,536 (10 mg/kg), indomethacin (4 mg/kg) and dazoxiben (10 mg/kg) significantly reduced EB extravasation in the bronchi. The PAF antagonists BN-52021 (5 mg/kg), WEB-2086 (1 mg/kg), WEB-2170 (5 mg/kg) and PCA-4248 (3 mg/kg) were all effective in reducing the extravasation. These results suggest that PAF-induced increase of vascular permeability in rat bronchi is mediated by cyclooxygenase and lipoxygenase products of arachidonic acid metabolism.

Animals

Leukotriene C4 receptors on guinea pig tracheocytes.

Leukotriene (LT) C4 receptors have been characterized on freshly isolated guinea pig tracheal epithelial cells (tracheocytes). The [3H]LTC4 receptor affinity was enhanced by increasing the sodium (60-160 mM) and the magnesium (0-10 mM) concentrations. Low concentrations of calcium (0-3 mM) increased [3H]LTC4 binding, but high concentrations (3-10 mM) decreased it. The pH (6.5-8.0) had no effect on [3H]LTC4 binding to tracheocytes. Under our experimental conditions, binding equilibrium was reached after 20 min. The association and the dissociation rate constants were estimated to be 2.75 +/- 0.25 x 10(6) M-1.min-1 and 0.093 +/- 0.008 min-1, respectively. The Kd (35.4 +/- 8.6 nM) and the Bmax values (2.4 +/- 0.6 x 10(5) receptors/cell) were determined by Scatchard analysis. LTB4, LTD4 and LTE4 did not inhibit [3H]LTC4 binding to the receptors. However, the compound FPL 55712 inhibited the binding of [3H]LTC4 with an IC50 value of 9.0 +/- 1.0 microM. [3H]LTC4 was not metabolized during the binding assays, as confirmed by reverse-phase high-performance liquid chromatography. The lack of [3H]LTC4 binding to glutathione-S-transferase was demonstrated in the presence of an excess of reduced glutathione. LTC4 produced a concentration-dependent increase of free Ca++ in tracheocytes. Our results suggest that guinea pig tracheocytes possess a specific LTC4 receptor coupled to a Ca++ signaling pathway. This LTC4 receptor may play a key role in the epithelium-dependent responses of airway smooth muscle.

Animals

Structure-activity studies of the C-terminal segment of structurally reduced analogues of ET-1.

Structurally reduced analogues of endothelin-1 (ET-1) were synthesized by linking via aminocaproic acid (Aca) the segment 3-11 of ET-1 to C-terminal fragments of various lengths [16-21, 17-21,...,21]. Analogues were studied in their linear or cyclic form in the absence or presence of a formyl group on the Trp21 side-chain, and their biologic activities were tested using guinea pig lung parenchymal strips. The absence of the first disulfide bridge and the presence of the Aca spacer caused a slight decrease in activity. The presence of His16 is essential for the contractile activity of the monocyclic peptides. Formylation of these monocyclic analogues did not modify this behavior. Similarly, linear analogues carrying S-acetamidomethyl (Acm) functions and an Aca linker were still active. However, most formylated linear derivatives were partial agonists, whereas the addition of His16 caused a decrease in contractile activity. In these latter analogues, molecular modeling studies suggested that formylation produces different conformations.

Animals

Dexamethasone and phosphoramidon inhibit endothelin release by cultured nonciliated bronchiolar epithelial (Clara) cells.

The release of immunoreactive endothelin (ir-ET) by cultured Clara cells isolated from guinea pig lung was investigated. Clara cells were cultured in DMEM-F12 with 10% fetal bovine serum for 4-5 days. The basal release of ir-ET, measured by radioimmunoassay, from cultured guinea pig Clara cells incubated for 2, 6, and 10 h was 59.6 +/- 8.6, 206.0 +/- 25.0, and 291.0 +/- 16.5 pg/ml, respectively. Treatment with phosphoramidon (1 mM) for 45 min decreased the release of ir-ET by 73% and 76% in 6- and 10-h incubation periods, respectively. In addition, treatment with dexamethasone (1 microM) for 24 h significantly attenuated the release of ir-ET by 62% and 71% during 6- and 10-h incubation periods, respectively. Our results show that Clara cells isolated from guinea pig can synthesize significant amounts of ir-ET and that a phosphoramidon-sensitive metalloprotease appears to be responsible for the generation of endothelin. This basal release of ir-ET was significantly attenuated by dexamethasone.

Animals

Characterization of the endothelin-converting enzyme in guinea pig upper bronchus.

We studied the pharmacologic effects of big endothelin-1 (big ET-1), big endothelin-2 (big ET-2), and big endothelin-3 (big ET-3), and characterized the enzyme involved in the conversion of the three peptides in guinea pig upper bronchus (GPUB). ET-1, ET-2 and ET-3 (0.1-300 nM) elicited similar concentration-dependent contractions of GPUB. Big ET-1 and big ET-2, but not big ET-3, also elicited potent concentration-dependent contractions of GPUB. The conversion of big ET-1 to ET-1 in the GPUB is sensitive to phosphoramidon but not to thiorphan or captopril. Phosphoramidon inhibited the conversion of big ET-2 to ET-2, thiorphan had minimal effect, and captopril was without effect. These results suggest that the putative endothelin-converting enzyme (ECE) is involved in the conversion of big ET-1 to ET-1 in GPUB and the conversion of big ET-2 to ET-2 by a nonselective enzymatic process.

Animals

Pulmonary surfactant lipids inhibit prostanoid production of guinea pig alveolar macrophages.

Changes in the amount and composition of pulmonary surfactant are important features of the adult respiratory distress syndrome. The goal of the present study was to investigate the effects of natural surfactant material and several of its lipid components on prostanoid production and superoxide generation by guinea pig alveolar macrophages. Natural surfactant (10-500 micrograms/ml) inhibited (up to 65%) prostaglandin E2 (PGE2) and thromboxane B2 (TxB2) production elicited by platelet-activating factor (PAF, 10(-6) M) and arachidonic acid (5 x 10(-6) M) but not fMet-Leu-Phe (10(-7) M). Dioleyl-phosphatidylglycerol (diOPG, 1-100 micrograms/ml) and dioleyl-phosphatidylcholine (diOPC, 1-100 micrograms/ml) prevented fMet-Leu-Phe- and PAF-stimulated prostanoid release in a concentration-dependent fashion with a maximal inhibition of 94%. DiOPC (100 microgram/ml) also inhibited arachidonic acid induced PGE2 production by 67%. Phosphatidylcholine (100 micrograms/ml) and sphingomyelin (10-100 micrograms/ml) significantly attenuated TxB2 production elicited by arachidonic acid. Neither PAF- nor fMet-Leu-Phe-stimulated superoxide production was affected significantly by natural surfactant and its lipid components with the exception of phosphatidylcholine. At a concentration of 100 micrograms/ml, phosphatidylcholine decreased superoxide production by about 57% in response to PAF. These results show that diOPC and diOPG are capable of inhibiting prostanoid production of guinea pig alveolar macrophages in response to inflammatory stimuli and suggest that a decrease in the diOPG and diOPC content of surfactant would lead to enhanced intrapulmonary formation of prostanoids and consequently to the deterioration of pulmonary function in the adult respiratory distress syndrome.

Animals

Role of endothelial cells in cardiovascular function.

Since the first description of vascular endothelium-dependent relaxation in response to acetylcholine, the role of endothelial cells in the regulation of cardiovascular function has been increasingly studied. The identification of endothelial releasing factors such as nitric oxide and endothelin has enabled us to better understand the mechanisms involved in autoregulation. It has also been shown that both vascular and endocardial endothelium can modify the contractile characteristics of their adjacent myocardium. In the heart, these modulating effects of endothelial cells are more widespread than previously thought and, can be the result of the direct effects of endocardial and vascular endothelial cells and their indirect effects, via modulation of the myocardial response to inotropic agents.

Animals

Highly purified guinea pig type II pneumocytes have the leukotriene A4 hydrolase but do not express 5-lipoxygenase activity.

Guinea pig lung cells have been obtained by enzymatic digestion of lung tissue and type II pneumocytes have been purified by centrifugal elutriation and adherence on Petri dishes coated with guinea pig IgG. The cells have been characterized by histochemical staining of alkaline phosphatase and by electron microscopy. Arachidonic acid metabolism was studied by incubating purified type II pneumocytes with exogenous arachidonic acid in the presence or absence of calcium ionophore A23187 or with leukotriene A4. The reverse phase high performance liquid chromatography profiles of cells stimulated with calcium ionophore and/or arachidonic acid did not show peaks co-eluting with authentic leukotrienes, which suggested that these cells do not express 5-lipoxygenase activity. On the other hand, type II pneumocytes converted exogenous leukotriene A4 into leukotriene B4; a small amount of peptido-leukotrienes, accounting for less than 5% of total leukotrienes produced, was also detected. It is suggested that transcellular metabolism of leukotriene A4 between type II pneumocytes and other lung cells containing the 5-lipoxygenase may contribute to the previously reported LTB4 production by guinea pig lungs. The type II pneumocyte purification technique described represents a useful alternative to cell culture for studying arachidonic acid metabolism and other cell functions.

Animals