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M Molimard

Publications and source records attributed to M Molimard.

At least 37 records · Page 2Linked to original sources

Inhibition by SR 59119A of isoprenaline-, forskolin- and VIP-induced relaxation of human isolated bronchi.

In the human isolated bronchus (HIB) it has been shown that beta(3)-adrenoceptor stimulation fails to induce relaxation of airway smooth muscle. It has however been reported in human ventricular endomyocardial biopsies that beta(3)-adrenoceptor stimulation induced a marked negative inotropic effect which could be linked to Gi protein activation. The aims of this study were: (1) to determine in HIB (internal diameter 1-2 mm) whether the selective beta(3)-adrenoceptor agonist SR 59119A (N[7-methoxy-1,2,3, 4-tetrahydronaphthalen-(2R)methyl]-(2R)-2-hydroxy-2-(3-chloroph eny l)e thanamine hydrochloride) was able to inhibit adenylate-cyclase-mediated airway smooth muscle relaxation induced by isoprenaline, forskolin or vasoactive intestinal peptide (VIP) and (2) to investigate the role of the Gi protein in this interaction. SR 59119A (0.1 microM and 1 microM) induced a shift to the right of concentration response curve for isoprenaline (-0. 15+/-0.06 and -0.54+/-0.21 log unit, P<0.05 and P<0.01 respectively), forskolin (-0.12+/-0.02 and -0.30+/-0.05 log unit, P<0.001), and VIP (-0.42+/-0.12 log unit, P<0.01 with SR59119A 10(-6)M). The inhibitory effect of SR 59119A was (1) abolished by an incubation of HIB with pertussis toxin (1 microg/ml, during 15 h in Krebs-Henseleit solution, at 21 degrees C), which is known to inactivate the Gi protein and (2) increased after an incubation of HIB with the pro-inflammatory cytokine IL-1beta (10 ng/ml, during 15 h in Krebs-Henseleit solution, at 21 degrees C), which is known to up-regulate Gi protein expression. Our results suggest that the selective beta(3)-adrenoceptor agonist SR59119A might inhibit the cAMP-dependent relaxation of human isolated bronchus through Gi protein-mediated inhibition of adenylate cyclase.

Adenosine Monophosphate↗

[In vitro techniques for the study of muscle contractility].

Functional studies of bronchial smooth muscle contractility, particularly in humans, are now well standardized regarding to tissues collection, tension setting and results expression. This type of model is usually considered as simple for analysis of pharmacological interactions between ligands and receptors. In fact, the multiplicity of cell types implicated in the bronchial response makes of isolated bronchi preparation a complex model. Examples are given with studies on endothelin or tachykinins. Inflammation and bronchial hyperresponsiveness models were proposed. Models of passive sensitization or pretreatment with cytokines are described. Functional studies of contractility are included in larger investigations including the analysis of the associated biochemical and electrical phenomenon.

Bradykinin↗

[Special characteristics of bronchial smooth muscle cells].

Airway smooth muscle is one of the main effectors of bronchial reactivity. Our understanding of the cellular mechanisms involved in the contraction of this muscle has advanced in the recent past since isolated cells in culture can now be studied. Extracellular messengers (neurotransmitters and mediators) as well as their specific membrane receptors have been analyzed in some details. Membrane transduction of extracellular messengers brings about the formation (or the increase in the concentration) of the intracellular second messenger which, in airway smooth muscle, is cytosolic calcium (Ca2+i) via activation of calcium channels which depend on surface membrane potential changes (electromechanical coupling) on one hand and mainly via mechanisms independent of surface membrane potential changes, the so called--pharmacomechanical coupling--which involves membrane phosphoinositide metabolism. Changes in Ca2+i activate contractile proteins leading the muscle to shorten and to develop force via several controlled steps such as phosphorylation of myosin or changes in the sensitivity to Ca2+ of the contractile elements. Information about the cellular physiology and pathophysiology of this muscle is of value to design new drugs for the treatment of bronchoconstriction.

Bronchi↗

[Genetic polymorphism and asthma].

Several mutations have been found in genes encoding for proteins implied in the pathophysiology or the treatment of asthma. Until now, no causal role could not be highlighted. The mutations were mainly studied on gene coding for the beta 2 adrenergic receptor being able to be associated with modifications of the phenotype of asthma or even to modifications of response to some beta 2 agonists. Certain polymorphisms of the beta 2 adrenoceptor are associated with polymorphisms in genes coding for peptides controlling the expression of the beta 2 adrenoceptors. The interpretation of the effects observed must take into account this linkage disequilibrium.

Adrenergic beta-Agonists↗

Interleukin-1beta-induced hyperresponsiveness to [Sar9,Met(O2)11]substance P in isolated human bronchi.

Interleukin-1beta has been reported to induce airway hyperresponsiveness in several animal models. In this study, we have investigated whether interleukin-1beta was able to potentiate the contractions of human isolated small bronchi (internal diameter < or = 1 mm) provoked by a specific tachykinin NK1 receptor agonist, [Sar9,Met(O2)11]substance P. Pre-incubation of human isolated small bronchi with interleukin-1beta (10 ng/ml, in Krebs-Henseleit solution, at 21 degrees C for 15 h) potentiated the contractile response to [Sar9,Met(O2)11]substance P. It also increased the [Sar9,Met(O2)11]substance P-induced release of thromboxane B2, the stable metabolite of thromboxane A2. Indomethacin (10(-6) M), a non-specific cyclooxygenase inhibitor, or GR 32191 ((1R-(1alpha(Z)),2beta,3beta,5alpha))-(+)-7-(5-(((1,1' -biphenyl)-4-yl)-methoxy)-3-hydroxy-2-(1-piperidinyl)cyclopentyl)-4-hept enoic acid, hydrochloride) (10(-6) M), a prostanoid TP-receptor antagonist, blocked the contractions induced by [Sar9,Met(O2)11]substance P both in control experiments and after interleukin-1beta pre-treatment, indicating that prostanoids and thromboxane receptors are directly implicated in the [Sar9,Met(O2)11]substance P-induced contractile response. The thromboxane mimetic U-46619 (10(-8)-10(-6) M) (9,11-dideoxy-11alpha,9alpha-epoxymethano-prostaglandin F2alpha)-induced contractions of human isolated small bronchi were not enhanced by interleukin-1beta pre-treatment, suggesting that no up-regulation of thromboxane receptors occurred. Furthermore, the cyclooxygenase-2 inhibitor CGP 28238 (6-(2,4-difluorophenoxy)-5-methyl-sulfonylamino-1-indanon e) (10(-6) M) had no direct effect on [Sar9,Met(O2)11]substance P-provoked contractions, but inhibited the interleukin-1beta-induced potentiation of [Sar9,Met(O2)11]substance P response. In conclusion, our results show that interleukin-1beta pre-treatment is able to potentiate the contractions of isolated human small bronchi provoked by [Sar9,Met(O2)11]substance P both by increasing prostanoid synthesis and by inducing a cyclooxygenase-2 pathway.

15-Hydroxy-11 alpha,9 alpha-(epoxymethano)prosta-5↗

Mast cell tryptase as a mediator of hyperresponsiveness in human isolated bronchi.

BACKGROUND: Although the role of mediators and cytokines produced by mast cells is well established in asthmatic bronchial inflammation, the contribution of mast cell-derived proteases to the development of hyperresponsiveness remains unclear. There have been reports indicating that tryptase alters the mechanical activity of animal airway smooth muscle or spontaneously sensitized human isolated airways. OBJECTIVE: The aim of this study was to analyse the effect of purified mast cell tryptase on non-sensitized human isolated bronchi. METHODS: Both central and peripheral bronchi, dissected from lung specimens obtained at thoracotomy, were studied in terms of both mechanical activity i.e. isometric contraction in response to a variety of agonists and distribution of inflammatory cells i.e. immunohistochemistry. RESULTS: In both proximal and distal bronchi, the reactivity to histamine was significantly increased by a previous incubation in the presence of 1 microg/mL of tryptase (increase in maximal force, DeltaFmax was 12.1 +/- 3.8%, and 8.8 +/- 3.1%, respectively). This effect of tryptase on histamine-induced contraction was completely abrogated in the presence of the protease inhibitor benzamidine (100 micromol/L). Histological examination of specimens exposed to tryptase demonstrated an increase in mast cell number within the subepithelial tissue whereas mast cell numbers in the epithelial layer concomittently decreased. CONCLUSION: These results indicate that human mast cell tryptase alters the contractile response of non-sensitized human isolated bronchi and that this alteration is accompanied by a change in the mast cell distribution within the airway wall.

Bronchi↗

Muscarinic stimulation of airway smooth muscle cells.

1. Acetylcholine, the principal neurotransmitter of the parasympathetic nervous system, is released at both ganglionic synapses and postganglionic neuroeffector junctions and acts by activation of nicotinic and muscarinic cholinoceptors. This review focuses on the effects of postjunctional muscarinic stimulation of airway smooth muscle. 2. On pharmacological criteria, four distinct subtypes of muscarinic cholinoceptor, denoted M1, M2, M3 and M4 receptors, have been identified by use of selective antagonists. Cloned muscarinic cholinoceptors are members of the family of GTP-binding protein-coupled receptors, which are characterized by seven transmembrane (TM) regions connected by intra- and extracellular loops. Between the fifth and the sixth TM regions, muscarinic receptors possess a large intracytoplasmic loop that is considered to be responsible for G-protein-coupling selectivity and exhibits high divergence between the different subtypes. 3. At the site of the smooth muscle itself, both binding and Northern blot studies have demonstrated, in a variety of species, that muscarinic receptor subtypes present are M2 and M3. M2 receptors are coupled to Gi proteins and adenylyl cyclase inhibition and thus to cAMP signaling. M3 receptors are coupled to Gq/11 protein and phosphoinositide hydrolysis and thus to calcium signaling. 4. Muscarinic-induced contraction of airway smooth muscle is mediated by M3 receptors. M2-mediated inhibition of adenylyl cyclase contributes to the prevention of bronchodilation. Cross-talk between muscarinic and beta2 adrenoceptors is likely to be present in airway smooth muscle. The pathophysiological role of this cross-talk requires further investigation.

Cholinergic Agents↗

In vitro-induced human airway hyperresponsiveness to bradykinin.

Lipopolysaccharide (LPS) and interleukin (IL)-1beta have been reported to induce airway hyperresponsiveness in several animal models. This study investigated the effect of LPS or IL-1beta on bradykinin-induced human isolated bronchi contraction. LPS (100 ng x mL(-1) for 3-6 h) and IL-1beta (3x10(-10) and 3x10(-9) M for 20 min to 3 h) time-dependently potentiated bradykinin-induced contraction. This contraction was abolished, as in control experiments, by indomethacin (10(-6) M) or by the thromboxane (Tx) receptor antagonist GR 32191 but not by the cyclo-oxygenase-2 inhibitor, CGP28238. In contrast, the Tx mimetic U46619-induced contraction of human bronchi was not enhanced IL-1beta pretreatment. In the presence of GR 32191 (10(-6) M), bradykinin induced a prostanoid dependent relaxation that was not significantly modified by IL-1beta pretreatment. Determination of prostanoids in the organ bath fluid showed that bradykinin induced TxB2, the stable metabolite of TxA2, and 6-keto prostaglandin F1alpha, the stable metabolite of PGI2, release. Only TxA2 release was potentiated by IL-1beta. Taken together our results suggest that interleukin-1beta (1-3 h)-induced potentiation of the effect of bradykinin is linked to an increased activity of thromboxane synthase and, in turn, to increased thromboxane synthesis.

15-Hydroxy-11 alpha,9 alpha-(epoxymethano)prosta-5↗

Contractile effect of 6 beta-acetoxy nortropane on human and guinea pig airways.

AIM: To study the effects of 6 beta-acetoxy nortropane (6 beta-AN) on the isolated human bronchus and guinea pig trachea. METHODS: The contractile effect of 6 beta-AN was studied with 4 different muscarinic receptor antagonists on airway strips and inositol phosphates (IP) accumulation in human bronchi was determined by HPLC with radioactivity flow detector. RESULTS: (1) The maximal contractile effect of 6 beta-AN was lower than that of acetylcholine (ACh) on the human bronchus and equal to that of ACh on the guinea pig trachea. 6 beta-AN was more potent than ACh on both preparations (68 and 245 times, respectively). (2) The contractile effect of 6 beta-AN was inhibited by atropine (1 -100 nmol.L-1) or para-fluoro-hexahydro-sila-difenidol (0.01-1 mumol.L-1), but not by methoctramine (Met, 0.3-3 mumol.L-1) or pirenzepine (0.01-0.1 mumol.L-1), and was not enhanced by tacrine (0.1-10 mumol.L-1) or by epithelium removal. (3) The 6 beta-AN induced-contraction was accompanied by an increase of IP levels in isolated human bronchial tissues. (4) 6 beta-AN had an inhibitory effect on isoprenaline (Iso)-induced relaxation, which was abolished or reduced by Met 0.3 mumol.L-1. CONCLUSION: 6 beta-AN exerts a potent contractile effect involving muscarinic M3 receptor stimulation on airway smooth muscle. Muscarinic M2 receptor stimulation is furthermore partially involved in the antagonism by 6 beta-AN on the Iso-induced relaxation of the guinea pig trachea.

Animals↗

Long- and short-acting beta2 adrenoceptor agonists: interactions in human contracted bronchi.

The aim of this study was to systematically compare the interaction of the long-acting beta2-adrenoceptor agonists formoterol and salmeterol with short-acting beta2-adrenoceptor agonists in contracted human bronchi. Human bronchi were obtained at thoracotomy from patients with lung cancer. Formoterol or salmeterol at concentrations inducing up to 92 and 94% of their maximal relaxant effect, respectively, were added to bronchial rings contracted with carbachol (10(-6) M). After a time period of 30 min, concentration-response curves for the short-acting beta2-adrenoceptor agonists, salbutamol, terbutaline, isoprenaline and fenoterol were recorded. Administration of equieffective concentrations of salmeterol and formoterol, resulted in only salmeterol inducing a shift to the right of isoprenaline, terbutaline, fenoterol and salbutamol concentration-response curves. The rank order of shift was salbutamol > fenoterol > terbutaline > isoprenaline. Formoterol, up to concentrations of 3x10(-9) M induced submaximal relaxation resulting in no shift in short-acting beta2-adrenoceptor agonist concentration-response curves. Salmeterol but not formoterol appears to antagonize the relaxation of human contracted bronchi induced by short-acting beta2-agonists. These results obtained in vitro cannot be translated in clinical terms. This study, however, highlights the need for clinical studies on the interaction of long-acting and short-acting beta2-adrenoceptor agonists in acute severe asthma.

Adrenergic beta-Agonists↗

Circulating immune complexes in human tuberculosis sera: demonstration of specific antibodies against Mycobacterium tuberculosis glycolipid (DAT, PGLTb1, LOS) antigens in isolated circulating immune complexes.

An enzyme-linked immunosorbent assay (ELISA) for IgG using three glycolipid antigens from Mycobacterium tuberculosis in 65 tuberculosis (TB) patients and 50 healthy control subjects was performed. The circulating immune complexes (CICs) were isolated by precipitation with polyethylene glycol 6000 (PEG). This method associated to ELISA measured the specific antibodies present in these CICs. PEG [optical density (OD) 280] was shown to be significantly elevated (P < 0.001) in tuberculous samples. The concentrations of IgG antibodies complexed to the three glycolipid antigens were shown to be higher in patient with tuberculosis than in normal control subjects (P < 0.001). No correlation was observed between levels of free and CIC-bound antibodies. These antibodies isolated from CICs were responsible for almost all of the false-negative serological results. However, great heterogeneity was noticed depending on the antigen used, showing a more positive ELISAs against DAT (77%) than against LOS (71%) or PGLTb1 (18.5%). No correlation was established between the presence of specific CIC-complexed IgG and the bacteriological load or the tuberculosis localization (pulmonary vs. extrapulmonary). The sensitivity of ELISA for CIC-complexed IgG to DAT and LOS was lower in HIV-infected TB patients. From these results, we conclude that detection of complexed IgG DAT and LOS glycolipid antigen will be useful as a complementary technique for the serodiagnosis of tuberculosis.

Adult↗

SR 140333 prevents potentiation by citric acid of plasma exudation induced by histamine in airways.

We here report a model of potentiation by citric acid of airway microvascular leakage induced by histamine and its modification by the tachykinin NK1 and NK2 receptor antagonists, SR 140333 ((S)1-{2-[3-(3,4-dichlorophenyl)-1-(3-iso-propoxyphenylacetyl)p iperidin- 3-yl]ethyl}-phenyl-1-azoniabicyclo[2.2.2]octane, chloride) and SR 48968 (S)-N-methyl-N-[4-(4-acetyl-amino-4-phenylpiperidino)-2-(3,4- dichlorophenyl-butyl]benzamide. Guinea-pigs exposed to an acrosol of citric acid 0.4 M for 1 h developed 24 h later a hyperresponsiveness to histamine-induced microvascular leakage measured by Evans blue dye extravasation. SR 140333, but not SR 48968 (1 mg kg-1 given each once 30 min before citric acid exposure), prevented this potentiation. These results provide further evidence of the role of tachykinin and tachykinin NK1 receptor stimulation on airway hyperresponsiveness and its neurogenic inflammatory component.

Animals↗

The human bronchus model in vitro. Pharmacological approach of various components involved in the functional response.

Studying the human bronchi in vitro, and therefore sheltered from the toxicity problems inherent in human experiments, makes it possible to conduct a monofactorial analysis, disregarding the perturbations engendered by reflex phenomena, hemodynamic changes, etc. Analysing the effects of mediators on tissues may be less simple that it looks, due to the multiplicity of the cell types that are present. For example, in studying the effects of bradykinin we have shown that bradykinin is a potent contractile agent of small-diameter isolated bronchi, whereas it has no significant contractile effect on larger bronchi. The bradykinin-induced contraction results from a contractile component due to stimulation of the TP receptor, and of a relaxant component due to relaxant prostanoids. The two components of the bradykinin effects are produced by stimulation of B2 receptors. In vitro stimulation of bronchi by LPS or interleukin-1 beta permits us to obtain hyperreactivity to bradykinin due to induction of thromboxane synthetase or isomerase rather than to induction of B2 receptors or cyclooxygenase. Involvement of the nervous system may persist in the in vitro bronchial model, and indeed we have shown, for example, that pentamidine, well known for its tussigenic effect, is an indirect parasympathomimetic compound. Thus, study of the isolated bronchus permits an approach to the mechanisms of action of medicinal drugs. Despite the simplification provided compared to the in vivo study, analysis of bronchoreactivity on the isolated bronchus must take into account numerous parameters which interfere with the proper effects of the substances.

Bronchi↗

Influence of methoctramine on the acetylcholine-isoprenaline functional antagonism in the guinea pig isolated trachea.

It has been suggested that activation of muscarinic M2 receptors is one of the components of the functional antagonism between muscarinic and beta-adrenoceptor agonists in canine and guinea pig tracheal smooth muscle. The aim of the present study was to determine in the guinea pig trachea the importance of this component according to the magnitude of the acetylcholine-induced contraction. Cumulative concentration-response curves for isoprenaline were obtained in the absence or presence of the muscarinic M2 receptor antagonist methoctramine (3 x 10(-7) M) in tracheal rings under basal tension or precontracted by acetylcholine 2 x 10(-7), 3 x 10(-6) and 10(-4) M, giving contractions of 25, 50 Or 75%, respectively, of the maximal tension induced by acetylcholine 3 x 10(-3) M. In the absence of methoctramine, acetylcholine induced a concentration-dependent shift of the concentration-response curves of isoprenaline (-log EC50 of isoprenaline are 8.09 +/- 0.07, 7.85 +/- 0.08, 7.38 +/- 0.12 and 6.49 +/- 0.12, n = 6 for basal tension and for acetylcholine concentrations of 2 x 10(-7), 3 x 10(-6) and 10(-4) M, respectively). In the presence of methoctramine, the basal -log EC50 of isoprenaline was unmodified, whereas the acetylcholine induced shifts of concentration-response curves of isoprenaline were abolished for low levels of contraction (25%) and significantly reduced to 50 and 75% levels of contraction. Under similar conditions, acetylcholine-induced shifts of concentration-response curves of isoprenaline were unmodified by the muscarinic M1 receptor antagonist pirenzepine (10(-7) M). These results suggest that the inhibitory effect of M2 receptors on beta-adrenoceptor agonists effects is important for low contraction levels induced by acetylcholine, and that this effect becomes less important for higher concentrations of acetylcholine.

Acetylcholine↗

Indirect muscarinic receptor activation by pentamidine on airway smooth muscle.

1. Pentamidine is routinely used to reduce the incidence of Pneumocystis carinii pneumonia in patients infected with human immunodeficiency virus, but it has been described as inducing pulmonary adverse effects, such as cough and bronchospasm. 2. In this paper we have investigated the effects of pentamidine on guinea-pig isolated main bronchi and human isolated bronchi. Pentamidine induced a concentration-dependent contraction in both preparations with pD2 values of 9.64 +/- 0.07 (n = 8) and 9.73 +/- 0.06 (n = 8) and a maximal effect (Emax) of 40 +/- 4% and 34 +/- 5% of the response to acetylcholine (1 mM) in guinea-pig and human bronchi respectively. Atropine (0.01 to 0.1 microM) and the muscarinic M3 receptor antagonist, hexahydro-siladiphenidol (0.1 and 1 microM) inhibited pentamidine-induced concentration-responses in both preparations in a non-competitive manner, whereas only high concentrations of the M1 receptor antagonist pirenzipine (1 microM) inhibited pentamidine concentration-response curves. 3. The cholinesterase inhibitor, tacrine (1 microM), potentiated the effect of pentamidine; in contrast, morphine inhibited pentamidine-induced responses. 4. The bronchoconstrictor effect of pentamidine on guinea-pig and human isolated bronchi was not modified by the H1 histamine receptor antagonist, mepyramine, by indomethacin or by the neurokinin NK1 and NK2 receptor antagonists, CP-96,345 and SR 48969 respectively, suggesting that neither histamine receptor stimulation, arachidonic acid derivative formation, nor tachykinin release are involved in pentamidine-induced contraction of human and guinea-pig airways. 5. Our overall results suggest that pentamidine induces contraction of guinea-pig and human isolated bronchi through prejunctional cholinergic nerve stimulation.

Adult↗

Evidence for functional tachykinin NK1 receptors on human isolated small bronchi.

On human small isolated bronchi (diameter < 1 mm), but not on larger bronchi (diameter 3-5 mm), substance P (SP) and specific tachykinin SP-preferring neurokinin (NK1) receptor agonists {[beta Ala4, Sar9, Met(O2)11]SP-(4-11), [Sar9, Met(O2)11]SP, [Arg6,Sar9,Met(O2)11]SP-(6-11), and septide; 10(-10) to 10(-6) M} produced a concentration-dependent contraction that occurred at low concentrations (pD2 values of 7.79-8.33) and was characterized by a low intrinsic activity [maximal effect (Emax) of 38-45% of Emax induced by 3 mM acetylcholine, in a noncumulative manner]. Comparison of cumulative and noncumulative concentration-response curves to SP and NK1 receptor agonists suggest rapid receptor desensitization. The SP (10(-8) M)-induced contraction was inhibited by tachykinin NK1 receptor antagonists (rank order of potency: SR-140333 > CP-96,345 > RP-67580) but not by the tachykinin NK2 receptor antagonist SR-48968. Indomethacin (10(-6) M) abolished the SP-induced contraction. Our results suggest that tachykinin NK1 receptors are present on human small bronchi and that their stimulation induces a prostanoid-dependent contraction. The small isolated bronchus is an interesting model of human tissue to test NK1 receptor antagonists.

Benzamides↗