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Biomedical subjects

Y Delneste

Publications and source records attributed to Y Delneste.

12 recordsLinked to original sources

Thiols decrease human interleukin (IL) 4 production and IL-4-induced immunoglobulin synthesis.

N-Acetyl-L-cysteine (NAC) is an antioxidant precursor of intracellular glutathione (GSH), usually given in human as a mucolytic agent. In vitro, NAC and GSH have been shown to act on T cells by increasing interleukin (IL) 2 production, synthesis and turnover of IL-2 receptors, proliferation, cytotoxic properties, and resistance to apoptosis. We report here that NAC and GSH decrease in a dose-dependent manner human IL-4 production by stimulated peripheral blood T cells and by T helper (Th) 0- and Th2-like T cell clones. This effect was associated with a decrease in IL-4 messenger RNA transcription. In contrast, NAC and GSH had no effect on interferon gamma and increased IL-2 production and T cell proliferation. A functional consequence was the capacity of NAC and GSH to selectively decrease in a dose-dependent manner IL-4-induced immunoglobulin (Ig) E and IgG4 production by human peripheral blood mononuclear cells. Interestingly, NAC and GSH also acted directly on purified tonsillar B cells by decreasing the mature epsilon messenger RNA, hence decreasing IgE production. In contrast, IgA and IgM production were not affected. At the same time, B cell proliferation was increased in a dose-dependent manner. Not all antioxidants tested but only SH-bearing molecules mimicked these properties. Finally, when given orally to mice, NAC decreased both IgE and IgG1 antibody responses to ovalbumin. These results demonstrate that NAC, GSH, and other thiols may control the production of both the Th2-derived cytokine IL-4 and IL-4-induced Ig in vitro and in vivo.

Acetylcysteine

Interleukin-12 increases interleukin-4 production by established human Th0 and Th2-like T cell clones.

Interleukin (IL)-12 is a potent inducer of cell-mediated immunity: it favors the generation of interferon (IFN)-gamma-producing T cells, increases IFN-gamma production by T cells and natural killer cells and prevents the generation of a Th2 response in murine in vivo models. Nevertheless, the effects of IL-12 on an established Th2 response remain poorly documented. In the present paper, we analyzed the effect of IL-12 on the profile of lymphokines produced by established IL-4-producing Th0 and Th2-like human T cell clones (TCC) and by polyclonal T cells. We found that IL-12 (i) enhances, as previously reported, IFN-gamma production by Th0 TCC and, to a smaller extent, by Th2-like TCC, (ii) increases the proliferation of Th0 and Th2-like TCC and (iii) unexpectedly, synergizes with T cell receptor-associated or nonspecific stimuli in increasing IL-4 production by these TCC. Thus, IL-12 potentiates the production of IFN-gamma and also of IL-4 by established IL-4 producing TCC. Although IL-12 has been widely reported to induce a Th1 response and to prevent the development of a Th2 response in vivo, IL-12 may on the contrary potentiate an established Th2 response in humans.

CD4-Positive T-Lymphocytes

Allergen-stimulated T lymphocytes from allergic patients induce vascular cell adhesion molecule-1 (VCAM-1) expression and IL-6 production by endothelial cells.

Adhesion of inflammatory cells to endothelium is a critical step for their transvascular migration to inflammatory sites. To evaluate the relationship between T lymphocytes (TL) and vascular endothelium, supernatants from allergen-stimulated TL obtained from patients sensitive to Dermatophagoides pteronyssinus (Dpt) versus healthy subjects were added to endothelial cell (EC) cultures. TL were stimulated by autologous-activated antigen-presenting cells (APC) previously fixed in paraformaldehyde to prevent monokine secretion. Two parameters were measured: the expression of adhesion molecule and the production of IL-6. Related allergen-stimulated TL supernatants from allergic patients induced an increase of VCAM-1 and intercellular adhesion molecule-1 (ICAM-1) expression when supernatants of the control groups (TL exposed to an unrelated allergen or not stimulated or TL obtained from healthy subjects) did not. E-selectin expression was not modulated whatever the supernatant added to EC culture. IL-6 production by EC was significantly enhanced after activation with related allergen-stimulated TL supernatants from allergics compared with control supernatants. Induction of VCAM-1 expression was inhibited by adding neutralizing antibodies against IL-4, whereas IL-6 production and ICAM-1 expression were inhibited by anti-interferon-gamma (IFN-gamma) antibodies. Enhanced production of IL-4 and IFN-gamma was detected in related allergen-stimulated TL supernatants from allergic subjects compared with the different supernatants. These data suggest that allergen-specific TL present in the peripheral blood of allergic patients are of Th1 and Th2 subtypes. Their stimulation in allergic patients may lead to the activation of endothelial cells and thereby participate in leucocyte recruitment towards the inflammatory site.

Adult

Modulation of endothelial cell adhesion molecule expression in a situation of chronic inflammatory stimulation.

Different disorders affecting the respiratory tract are characterized by the development of a chronic inflammatory reaction with an accumulation of immune and inflammatory cells into the bronchial walls and in interstitial and alveolar spaces. By its ability to secrete a large panel of cytokines, in particular TNF-alpha, the alveolar macrophage (AM) is undoubtedly playing a key role in the complex interactions between inflammatory and structural cells potentially implicated in the inflammatory reaction of the lung. One aspect of these interactions is the capacity of AM-derived TNF-alpha to induce the expression of cellular adhesion molecules (CAM) on the surface of endothelial cells. The main information concerning the induction of CAM have been obtained under experimental conditions mimicking an acute inflammatory reaction. In the present study, we propose an in vitro model allowing the reproduction of the conditions of a chronic inflammation, namely, the endothelial cell behavior submitted to a chronic TNF-alpha stimulation. The endothelial cell activation parameters were the modulation of expression of adhesion molecules: endothelial-leukocyte adhesion molecule-1 (E-selectin), intercellular adhesion molecule-1 (ICAM-1), and vascular adhesion molecule-1 (VCAM-1). Their functional abilities was evaluated using U937 cell adhesion analysis. Results demonstrated an overexpression of ICAM-1 after chronic stimulation performed with low but repeated doses of TNF-alpha. The level of ICAM-1 expression persisted throughout the culture to reach a high stable level despite the absence of detectable TNF-alpha activity in culture supernatants. If the stimulation was stopped after 6 days, the expression of ICAM-1 was still observed at least until Day 15. E-selectin and VCAM-1 expression remained absent or not significantly increased. The expression of ICAM-1 on endothelial cells was directly related to an enhanced adhesion capacity as demonstrated by the adhesion of U937 cells to endothelial cells by an ICAM-1/LFA-1 adhesion pathway. Taken together, these elements could bring new approaches in the investigation of mechanisms by which inflammatory cells are recruited and participate in chronic inflammatory processes.

Cell Adhesion

Production of anti-endothelial cell antibodies by coculture of EBV-infected human B cells with endothelial cells.

Vascular endothelial cells are suspected of being the target of autoimmune processes seen in many connective tissue diseases and in systemic vasculitis as evidenced by the detection of circulating autoantibodies against endothelial cell antigens. In order to select B cells recognizing endothelial cells antigens, Epstein-Barr virus (EBV)-infected B cells, obtained from one patient presenting a systemic vasculitis, were cocultured with human endothelial cells concurrently with a human endothelial cell line (EC-pSV1 cells). This coculture consisted of a first step of expansion of B cells specifically selected by adherence onto human umbilical vein endothelial cells (HUVEC). The adherence of selected B cells was specific to endothelial cells because no rosette formation around control cells (HeLa cells or COS cells) was observed. Adherent B cells were cloned by limiting dilution by coculture onto EC-pSV1 cells and screened for anti-HUVEC antibody production by endothelial cell ELISA. An increase in anti-HUVEC antibody production of IgM isotype was detected by endothelial cell ELISA, peaking at Day 9 and remaining constantly elevated, relative to B cell expansion. Among 21 B cell lines producing IgM, 6 presented high levels of anti-HUVEC antibodies, whereas 1 of 52 B cells cloned without EC-pSV1 cells showed such antibody production. Anti-HUVEC antibody production and B cell proliferation were dependent on the presence of endothelial cells. Two of these 6 B cell lines produced antibodies directed against an endothelial cell antigen with an apparent molecular weight of 192 kDa as determined by immunoblotting analysis. Our results demonstrate that adherence of EBV-infected B cells to endothelial cells and further cloning by adherence can efficiently select anti-HUVEC antibody-producing human B cells and might help to define antigens potentially involved in autoimmune diseases.

Antibody Formation

Immunogenicity and antigenicity of synthetic peptides derived from the mite allergen Der p I.

As an immunogen must contain both B- and T-cell epitopes, small peptides are usually reported as non-immunogenic unless coupled to a protein carrier. In this study, the immunogenicity of the Der p I synthetic uncoupled peptides (p52-71, p89-104, p117-133 and p176-187) previously reported as B-cell epitopes, was evaluated. Different schedules of immunization were used. Results indicated that by using the Vaitukaikis' method three injections of the same peptide without protein carrier was sufficient to induce an specific anti-peptide IgG antibody response (evaluated by ELISA). Indeed, the 16-20 amino-acid long peptides p52-71, p117-133 and p89-104 were revealed highly immunogenic in rabbits. Furthermore anti-peptide p52-71 and p117-133 antibodies were shown by Western-blotting or by neutralization assay to recognize the Der p I molecule either in denaturated or native form as well as Der f I (major allergen of Dermatophagoides farinae). Finally, taking into account the location of Der p I-derived peptides in the three-dimensional model of Der p I, the antigenicity and immunogenicity of peptides were discussed.

Allergens

Modulation of adhesion molecule expression on endothelial cells during the late asthmatic reaction: role of macrophage-derived tumour necrosis factor-alpha.

In a previous work we have demonstrated that in patients exhibiting a late allergic reaction (LAR), alveolar macrophages (AM) collected 18 h after bronchial allergen challenge produced high levels of IL-6 and tumour necrosis factor-alpha (TNF) which is known to up-regulate the endothelial cell expression of adhesion molecules participating in the development of the inflammatory reaction in bronchial asthma. For these reasons, we evaluated the effect of AM supernatants from asthmatic patients developing an LAR on intercellular adhesion molecule-1 (ICAM-1) and endothelial leucocyte adhesion molecule-1 (ELAM-1) expression by human endothelial cells. The expression of adhesion molecules was assessed by an ELISA method and compared with the effect of an optimal dose of human recombinant (hr) TNF. Results showed that AM supernatants, from challenged asthmatics developing an LAR, increased significantly the ICAM-1 and ELAM-1 expression on endothelial cells to a level similar to that obtained in the presence of hrTNF (500 U/ml) (P < 0.001 in both cases, respectively 90.4% and 75.2% of the level obtained with hrTNF). In contrast, AM supernatants from asthmatics at baseline or exhibiting, after challenge, a single early reaction had no significant effect on these parameters (P = NS in both cases, respectively 23.5% and 24.7% of the ICAM-1 expression, 22.7% and 15.3% of the ELAM-1 expression obtained with hrTNF). AM-derived TNF present in these supernatants was thought to play a key role in endothelial cell stimulation, since: (i) TNF concentration in AM supernatants correlated with its effect on ICAM-1 (r = 0.80, P < 10(-4)) and ELAM-1 expression (r = 0.88, P < 10(-5)); and (ii) a neutralizing anti-TNF antibody decreased their effect (68% and 80% respectively on ICAM-1 and ELAM-1 expression). Moreover, the role of IL-6 was excluded on the basis both of the hrIL-6 inefficiency to induce ICAM-1 and ELAM-1 synthesis, even in costimulation with hrTNF, and of anti-IL-6 antibody to neutralize the effect of AM supernatants. Our results suggest that, beside mast cells and lymphocytes, macrophages might participate in the induction of the local inflammatory reaction observed in bronchial asthma. During the LAR, cytokines and especially TNF are able, through an enhanced adhesion molecule expression on endothelial cells, to facilitate the bronchial cellular influx.

Asthma

Human endothelial cells transfected by SV40 T antigens: characterization and potential use as a source of normal endothelial factors.

A putative role for the vascular endothelium as target for autoantibodies has been suggested in several autoimmune disorders and connective-tissue diseases. However, there are some difficulties linked to the use of cultured endothelial cells (EC) that limit considerably the extensive studies on the nature of endothelial target antigens involved. To overcome this problem, human EC, derived from umbilical veins, were transfected with recombinant plasmid pSV1 which contained the early genes of simian virus SV40. These transfected cells, called EC-pSV1, are able to grow without EC growth supplement and demonstrate a population doubling time of about 50 h. Among the EC properties, EC-pSV1 retain intracellular content of angiotensin-converting enzyme activity, exhibit constitutive production of interleukin 6 and of a growth-promoting activity on early passage EV, express intercellular adhesion molecule 1 (ICAM-1) and its up-regulation by tumor necrosis factor alpha, but have lost the expression of factor VIII-related antigen. Moreover, EC-pSV1 express a 55-kDa antigen found on EC and human platelets, and presumably acting as an antibody target in some cases of non-allergic asthma. However, at the 50-55th generation, morphological changes and altered growth behavior were visible. This work demonstrates that transfection of EC with SV40 T antigens may be of interest, particularly in areas of research including the study of EC targets involved in different human diseases.

Antigens, Polyomavirus Transforming

Specific histamine release capacity of peptides selected from the modelized Der p I protein, a major allergen of Dermatophagoides pteronyssinus.

Dust mite allergens are considered as a major cause of allergic disease and as a risk factor for asthma. Der p I, a 222 amino-acid residue globular glycoprotein, is one of the major allergens from Dermatophagoides pteronyssinus (Dpt) mites. In this study, we have used predictive conventional algorithms (i.e. hydrophilicity, mobility, accessibility) and a three-dimensional model of Der p I derived from comparison to actinidin and papain to select continuous amino acid sequences as potential B cell epitopes. Four peptides, 52-71, 117-133, 176-187, 188-199 were synthesized. Their antigenic reactivity was investigated, mainly by measuring their capacity to induce in vitro histamine release. Results indicated that only Dpt-sensitive patients react specifically to Der p I-derived peptides and more frequently to 52-71 and 117-133. For each peptide, the intensity of response was dependent on the patient tested and on the peptide concn. The capacity of peptides to induce histamine release was demonstrated to be correlated with the serum level of anti-Der p I IgE (r = 0.86; p less than 10(-2)). Taken together these data emphasize, in Dpt-sensitive patients, the heterogeneity of the specific response to synthetic Der p I-derived peptides and underline the possible variety of epitopes belonging to the allergen Der p I.

Allergens

Levels of soluble IL-2 receptor in plasma from asthmatics. Correlations with blood eosinophilia, lung function, and corticosteroid therapy.

Evidence now suggests that eosinophils and T lymphocytes infiltrating bronchial tissues may play a key role in the pathophysiology of asthma. Circulating eosinophils, lung function, and plasma soluble IL-2 receptor (sIL-2R) were measured in 42 asthmatic patients referred for symptomatic asthma. The patients were divided into two groups based on the presence or absence of atopy. The group of non-atopic asthmatics was further divided according to the patients' requirement for long term oral corticosteroids. The mean sIL-2R +/- s.d. was 36.3 +/- 9.9 pM in the control group, 28.9 +/- 9.2 pM in the atopic asthmatics, 43.3 +/- 18.07 pM in the non-atopic asthmatics without oral steroid therapy, but was increased in the steroid-treated group (62.2 +/- 19.3 pM, P less than 0.01). A significant correlation was found between FEV1 and circulating eosinophils in atopic asthmatics and in non-atopic asthmatics without oral corticosteroid therapy, but not in the steroid-treated group. Furthermore, significant correlations were found between sIL-2R and FEV1, and between sIL-2R and blood eosinophils, in the group of non-atopic asthmatics not on oral steroid therapy. No such correlations were evidenced in the other groups of asthmatics. Similar results were obtained during the clinical course of three non-atopic patients followed for more than 1 year. These data suggest that T cell activation appears more prominent in non-atopic asthma than in atopic asthma. Moreover, it appears that T cell activation can occur in severe forms of asthma despite steroid treatment. Finally, the results suggest a possible link between T cell activation, eosinophils, and lung function, which may reflect a particular pathogenetic mechanism involved in non-atopic asthma.

Adrenal Cortex Hormones

Potential implication of endothelial cells in bronchial asthma.

Inflammatory cells like eosinophils, neutrophils or mononuclear phagocytes have long been recognized as essential components in the pathophysiology of asthma. After recruitment in situ and subsequent activation, they are considered as responsible for epithelial and submucosal bronchial alterations. However, to access to the inflammatory site, these cells have to cross the endothelial wall, suggesting so a potential implication of endothelial cells (EC) in bronchial asthma. To test this hypothesis, we studied in a first step the modulation of vascular adhesions like intercellular adhesion molecule-1 (ICAM-1) on EC: supernatants of alveolar macrophages (AM) recovered by bronchoalveolar lavage in patients exhibiting a late asthmatic reaction, induced an enhanced expression of ICAM-1 on EC preparations; increase of ICAM-1 was clearly correlated to amounts of tumor necrosis factor-alpha (TNF alpha) present in AM supernatants, as shown by inhibition experiments with anti-TNF alpha antiserum. The second way to explore the possible role of EC in asthma was the detection of autoantibodies to EC in various allergic disorders: antibodies against a 120-kD EC antigen in patients with allergic granulomatosis and angiitis, antibodies towards a 55-kD component, common to human EC and platelets in patients with severe asthma, namely characterized by their corticosteroid dependence or by aspirin-induced intolerance. So our data suggest that bronchial asthma might result from either EC activation, through the induction of surface adhesion molecules or from an autoimmune process involving EC antigens.

Adolescent

Neutrophil-endothelial cell interaction: evidence in vitro for a regulation by endothelial cells of neutrophil functions.

The purpose of this study was to investigate a possible relationship between human umbilical vein endothelial cells (EC) triggered by ionophore A23187 at different doses (0.5-2.5 microM) and polymorphonuclear neutrophils (PMN). EC supernatants were shown to contain neutrophil chemoattractant activity (NCA) and in parallel a factor inducing an inhibition of PMN chemiluminescence (PMN CL). Supernatants obtained from EC triggered by A23187 exhibited a high level of NCA (73 +/- 5 PMN.hpf-1 compared to 21 +/- 4 PMN.hpf-1 in untreated EC supernatants, p less than 0.01). This NCA was independent from arachidonic acid metabolites, since indomethacin and nordi-hydroguaiaretic acid failed to suppress the chemotactic activity. Using gel filtration chromatography (AcA 54) the NCA was recovered in a single peak of apparent molecular weight of 37,000 +/- 4,000 daltons. Checkerboard analysis indicated that NCA exhibited both chemotactic and chemokinetic activities. In addition, supernatants of A23187-stimulated EC, and at a lesser degree, supernatants of unstimulated EC, inhibited PMN CL induced by N-formyl-Methionyl-Leucyl-Phenylalanine (61% inhibition, p less than 0.05), and by A23187 itself (80% inhibition, p less than 0.01), but not that induced by phorbol-myristate-acetate. Indomethacin and protamine sulphate did not modulate this inhibitory activity. By contrast, EC-derived inhibitory activity was inhibited (50%) by an adenosine antagonist (8-phenyltheophylline), indicating a participation of adenosine in this inhibitory activity of PMN CL. These data suggest the possibility that activated endothelial cells could both enhance PMN migration and protect themselves against potential damaging effects of oxygen metabolites produced by PMN, particularly during transvascular migration.

Calcimycin