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K Blaser

Publications and source records attributed to K Blaser.

At least 73 records · Page 4Linked to original sources

T cells and T cell-derived cytokines as pathogenic factors in the nonallergic form of atopic dermatitis.

A subgroup of patients with atopic dermatitis are known to have normal serum total immunoglobulin E levels, undetectable specific immunoglobulin E, and negative skin prick tests towards allergens. This form of the disease has been termed nonallergic atopic dermatitis. In this study, we found that, among 1151 chronic atopic dermatitis patients, about 10% had normal serum immunoglobulin E levels with no evidence for immunoglobulin E sensitization. We investigated immunologic mechanisms of patients with "allergic" and "nonallergic" atopic dermatitis using peripheral blood and skin biopsy samples. Our data suggest that T cells are likely involved in the pathogenesis of both forms of atopic dermatitis. Skin T cells equally responded to superantigen, staphylococcal enterotoxin B, and produced interleukin-2, interleukin-5, interleukin-13, and interferon-gamma in both forms of the disease. Interleukin-4, however, was not detectable in the skin biopsies of both atopic dermatitis types and was secreted in very low amounts by T cells cultured from the skin biopsies. Moreover, skin T cells from nonallergic atopic dermatitis patients expressed lower interleukin-5 and interleukin-13 levels compared with allergic atopic dermatitis patients. Accordingly, T cells isolated from skin biopsies of atopic dermatitis, but not from the nonallergic atopic dermatitis, induced high immunoglobulin E production in cocultures with normal B cells that was mediated by interleukin-13. In addition, B cell activation with high CD23 expression was observed in the peripheral blood of atopic dermatitis, but not nonallergic atopic dermatitis patients. These data suggest, although high numbers of T cells are present in lesional skin of both types, a lack of interleukin-13-induced B cell activation and consequent immunoglobulin E production in nonallergic atopic dermatitis.

Adult↗

IL-10-induced anergy in peripheral T cell and reactivation by microenvironmental cytokines: two key steps in specific immunotherapy.

Specific immunotherapy (SIT) is widely used for treatment of allergic diseases and could potentially be applied in other immunological disorders. Induction of specific unresponsiveness (anergy) in peripheral T cells and recovery by cytokines from the tissue microenvironment represent two key steps in SIT with whole allergen or antigenic T cell peptides (PIT). The anergy is directed against the T cell epitopes of the respective antigen and characterized by suppressed proliferative and cytokine responses. It is initiated by autocrine action of IL-10, which is increasingly produced by the antigen-specific T cells. Later in therapy, B cells and monocytes also produce IL-10. The anergic T cells can be reactivated by different cytokines. Whereas IL-15 and IL-2 generate Th1 cytokine profile and an IgG4 antibody response, IL-4 reactivates a Th2 cytokine pattern and IgE antibodies. Increased IL-10 suppresses IgE and enhances IgG4 synthesis, resulting in a decreased antigen-specific IgE:IgG4 ratio, as observed normally in patients after SIT or PIT. The same state of anergy against the major bee venom allergen, phospholipase A2, can be observed in subjects naturally anergized after multiple bee stings. Together, these data demonstrate the pivotal role of autocrine IL-10 in induction of specific T cell anergy and the important participation of the cytokine microenvironment in SIT. Furthermore, knowledge of the mechanisms explaining reasons for success or failure of SIT may enable possible predictive measures of the treatment.

Bee Venoms↗

Differential regulation of allergen-specific antibodies in allergy and specific immunotherapy.

Allergen-specific immunotherapy (SIT) aims to specifically skew an allergic response into a normal immune reaction against an allergen. The response to bee venom (BV) provides an especially suited model to study the immunological mechanisms of SIT in human. The BV-phospholipase A2 (PLA) represents the major antigen/allergen of BV. In SIT of BV allergy both whole BV and T cell epitope peptides of PLA were successfully applied. It appeared that the induction of specific anergy in peripheral T cells and reactivation of the T cells by microenvironmental cytokines represent the basic key steps in the immunological mechanism of SIT. The proliferative and cytokine responses by specific T cells were significantly suppressed simultaneously with an increase in IL-10 after 7 days. The anergic state was fully established after 4 weeks. Neutralization of IL-10 in PBMC by a specific antibody reconstituted the original proliferative and cytokine responses. Intracytoplasmatic cytokine staining revealed that IL-10 was initially produced by activated allergen-specific T cells. IL-10-producing B cells and monocytes were involved at a later stage of SIT and in maintenance of the anergy. The addition of IL-10 to stimulated PBMC or purified B cells inhibited IgE synthesis and enhanced the IgG4 antibody formation. Thus, SIT generates IL-10, which in turn induces specific anergy by autokrine interaction in T cells and counter-regulates IgE and IgG4 production. Particular cytokines from the tissue microenvironment reactivate the T cells to produce distinct Th1 or Th2 cytokine patterns respectively and by this way direct SIT towards successful or unsuccessful treatment. High amounts of allergen administered in SIT preferentially generate Th1 cytokines in T cells and IgG4 antibodies in memory B cells. Further investigations demonstrated that suppression of T cells by IL-10 is an active process, which depends on the expression and participation of CD28.

Allergens↗

Role for Bcl-xL in delayed eosinophil apoptosis mediated by granulocyte-macrophage colony-stimulating factor and interleukin-5.

Eosinophils are potent inflammatory cells involved in allergic reactions. Inhibition of apoptosis of purified eosinophils by certain cytokines has been previously shown to be an important mechanism causing tissue eosinophilia. To elucidate the role of Bcl-2 family members in the inhibition of eosinophil apoptosis, we examined the expression of the known anti-apoptotic genes Bcl-2, Bcl-xL, and A1, as well as Bax and Bcl-xS, which promote apoptosis in other systems. We show herein that freshly isolated human eosinophils express significant amounts of Bcl-xL and Bax, but only little or no Bcl-2, Bcl-xS, or A1. As assessed by reverse transcription-polymerase chain reaction, immunoblotting, flow cytometry, and immunocytochemistry, we show that spontaneous eosinophil apoptosis is associated with a decrease in Bcl-xL mRNA and protein levels. In contrast, stimulation of the cells with granulocyte-macrophage colony-stimulating factor (GM-CSF) or interleukin-5 (IL-5) results in maintenance or upregulation of Bcl-xL mRNA and protein levels. Moreover, Bcl-2 protein is not induced by GM-CSF or IL-5 in purified eosinophils. Bcl-2 protein is also not expressed in tissue eosinophils as assessed by immunohistochemistry using two different eosinophilic tissue models. Furthermore, Bcl-xL antisense but not scrambled phosphorothioate oligodeoxynucleotides can partially block the cytokine-mediated rescue of apoptotic death in these cells. These data suggest that Bcl-xL acts as an anti-apoptotic molecule in eosinophils.

Apoptosis↗

Role for tyrosine phosphorylation and Lyn tyrosine kinase in fas receptor-mediated apoptosis in eosinophils.

Fas ligand/Fas receptor molecular interactions have been implicated as having an important function for the regulation of eosinophil apoptosis. The purpose of the present study was to investigate biochemical events triggered by the engagement of the Fas receptor in freshly isolated human and mouse eosinophils. Activation of the Fas receptor on eosinophils with the agonistic anti-Fas monoclonal antibody (MoAb) resulted in increased tyrosine phosphorylation of several intracellular proteins. The tyrosine kinase inhibitors lavendustin A and genistein inhibited Fas receptor-induced cell death in both human and mouse eosinophils in vitro and prevented, at least partially, Fas receptor-mediated resolution of eosinophilic inflammation in a mouse in vivo model of lung eosinophilia. In addition, in freshly purified human eosinophils, lavendustin A prevented anti-Fas MoAb-induced proteolytic cleavage of lamin B, suggesting that tyrosine kinases may amplify the proteolytic signaling cascade within interleukin-1beta converting enzyme (ICE) family proteases. Moreover, the tyrosine kinase Lyn was identified as being involved in Fas receptor-mediated cell death. Collectively, these results demonstrate that tyrosine phosphorylation is an important step in the generation of the Fas receptor-linked transmembrane death signal in eosinophils and that Lyn participates in this pathway.

Animals↗

Role of interleukin 10 in specific immunotherapy.

The induction of allergen-specific anergy in peripheral T cells represents a key step in specific immunotherapy (SIT). Here we demonstrate that the anergic state results from increased IL-10 production. In bee venom (BV)-SIT the specific proliferative and cytokine responses against the main allergen, the phospholipase A2 (PLA), and T cell epitope-containing PLA peptides were significantly suppressed after 7 d of treatment. Simultaneously, the production of IL-10 increased during BV-SIT. After 28 d of BV-SIT the anergic state was established. Intracytoplasmic cytokine staining of PBMC combined with surface marker detection revealed that IL-10 was produced initially by activated CD4(+)CD25(+), allergen-specific T cells, and followed by B cells and monocytes. Neutralization of IL-10 in PBMC fully reconstituted the specific proliferative and cytokine responses. A similar state of IL-10-associated T cell anergy, as induced in BV-SIT, was found in hyperimmune individuals who recently had received multiple bee stings. The addition of IL-10 to soluble CD40 ligand IL-4-stimulated PBMC or purified B cells inhibited the PLA-specific and total IgE and enhanced the IgG4 formation. Accordingly, increased IL-10 production by SIT causes specific anergy in peripheral T cells, and regulates specific IgE and IgG4 production toward normal IgG4-related immunity.

Adult↗

Disruption of fas receptor signaling by nitric oxide in eosinophils.

It has been suggested that Fas ligand-Fas receptor interactions are involved in the regulation of eosinophil apoptosis and that dysfunctions in this system could contribute to the accumulation of these cells in allergic and asthmatic diseases. Here, we demonstrate that nitric oxide (NO) specifically prevents Fas receptor-mediated apoptosis in freshly isolated human eosinophils. In contrast, rapid acceleration of eosinophil apoptosis by activation of the Fas receptor occurs in the presence of eosinophil hematopoietins. Analysis of the intracellular mechanisms revealed that NO disrupts Fas receptor-mediated signaling events at the level of, or proximal to, Jun kinase (JNK), but distal to sphingomyelinase (SMase) activation and ceramide generation. In addition, activation of SMase occurs downstream of an interleukin 1 converting enzyme-like (ICE-like) protease(s) that is not blocked by NO. However, NO prevents activation of a protease that targets lamin B1. These findings suggest a role for an additional NO-sensitive apoptotic signaling pathway that amplifies the proteolytic cascade initialized by activation of the Fas receptor. Therefore, NO concentrations within allergic inflammatory sites may be important in determining whether an eosinophil survives or undergoes apoptosis upon Fas ligand stimulation.

Apoptosis↗

Differential regulation of human T cell cytokine patterns and IgE and IgG4 responses by conformational antigen variants.

Bee venom phospholipase A2 (PLA) represents the major allergen and antigen in allergic and non-allergic individuals sensitized to bee sting. We have studied specific activation of peripheral T cells by different structural and conformational variants of PLA and secretion of cytokines regulating IgE and IgG4 antibody (Ab) formation. PLA molecules expressing the correctly folded tertiary structure, which show high affinity to membrane phospholipids and were recognized by Ab from bee sting allergic patients, induced high IL-4, IL-5 and IL-13 production in peripheral blood mononuclear cell cultures. In contrast, non-refolded recombinant PLA (rPLA) and reduced and alkylated native PLA (nPLA) induced more IFN-gamma and IL-2 and higher proliferative responses. Differences in proliferation and cytokine patterns among correctly folded and non-refolded PLA resulted from conformation-dependent involvement of different antigen-presenting cell (APC) types. Antigen (Ag)-presenting B cells recognized PLA only in its natural conformation, stimulated Th2 type cytokines and induced IgE Ab. Non-refolded PLA was recognized, processed and presented exclusively by monocytes and induced a Th1 dominant cytokine profile leading to IgG4 production by B cells. The possibility that production of particular cytokine patterns and Ig isotype was influenced by the enzymatic activity of PLA was excluded by using enzymatically inactive H34Q point-mutated, refolded rPLA. These findings demonstrate the decisive role of specific Ag recognition by different APC, depending on structural features, membrane phospholipid binding property and the existence of conformational B cell epitopes, in the differential regulation of memory IgE and IgG4 Ab. Furthermore, they show that a change from IgE-mediated allergy to normal immunity against a major allergen can be induced by rPLA variants that are not recognized by specific Ab and B cells but still carry the T cell epitopes. These features may enable new applications for safer immunotherapy.

Adult↗

Differential IgE recognition of recombinant Aspergillus fumigatus allergens by cystic fibrosis patients with allergic bronchopulmonary aspergillosis or Aspergillus allergy.

Allergic bronchopulmonary aspergillosis (ABPA), an intense inflammatory reaction to Aspergillus in the lung, is recognized as a severe complication in patients with cystic fibrosis (CF). The diagnosis of ABPA in CF patients sensitized to Aspergillus fumigatus is complicated by interfering laboratory and clinical findings shared by the diseases. We have used cDNA encoding A. fumigatus allergens which were cloned from a cDNA library displayed on phage surface to produce recombinant proteins in Escherichia coli. Differential IgE responses to the allergens in A. fumigatus-sensitized CF patients with or without ABPA and CF controls without sensitization to A. fumigatus were demonstrated. A secreted ribotoxin (rAsp f 1) and a peroxisomal protein (rAsp f 3) were recognized by sera from A. fumigatus-sensitized CF-patients with or without ABPA. An intracellular manganese superoxide dismutase (rAsp f 6) and rAsp f 4, a protein with unknown function, were recognized exclusively by IgE from sera of CF patients with ABPA. Therefore, Asp f 4 and Asp f 6 represent specific markers for ABPA and allow a sensitive, fully specific diagnosis of the disease. The data suggest distinct IgE responses to colonization of the bronchial tree in CF patients with ABPA or A. fumigatus allergy and therefore a differential recognition of the pathogen in the two IgE-related inflammatory diseases.

Adolescent↗

Successful immunotherapy with T-cell epitope peptides of bee venom phospholipase A2 induces specific T-cell anergy in patients allergic to bee venom.

BACKGROUND: Specific immunotherapy with honeybee venom (BV) is highly effective, but allergic side effects can occur during treatment. Immunotherapy with peptides containing major T-cell epitopes of the relevant allergen or allergens provides an alternative strategy without these problems. OBJECTIVE: The study investigates the immunologic mechanisms and clinical effects of immunotherapy with T-cell epitope peptides of the major BV allergen, the phospholipase A2 (PLA). METHODS: Five patients with IgE-mediated systemic allergic reactions to bee stings were treated with a mixture of three T-cell epitope peptides of PLA. Ten patients allergic to BV receiving whole BV immunotherapy served as control subjects. Increasing doses of the peptide mixture, up to a maintenance dose of 100 microg, were administered subcutaneously within 2 months. The patients were then challenged with PLA and 1 week later with a bee sting. The cellular and humoral immune response was measured in vitro. RESULTS: No allergic side effects were caused by the peptide immunotherapy, and all patients tolerated the challenge with PLA without systemic allergic symptoms. Two patients developed mild systemic allergic reactions after the bee sting challenge. After peptide immunotherapy, specific proliferative responses to PLA and the peptides in peripheral blood mononuclear cells were decreased in successfully treated patients. The production of TH2 and TH1 cytokines was inhibited, and B cells were not affected in their capacity to produce specific IgE and IgG4 antibodies. Their levels increased after allergen challenge in favor of IgG4. CONCLUSIONS: Immunotherapy of BV allergy with short T-cell peptides of PLA induces epitope-specific anergy in peripheral T cells and changes the specific isotype ratio in a fashion similar to that of conventional immunotherapy in successfully treated patients.

Adolescent↗

Enzymatic activity of soluble phospholipase A2 does not affect the specific IgE, IgG4 and cytokine responses in bee sting allergy.

BACKGROUND: The soluble bee venom phospholipase A2 (PLA) represents the major allergen/antigen for allergic and hyperimmune individuals following bee sting. A number of studies implicate enzymes, and PLA in particular, as potent allergens. We have studied specific activation of T cells by enzymatically active and inactive mutants of PLA, and secretion of cytokines regulating IgE and IgG4 antibody formation. METHODS: Recombinant (r) wild type PLA (rPLA-WT) and an enzymatically inactive rPLA (rPLA-H34Q) were produced in Escherichia coli. Eleven bee venom allergic patients and three hyperimmune, healthy individuals were included in the study. After specific stimulation of PBMC with the rPLA variants, proliferative response, IFNgamma, IL-2, IL-4, IL-5, and IL-13 production, as well as total and PLA-specific IgE and IgG4 production, were analysed. RESULTS: Similar levels of specific B cell recognition, proliferative and cytokine responses were observed after stimulation with either enzymatically active or inactive rPLA. In addition, equal amounts of antigen-specific and total IgE and IgG4 antibodies were produced by stimulation with both forms of rPLA. CONCLUSIONS: The enzymatic activity of PLA does not influence the specific activation and cytokine production by T cells from bee venom-sensitized or hyperimmune individuals, or the IgE/IgG4 antibodies synthesis by B cells in vitro.

Adult↗

Skin-test reactivity and isotype-specific immune responses to recombinant Asp f 3, a major allergen of Aspergillus fumigatus.

BACKGROUND: The in vitro diagnostic value of recombinant allergens depends on the correlation between allergen specific IgE in serum and ability of the protein to elicit immediate type allergic reactions in sensitized individuals. Objective The study was carried out to evaluate the reliability of recombinant Asp f 3 (rAsp f 3)-based serological determinations in ELISA and ImmunoCAP compared to skin-test responses in A. fumigatus sensitized subjects. METHODS: Patients suffering from allergic bronchopulmonary aspergillosis (ABPA, n=11) or allergic asthma with A. fumigatus sensitization (n =8) and healthy control subjects (n=4) were investigated. Intradermal skin tests (IDT) and allergen-specific serology were performed using rAsp f 3 protein. RESULTS: All 11 patients with ABPA and five out of eight A. fimigatus-sensitized asthmatics without ABPA exhibited a type I skin reaction. All rAsp f 3 skin test positive subjects showed relevant rAsp f 3-specific serum IgE levels compared with IDT-negative individuals who scored below the rAsp f 3-ImmunoCAP cut-off values of < 0.35 kU(A)/L. Analyses of rAsp f 3-specific immunoglobulins revealed significantly higher serum levels of IgG, IgG1, IgG4 and IgE antibodies in patients with ABPA compared with A. fumigatus-sensitized asthmatics and healthy controls. CONCLUSION: rAsp f 3 represents a major allergen of A. fumigatus. It is recognized by 84% of asthmatic individuals sensitized to the fungus and elicits specific type I skin reactions. The skin test outcome strictly depends on the presence of rAsp f 3-specific IgE and the lack of false positive or false negative results comparing skin test outcome with specific serum IgE levels determined by ELISA or rAsp f 3-ImmunoCAP suggests the possibility to rely on serological data obtained with recombinant allergens to diagnose sensitization to A. fumigatus.

Adult↗

Disease-specific recombinant allergens for the diagnosis of allergic bronchopulmonary aspergillosis.

Allergic bronchopulmonary aspergillosis (ABPA), a severe pulmonary complication caused by Aspergillus fumigatus, is considered a complex clinical syndrome with defined serological, pathological radiological and clinical features. The diagnosis of ABPA is often difficult because of several overlapping clinical and laboratory findings shared between asthma with sensitization to A. fumigatus and ABPA, but essential for treatment to prevent severe deterioration of pulmonary function. We have cloned A. fumigatus allergens from a cDNA library displayed on phage surface, sequenced the inserts and produced recombinant proteins in Escherichia coli. The single recombinant allergens were used to assess the immunological response in representative groups of A. fumigatus-sensitized asthmatics with or without ABPA and healthy controls. The allergens rAsp f 1, a 16.9 kDa ribotoxin, rAsp f 3, a 18.5 kDa peroxisomal protein, and rAsp f 6, a 23 kDa manganese superoxide dismutase, were identified as proteins with known biological function and rAsp f 4, a 30 kDa allergen, lacks sequence homology to known proteins. The secreted ribotoxin rAsp f 1 and rAsp f 3 are recognized by serum IgE of A. fumigatus-sensitized asthmatics with or without ABPA, whereas the non-secreted manganese superoxide dismutase rAsp f 6 and the rAsp f 4 allergen are exclusively recognized by serum IgE of ABPA patients. The dissection of IgE-mediated immune responses to single recombinant A. fumigatus allergens in asthmatic patients allow a discrimination between ABPA and A. fumigatus sensitization with high specificity (100%) and sensitivity (90%).

Adult↗

[Molecular aspects and diagnostic value of fungal allergens].

Cloning, sequencing and production of highly pure recombinant allergens allows to produce perfectly standardised allergen preparations. The development of a new cloning system based on filamentous phage allowed the fast isolation and characterisation of allergens from the fungus Aspergillus fumigatus. The produced recombinant allergens were tested in serological and clinical studies as well as for their performance for routine assessments in the ImmunoCAP-system. Thereby, a perfect correlation between skin test results and serology was found showing the potential of recombinant allergens for the diagnosis of allergic diseases. Moreover, the characterisation of fungal allergens substantially contributes to our understanding of the molecular nature of proteins involved in the elicitation of allergic reactions. Apart from allergenic proteins with unknown biological function, fungal allergens can be subdivided into two classes: 1. Species-specific, secreted proteins and 2. cytoplasmic, even in phylogenetically distant organisms, well conserved proteins. These fungal allergens show extended sequence similarity, a high level of IgE cross-reactivity and in some cases also cross-reactivity with homologous human proteins indicating autoimmune reactions involved in fungal allergy.

Allergens↗

Determinants and mechanisms of human immune responses to bee venom phospholipase A2.

The elicitation of an immune response to protein antigens depends on the specific recognition of antigenic determinants (epitopes) by T and B lymphocytes. Bee venom phospholipase A2 (PLA) represents the major antigen/allergen of honey bee venom. It displays three dominant immunogenic peptide and one glycopeptide T cell recognition sites. These epitopes are equally recognized by both allergic and nonallergic individuals. A mixture of the three epitope containing peptides was successfully used in specific immunotherapy of bee venom-allergic patients. Both peptide and whole bee venom immunotherapy induced a state of specific anergy in T cells. The production of specific IgE and IgG4 antibodies directly correlated with the secreted interleukin-4:gamma-interferon (IL-4:IFNgamma) ratio, which itself depended on the concentration of available antigen and the strength of the T cell-activating signal. This signal comprises accumulated molecular interactions delivered by engagement of the antigenic peptide/MHC class II complex with the T cell receptor (TcR). Indeed the thermodynamic laws of chemical equilibrium reactions reveal that the antigen concentration, together with the equilibration constant Ki and the related Gibbs standard free energy DeltaG degrees of the MHC-II/Ag/TcR complex reaction, may govern the secreted IL-4:IFNgamma ratio, and in consequence, differential IgE and IgG4 antibody formation. Ki includes epitope and MHC-II haplotype variability and therefore represents a measure of immunological individuality. A major B cell epitope was determined by using point-mutated PLA. Specific antigen recognition by B cells can trigger distinct cytokine profiles in T cells and contribute to the differential regulation of specific IgE and IgG4 antibodies. Our results indicate that distinct cytokine profiles inducing allergic and nonallergic responses can be attributed to thresholds of T cell activation generated by the specific binding properties of individual MHC-II molecules to immunogenic T cell epitopes and their presentation to TcR.

Allergens↗