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Biomedical subjects

K Blaser

Publications and source records attributed to K Blaser.

At least 19 recordsLinked to original sources

Induction and function of eosinophil intercellular adhesion molecule-1 and HLA-DR.

We have previously established that eosinophils studied ex vivo from the sputum of asthmatics express intercellular adhesion molecule-1 (ICAM-1) and HLA-DR, whereas peripheral blood eosinophils do not express these surface proteins. On incubation of highly purified (greater than 99.5% pure) blood eosinophils from normal subjects with T cell supernatants, eosinophil ICAM-1 was induced in 24 h, whereas HLA-DR was maximally induced within 48 h. Recombinant cytokines that enable eosinophil survival (IL-5, IL-3, and granulocyte macrophage-CSF) were found to be unable to induce ICAM-1 or HLA-DR, even when pooled at concentrations individually required for eosinophil survival. However, synergy between these eosinophil survival factors and TNF (-alpha and -beta) was found mainly responsible for ICAM-1 induction, whereas synergy between IL-3 and IFN-gamma occurred for HLA-DR induction. Culture of eosinophils in the presence of cytokines and cycloheximide prevented expression of ICAM-1 and HLA-DR, showing that de novo eosinophil protein synthesis is occurring. At a functional level we demonstrate that ICAM-1-bearing eosinophils have increased adhesion capacity for autologous T cells. In contrast, HLA-DR-expressing eosinophils mediated Ag-specific proliferation of an autologous HLA-DR-restricted T cell clone that was inhibitable by anti-HLA-DR and anti-ICAM-1 mAb. Since eosinophil-mediated Ag presentation was inhibitable by treatment of eosinophils with glutaraldehyde or chloroquine, this suggests that eosinophils participate in Ag uptake, processing, and presentation and have accessory functions. Thus, through the induction of ICAM-1 and HLA-DR on tissue eosinophils, eosinophils have the capacity to interact with leukocytes and present Ag to T cells.

Antigen-Presenting Cells

Cloning and expression of recombinant Aspergillus fumigatus allergen I/a (rAsp f I/a) with IgE binding and type I skin test activity.

Aspergillus fumigatus secretes an 18-kDa nonglycosylated IgE-binding protein. This protein was previously shown to be a ribotoxin, like alpha-sarcin and mitogillin. A 686-bp long A. fumigatus cDNA encoding an 18-kDa ribotoxin was cloned and expressed in Escherichia coli as a fusion protein with six adjacent histidines (rAsp f I/a). rAsp f I/a was purified to homogeneity by Ni(2+)-chelate affinity chromatography and refolded. The recombinant protein was enzymatically active resulting in the cleavage of 28S rRNA within a universally conserved region. rAsp f I/a was cytotoxic for EBV immortalized or PHA stimulated human PBMC. Furthermore, rAsp f I/a was recognized by murine mAb made against an 18-kDa ribotoxin. IgE of individuals allergic to A. fumigatus bound to rAsp f I/a as shown by ELISA, dot blots, and Western blots. rAsp f I/a elicited positive immediate type I skin reactions in individuals allergic to A. fumigatus but not in healthy control individuals. The results show that rAsp f I/a has similar functional characteristics when compared to the native 18-kDa ribotoxin. rAsp f I/a expressed in E. coli can therefore be used as a standardized Ag/allergen for serologic and clinical diagnosis of A. fumigatus-associated diseases.

Allergens

Specific VDJ gene combinations contribute to the specificity of memory antibodies to the phosphorylcholine hapten.

Based on their fine specificity, two groups of antibodies against the phosphorylcholine (PC) hapten have been described. Group I antibodies react predominantly with the PC moiety of the hapten and group II are directed against the entire hapten including the azophenyl spacer to the protein carrier. We have analyzed the VH gene segment utilization of hybridomas from the memory response to PC by Southern blot analysis and nucleotide sequencing of the functional VDJ rearrangements. Three main specificities of anti-PC antibodies could be distinguished. Anti-PC hybridomas with group I fine specificity utilize the VH1-DFL 16.1-JH1 rearrangement. A major portion of group II antibodies recognized the phenyl-PC part and expressed the same VH1 gene in combination with a member of the SP2 family and JH1 or JH2. The other anti-PC antibodies either used the PJ14-DFL16-JH3 rearrangement in combination with a lambda 1 L chain or a member of the VGam3.8 VH family rearranged to the DFL16.1 and the JH3 gene segments. The PJ14 and VGam3.8 V gene expressing antibodies were directed to the phenyl group and were either not or barely inhibitable by PC chloride. Thus, specific VDJ gene combinations contribute to the fine specificity of antibodies in the memory response to the PC hapten. The use of the S107, Q52, and VGam3.8. VH gene families, together with FL16.1 or SP2 D segments and JH1, JH2, or JH3 results in different fine specificities to the PC, phenyl-PC, or the azophenyl moiety of the PC hapten. These fine specificities of the memory response use V, D, and J segments of the initial T15Id+ response in combination with gene segments usually related to phenyl specificity.

Amino Acid Sequence

The role of T lymphocytes in the pathogenesis of asthma.

Recently there have been advances in our understanding of the role of thymic (T) lymphocytes in asthma. In this brief review we discuss evidence for T cell involvement in asthma, with emphasis on T cell surface markers associated with activation and T cell production of cytokines. We proceed to describe how T cells influence inflammatory effector cells such as mast cells and eosinophils. However, mast cells and eosinophils are also capable of cytokine production, and participate in inflammatory cell networks within the bronchial tissue of asthmatics.

Asthma

Establishment of anti-human neuroblastoma-selective isotype-switch variants.

Isotype-switch variants of monoclonal antibodies occur spontaneously at low frequency in hybridoma cultures. We have established gamma 2b variants from the gamma 1/kappa antibody-secreting murine hybridoma CE7 and gamma 2a-secreting variants from a selected CE7 gamma 2b clone. The CE7 antibodies selectively recognize a cell surface glycoprotein of 185 kDa expressed on all human sympatho-adrenomedullary cells. The switch-variants were obtained by a stepwise cloning strategy and selected by an isotype-specific solid-phase sandwich ELISA. The frequency of the switch variants was 1-2 x 10(-5) for both isotypes. Using ELISA inhibition technique it was demonstrated that the selected variants were able to bind to the same epitope of neuroblastoma as the original CE7 gamma 1. Southern blot analysis showed that the functionally rearranged VH and VL genes of CE7 gamma 1, CE7 gamma 2a and CE7 gamma 2b antibodies were identical. The N terminal FR1 amino acid sequence of the L chains was identical in all three isotypes and the H chains were blocked for Edman degradation. Regarding the possible applications of CE7 antibodies the different isotypes were assayed for their cytolytic activity as measured by complement-mediated 51Cr release of IMR-32 neuroblastoma cells.

Antibodies, Monoclonal

Bee venom phospholipase A2-specific T cell clones from human allergic and non-allergic individuals: cytokine patterns change in response to the antigen concentration.

Protein antigens with both allergenic and immunoprotective properties represent appropriate molecules to study IgE and IgG regulation. We have established a panel of T cell clones specific to bee venom phospholipase A2 (PLA) from human individuals allergic, hyposensitized or immune (protected) to bee sting. All clones obtained were CD3+, CD4+ and expressed alpha, beta T cell receptor. Depending on the T cell clone, maximal stimulation required 1 to 100 micrograms/ml of PLA, and the addition of interleukin (IL)-2 and/or IL-4 increased their antigen-dependent proliferation. Following antigen stimulation, the clones produced IL-4, interferon-gamma (IFN-gamma) and granulocyte-macrophage colony-stimulating factor. Most clones also produced tumor necrosis factor alpha (TNF-alpha) and tumor necrosis factor beta (TNF-beta), and some produced IL-5 and/or IL-2. Both absolute and relative amounts of secreted cytokines depended on the antigen concentration. At low antigen doses, IL-4 was produced but little or not IFN-gamma, whereas at higher PLA concentrations significant amounts of both IL-4 and IFN-gamma were obtained. Thus, these PLA-specific T cell clones could be classified according to the changes in the ratio of IL-4/IFN-gamma production in response to increasing antigen concentrations. Clones derived from allergic and hyposensitized individuals required higher critical amounts of antigen for IFN-gamma induction, and expressed increasing IL-4/IFN-gamma ratios with increasing concentrations of PLA. Modulation of cytokine patterns by the dose of the antigen may be a driving force for IgE or IgG formation resulting in allergy or immunoprotection.

Bee Venoms

Rabbit single domain antibodies specific to protein C expressed in prokaryotes.

VDJ genes were amplified by the polymerase chain reaction from mRNA isolated from peripheral blood B cells of rabbits immunized with protein C. The amplified genes were cloned into a lambda phage expression vector and packaged. A library of 6 x 10(5) recombinant phages was screened with labelled protein C and 30 positive clones were found. Three of them were plaque purified and the affinity of the single domain antibodies to the antigen determined to be 10(6)-10(7) l M-1. The data indicate the feasibility of generating single domain antibody, specific to protein antigen, from rabbit.

Animals

Allergic and nonallergic asthmatics have distinct patterns of T-cell activation and cytokine production in peripheral blood and bronchoalveolar lavage.

Activation of lymphocyte subpopulations was determined in conjunction with levels of cytokines in peripheral blood and bronchoalveolar lavage (BAL) of asthmatics. Allergic asthmatics had increased numbers of CD4+ IL-2R+ T cells in peripheral blood and BAL, and T-cell activation closely correlated with numbers of low-affinity IgE receptor (CD23) bearing B cells. In contrast, in nonallergic asthmatics both CD4+ and CD8+ T cells from blood and BAL had increased expression of IL-2R, HLA-DR, and VLA-1. Furthermore, in the nonallergic asthmatics CD8+ T cells were decreased in blood but increased in BAL. Cytokine levels were determined in BAL fluid and supernatants from purified peripheral blood T cells and enriched BAL lymphocyte preparations. Allergic asthmatics were characterized by increased levels of IL-4 and IL-5, and this elevated IL-4 contributed to the elevated IgE levels found in these allergic subjects. In contrast, nonallergic asthmatics had elevated levels of IL-2 and IL-5, with IL-2 contributing to T-cell activation. In both types of asthma, the close correlation of IL-5 levels with eosinophilia suggests that IL-5 is responsible for the characteristic eosinophilia of asthma. Thus, we provide evidence of distinct T-cell activation resulting in different spectra of cytokines in allergic and nonallergic asthma.

Adolescent

Polymorphism of age-related changes in the antibody response to the hapten phosphorylcholine.

Aging is accompanied by changes in the immune system that occur at different levels and at different periods of time. We have studied age-related changes in isotype and idiotype of the antibody response to hapten phosphorylcholine (PC) in C57BL/6, and A mice and in the congenic MRL/Mp(-)+/+ and MRL/Mp-1pr/1pr strains. Three groups, representing young, middle and old age were immunized with PC-keyhole limpet hemocyanin. Total anti-PC antibody and the contribution of each isotype and of the T15 idiotype were assessed in the initial and late response. Some features of the antibody-response were similar in all the strains tested, e.g. the largest quantity of anti-PC antibody is formed in middle age and IgM is dominant in the initial response. However, remarkable differences occur in the isotype and idiotype predominance. Particularly, congenic MRL/Mp strains, prone to autoimmune disease, express the T15 idiotype only at low levels, even though IgM, which normally expresses this idiotype, is produced in large amounts. Furthermore, the late (memory) response of the MRL/Mp strains is dominated by IgG2b rather than IgG1, which is the predominant isotype in mice of long-lived strains. We conclude from these results that the number of T helper cells, involved in isotype regulation decreases with age and that there is a genetic variation, i.e., polymorphism in the ability to express T15-idiotype producing subtypes.

Aging

Radioimmunolocalization of neuroblastoma xenografts with chimeric antibody chCE7.

This study was performed to evaluate the tumor targeting ability of chCE7 with a view to clinical applications in neuroblastoma imaging and therapy. A chimeric (mouse/human) monoclonal antibody (chCE7) of gamma 1/kappa isotype directed against a neuroblastoma-associated cell-surface glycoprotein is described. In vitro chCE7 binds with high affinity (KD approximately 1 x 10(-10) M) to SKN-AS human neuroblastoma cells. Binding studies with 125I-labeled chCE7 show temperature-dependent modulation of antigen binding and indicate that a proportion of the bound antibody is internalized due to rapid antigen turnover. In vivo biodistribution of radioiodinated chCE7 in nude mice bearing SKN-AS tumors shows optimal tumor uptake after 24 hr with about 30% of the injected dose per g. Optimal tumor/blood ratios (3.4:1) are reached after 4-5 days. Uptake in other organs including the reticuloendothelial system is low with tumor/organ ratios of 10 and more. Tumor uptake of chCE7 and the parent murine CE7 are found to be similar. Stability of chCE7 during and after radiolabeling is good with no loss of immunoreactivity in preparations labeled with 123I up to 100 mCi/mg and 80% immunoreactivity after labeling with 13 mCi/mg of 131I. Neuroblastoma xenografts can be imaged by radioimmunoscintigraphy with 123I- and and 131I-labeled chCE7.

Animals

An improved immunomagnetic procedure for the isolation of highly purified human blood eosinophils.

A simple method is described for the isolation of human peripheral blood eosinophils by an immunomagnetic procedure. Superparamagnetic particles were coupled to a monoclonal antibody against CD16, a molecule present on neutrophils but not on eosinophils. A peripheral blood granulocyte preparation, containing neutrophils and eosinophils, was incubated with these anti-CD16 particles. In the magnetic field of a permanent magnet, magnetically labelled neutrophils were then retained on columns with a ferromagnetic matrix. By this negative selection procedure, eosinophils of 99.5% purity were obtained from normal individuals and 99.6% purity from patients with eczema. A comparison was made between the immunomagnetic method and eosinophil isolation after N-formyl-methionyl-leucyl-phenyl-alanine treatment. Even in the case of individuals with very low eosinophil counts, the immunomagnetic method permits the efficient isolation of highly purified and functionally active eosinophils.

Antigens, CD

T cell subsets and their soluble products regulate eosinophilia in allergic and nonallergic asthma.

Lymphokines derived from activated T cells regulate the proliferation and postmitotic differentiation of eosinophils in vitro. We investigated whether peripheral blood eosinophilia, which is a characteristic feature of both allergic and nonallergic asthma, correlates with T cell activation and lymphokine production in asthmatic patients. Flow cytometric analysis of T cell activation markers revealed that asthmatic individuals are characterized by increased numbers of IL-2R (CD25)-bearing T cell subsets. The absolute number of IL-2R+ T cells correlated with the eosinophilia observed in the asthmatic patients. Purified CD4+ and CD8+ T cells from allergic and nonallergic asthmatic individuals spontaneously secreted factors that extend the lifespan of eosinophils in vitro. T cells from normal donors displayed this effect only after polyclonal stimulation with anti-CD3 antibody. The eosinophil lifespan-extending factors were also found in sera of asthmatic patients. Identification of these factors was performed by using neutralizing antibodies against IL-3, IL-5, and granulocyte-macrophage CSF. In sera, mainly IL-5 and granulocyte-macrophage CSF were responsible for prolonged eosinophil survival, whereas granulocyte-macrophage CSF was dominant in T cell supernatants. These results indicate that T cells and secretion of lymphokines play an important regulatory function toward eosinophils, which are thought to represent major proinflammatory effector cells in certain types of asthma.

Adult

Activated T cells and eosinophilia in bronchoalveolar lavages from subjects with asthma correlated with disease severity.

Activated T-lymphocytes may regulate the eosinophilic inflammation of bronchial asthma. In the present study, we investigated T cell activation and eosinophilia in blood and bronchoalveolar lavage (BAL) in 17 patients with asthma not receiving steroid treatment. Compared to normal individuals, BAL from patients with asthma contained significantly increased numbers of both lymphocytes and eosinophils (EOSs). The lymphocytosis consisted of increased numbers of both CD4+ and CD8+ T cells, and these T cell populations expressed elevated levels of T cell activation markers (interleukin-2 receptor [CD25], HLA-DR, and very late activation antigen 1). Close correlation was found between numbers of BAL CD4+ IL-2R+ T cells and numbers of EOSs. Moreover, the numbers of activated T cells and EOSs were related to the severity of asthma as measured by impairment of FEV1 and increased methacholine bronchial responsiveness. We demonstrate in both blood and BAL a close correlation between T cell activation, eosinophilia, and severity of asthma, suggesting that recruitment and activation of lymphocytes and EOSs are fundamental to the pathogenesis of bronchial asthma.

Adult

Cellular cytotoxicity mediated by isotype-switch variants of a monoclonal antibody to human neuroblastoma.

The biological property of an antibody is determined by its antigen binding characteristics and its isotype-related effector functions. We have established monoclonal antibodies of different isotypes by stepwise selection and cloning of the hybridoma CE7. The original CE7 secretes an IgG1/kappa (CE7 gamma 1) antibody that recognises a 185 kD cell surface glycoprotein expressed on all human sympatho-adrenomedullary cells. Isotype-switch variants were isolated in the following sequence: from the original CE7 gamma 1, CE7 gamma 2b variants were isolated, and from a CE7 gamma 2b variant CE7 gamma 2a variants were isolated. The antibodies of three different isotype variant cell lines possess identical antigen binding characteristics, but display distinct effector functions as demonstrated by antibody dependent cell-mediated cytotoxicity (ADCC). ADCC was performed with the neuroblastoma line IMR-32 as the target cells, and different FcR gamma positive cells were either freshly isolated from human peripheral blood leukocytes or cultured for 6-10 days and tested as potential effector cells. Tumour lysis mediated by monocyte-derived macrophages depended on the presence of CE7 gamma 2a antibodies; antibodies from the CE7 hybridomas of gamma 2b and gamma 1 isotypes were virtually inactive in ADCC assay. Pre-exposure of macrophages to rIFN-gamma enhanced their ADCC activity, a result that is compatible with the notion that the high affinity Fc IgG receptor (FcR gamma I/CD64) is involved in the triggering of ADCC in macrophages. In contrast to macrophages, mononuclear cells, nonadherent cells and monocytes displayed considerable non-specific lytic activity, which was little influenced by the presence of antibody regardless of the isotype added.

Animals

Sputum eosinophils from asthmatics express ICAM-1 and HLA-DR.

Sputum from symptomatic asthmatics is a rich source of eosinophils from the respiratory tract. Following liquefaction of sputum with dithioerythritol (DTE), a cell suspension for indirect double immunofluorescence with flow cytometry was obtained. Eosinophils were identified using anti-CD9 fluorescein conjugate, and particular surface markers measured with the relevant mouse MoAb followed by goat anti-mouse immunoglobulin phycoerythrin conjugate. Blood and sputum eosinophil surface markers were determined in parallel from asthmatics not receiving steroid therapy. Sputum eosinophils were found to have considerably elevated levels of CD11b, a reflection of eosinophil activation. Sputum but not blood eosinophils were found to express ICAM-1 (nine out of 11 cases) and HLA-DR (eight out of 11 cases). Furthermore, following culture of normal blood eosinophils with pooled T cell supernatants, ICAM-1 and HLA-DR could be induced in vitro. The induction of eosinophil adhesion molecules such as ICAM-1 and HLA-DR may influence eosinophil localization and function in asthma.

Antigens, CD

T cells and asthma. I. Lymphocyte subpopulations and activation in allergic and nonallergic asthma.

Abnormalities of peripheral-blood lymphocyte subsets and activation markers were detected in patients with both allergic and nonallergic asthma. Most allergic asthmatics were characterized by increased numbers of IL-2R+ helper T cells and CD23+ B cells. In contrast, nonallergic asthmatics showed increased numbers of IL-2R+ and HLA-DR+ helper and cytotoxic T cells, and a clear redistribution from naive (CD45RA+) to memory (CD45RO+) cells. The number of IL-2R+ T cells correlated with the number of CD23+ B cells in allergic asthma. These changes in the distribution and activation state of T cells suggest an active role for T cells in the pathogenesis of both allergic and nonallergic asthma.

Antigens, CD

T cells and asthma. II. Regulation of the eosinophilia of asthma by T cell cytokines.

Peripheral blood eosinophilia of both allergic and nonallergic asthmatics was found to correlate with blood T cell activation and lymphokine production. A close correlation was shown between the increase of IL-2 receptor expressing T cells and the number of eosinophils. These in vivo activated T cells spontaneously released factors that prolonged eosinophil survival in vitro. The T cell derived lymphokines IL-5, GM-CSF and IL-3 were demonstrated to be responsible for prolonged eosinophil survival in vitro, and were identified in T cell supernatants and sera from asthmatics. In summary, T cell derived cytokines play an important regulatory function towards eosinophils in asthma.

Asthma

Fine specificity and heavy chain V gene usage of antibodies to the phosphorylcholine hapten.

In the course of the immune response to PC-KLH in mice, two major groups of anti-PC antibodies are expressed which differ in fine specificity, Id expression and isotype preference. Group I antibodies react predominantly with the PC moiety of the hapten and display mostly the T15 Id. On the other hand, Group II antibodies recognize the PC hapten including the azophenyl spacer to the carrier and are T15 Id-. In order to investigate the relationship between the two antibody populations, we analyzed the composition of 20 anti-PC hybridomas of all isotypes with respect to their fine specificity and VH gene segment utilization. Characterization of the antibodies by hapten inhibition analyses with PC and p-nitro-phenyl-PC indicated that eight hybridomas secreted Group I and 12 Group II antibodies. Southern blot analysis of total genomic DNA using a germ-line JH probe demonstrated that, with the exception of aPC-111-1, all Group II cells utilized gene segments distinct from those of Group I. In contrast to the restricted VH gene usage in Group I hybridomas, a more pronounced heterogeneity in H chain V gene rearrangements in Group II cells was observed. We found three groups of hybridomas with identical VH gene rearrangements. Two hybridomas used a VH gene segment of the 7183 VH gene family. Three lambda 1 bearing Group II hybridomas shared a common hybridizing band. One of these, aPC-56-1, is known to utilize the same VH gene segment as MOPC 141. Finally, three cell lines, one of which (aPC-104-8) utilizes the VH1-DH-JH2 rearrangement, showed fragments of identical sizes. These results emphasize the independent origin of Group I and Group II anti-PC antibodies and demonstrate a larger germ-line repertoire of Group II antibodies as well as a less restricted use of particular VH genes relative to that of Group I.

Animals