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O Majdic

Publications and source records attributed to O Majdic.

At least 55 records · Page 3Linked to original sources

The CDw65 monoclonal antibodies VIM-8 and VIM-11 bind to the neutral glycolipid V3FucnLc8Cer.

At the IVth and Vth Workshop on Human Leukocyte Differentiation Antigens a group of monoclonal antibodies recognizing myeloid cells was found to bind to the ganglioside X3-NeuAcVII3FucnLc10Cer (VIM-2 dodecasaccharide). These antibodies were given the provisional cluster of differentiation designation CDw65. Three antibodies of this cluster (VIM-2, VIM-8, and VIM-11) have now been studied in detail at the molecular and the cellular level. Binding of VIM-2 is abolished after treatment of cells with Vibrio cholerae neuraminidase, whereas VIM-8 and VIM-11 show enhanced binding to neuraminidase-treated cells. We investigated binding of the three mAbs to glycolipid antigens with shorter carbohydrate chains. Distinct differences were observed in the binding of CDw65 antibodies to VIII3-NeuAcV3FucnLc8Cer (VIM-2 decasaccharide). VIM-2 strongly bound to this antigen, whereas no binding was observed with the other two mAbs. Conversely, the asialoganglioside of the VIM-2 decasaccharide, V3FucnLc8Cer, was not recognized by VIM-2, but this antigen bound strongly VIM-8 and VIM-11. Thus, VIM-2 and the other CDw65 antibodies represented two different antigen specificities.

Antibodies, Monoclonal↗

Expression of LA45 reactive beta 2-microglobulin free HLA class I alpha-chains on activated T-cells is regulated by internalization, constitutive and protein kinase C inducible release.

HLA Class I molecules on activated T cells are expressed as mAb W6/32 reactive heterodimers associated with beta 2-microglobulin (beta 2-m) and also as mAb LA45 reactive beta 2-m free HLA Class I alpha-chains. However, the regulation of free alpha-chain expression remained enigmatic. Here we show, that the amount of cell surface expressed free heavy chains is influenced by two distinct mechanisms. Firstly, a proportion of expressed molecules are cleaved and give rise to a soluble pool of HLA Class I molecules. We provide evidence that, besides the previously described constitutive release of free alpha chains, a second phorbol ester inducible release mechanism involving activation of protein kinase C (PKC) does exist. We demonstrate that both the constitutive and the enhanced release of LA45 reactive HLA Class I alpha-chains are the consequence of a cell membrane bound proteolytic activity with the characteristics of a 1, 10 phenanthroline sensitive metalloprotease. Secondly, we report that a distinct fraction of mAb tagged free alpha-chains is internalized via an n-ethylmaleimide sensitive pathway. Together, this data suggests that the expression of free alpha-chains is regulated by pathways governing release and internalization.

Antibodies, Monoclonal↗

Enhanced production of IL4 but not of IFN gamma and IL 10 by peripheral blood mononuclear cells from atopic children in response to CD2 plus CD28 stimulation.

Peripheral blood mononuclear cells from 16 children with atopic disease (range of IgE levels: 33 - 2892 kU/l) and 12 age matched controls were stimulated either with mAbs specific for CD3, CD2, CD3 plus CD28, CD2 plus CD28, with Tetanus Toxoid, SEA, or PHA plus PMA and their cell proliferation was determined. In addition, their cytokine production (IL2, IL4, IL10, IFN gamma) following selected stimuli was measured. We found that the cells from atopics proliferated significantly better in response to CD2 stimulation than control cells, with no difference in response to CD3 or SEA stimulation. Furthermore, cells from atopics produced significantly higher amounts of IL4 than cells from controls, a difference most pronounced following CD2 plus CD28 stimulation. No differential production was found for IL10 and IFN gamma. We conclude that in atopic children with moderately elevated IgE a hyperreactivity of the CD2 pathway of stimulation and a clear elevation of IL4 but not of IL10 or IFN gamma production can be demonstrated.

Adolescent↗

Granulomonocyte-associated lysosomal protein expression during in vitro expansion and differentiation of CD34+ hematopoietic progenitor cells.

Using an in vitro expansion and differentiation system for human CD34+ cord blood (CB) progenitor cells, we analyzed the induction and expression kinetics of the granulomonocyte associated lysosomal proteins myeloperoxidase (MPO), lysozyme (LZ), lactoferrin (LF), and macrosialin (CD68). Freshly isolated CD34+ CB cells were negative for LZ and LF, and only small proportions expressed MPO (4% +/- 2%) or CD68 (3% +/- 1%). Culturing of CD34+ cells for 14 days with interleukin (IL)-1, IL-3, IL-6, stem cell factor, granulocyte-macrophage colony-stimulating factor (GM-CSF), and G-CSF resulted in on average a 1,750-fold amplification of cell number, of which 83% +/- 7% were MPO+. Without addition of GM-CSF and G-CSF, lower increases in total cell numbers (mean, 211-fold) and lower proportions of MPO+ cells (54% +/- 11%) were observed. The proportion of MPO+ cells slightly exceeded but clearly correlated with the proportion of cells positive for the granulomonocyte associated surface molecules CD11b (Mac-1), CD15 (LeX), CD64 (Fc gamma RI) CD66, or CD89 (Fc alpha R). At day 14 MPO+ and LZ+ cells were virtually identical. However, at earlier time points during culture (days 4 and 7), single MPO+ or LZ+ cell populations were also observed, which only later acquired LZ and MPO, respectively. Maturation of cells into the neutrophilic pathway was indicated by the acquisition of MPO, followed by LZ. In contrast, maturation of cells into the monocytic pathway was indicated by the acquisition of LZ followed by MPO and CD14. CD68 was found to be expressed at day 4 by the majority of cells and was not restricted to the granulomonocytic cells, as cells with megakariocytic (CD41+) or erythroid (CD71hi) features were CD68+. LF expression was observed only in GM- plus G-CSF-supplemented cultures, in which only 26% +/- 5% of cells expressed LF by day 14.

Antigens, CD↗

Role of accessory cells in cytokine production by T cells in chronic B-cell lymphocytic leukemia.

We investigated the production of cytokines by highly purified T helper cells from B-cell chronic lymphocytic leukemia (B-CLL) patients stimulated by different activation pathways, and we studied the influence of various accessory cell populations on the pattern of the secretion of cytokines, including interleukin (IL)-2, IL-4, interferon-gamma (IFN-gamma), and IL-10. Neither a qualitative nor a quantitative difference in cytokine production and proliferative capacity was observed in CLL-derived purified T cells compared with normal individuals, when T cells were stimulated by different pathways, including CD3, CD2, and costimulation with CD28. Addition of autologous accessory cells (aAC), however, dramatically influenced the cytokine pattern of normal versus B-CLL-derived T cells. CLL cells as aAC caused a marked increase of IL-2, whereas IFN-gamma was only slightly induced and IL-4 was not influenced. In contrast, in normal individuals addition of aAC, which predominantly consisted of monocytes, resulted in a significant increase of IFN-gamma and a reduction of IL-4 secretion. IL-2 production was inhibited by higher concentrations of aAC. The increased stimulation of IL-2 production by CLL cells was not specific to the leukemic cell population, as purified B cells from normal individuals had the same effect. On the other hand, purified monocytes from CLL patients and controls both induced IFN-gamma production and inhibited IL-4 secretion. After antigen-specific stimulation with tetanus toxoid, cytokine secretion was influenced by the type of aAC in a similar pattern. We conclude that T helper cells derived from patients with B-CLL are intrinsically normal and that the predominance of B cells as accessory cells in CLL significantly alters the immune function of T helper cells in vitro.

Antigen-Presenting Cells↗

Identification of the TS2/18-recognized epitope on the CD2 molecule as a target for suppression of T cell cytokine synthesis.

CD2 mAb can inhibit T cell activation, but the mechanisms involved are still unclear. In this study, we identify the mAb TS2/18, previously reported to bind to an epitope on the distal domain of the CD2 molecule at amino acids 87-99 (1), as a particularly potent inhibitor of T cell cytokine synthesis. Although TS2/18 is comitogenic with the CD2R mAb VIT13, this mAb combination does not induce the secretion of substantial amounts of cytokines. When added to T cells stimulated with the CD2 mAb pair OKT11-VIT13, TS2/18 efficiently blocks the induction of cytokine synthesis induced by that CD2 mAb pair, although it does not interfere with the binding of OKT11. In addition, TS2/18 inhibits the increase in protein tyrosine phosphorylation and the accumulation of phosphatidic acid induced by either OKT11-VIT13 or a cross-linked CD3 mAb. Finally, TS2/18 disrupts CD2 clusters induced by the CD2 mAb pair OKT11-VIT13. We conclude that TS2/18 blocks T cell cytokine synthesis by interfering with early signal transduction, possibly by impairing the formation of signal-transducing molecule complexes on the T cell surface. Together, these data identify the CD2 epitope recognized by the mAb TS2/18 as a candidate epitope for T cell-specific immunosuppressive ligands.

Antibodies, Monoclonal↗

Granulocyte activation via a binding site near the C-terminal region of complement receptor type 3 alpha-chain (CD11b) potentially involved in intramembrane complex formation with glycosylphosphatidylinositol-anchored Fc gamma RIIIB (CD16) molecules.

We report that engagement of a particular epitope near the C-terminal region of complement receptor type 3 (CR3, CD11b/CD18) alpha-chain with CD11b mAb VIM12 induces granulocyte activation with a rise in cytosolic-free Ca2+, actin polymerization, an up-regulation of CR3 cell surface expression and enhanced adhesiveness. Induction of enhanced adhesiveness and homotypic aggregation of human granulocytes represents an active process. It is temperature and energy dependent, requires divalent cations, and an intact cytoskeleton. The mAb VIM12-induced enhanced adhesiveness seems to be mediated, at least in part, by activated CR3 molecules. It can be significantly inhibited, although not completely abolished, with blocking mAbs against adhesiotopes of CR3. VIM12-induced adhesion could be blocked with the serine/threonine inhibitors okadaic acid and calyculin A and with dibuturyl-cAMP but not with the protein kinase inhibitors herbimycin A and staurosporine. We further present evidence that the particular molecular region of CR3 recognized by mAb VIM12 might be involved in the reported intramembrane sugar-lectin type interaction and complex formation between transmembrane CR3 and glycosylphosphatidylinositol (GPI)-anchored Fc gamma RIIIB (CD16) molecules on human granulocytes. Binding of mAb VIM12 to CR3 on granulocytes enhances the release of GPI-anchored Fc gamma RIIIB molecules from granulocytes upon phosphoinositol-phospholipase C treatment. The sugar preparation N-acetyl-D-glucosamine, previously shown to dissociate CR3-Fc gamma RIIIB complex formation, inhibits mAb VIM12 binding. Engagement of CR3 with mAb VIM12 may thus mimic a biologically relevant intramembrane cooperation between two distinct receptor molecules on human granulocytes.

Actins↗

Urokinase plasminogen activator receptor, beta 2-integrins, and Src-kinases within a single receptor complex of human monocytes.

The glycosylphosphatidylinositol (GPI)-anchored membrane protein urokinase plasminogen activator-receptor (uPA-R; CD87) is one of the key molecules involved in migration of leukocytes and tumor cells. uPA bound to uPA-R provides the cell proteolytic potential used for degradation of extracellular matrix. uPA-R is also involved in induction of cell adhesion and chemotaxis. Here, we provide a molecular explanation for these uPA-R-related cellular events. By size fractionation of monocyte lysate and affinity isolation on its natural ligand uPA, we demonstrate uPA-R as a component of a receptor complex of relatively large size. Reprecipitation and immunoblotting techniques allowed us to detect the protein tyrosine kinases (PTKs) p60fyn, p53/56lyn, p58/64hck, and p59fgr as components of this "uPA-R complex". Activation of monocytes even with enzymatically inactivated uPA resulted in induction of tyrosine phosphorylation, suggesting modulation of uPA-R-associated PTKs upon ligand binding. In spite of their presence in large complexes, we did not find the GPI-linked proteins CD14, CD58, and CD59 in the uPA-R complex, which indicates the presence of different receptor domains containing GPI-linked proteins in monocytes. However, we identified the leukocyte integrins LFA-1 and CR3 as components of the uPA-R complex as indicated by coisolation of these molecules, as well as by cocapping and comodulation of uPA-R and leukocyte integrins on the monocyte surface. The assemblage of uPA-R, PTKs and membrane spanning beta 2-integrins in one receptor complex indicates functional cooperation. In regard to the involvement of these molecules in pericellular proteolysis, signal transduction, as well as adhesion and chemotactic movement, we suggest uPA-R complex as a potential cellular device for cell migration.

Antigens, CD↗

Crosslinking of CD27 in the presence of CD28 costimulation results in T cell proliferation and cytokine production.

Monoclonal antibodies recognizing CD27, a member of the nerve growth factor receptor family, have been observed to enhance or inhibit PHA- or CD3 mAb-stimulated T cell proliferation. In this study, we investigate the effects of CD27 stimulation on the proliferation and cytokine production of T cells stimulated simultaneously through CD3, CD2, or CD28. Here we report that simultaneous crosslinking of CD27 plus CD28 results in T cell proliferation and in the production of IL-2, IL-4, IL-10, and IFN-gamma. CD27 plus CD28 stimulation thus introduces a novel Ag-independent pathway of T cell activation. We further show that all major T cell subsets (CD4+, CD8+, CD4+CD45RA+, or CD4+CD45RO+ T cells) respond to CD27 plus CD28-mediated costimulation. Synergistic effects on T cell stimulation are also found when CD27 is crosslinked on cells stimulated simultaneously through CD3 or CD2. In further experiments we show that crosslinking of CD27 elevates cytoplasmic free Ca2+ levels. Finally, both the CD3 plus CD27 and the CD28 plus CD27-stimulated T cell proliferation is sensitive to inhibition by CsA. Taken together, these data emphasize the importance of CD27 stimulation in the context of simultaneously received signals through CD3, CD2 or, most importantly, through CD28. Furthermore, signaling through CD27 appears to involve Ca(2+)-dependent mechanisms sensitive to CsA.

Antibodies, Monoclonal↗

High IL-4 production is a stable phenotype of CD8negCD45RAnegCD27neg T cells.

CD27neg T cells are found only among CD4pos-CD45ROpos T cells and represent a T cell subset functionally distinct from CD27pos T cells. We examined CD4posCD45ROpos T cells that were sorted into CD27neg and CD27pos populations for their cytokine production in response to different activation pathways. We found that CD27neg T cells are characterized by high IL-4 and low IL-2 production, regardless of whether the cells were activated through CD3 plus CD28, CD2 plus CD28, or PHA plus PMA. However, subpopulation-specific patterns of cytokines were the clearest demonstrable following CD2 plus CD28 stimulation. We conclude from these data that high IL-4 production is a stable phenotype of CD27neg T cells.

Adult↗

Flow cytometric analysis of intracellular CD68 molecule expression in normal and malignant haemopoiesis.

CD68 molecules are heavily glycosylated lysosomal membrane constituents of unknown function with strong expression in monocytes and macrophages. Using flow cytometry, we quantified expression levels of CD68 molecules in normal and malignant haemopoietic cells. CD68 molecules are intensely expressed in the cytoplasm and weakly on the surface of mature CD14+ monocytes. CD68 expression seems to start very early during granulomonopoietic differentiation. Virtually all myeloperoxidase (MPO)+ bone marrow cells coexpress CD68 and similar proportions of CD34+ progenitor cells weakly express CD68 or MPO molecules. During further differentiation, CD68 expression is strongly up-regulated in early MPO+ precursor cells which lack lactoferrin (LF) and CD14 molecules. Compared to these, more mature MPO+LF+ bone marrow and peripheral blood granulocytes express considerable lower levels of CD68. In-line with this broad expression, all investigated acute myeloid leukaemia (AML) cases, classified as FAB M1-M5, were CD68 positive, and compared to normal CD34+ bone marrow cells. CD34+ AML blast cells expressed increased levels. CD68 expression is, however, not restricted to cells of myeloid origin, because a subset (40 +/- 15%, n = 6) of CD19+ peripheral blood B-lymphocytes and 50% of B-ALL are also weakly positive. In contrast, normal CD3+ lymphocytes lack (< 3%, n = 6) CD68 and only low proportions (6 +/- 3%, n = 6) of CD56+ NK cells are CD68+. Also, all investigated T-ALL cases (n = 6) lacked CD68.

Acute Disease↗

Reference intervals for human peripheral blood lymphocyte subpopulations from 'healthy' young and aged subjects.

Some lymphocyte subpopulations change during aging but age-related reference limits from a healthy reference population are still lacking. In this study, we compiled 90% reference intervals for commonly determined lymphocyte subpopulations in 'healthy' (Senieur-compatible) young (20-32 years) and elderly (65-74 years) subjects. The most striking age-related changes included increases in HLA-DR+ T lymphocytes, and the shift in the expression of CD45 isoforms from the CD45RA+CD45RO-to the CD45RA-CD45RO+ subset. Both age-related alterations occurred in the CD4+ as well as in the CD8+ subpopulations and most of them were present in the relative and absolute number of lymphocyte subsets. We compare our data with those from previous investigations on lymphocyte subpopulations from the elderly and comment on useful presentation of reference values.

Adult↗

[Phenotypic characterization of human hematopoietic stem cells].

Mature hematopoietic cells of all lineages are derived from committed progenitor cells, which in turn are thought to originate from pluripotential stem cells. On the basis of in vitro clonogenic assay systems, different stages within this progenitor or stem cell compartment have been identified. Using cell separation techniques, it has been shown that all in vitro clonogenic cells are included in the minor population of bone marrow or peripheral blood cells expressing the CD34 molecule. CD34 positive cells have further been subdivided into subsets of clonogenic cells by their coexpression of certain characteristic molecules. Based on these immunophenotypic features, it has been shown that most immature multipotential clonogenic cells may be separated from the majority of already lineage committed colony forming cells. Additionally, within the committed progenitor compartment, molecules have been described allowing the specific identification of the earliest stages of granulomonocytic, erythroid or lymphoid cell differentiation. Apart from these lineage or differentiation stage specific molecules, CD34+ cells express a number of molecules that are supposed to function as cytoadhesion structures or cytokine receptors enabling these cells to interact with their stroma microenvironment.

Antigens, CD↗

High-level IL-10 production by monoclonal antibody-stimulated human T cells.

We investigated interleukin-10 (IL-10) production in freshly isolated mononuclear cells and purified T cells in response to stimulation with monoclonal antibodies (mAb) recognizing CD3, CD2 and CD28, or with the bacterial products Staphylococcus aureus cells (SAC), staphylococcal enterotoxin (SEA) and lipopolysaccharide (LPS). IL-10 production was compared with that of IL-2, IL-4 and interferon-gamma (IFN-gamma). Similar to the other cytokines, in peripheral blood mononuclear cells (PBMC) from adult donors the highest IL-10 levels were produced in response to CD2 plus CD28 stimulation, within 72-96 hr of stimulation. Levels of IL-10 in response to CD2 plus CD28 stimulation (1.9 +/- 1 ng/ml) exceeded those in response to SEA (0.25 +/- 0.16 ng/ml), SAC (0.43 +/- 0.42 ng/ml), or LPS (0.19 +/- 0.14 ng/ml) stimulation. With adult purified T cells, high levels of IL-10 and IL-4 were measured following CD3 plus CD28 stimulation, and the amounts of both T-helper type-2 (Th2) cytokines decreased following the addition of phorbol myristate acetate (PMA), whereas the synthesis of the Th1 cytokines IL-2 and IFN-gamma was enhanced. When PBMC were stimulated with a CD3 mAb and different other cytokines were added, strong enhancement of IL-10 production was seen upon the addition of IL-2, IL-4, IL-7, IL-12 and IFN-gamma, whereas inhibition was found with transforming growth factor-beta 1 (TGF-beta 1). These data illustrate that in freshly isolated PBMC large amounts of IL-10 can be induced rapidly by appropriate mAb stimulation, and that even in freshly isolated cells IL-4 and IL-10 show signs of parallel regulation.

Antibodies, Monoclonal↗

Flow cytometric analysis of cell-surface and intracellular antigens in leukemia diagnosis.

New technology allows highly sensitive flow cytometric detection and quantitative analysis of intracellular antigens in normal and malignant hemopoietic cells. With this technology, the earliest stages of myeloid and lymphoid differentiation can easily and reliably be identified using antibodies directed against (pro-)myeloperoxidase/MPO, CD22 and CD3 antigens, respectively. Particularly for the analysis of undifferentiated acute myeloblastic leukemia (AML) cells, the immunological demonstration of intracellular MPO or its enzymatically inactive proforms is highly relevant, since other myeloid marker molecules such as CD33, CD13, or CDw65 are either not restricted to the granulomonocytic lineage or appear later in differentiation. By combining MPO staining with staining for lactoferrin (LF), undifferentiated cells can be distinguished from the granulomonocytic maturation compartment in bone marrow, since LF is selectively expressed from the myelocyte stage of differentiation onward. The list of informative intracellular antigens to be used in leukemia cell analysis will certainly expand in the near future. One candidate, intracellular CD68, has already been tested by us, and results are presented. Also dealt within this article are surface marker molecules not (as yet) widely used in leukemia cell analysis but with the potential to provide important additional information. Among them are the surface structures CD15, CD15s, CDw65, CD79a (MB-1), CD79b (B29), CD87 (uPA-R), and CD117 (c-kit).

Antigens, CD↗

TGF-beta 1 is a potent inducer of human effector T cells.

TGF-beta 1 is known to modulate lymphocyte activation affecting cell proliferation and the production of cytokines and Igs. Little is known about the characteristics of T cells grown in the presence of TGF-beta 1. We have stimulated human T cells with PHA in the presence of TGF-beta 1 under serum-free conditions for 7 days and characterized the resulting cell population. TGF-beta 1 (0.0032 to 10 ng/ml) affected neither [3H]thymidine incorporation (day 4) nor cell yield (day 7) in these cultures. However, cells activated in the presence of TGF-beta 1 proliferated vigorously in secondary cultures and produced highly elevated amounts of IL-2 (12 +/- 3-fold enhancement of IL-2 production in response to CD2 plus CD28 stimulation compared with control cells, mean +/- SEM; n = 10). The enhancing effects of TGF-beta 1 were demonstrable over a wide range of concentrations (0.4 to 10 ng/ml). The increased IL-2 protein production was paralleled by a dramatic up-regulation of IL-2 mRNA. In addition, cells precultured with TGF-beta 1 responded with enhanced cluster formation in the secondary cultures. With regard to their phenotype, we observed an increased expression of the alpha E beta 7-integrin human mucosal lymphocyte-1 and of the CD2-restricted epitope CD2R, whereas the expression of CD11a was slightly decreased. In contrast, TGF-beta 1 did not influence the constitutive or activation-induced expression of CD4, CD8, CD45RA, CD45RO, CD25, CD71, CD54, CD58, CD59, and B7. We conclude that TGF-beta 1 supports the generation of human effector cells with a strongly enhanced capacity to respond to subsequent restimulation.

Antibodies, Monoclonal↗