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G Hedlund

Publications and source records attributed to G Hedlund.

At least 91 records · Page 5Linked to original sources

Human major histocompatibility complex class II-negative colon carcinoma cells present staphylococcal superantigens to cytotoxic T lymphocytes: evidence for a novel enterotoxin receptor.

The staphylococcal enterotoxins (SE) bind to major histocompatibility complex (MHC) class II molecules on target cells and activate T cells expressing particular T cell receptor V beta sequences. In this report we demonstrate that SE bind to the MHC class II- SW620, Colo320DM and WiDr human colon carcinoma cell lines and direct cytotoxic T lymphocytes (CTL) to mediate strong target cell killing. Flow cytometry analysis, immunoprecipitation and Northern blotting experiments failed to demonstrate any surface expression of HLA-DR, HLA-DP and HLA-DQ isotypes on the SW620 colon carcinoma cell line, whereas abundant expression of these isotypes was seen on Raji cells, SEB and SEC1 were efficiently presented at picomolar concentration by the MHC class II- colon carcinoma cells and MHC class II+ Raji cells, whereas SEA and SED were preferentially presented on the MHC class II+ Raji cells. An anti-HLA-DR monoclonal antibody inhibited SEB-induced CTL targeting to Raji, but did not influence the killing of SW620 cells. Our data suggests the existence of functionally active SE-binding structures on human colon carcinoma cells which are distinct from the conventional MHC class II molecules. The possibility that these putative new SE receptors play a role in the enterotoxin action of SE must be considered.

Antigens, Bacterial↗

In vivo induction of gamma/delta T cells with highly potent and selective anti-tumor cytotoxicity.

High frequencies of CD5+TcR alpha/beta- T cells were induced in the peritoneal cavity of rats immunized with syngeneic W439 lymphoma cells. These TcR alpha/beta- cells expressed TcR delta mRNA as analyzed by the polymerase chain reaction technique. The delta + (TcR gamma/delta +) T cells were of the CD2+, CD3+, CD4-, CD8+, CD45RB+ phenotype and showed stronger anti-tumor cytotoxicity compared to the TcR alpha/beta + T cells. The cytotoxic effects of both alpha/beta and gamma/delta T cells were selective for the W439 lymphoma cells and were not directed to other syngeneic tumors, natural killer targets and syngeneic or allogeneic normal cells. T cells, including both alpha/beta and gamma/delta cells, were induced when WF rats were immunized with allogeneic BN spleen cells. In this case the gamma/delta T cells showed allo-selective cytotoxicity, although weaker compared to the TcR alpha/beta + T cells. The gamma/delta T cells, induced by immunization with either W439 cells or BN spleen cells, were selective for the immunogen used and had no effect on irrelevant target cells, indicating that these effector cells were not activated by a shared gamma/delta T cell-related superantigen. Since highly potent tumor-selective gamma/delta cytotoxic T lymphocytes could be induced by syngeneic lymphoma cells, we suggest a role for gamma/delta T cells in the defense against certain types of tumors.

Animals↗

Bacterial superantigens as anti-tumour agents: induction of tumour cytotoxicity in human lymphocytes by staphylococcal enterotoxin A.

Activation of lymphocytes by interleukin-2 (IL-2) induces lymphokine-activated killer (LAK) cells that show promising effects on tumour growth in clinical trials. We examined the effect of the superantigen staphylococcal enterotoxin A (SEA) on anti-tumour activity of freshly prepared human lymphocytes. Picomolar amounts of SEA rapidly induced cytotoxic activity against K562 and Raji cells as well as some natural-killer(NK)-resistant tumour cell lines. Cytotoxic activity was not dependent on target cell expression of either major histocompatibility complex (MHC) class I or II antigens as shown using mutated cell lines. Cell-sorting experiments showed that the activity was expressed by NK (CD5-CD56+) as well as T (CD5+) cells, although the former contained the majority of cytotoxic activity. NK cells could not be directly activated by SEA. In contrast, SEA activated purified T cells to the same extent as in bulk cultures. It is suggested that SEA activation of NK cells is secondary to that brought about by lymphokines produced by T cells. Activation of LAK cells with SEA was comparable in magnitude as well as target cell spectrum to that of IL-2. In addition to the LAK-like cytotoxic activity induced by SEA, a superimposed cytotoxicity towards target cells expressing MHC class II antigens coated with SEA was observed. This staphylococcal-enterotoxin-dependent cell-mediated cytotoxicity (SDCC) was exclusively mediated by T cells. It is well established that MHC class II antigens function as receptors for staphylococcal enterotoxins on mammalian cells and that the complex between MHC class II antigen and--SEA apparently functions as a target structure for activated T cells with target cell lysis as a consequence. Activation of T lymphocytes with IL-2 also resulted in the capability to mediate SDCC. Staphylococcal enterotoxins represent a novel way of inducing anti-tumour activity in human lymphocytes, which could be of value in therapeutic applications.

Antigens, Bacterial↗

Functions of rat CD4+ T cell subsets defined by CD45RB: CD45RB- cells have a much stronger response to recall antigens, whereas polyclonally activated cells of both subsets are equally efficient producers of IFN in the presence of exogenous IL-2.

CD4+45RB- rat T cells were shown to respond strongly to recall antigens and produce IFN and TNF after polyclonal activation. Compared to CD4+45RB- cells, CD4+45RB+ cells showed a very weak response to recall antigens but produced higher amounts of IFN and TNF after polyclonal activation. Addition of rIL-2 reduced the difference between the subsets with respect to the level of IFN produced at 48 and 72 hr after activation, but did not influence the level of TNF production. The CD4+45RB- cells clearly showed a faster response to polyclonal activation than that of CD4+45RB+ cells detected as an earlier IFN production and CD25 expression. The earlier IFN production by the CD45RB- population could not only be explained by their faster production of IL-2, since the difference persisted when rIL-2 was added to both populations at the beginning of culture. We conclude that the CD4+45RB- rat T cell population resemble the CD4+45RA-0+ human T cell subset with respect to a good responsiveness to recall antigen and efficient production of IFN. However, the CD4+45RB+ rat T cell subset functionally differs from the CD4+45RA+0- human T cell subset. We suggest that the CD4+45RB+ subset comprises a major CD4+45RA+B+0- and a minor CD4+4+45A-B+0+ T cell subpopulation, the latter possibly mediating a response to recall antigen and the production of IFN.

Animals↗

Staphylococcal-enterotoxin-dependent cell-mediated cytotoxicity.

T cells equipped with sophisticated TCR and MHC recognition structures, an efficient cytokine communication network and lethal cytotoxic effector functions constitute one of the bulwarks of the mammalian immune system. However, infective agents have developed strategies to undermine T-cell immunity; for example, certain bacterial toxins serve as 'superantigens' by binding to preserved determinants on MHC class-II-encoded proteins and activating T cells expressing particular sequences of TCR V beta gene products. In this paper, Mikael Dohlsten and colleagues present evidence suggesting that these bacterial superantigens direct T cells to eradicate MHC class-II-expressing antigen-presenting cells, thus counteracting specific T-cell functions.

Animals↗

Independent regulation of IFN-gamma and tumor necrosis factor by IL-1 in human T helper cells.

The lymphokines IL-2 and IL-4 promoted the growth of human PHA-triggered T cells, but only IL-2 induced the production of IFN-gamma and TNF. The addition of purified monocytes strongly enhanced the production of IFN-gamma in IL-2-stimulated T cell cultures but did not influence the production of TNF or the level of T cell proliferation. The addition of IL-1 to T cells activated by PHA and optimal concentrations of IL-2 resulted in a strong induction of IFN-gamma production but had no influence on TNF production or T cell proliferation. IL-6 did not influence IFN-gamma or TNF production or T cell proliferation induced by PHA-IL-2 and did not modulate IL-1-induced IFN-gamma production. The production of IFN-gamma by CD4+ 45R+ Th cells was strongly enhanced by IL-1, whereas CD8+ T cells were less responsive to IL-1 and CD4+ 45R+ T cells were unresponsive to IL-1. We demonstrate, at the clonal level, that the optimal production of IFN-gamma by human Th cells requires both IL-1 and IL-2, whereas the production of TNF and T cell proliferation are induced by IL-2 alone. We suggest that IL-1 acts as a second signal for IFN-gamma production and that it may have an important function in regulating the pattern of lymphokines produced by T cell subsets during activation.

Antigens, Differentiation↗

Production of TNF-alpha and TNF-beta by staphylococcal enterotoxin A activated human T cells.

Staphylococcal enterotoxin at concentrations of less than 1 pg/ml induces significant TNF activity in human peripheral blood T cells and monocytes. Maximal TNF activity is routinely detected after 48 to 72 h of culture. IL-2 and IL-4 were both growth promoting for human T cells but only IL-2 could efficiently induce TNF production. The production of TNF-alpha and TNF-beta differed greatly in kinetics. An early intracytoplasmatic production of TNF-alpha after 6 h was detected in both monocytes and T cells whereas a late production of TNF-beta (lymphotoxin) after 48 h, occurred in the T cell population. Induction of TNF-alpha and TNF-beta production by Staphylococcal enterotoxin requires the presence of both monocytes and T cells. The CD4+45R- but not CD4+45R+ and CD8+ cells supported TNF-alpha production in monocytes. The main lytic component from Staphylococcal enterotoxin-activated mononuclear cells is TNF-beta. CD4+ and CD8+ T cells produced about equal amounts of biologically active TNF into the culture supernatants but a fourfold higher frequency of TNF-beta producing cells was demonstrated among CD4+ vs CD8+ cells. The CD4+45R- T cell subset was an efficient producer of TNF-beta and IFN-gamma whereas the CD4+45R+ T cell subset produced significant amounts of TNF-beta but only marginal amounts of IFN-gamma.

Antigen-Presenting Cells↗

Staphylococcal enterotoxins direct and trigger CTL killing of autologous HLA-DR+ mononuclear leukocytes and freshly prepared leukemia cells.

Attempts have been made to induce cytolytic T cells to kill target cells that do not express the appropriate target molecules by crosslinking the T cells and the target cells in various ways. One successful strategy has been to use heteroconjugates or bispecific monoclonal antibodies reacting with T cell molecules with activating properties (e.g., mab directed to CD3/TCR) and target cell surface antigens. In this report we show that Staphylococcal enterotoxins (SE) direct human T lymphocytes to execute cytotoxicity toward MHC class II-expressing Raji cells, but not against MHC class II-deficient Raji mutant RJ 2.2.5. Both HLA-DR+ and HLA-DR- effector T lymphocytes are effective in the killing of Raji cells coated with SE. The Staphylococcal enterotoxin-dependent cell-mediated cytotoxicity (SDCC) is a rapid T lymphocyte-mediated cytolytic mechanism killing the targets within an hour of incubation. HLA-DR+ target cells are sensitized to be killed within minutes of incubation with picomolar concentrations of SE. SE-sensitized Raji cells remain targets for SDCC after overnight culture at 37 degrees C, demonstrating that the sensitive state is relatively stable. SEA- and SEB-selective cytolytic T cell lines were established to illustrate the clonal variability of SDCC effectors with respect to SE specificity. We also demonstrate that autologous monocytes and activated T lymphocytes as well as B lymphocytes and freshly prepared HLA-DR+ leukemic cells are excellent targets in SDCC.

B-Lymphocytes↗

Tumor-selective cytolysis is executed exclusively by CD45R+ CTL whereas allo-specific cytotoxicity can be executed also by CD45R- CTL.

Naive and memory CD4+ T helper cells can be distinguished on the basis of expression of the CD45R molecule. Whether this dichotomy applies also to CD8+ T cells has not yet been established. In the present investigation the cytolytic activity of peritoneal CD8+CD45R+ and CD8+CD45R- T cells from tumor- and allo-immunized rats has been studied. More than 90% of the CD8+ peripheral blood T lymphocytes expressed the CD45R molecule, whereas in the peritoneal cavity about 60% of the CD8+ T cells displayed the CD45R+ phenotype. Analysis of cytotoxicity of sorted peritoneal cells of W439 tumor-immunized donors demonstrated selective cytolytic activity of the CD5+CD4-CD8+CD45R+ subpopulation to W439 lymphoma target cells but no effect of CD5+CD4-CD8+CD45R- lymphocytes. None of these lymphocyte populations exhibited cytolytic activity to the NK-sensitive cell line YAC-1, whereas the CD5-CD45R+ population showed strong cytotoxicity to YAC-1 cells. In allo-immunized rats both CD5+CD4- CD8+CD45R+ and CD5+CD4-CD8+CD45R- peritoneal cells exhibited strong allo-specific cytolytic activity, but no activity to YAC-1 cells. Both CD5+CD4-CD8+CD45R+ and CD5+CD4-CD8+CD45R- cells from tumor-immunized rats proliferated in response to Con A and rIL-2. This is the first study demonstrating that tumor-selective cytolytic CD8+ T cells express the CD45R molecule and that allo-specific cytolytic CD8+ T cells are found in both the CD45R+ and CD45R- populations.

Animals↗

Phenotypical and functional differentiation of CD4+ CD45RA+ human T cells following polyclonal activation.

Human CD4+ T cells differ in their expression of the leucocyte common antigen. Antibodies detecting certain forms (CD45RA and CD45RO) of this antigen have been used to identify and isolate subpopulations of the CD4+ T cells. These isolated subsets have been shown to have different abilities concerning lymphokine production and provision of help to B cells for Ig production. When these T-cell subsets were activated in vitro with polyclonal activators, the production. When these T-cell subsets were activated in vitro with polyclonal activators, the CD45RA+ cells lost this marker and gained the expression of CD45RO. This was true for all mitogens used in this report, i.e. accessory cell-dependent stimulation with SEA and accessory cell-independent activation with PMA or PHA. A correlation between proliferation and differentiation was observed, but this was probably not causative as stimulation with PMA in the absence of DNA synthesis resulted in the acquisition of CD45RO and loss of the CD45RA antigen. Moreover, cells proliferating vigorously for long periods of time expressed both markers at significant levels, which suggests that proliferation did not automatically result in complete loss of the CD45RA marker. The phenotypical differentiation was associated with a functional differentiation which induced the stimulated cells' ability to act as helper cells for Ig production and to produce gamma interferon (IFN-gamma). The results obtained in this study support the contention that the CD45RA+ cells are precursors of the CD45RO+ cells and that the two subsets represent different maturational stages of the same lineage.

Antigens, Differentiation↗

Targeting of human cytotoxic T lymphocytes to MHC class II-expressing cells by staphylococcal enterotoxins.

The staphylococcal enterotoxins (SE) comprise a family of structurally related phage-encoded bacterial proteins, which are the most potent mitogens known for murine and human T lymphocytes. In this report we describe a novel cytotoxic mechanism, where SE directs human CD3+ T lymphocytes to mediate strong cytotoxicity against target cells of irrelevant nominal specificity. The SE-dependent cellular cytotoxicity (SDCC) occurred at picomolar concentrations of SE and involved the initial binding of the SE to the target cells and subsequent triggering of the cytotoxic T cells. SDCC was induced by SEA, SEB, SEC1 and SED, which indicates that this is a common property conserved among all SE. Certain antibodies to the HLA-DR molecule efficiently blocked SDCC. Major histocompatibility complex (MHC) class II+ RAJI cells and HLA-DR-transfected murine L cells were sensitive to SDCC, whereas the MHC class II- RJ.2.2.5 RAJI cell mutant and untransfected L cells were completely resistant to SDCC. These results demonstrate that the MHC class II antigen is the target molecule in SDCC. HLA-DR molecules acted as receptors for SE and the complex was recognized by T lymphocytes in a polyclonal fashion. SDCC was mediated by allospecific cytotoxic CD8+ T cells, by cloned CD8+ T cells and by fresh human peripheral blood mononuclear cells. The SDCC phenomenon provides a rapid, potent and specific mechanism for elimination of HLA-DR+ target cells. We suggest that SDCC is an important combat strategy, employed by the bacteria to avoid specific MHC class II antigen-dependent immune recognition, by inducing T-cell dependent autologous lysis of MHC class II-expressing cells.

Antigens, CD↗

Rapid response to Con A by CD4+CD45R- rat memory lymphocytes as compared to CD4+CD45R+ lymphocytes.

Functionally distinct subpopulations within the CD4+ subset of T lymphocytes have been described in man, rat, and mouse. In the rat different functions have been assigned to CD45R+ and CD45R- T helper cells. The CD45R+ in contrast to the CD45R- T helper cells have been reported to produce IL-2 and to proliferate well in response both to Con A and in MLR. In the present investigation the kinetics of the response to Con A by the CD45R+ and CD45R- rat T helper subsets have been analyzed. We confirm a strong proliferative response to Con A by CD4+CD45R+ rat T lymphocytes and also that they are the best IL-2 producers. We further demonstrate that CD4+CD45R- cells also produce IL-2, although in order to appreciate this production quantitatively by assays of the culture supernatants it was necessary to block IL-2 absorption by IL-2 receptor (IL-2R) antibodies. This blockage was of importance also in comparisons of the two subsets, since they showed different kinetics of IL-2R appearance. It is demonstrated that the CD4+CD45R- cells respond more rapidly to Con A than the CD4+CD45R+ cells as reflected by phenotypic conversion, IL-2 production, and proliferation. The fast response of the CD4+CD45R- T subset shown in the present study of rat cells and analogous studies of human cells suggests that the memory compartment of T cells besides other characteristics also has the capacity for a more rapid response than naive lymphocytes.

Animals↗

Proliferation of human CD4+45R+ and CD4+45R- T helper cells is promoted by both IL-2 and IL-4 while interferon-gamma production is restricted to IL-2 activated CD4+45R- T cells.

Recombinant IL-2 (rIL-2) and IL-4 (rIL-4) promote proliferation of human CD4+ T cells activated in the presence of PHA, TPA or OKT-3 monoclonal antibody (MAb), whereas the production of interferon-gamma (IFN) can be induced only by rIL-2. rIL-4 induced strong proliferative responses both in accessory cell independent assays and in the presence of autologous monocytes, but has failed to induce IFN production in any of these systems. The ability of rIL-2 to induce IFN production was strongly enhanced by the addition of monocytes, although a similar proliferative response was recorded in the absence or presence of monocytes. The MAb anti-Tac inhibited the proliferative response and the production of IFN by CD4+ T cells activated in the presence of rIL-2, whereas the proliferative response to rIL-4 was unaffected. CD4+45R+ and CD4+45R- T helper cell subsets proliferated in response to both IL-2 and IL-4. A kinetic analysis demonstrated that the production of IFN throughout a five day activation period was restricted to stimulation of CD4+45R- T cells with rIL-2. This report clearly demonstrates a dissociation of IFN production and T cell proliferation in man. While proliferation can be induced by both IL-2 and IL-4 in both the helper T cell subsets studied, IFN production was induced only in the CD4+45R- subsets and only in response to IL-2.

Antigens, Differentiation, T-Lymphocyte↗

Increased proportion of CD4+CDw29+CD45R-UCHL-1+ lymphocytes in the cerebrospinal fluid of both multiple sclerosis patients and healthy individuals.

In this study we confirm earlier reports of an increase of the proportion of T and CD4+ lymphocytes and a decrease of B and CD8+ lymphocytes in cerebrospinal fluid (CSF) as compared to peripheral blood (PB) in MS patients. In addition we now demonstrate that this difference between CSF and PB lymphocyte populations is of the same magnitude in healthy individuals suggesting that it is physiological and not associated with disease. Functionally distinct subsets of the T human helper cell (CD4+) population have previously been defined by the monoclonal antibodies 4B4 (CDw29), Leu-18 (CD45R), and UCHL-1. In the present investigation we demonstrate a selective increase in the proportion of CD4+CDw29+CD45R-UCHL-1+ lymphocytes in CSF as compared to PB of both MS patients and healthy individuals, which strongly indicates that also this enrichment is physiological rather than associated with disease. A possible relationship between this subset of CD4+ lymphocytes and T memory cells is discussed.

Antigens, Differentiation↗

Gamma interferon induces the appearance of a CD4-, major histocompatibility complex class II+ macrophage subpopulation in the rat peritoneal cavity.

Peritoneal cells from gamma interferon (IFN-gamma)-treated rats were phenotypically characterized by flow cytometry. Intraperitoneal inoculation of 3 x 10(4) units of IFN-gamma induced, within 24 h, the appearance of a CD4-, major histocompatibility complex (MHC) class II+ macrophage subpopulation not present in rats treated with phosphate-buffered saline. IFN-gamma induced an increased expression of MHC class II I-A molecules on both CD4- and CD4+ macrophages. Both cell types adhered to plastic and expressed high levels of the macrophage membrane molecules CD11b and OX41. Histological examination of sorted CD4- and CD4+ macrophages confirmed the macrophage morphology of both populations with less granula in the former. We conclude that the appearance of CD4- macrophages in the peritoneal cavity after inoculation with IFN-gamma most probably reflects a selective recruitment of these cells from blood or surrounding tissues. The function of these cells is still unknown, although strong expression of MHC class II I-A indicates competence as antigen-presenting cells.

Animals↗

Use of a monoclonal rat anti-mouse Ig light chain (RAMOL-1) antibody reduces background binding in immunohistochemical and fluorescent antibody analysis.

Rat monoclonal antibodies (MAb) directed to mouse Ig heavy and light chain determinants were produced. A rat anti-mouse light chain MAb (RAMOL-1) which bound to all (24/24) mouse Ig of the kappa light chain type and with varying strength to 4/4 lambda light chain-bearing Ig was evaluated as a general secondary reagent, together with two MAb that bound to the heavy chain of mouse IgG. They were conjugated with biotin or FITC and used in immunohistochemical and immunofluorescence assays to detect mouse monoclonal antibodies binding to antigens expressed in rat and human tissues and cells. As compared to commercially available polyclonal reagents, RAMOL-1 gave higher staining contrast by showing lower background staining and equal or higher staining of the primary MAb tested. This was a result of two main effects. First, crossreactivity with endogenous Ig and tissue type-specific determinants was eliminated. With polyclonal anti-mouse Ig reagents, binding to endogenous Ig was noted in vascular spaces and on Ig-bearing cells, and to rat gastric mucosa and epithelial tumor tissue in frozen tissue sections, even when diluted in high concentrations of serum homologous to the tissue. Second, binding of the secondary reagent was reduced to cells and tissues prone to have high nonspecific binding capability, such as monocytes/macrophages and formalin-fixed, paraffin-embedded tissue. Owing to unlimited and reproducible access to this homogeneous reagent, RAMOL-1 is used as second antibody to standardize the procedure used for immunohistochemical grading of human malignant tumors by determination of blood group antigen expression detected with mouse MAb.

Animals↗

Maximal interferon-gamma production and early synthesis of interleukin-2 by CD4+ CDw29- CD45R- p80- human T lymphocytes.

Functionally distinct subsets within the T-helper (CD4+) cell population have been described in man, rat and mouse. We have shown previously that the CD4+ 45R- human lymphocytes are producers of IL-2 within 24 hr of polyclonal stimulation and are the major interferon (IFN) producers. The mAbs 4B4 (CDw29) and Leu 8 (p80) are here used together with Leu-18 (CD45R) to characterize the subpopulations of the CD4+ human lymphocytes in more detail. The majority of the CD45R+ cells were CDw29- and the majority of the CDw29+ cells were CD45R-. Most of the CD45R+ cells (78%) were also p80+. A significant number of cells (12%) were CDw29- CD45R-. The predominant subpopulations were defined to be CDw29- CD45R+ p80+ (31%), CDw29+ CD45R- p80- (24%) and CDW29+ CD45R- p80+ (18%). Within the CD4+ CD45R- subpopulation different subsets vary in their capacities to produce IFN and to produce IL-2 within 24 hr after activation. CD4+ CDw29- CD45R- p80- T lymphocytes produced the largest quantities of IFN and IL-2.

Animals↗