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Biomedical subjects

A Hren

Publications and source records attributed to A Hren.

9 recordsLinked to original sources

IgE production after antigen-specific and cognate activation of HLA-DPw4-restricted T-cell clones, by 78% of randomly selected B-cell donors.

The frequency of expression of the MHC class II antigen, HLA-DPw4, in the caucasoid population is approximately 78%, and is unmatched by phenotypic frequencies of other HLA class II molecules. Here we describe three human Der-P1-specific T-cell clones (TCC), restricted by the HLA-DPw4-variant HLA-DPB1*0401, of which two TCC also responded to antigen, presented on HLA-DPB1*0402. Thus, randomly selected caucasoid donors present a 78% chance for a correct match with these HLA-DPw4-restricted TCC. This allows comparative in vitro antigen presentation studies with various antigen presenting cells (APC) from different (healthy or diseased) donors without the variable influence of responding T cells. It was subsequently demonstrated that the TCC can be used to study antigen-induced IgE production in randomly selected primary B cells. Cognate HLA-DPw4-restricted antigen presentation caused enhanced immunoglobulin production of IgE, IgG1, IgA and IgM, of which only IgE induction was reversed by addition of anti-IL-4 antibodies.

Antigen-Presenting Cells↗

Antigen presentation in allergic sensitization.

IgE antibodies, when cross-linked by allergen on the surface of effector cells such as mast cells and basophils, are known to be directly responsible for immediate type hypersensitivity reactions. In addition, IgE may be involved in other, indirect, mechanisms, fundamental to the pathogenesis of allergic diseases, such as enhancement of the antigen capturing capacity of antigen presenting cells. IgE mediated antigen presentation could lead to a continuous activation of the immune system by very low concentrations of allergen. As a result, Th2 cell populations may expand and may induce more B cells to switch to IgE production. Subsequently, the overproduction of IgE and Th2 cells in a patient may explain the clinical observation that certain allergic patients deteriorate from sensitivity to a single group of allergens to sensitivity to multiple groups of allergens. Therefore, control of IgE production is not only important for the treatment of allergic symptoms, but may also regulate deterioration of allergy via the mechanism of CD23/IgE mediated allergen presentation by naive B cells. The role that monocytes, which have recently been found to express Fc epsilon RI, play in the pathogenesis of allergy, remains speculative. We hypothesize that their role may be to remove IgE from the circulation and re-direct the immune response from naive B cells. IgG antibodies which cannot be used for antigen uptake by B cells also direct the immune response to monocytes.

Antigen Presentation↗

Induction of cognate and non-cognate T-cell help for B-cell IgE production in relation to CD40 ligand expression.

Nonactivated, fixed peripheral blood T cells (PBT) from healthy donors or patients with X-linked-hyper-IgM (HIGM) syndrome, or cloned T cells provided effective help for tonsillar B lymphocytes for induction of IgE or other immunoglobulin (Ig) isotypes. Helper activity was mediated by staphylococcal superantigens adsorbed to the T cells prior to fixation and required presence of IL-4 in the cultures. We demonstrated that the T cells neither expressed detectable CD40 ligand at the beginning of the superantigen treatment nor 24 h later. Phorbol ester (PMA) plus Ca-ionophore treatment efficiently induced CD40L. Such T cells did not, however, provide any help for B-cell activation in some experiments or stimulated only low responses in others. Antibodies against CD2, CD3 and ICAM-1 adsorbed to fixed T cells prior to coculturing inhibited helper activity. A soluble CTLA4 construct was also inhibitory. Our results suggest a pathway of B-cell activation independent of CD40L expressed on T cells.

Adult↗

Induction of IgE and IgG1 in human B cell cultures with staphylococcal superantigens: role of helper T cell interaction, resistance to interferon-gamma.

Non-antigen-specific activation of human B lymphocytes for IgE production in vitro requires the presence of interleukin 4 and non-cognate physical interaction with T cells. The latter can be replaced by antibodies directed against the B cells' CD40 structure. Antigen-specific induction of immunoglobulin responses, including IgE, is difficult in human lymphocyte cultures. Thus, we developed a model system which might resemble physiological B lymphocyte stimulation by antigen. Co-cultures of purified tonsillar B cells from normal donors with non-HLA matched T helper clones obtained from the skin of atopic dermatitis patients produced significant levels of IgE and IgG1 after stimulation with appropriate types of staphylococcal exotoxins, provided that IL-4 was also induced in the T cells. Such responses were further enhanced by addition of low doses of anti-CD40 antibodies. Concentrations of anti-CD40, optimal for stimulation of B cells in the absence of T helper lymphocytes, were less effective in this regard and even inhibitory in some experiments. Most powerful immunoglobulin induction was observed when the cultures were spiked with low amounts of IL-4 and anti-CD40 which did not elicit substantial immunoglobulin production in the absence of the staphylococcal exotoxins. Induction of IL-2 in T/B cell cultures by superantigens without production of appreciable quantities of IL-4 provoked considerable IgG1 titer but no IgE. High amounts of interferon-gamma generated by the T cells in vitro in the presence of superantigens did not appear to interfere with immunoglobulin induction. Addition of recombinant interferon at the beginning of the culture period at doses which effectively suppressed IL-4 plus anti-CD40 induced immunoglobulin responses did not inhibit T helper and superantigen dependent B cell activation. Superantigen mediated B cell stimulation for immunoglobulin production was dependent on cell-cell contact. The experimental results presented suggest that this cellular interaction did not necessarily involve T-B cell bridging by superantigens.

Antigens, CD↗

Phorbol ester, prostaglandin E2, forskolin and okadaic acid differentially modulate interleukin-4-versus interleukin-2-dependent immunoglobulin induction in human cellular models, in contrast to other selected modifiers of cellular activation.

Interleukin 2 (IL2) and 4 (IL4) are the most important mediators for immunoglobulin (Ig) synthesis of human B lymphocytes. There is no obvious difference with regard to Ig isotypes induced by either lymphokine except for IgE: only IL4 induces this allergic antibody type. Monoclonal anti-CD40 antibodies enhance both IL2- and IL4-dependent Ig induction. Searching for drugs which may inhibit induction of IgE but not of rather non-pathogenic immunoglobulins, we selected commercial compounds which are commonly used as probes for transmembrane signalling pathways in other cellular systems. They included modulators of protein kinase C and intracellular calcium, inducers of cAMP, and inhibitors of protein tyrosine kinase, protein serine/threonine phosphatases and phosphodiesterases. The data presented suggest that IL2- and IL4-mediated B cell activation can be differentially modulated. Phorbol ester at non-cell-toxic doses inhibited IL4- but not IL2-dependent Ig induction. Prostaglandin E2 potently enhanced IgE production stimulated with IL4 alone but was inhibitory in the presence of anti-CD40 as a co-stimulatory signal. IgG1 responses elicited with IL2 plus anti-CD40, in contrast, were not affected. All other compounds did not discriminate between IL2- versus IL4-mediated Ig induction.

Antibodies, Monoclonal↗

In vivo activation of murine natural killer cell functions by human recombinant DNA interleukin 2.

Intraperitoneal (i.p.) injections of purified human recombinant DNA (rDNA)-interleukin 2 (IL 2) resulted in in vivo activation of local natural killer (NK) cell activities in wild-type and congenitally athymic mice. NK cells were identified by short-term cytotoxicity assays against YAC tumor targets and by cell-surface phenotyping. The magnitude of the cytolytic responses was dependent on the IL 2 dose (greater than or equal to 0.1 microgram per injection) and the time period of treatment (the maximum response was on days 3 to 4 after daily treatment). In vivo application of antisera against the murine NK marker asialo GM1 (asGM1) and against interferon-alpha/beta and -gamma (IFN) significantly inhibited NK cell activation. Limiting dilution analysis revealed high frequencies (up to 1 in 1.8 X 10(3)) of in vitro IL 2 reactive mononuclear cells among the peritoneal exudate cells (PEC) of normal mice. rDNA-IL 2 activated non-adherent PEC to proliferate. The majority of these cultures also displayed cytotoxicity against YAC targets. No exogenous IFN was required for either response. Endogenous IFN production did not appear to play an important role for induction of cytotoxicity in this system either. Only a minority of cultures produced measurable levels of IFN without showing excessive cytotoxic activity. In vivo IL 2 treatment resulted in a rapid increase of the total numbers and frequencies of the IL 2 reactive PEC. Hence, IL 2 alone was apparently sufficient for in vitro activation of NK-like activities, whereas IFN-induction by IL 2 was required for in vivo elicitation of similar responses in perhaps the same cell populations.

Animals↗

Modulation by cyclosporin A of murine natural resistance against herpes simplex virus infection. I. Interference with the susceptibility to herpes simplex virus infection.

Adult BALB/c mice which are medium-high resistant against intraperitoneal (i.p.) infection with herpes simplex virus type 2 (HSV-2) manifested a drastic increase in susceptibility to the virus when treated locally with cyclosporin A (CyA) during infection. Oral application of the drug had no effect on the natural resistance status. Mice appeared normal 2 weeks after CyA treatment with regard to their ability to resist i.p. infections. CyA did not interfere with established specific immune protection nor with the induction in immune responses to HSV-2.

Administration, Oral↗

Modulation by cyclosporin A of murine natural resistance against herpes simplex virus infection. II. Influence on the HSV-induced natural killer cell responses, macrophage activities and interferon levels.

Cyclosporin A (CyA) interfered locally at the site of injection with several resistance functions which are of potential importance in experimental herpes simplex virus (HSV) infections of mice. HSV-induced stimulation of macrophage phagocytosis was reduced by CyA when the mice were infected 5 days before the assay. The in vitro replication of the virus in macrophages, however, was enhanced. Natural killer (NK) cell response were severely impaired. To some extent this could be attribute to the induction of suppressive macrophages by the drug treatment. Interferon levels induced by HSV were not diminished but rather enhanced in some experiments. Inhibitory effects ceased after termination of CyA treatment and could be prevented by presensitization of the mice with attenuated HSV type 2.

Animals↗

In-vivo modulation of macrophage functions by herpes simplex virus type 2 in resistant and sensitive inbred mouse strains.

Intra-peritoneal (i.p.) infection of mice with herpes simplex virus type 2 (HSV 2) attracted macrophages into the peritoneum. Macrophages from moderately and highly HSV 2 resistant mouse strains expressed elevated phagocytosis activity 24 hours after injection. Stimulation of phagocytosis in low resistant strains was generally less effective or absent. This was, in some experiments, due to the fact that macrophages were already highly activated before the experimental infection. I.p. infection also caused HSV replication in the adherent peritoneal exudate cell (PEC) population. The capacity of macrophages supporting HSV 2 replication was low in three of four resistant mouse strains and high in all moderately and highly susceptible and in one of the resistant (SJL) strains when determined 24 hours after infection. Four different F1 hybrids between resistant and susceptible strains exhibited significantly lower yields of virus-producing macrophages than the HSV-sensitive parent. One hybrid between two HSV-susceptible lines restricted virus replication in the PEC populations better than both parental strains.

Animals↗