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Biomedical subjects

L Rink

Publications and source records attributed to L Rink.

At least 37 records · Page 2Linked to original sources

Cytokine induction by Mycoplasma arthritidis-derived superantigen (MAS), but not by TSST-1 or SEC-3, is correlated to certain HLA-DR types.

Superantigens bind to major histocompatibility complex (MHC) class II molecules on antigen presenting cells and T cells in a V beta-restricted manner. Both cell types are activated resulting in cytokine production. Although the MHC-II binding site for superantigens has been well described, little is known as to whether this binding complex has an influence on cytokine induction. In order to assess superantigen induced cytokine production and its correlation to HLA-DR types, the authors stimulated peripheral blood from 40 subjects with superantigens toxic shock syndrome toxin-1 (TSST-1), staphylococcal enterotoxin C-3 (SEC-3) and Mycoplasma arthritidis-derived superantigen (MAS), and measured cytokine levels thereafter. The HLA-DR type was determined in each subject. A statistical evaluation was carried out between the highest superantigen cytokine induction and the presence of certain HLA-DR types. Whereas MAS presented a statistical association between the highest cytokine production with HLA-DR4, DR7 and DR12, no such associations were observed for TSST-1 and SEC-3. These results demonstrate that T cell stimulation, and consequently its cytokine production by MAS but not by TSST-1 and SEC-3, depends on the presenting HLA-DR type. Because the diverse HLA-DR specificities are given according to the variability of the beta chain of the HLA-DR molecule, the data suggest the participation of the human MHC-II beta chain in the MAS/MHC-II binding.

Adult↗

Zinc inhibits interleukin-1-dependent T cell stimulation.

Zinc is a trace element which is essential for immune functions. It directly induces monokine secretion by monocytes; however, effects of zinc on T cells appear contradictory. Apart from enhanced lymphocyte proliferation in peripheral blood mononuclear cells (PBMC), inhibitory properties of high zinc dosages have also been described. In this study, PBMC failed to produce lymphokines like interferon (IFN)-gamma after stimulation with zinc in a serum- and LPS-free cell culture system, whereas monokine secretion [interleukin (IL)-1 beta] occurred. Zinc-uptake studies with the zinc-specific fluorescent probe zinquin revealed that zinc is taken up by PBMC within a few minutes, reaching nearly equal levels in PBMC, isolated monocytes, and T cells. However, if zinc was depleted 1 h after monocyte induction, zinc-free pre-cultured T cells were stimulated to secrete IFN-gamma by zinc-induced monokines. Furthermore, the necessity for a cell-cell interaction between monocytes and T cells for IFN-gamma induction was elucidated. Zinc ions inhibited the proliferation of the IL-1-dependent T cell line D 10N in a dose-dependent manner, suggesting a direct inhibitory effect of zinc. By immunoprecipitation we revealed a specific inhibition of IL-1 receptor-associated protein kinase (IRAK) by zinc ions. Therefore, in contrast to an indirect stimulation of T cells due to zinc-induced monokines, higher concentrations of zinc directly inhibit T cell functions by means of specific inhibition of IRAK and subsequent signaling events such as NF kappa B activation. The divergent effects of zinc on different cell populations, depending on the zinc concentration, could explain contradictory results of zinc stimulation. Furthermore, our data suggest new strategies of specific zinc-mediated immune modulation.

Animals↗

HLA-dependent heterogeneous T cell response to Mycoplasma arthritidis-derived superantigen (MAS).

Mycoplasma arthritidis induces a chronic arthritis in rodents. The role of M. arthritidis-derived superantigen (MAS) in the arthritis is still a subject of controversy. MAS stimulates mouse and human T cells in a V beta-restricted manner with the subsequent liberation of cytokines. The presence of the major histocompatibility complex class II molecule is required for such a stimulation. In this study we assessed MAS-induced cytokine production in peripheral blood from patients with different rheumatic diseases and controls using an enzyme-linked immunosorbent assay. Statistically significant differences in cytokine production in response to MAS stimulation allowed the distinction of high responders and low responders within groups of patients and controls. Higher cytokine induction was statistically correlated with the HLA-DR specificities DR4, DR7 and DR12. To confirm these results, murine V beta 8.1 cytotoxic T lymphocytes (CTL) were stimulated with MAS in the presence of different HLA-DR lymphoblastoid B cells. CTL proliferation was only observed in presence of DR4 and DR7. In conclusion, MAS T cell stimulation and its subsequently cytokine production depends on the presence of certain HLA-DR specificities.

Adult↗

One-way synergistic effect of low superantigen concentrations on lipopolysaccharide-induced cytokine production.

Lipopolysaccharides (LPS) of gram-negative bacteria and superantigens of gram-positive bacteria are among the main causes of sepsis and septic shock. Symptoms are initiated primarily by the release of endogenous mediators, especially cytokines. In the last few years, increasing evidence for the clinical relevance of mixed sepsis caused by coinfections with both types of bacteria has been found. Therefore, we developed an in vitro mixed sepsis model investigating the effect of different superantigen doses, in combination with different LPS concentrations, on cytokine production in human PBMCs using ELISA and RT-PCR. Low, in vivo relevant concentrations of the superantigen toxic shock syndrome toxin-1 (TSST-1) synergistically enhance LPS-induced production of interferon-gamma (IFN-gamma) interleukin-1 beta (IL-1 beta), IL-6, and IL-10, but low LPS has no comparable effect. Signal transduction studies with different inhibitors suggest that this one-way synergism is caused by an interaction between the cAMP and the PIP2 signaling pathway. Furthermore, our findings support the idea that this interaction is one important crossover point of signal transduction pathways by LPS and superantigens, which seems to be predominantly regulated by IFN-gamma and PGE-2. The identification of additional crossover points in the genesis of a mixed sepsis and their selective influence could lead to identical treatment of both gram-negative and gram-positive sepsis.

Antigens, Bacterial↗

Zinc supplementation reconstitutes the production of interferon-alpha by leukocytes from elderly persons.

The elderly are more prone to virus infections and neoplasias than are young adults. During a virus infection, interferon-alpha (IFN-alpha), proteins with antiviral, antiproliferative, and immunomodulatory properties, are transiently expressed. We here report that peripheral white blood cells from 16 subjects with a mean age of 72 years yielded less IFN when stimulated with a virus in vitro than those from 16 young adults with a mean age of 28 years. Monocytes are the main source of this IFN. However, yields of another monocyte product, interleukin-6 (IL-6), were greater in cells from the older subjects than from the young adults, so there is no general defect in monocytes from the former. Immunodeficiency in the elderly has been reported to be associated with a deficiency of zinc. When cultures of white blood cells from the elderly were supplemented with 15 microM zinc (the physiologic concentration), they produced IFN in amounts comparable to those from the younger subjects.

Adult↗

Microbial superantigens stimulate T cells by the superantigen bridge and independently by a cytokine pathway.

Superantigens cross-link the MHC II molecule on accessory cells with the Vbeta region of the T cell receptor (TCR). In this study, we compared the capacity of established superantigens for inducing cytokine release. The experimental protocol was generated to answer the question whether all superantigen effects are transmitted by the MHC/TCR cross-linkage and induce mainly a T cell response. We found that TSST-1, ExFTA, and SEC3 differed from all other superantigens tested because they stimulated a stronger monokine release. T cell proliferation after challenge with these superantigens was mainly mediated by a cytokine pathway and not by the cross-linkage of MHC and TCR. For the other superantigens, we were able to demonstrate that major immunomodulatory effect is mediated by the superantigen bridge. With the exception of these three superantigens, the proliferative response of superantigens correlated with their Vbeta specificity. Interleukin-1 (IL-1) and IL-6 were induced in monocytes by all superantigens, whereas tumor necrosis factor-alpha (TNF-alpha) was induced in T cells and by some superantigens, also in monocytes. IL-2 was always induced by the superantigen bridge, whereas interferon-gamma (IFN-gamma) was also induced indirectly by monokines. Collectively, our results indicate that not all superantigens are suitable for investigating superantigen-specific effects, as they show indirect (mitogenic) side effects. Observations for an individual superantigen are, therefore, not transferable to all other superantigens.

Antigens, Bacterial↗

Exclusion of bioactive contaminations in Streptococcus pyogenes erythrogenic toxin A preparations by recombinant expression in Escherichia coli.

The streptococcal erythrogenic exotoxin A (SPEA) belongs to the family of bacterial superantigens and has been implicated in the pathogenesis of a toxic shock-like syndrome and scarlet fever. Concerning its biological activity, mainly T-cell-stimulatory properties, conflicting data exist. In this study, we show that most of the SPEA preparations used so far contain biologically active contaminations. Natural SPEA from the culture supernatant of Streptococcus pyogenes NY-5 and recombinant SPEA purified from the culture filtrate of S. sanguis are strongly contaminated with DNases. We show that natural SPEA induces more tumor necrosis factor alpha (TNF-alpha) than recombinant SPEA, but we also show that DNases are able to induce TNF-alpha. In commercial SPEA preparations, we identified a highly active protease, which was shown not to be SPEB. To exclude these contaminations, we overexpressed SPEA cloned in the effective high-level expression vector pIN-III-ompA2 in Escherichia coli. The expressed SPEA shows the same amino acid composition as natural SPEA, whereas functional studies reported so far were carried out with toxins containing an incorrect amino terminus. We describe the rapid purification of lipopolysaccharide-, DNase-, and protease-free SPEA in two steps from the host's periplasm and its structural characterization by circular dichroism. Our results represent for the first time the production in E. coli of recombinant SPEA with the authentic N-terminal sequence and a proven superantigenic activity. Collectively, our results indicate that immunological studies of superantigens require highly purified substances free of biologically active contaminations.

Animals↗

Functional analysis of Mycoplasma arthritidis-derived mitogen interactions with class II molecules.

The ability of superantigens (SAGs) to trigger various cellular events via major histocompatibility complex (MHC) class II molecules is largely mediated by their mode of interaction. Having two MHC class II binding sites, staphylococcal enterotoxin A (SEA) is able to dimerize MHC class II molecules on the cell surface and consequently induces cytokine gene expression in human monocytes. In contrast, cross-linking with specific monoclonal antibodies or T-cell receptor is required for staphylococcal enterotoxin B (SEB) and toxic shock syndrome toxin 1 (TSST-1) to induce similar responses. In the present study, we report how Mycoplasma arthritidis-derived mitogen (MAM) may interact with MHC class II molecules to induce cytokine gene expression in human monocytes. The data presented indicate that MAM-induced cytokine gene expression in human monocytes is Zn2+ dependent. The MAM-induced response is completely abolished by pretreatment with SEA mutants that have lost their capacity to bind either the MHC class II alpha or beta chain, with wild-type SEB, or with wild-type TSST-1, suggesting that MAM induces cytokine gene expression most probably by inducing dimerization of class II molecules. In addition, it seems that SEA and MAM interact with the same or overlapping binding sites on the MHC class II beta chain and, on the other hand, that they bind to the alpha chain most probably through the regions that are involved in SEB and TSST-1 binding.

Animals↗

Zinc enhances lipopolysaccharide-induced monokine secretion by alteration of fluidity state of lipopolysaccharide.

Elevated zinc serum concentrations have been shown to restore impaired immune response. Therefore, pharmacologic zinc supplementation has been used to improve immune function, particularly in intensive care patients. In these patients, Gramnegative sepsis, the symptoms of which are predominantly caused by LPS-induced release of monokines, represents a serious problem. We have recently shown that zinc enhances induction of TNF-alpha and IL-1 beta in cultures of PBMC by LPS. By fluorescence polarization and infrared spectroscopic measurements we found that zinc addition leads to decreased fluidity of the hydrocarbon chains of LPS. Experiments at different temperatures showed that the less fluid gel (beta) phase of LPS is more effective in cytokine induction than the more fluid liquid-crystalline (alpha) phase. Our studies suggest that the synergistic effect of zinc on monokine induction by LPS is caused by direct interaction of zinc with LPS altering the fluidity of the hydrocarbon chains. Although this effect is zinc specific, other divalent ions, like cobalt and nickel, with a complex structure and size comparable to those of zinc also enhance LPS-induced monokine secretion but to a much lesser extent. Our data indicate that the zinc level represents a relevant clinical parameter in the treatment of Gram-negative infection. This reveals potential risks in the therapeutic application of zinc.

Adjuvants, Immunologic↗

[Cytokines in mixed lymphocyte culture as a prospective parameter for transplantation].

BACKGROUND: The human mixed lymphocyte culture (MLC) is an important model for allogeneic recognition established in the clinical routine of bone marrow transplantation (BMT). The measurement of proliferation in the MLC has no high predictive value either for the rejection nor for the graft-versus-host-disease and may not be used for the transplantation of cadaveric allografts because of its long duration. METHOD: Since cytokines in the MLC represent more specific parameters, a two-way MLC measuring cytokine release on protein level was developed. In this system, IFN-gamma played a key role inducing the cytotoxic reaction, the monocyte activation and the IL-2-induced cell proliferation. RESULT: Further, a reverse transcription polymerase chain reaction (RT-PCR) in the MLC was established that detects mRNA of a broad panel of cytokines (IL-1 beta, IL-2, IL-4, IL-6, IL-9, IL-10, TNF-alpha, TNF-beta, IFN-gamma, TGF-beta). CONCLUSION: The expression of mRNA allows to evaluate the cellular-mediated and the humoral-mediated immune response as well as the endogenous suppression between recipient and donor in a prospective manner. Since this method takes only several hours, it may be suitable not only for BMT but also for the transplantation of cadaveric allografts. In conclusion, cytokine-MLC by RT-PCR might be an important step for prospective testing of immunological compatibility in transplantation medicine.

Bone Marrow Transplantation↗

Interaction of zinc ions with human peripheral blood mononuclear cells.

Zinc is an important trace element for immune function. The mechanisms by which zinc ions interact with immune cells are, however, still poorly understood. In the present study, we succeeded in defining transferrin and insulin as proteins which selectively enhance zinc-induced monokine induction in peripheral blood mononuclear cells (PBMC). An involvement of the transferrin receptor and the insulin receptor was ruled out. Zinc stimulation of PBMC resulted in an increase of intracellular free zinc, measured by a zinc-specific fluorescence probe, zinquin, the amount of which could be raised by substitution of neither transferrin nor insulin. Inhibition of second messengers by herbimycin A and HA 1004 revealed a participation of protein tyrosine kinases and of cAMP- and cGMP-dependent protein kinases in zinc-induced monokine secretion. We therefore suggest that zinc acts synergistically with stimulants of the above-mentioned signal transduction pathways by direct influence on the second messenger niveau.

Cells, Cultured↗

Dysregulation between TH1 and TH2 T cell subpopulations in the elderly.

We investigated the influence of zinc and its binding proteins on the immune system in 21 elderly and 20 young subjects. We detected a deficiency of zinc in the serum of the elderly. Albumin levels were within physiological range, but alpha 2-macroglobulin was significantly increased in the serum of elderly subjects. Using a whole blood assay, we found decreased production of interferon-gamma (IFN-gamma) and soluble interleukin-2 receptors (SIL-2R) in the elderly, whereas interleukin-10 (IL-10) production was greater than in the young controls. To exclude cellular defects, we measured lymphocyte subpopulations. In elderly subjects, we detected lower quantities of CD8+, CD8+/CD45RA+ and CD4+/CD45RO+ cells, but not CD4+ cells, than in young subjects. Other lymphocyte subpopulations were comparable for both groups. These findings suggest a dysregulation between TH1 cells and TH2 cells in the elderly, which may be a result of long-term zinc deficiency. Zinc reconstitution showed no beneficial effects as measured by T cell activity.

Adult↗

Increased CD56+ natural killer cells and related cytokines in major depression.

Twenty-seven inpatients with major depression were examined four times within 6 weeks to assess CD56+ natural killer (NK) cell counts by flow cytometry and to assess the related lymphokines interleukin-2 and interferon-gamma in a whole blood assay after mitogen stimulation with phytohemagglutinin (PHA). The patient showed significantly higher counts of the fraction of 56+ NK cells and a greater lymphokine response to PHA than the controls. A significant correlation between lymphokine secretion and CD56+ cell counts was detected in the patients' acute clinical stage, but not in healthy controls or in patients after clinical improvement.

Adult↗

Stimulation of human peripheral blood mononuclear cells by zinc and related cations.

Zinc is an important trace element for immune function. Here, we show that zinc addition in a serum- and lipopolysaccharide-free cell culture system leads to significantly enhanced levels of interleukin 1 beta (IL-1 beta) and tumour necrosis factor alpha (TNF-alpha) and to expression of the corresponding mRNA in human peripheral blood mononuclear cells (PBMC). Structurally related divalent cations like cobalt, nickel, and mercury also partially increase monokine secretion but to a much lower and thus insignificant extent. They fail to induce mRNA of TNF-alpha after 3 h of culture. Therefore, monokine induction is a zinc-specific effect influenced by the physicochemical properties of the ion. Confirmation of the unique significance of zinc for immune function provides a better understanding of the mechanisms of specific zinc-mediated immune modulation.

Cobalt↗

Cytokine production of neutrophils is limited to interleukin-8.

Since granulocytes are one of the first cell types at sites of inflammation, investigation of their capacity to produce cytokines has concentrated on interleukin-1 beta (IL-1 beta), IL-6, IL-8 and tumour necrosis factor-alpha (TNF-alpha). However, the results are subject to controversy. Incapability to produce cytokines as well as a broad panel of cytokines induced by isolation procedures are reported. The purpose of this study was to investigate the capacity of non-prestimulated neutrophils to produce the above-mentioned cytokines in response to stimulation with lipopolysaccharide or zymosan. In reverse transcription-polymerase chain reactions, we found IL-8 mRNA directly after isolation in unstimulated cells, whereas mRNA for IL-1 beta, IL-6 and TNF-alpha only appeared after stimulation. By means of flow cytometry we ruled out the possibility of prestimulation of the neutrophils during isolation, proving that IL-8 mRNA is produced constitutively by neutrophils. In enzyme-linked immunosorbent assays we found that, compared with controls, only IL-8 was released at significantly higher levels after 24 hr of stimulation, giving a further indication that neutrophils have an immunoregulatory influence driven by IL-8. We can confirm neither a constitutive nor a post-stimulatory release of IL-1 beta, IL-6, or TNF-alpha by neutrophils, as had been reported by others. These observations may be due to prestimulation, handling and culturing of the granulocytes, or to monocyte contamination. Collectively, our results show that granulocytes have a preformed capacity to produce the cytokine IL-8 and that the production of proinflammatory cytokines by neutrophils is limited to IL-8.

Cell Separation↗

Transgenic mice models in autoimmunity--discussion.

Transgenic mice are an important in vivo model for studying the function of single genes. Specific induction and tissue specific expression of the inserted genes are the great advantages of this system. However, there a risks in constructing transgenic mice and the interpretation of the experimental data. To prevent artefacts and to optimize the transgenic model, the experimental systems have to fulfill the following presets: 1. Experiments has to be done with a stable transgenic line and not with the first heterogeneous transgeniced generation, because they differ in their site of gene insertion and in the cellular response. 2. The number of experiments have to be statistically sufficient. Often only a few number of experiments are done, due to the bad reproduction of transgenic mice. 3. Health of transgenic mice has to be proven, since the transgenic animals are under laboratory conditions and not under professional breeding conditions. 4. As a control there should be a transgenic mouse with a comparable pseudogene insertion beside the normal littermate control, to exclude artefacts by the simple gene insertion. If all of these presets are fulfilled, a transgenic mice model will be one of the best experimental systems.

Animals↗

Induction of a cytokine network by superantigens with parallel TH1 and TH2 stimulation.

Superantigens cross-link the MHC class II molecule on accessory cells with the V beta region of the TCR outside the antigen binding sites. In this study, we compared the capacity of the staphylococcal entertoxins (SE) A, B, C1, C2, C3, D, and E, the toxic shock syndrome toxin (TSST) 1, the exfoliative toxin (ExFT) A, and the Streptococcus pyogenes erythrogenic exotoxins (SPE) B and C to induce cytokine release in human peripheral blood mononuclear cells. We showed that all toxins tested induced IL-1 alpha and beta, IL-2, IL-4, IL-6, IFN-gamma, and TNF-alpha, but not IFN-alpha. However, we found that SPEB differed from all other toxins tested, because its cytokine induction was significantly lower than that of the other toxins. This was not true of IL-6 and IL-10 induction, in which SPEB showed similar amounts of IL-6 compared with all other toxins and of IL-10 in comparison to SEC2. SPEB showed a specificity for TH2 cells, whereas the other toxins stimulated TH1 as well as TH2 cells very strongly. As a result, superantigens appear to be able to uncouple the TH1/TH2 antagonism. Collectively, our results indicate that SPEB seems not to be a superantigen or represents a different group of microbial superantigens. Furthermore, superantigens stimulate TH1 as well as TH2 cells without any preference and therefore they are able to induce humoral as well as cellular immunity. This could be one reason for the existence of autoantibodies and autoreactive T cells in autoimmune diseases and one major step in the beginning of the induction of autoreactivity.

Antibody Formation↗