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Biomedical subjects

L Rink

Publications and source records attributed to L Rink.

At least 19 recordsLinked to original sources

Zinc in pharmacological doses suppresses allogeneic reaction without affecting the antigenic response.

Zinc is an essential trace element for the immune system. Previously it was shown that zinc inhibits alloreactivity. In our present in vitro experiments, it is shown that zinc maintains the antigenic potency of the host while blocking the allogeneic response. These results were observed in experiments using tetanus toxoid as a well-established recall antigen and the mixed lymphocyte culture as an in vitro model for allogeneic reaction. To prove the in vivo relevance, an ex vivo experimental setup was established. This involved participants taking zinc orally for 1 week. Here it is shown that in vivo zinc application induced the same effect of blocking the mixed lymphocyte culture without influencing tetanus toxoid stimulation. So far, no clinical application studies have been performed, but the observed selective suppression of allogeneic reaction by zinc is the first step towards a new generation of immunosuppressants.

Cells, Cultured↗

[The immune system in aging].

The immune system changes during life time. In this article we review which kinds of alterations take place. To exclude changes based on illnesses or chronical diseases, the SENIEUR protocol was performed, which defines "healthy elderly people". We focus on alterations in lymphocyte subsets, immunoglobulins and the cytokine network. Monocytes, eosinophils and basophils are without change during life, whereas the number of neutrophils and natural killer (NK) cells increase with aging. T- and B-lymphocytes are diminished in number as well as in function. The serum levels of immunoglobulins are mostly increased. The balance between TH1- and TH2-cells is disturbed and also TH1- and TH2-specific cytokines. Theses changes and their effects on the health status of the elderly are discussed in detail.

Adult↗

Inter-individual differences in cytokine release in patients undergoing cardiac surgery with cardiopulmonary bypass.

Cardiac surgery with cardiopulmonary bypass (CPB) leads to a systemic inflammatory response with secretion of cytokines (e.g. IL-6, TNF-alpha, IL-1 beta and sIL-2R). The objective of the following study was to investigate in vitro and in vivo cytokine responses and white blood cell counts (WBC) of patients with high versus low cytokine secretion after a coronary artery bypass grafting (CABG) procedure. Twenty male patients undergoing elective CABG surgery with CPB under general anaesthesia were enrolled in the study. On the day of surgery (postoperatively), serum levels of TNF-alpha and IL-1 beta were significantly higher in patients of the high IL-6 level group compared to the respective values in the patient group with low IL-6 levels. The inter-individual differences in IL-6 release in patients undergoing CABG surgery with CPB were accompanied by differences in the release of other cytokines, such as TNF-alpha, IL-1 beta and sIL-2R. To understand whether genetic background plays a role in influencing cytokine plasma levels under surgical stress, we examined the distribution of polymorphic elements within the promoter regions of the TNF-alpha and IL-6 genes, and determined their genotype regarding the BAT2 gene and TNF-beta intron polymorphisms. Our preliminary data suggests that regulatory polymorphisms in or near the TNF locus, more precisely the allele set 140/150 of the BAT2 microsatellite marker combined with the G allele at -308 of the TNF-alpha gene, could be one of the genetic constructions providing for a less sensitive response to various stimuli. Our results suggest: (1) close relationships between cytokine release in the postoperative period, and (2) inter-individually varying patterns of cytokine release in patients undergoing CABG surgery with CPB.

Cardiopulmonary Bypass↗

Human neutrophils produce macrophage inhibitory protein-1beta but not type i interferons in response to viral stimulation.

Several cell types have been shown to produce type I interferons (IFN). Of human leukocytes, monocytes and especially type 2 dendritic cell precursors (pDC2) seem to be the main producers and also have a wide spectrum of cytokine production. However, neutrophils seem to have a limited capacity for cytokine production but possess efficient defense mechanisms vs. bacterial infection by phagocytosis and degranulation. To determine whether they also have antiviral functions, IFN-alpha and IFN-beta were measured in preparations of pure neutrophils. The capacity of neutrophils to produce type I IFN is controversial. Additionally, macrophage inflammatory protein-1alpha (MIP-1alpha) and MIP-1beta were measured, as they are described to have indirect or direct antiviral activity. As stimulants, active and inactivated Newcastle disease virus (NDV), Sendai virus, and granulocyte colony-stimulating factor (G-CSF) were used. Peripheral blood mononuclear cells (PBMC) from the same donors were highly reactive to viral stimulation, whereas neutrophils failed to produce IFN but produced MIP-1beta in response to NDV. We conclude that neutrophils fail to prevent viral infection by IFN production but probably possess alternative mechanisms, such as secreting MIP-1beta in response to viruses.

Cells, Cultured↗

Leucocyte response and anti-inflammatory cytokines in community acquired pneumonia.

BACKGROUND: In the host defence of the lung neutrophils (PMN) play a central role. Apart from antimicrobial properties, recent data indicate that PMN also exert anti-inflammatory effects by stimulation and release of cytokine antagonists such as interleukin-1 receptor antagonist (IL-1ra). METHODS: Cytokine release from lipopolysaccharide stimulated whole blood was studied in 18 patients with community acquired pneumonia (CAP) and severe co-morbidities at admission and after 24 hours. Release of IL-1ra, interleukin-1beta (IL-1beta), tumour necrosis factor alpha (TNFalpha), soluble TNF receptor type I (sTNF-RI), and IL-8 was determined by ELISA. RESULTS: The mean (SD) leucocyte level at admission was 12.5 (4.1)/nl. There was a significant correlation between the release of anti-inflammatory cytokines such as IL-1ra and sTNF-RI and the leucocyte count at admission and after 24 hours. Additional in vitro experiments showed that co-incubation of peripheral blood mononuclear cells with autologous PMN led to a marked dose dependent increase in IL-1ra and sTNF-RI release. CONCLUSION: These results indicate that PMN may be responsible for the increase in anti-inflammatory cytokines in CAP. Strategies to increase neutrophil counts may exert beneficial effects, not only by augmenting the antimicrobial activity but also by modulating the inflammatory cytokine response.

Adult↗

Zinc inhibits the mixed lymphocyte culture.

The mixed lymphocyte culture (MLC) is an established clinical method for bone marrow transplantation, as it serves as an in vitro model for allogenic reaction and transplantation. We previously showed that cytokine release into the supernatant is a more specific and sensitive parameter for cross-reactivity in the MLC than the common measurement of cell proliferation. Therefore we tried to find an inhibitor of the MLC in vitro with the least side effects in vivo, measuring interferon (IFN)-gamma as one of the most important cytokines in posttransplant medicine. Earlier studies showed that zinc is an important trace element for immune function with both stimulatory and inhibitory effects on immune cells. We found that slightly elevated zinc concentrations (three to four times the physiological level), which do not decrease T-cell proliferation in vitro nor produce immunosuppressive effects in vivo, suppress alloreactivity in the mixed lymphocyte culture. In this report we analyzed the mechanism whereby zinc influences the MLC to possibly find a nontoxic way of immunosuppression.

Bone Marrow Transplantation↗

Induction of interleukin-8 in human neutrophils after MHC class II cross-linking with superantigens.

Neutrophils have been shown to express major histocompatibility complex class II (MHC II) after stimulation. However, reports concerning the functional effect of MCH II expression are still lacking. In our hands, granulocyte-monocyte colony-stimulating factor (GM-CSF) alone and in combination with interferon (IFN)-gamma, but not IFN-gamma or interleukin (IL)-3, induced a significant level of expression of human leukocyte antigen DR on neutrophils. The addition of staphylococcal enterotoxin E to neutrophils resulted in a significant increase in IL-8 production only after prestimulation with GM-CSF alone or in combination with IFN-gamma but had no effect on neutrophils preincubated with IFN-gamma alone or IL-3. Staphylococcal enterotoxin A, another bivalent superantigen, also stimulated production of IL-8 by preincubated polymorphonuclear neutrophils, whereas staphylococcal enterotoxin A mutants that are not able to cross-link MHC II molecules failed to induce IL-8 production. Taken together, our results clearly demonstrate that after induction of MHC II, neutrophils are able to respond to MHC II-specific stimulation. These findings support the ideas that the induced MHC II complex is completely functional and that neutrophils may be able to present antigens.

Enterotoxins↗

Interferon-gamma (IFN-gamma) levels finally become stable with increasing age as revealed by using an ELISA corresponding to the bioactivity.

The immune status is a parameter of the capacity of the immune system to fend off microorganisms. The use of leukocyte subtyping to define the immune status is clinically established. IFN-gamma is a key cytokine directing the immune response. In this study, we investigated whether IFN-gamma is a more sensitive parameter of the immune status. All persons tested showed stable quantities of white blood cell counts over the whole study. Analyses of the lymphocyte subpopulations of two time points resulted in a strong correlation with high statistical significance for the percentage of CD3, CD4, CD8, CD19, CD45 -subtypes and CD56/16 positive cells. IFN-gamma production by the individuals correlates between these time points also, but only if an ELISA strongly correlating to IFN-gamma bioactivity was used instead of other commercial IFN-gamma ELISAs. The IFN-gamma production by males was less variable than by females. Furthermore, intraindividual differences in IFN-gamma secretion were minimal after the age of 46. In conclusion, our data demonstrate that IFN-gamma is a more sensitive parameter for the actual status of the immune system, since its titer shows alterations faster than leukocyte subtyping. Furthermore, leukocyte subtypes do not correspond to the production capacity of the regulatory cytokine IFN-gamma in healthy individuals.

Adult↗

Evidence for presence of IgG4 anti-immunoglobulin autoantibodies in all human beings.

IgG4 anti-IgG autoantibodies were found to be present in all serum samples from a group of healthy people; IgG4 ant-IgA and anti-IgE were present In only 13 of 218 (6%) and 8 of 218 (3.5%) samples, respectively. These antibodies also showed affinities towards animal immunoglobulins. We suggest that IgG4 anti-IgA antibodies (the strongest found heterophilic Immunoglobulins) are responsible for most artifacts obtained with commercial EUSA systems.

Antibodies, Anti-Idiotypic↗

The influence of naturally occurring heterophilic anti-immunoglobulin antibodies on direct measurement of serum proteins using sandwich ELISAs.

Sandwich ELISAs have become a widely used method for the quantitative detection of serum proteins. However, they can be biased by a variety of interfering substances. As reported recently, we observed false-positive levels of interferon (IFN)-alpha and -beta in up to 27% of sera from healthy blood donors using commercial ELISAs. We now demonstrate that two different groups of naturally occurring heterophilic antibodies (IgG-type) are responsible for these titers. Group I (representing 85% of positive samples) binds to the Fab region of IgG from goat, mouse, rat, horse, and bovidae (but not rabbit). Group II (15%) recognizes an epitope in the Fc region of mouse, horse, bovine, and rabbit (but not goat or rat) immunoglobulins. The antibodies did not crossreact with human IgG subclasses but contributed to false-positive IgG rheumatoid factor levels obtained using a commercially available ELISA. To investigate the susceptibility of assays to these artifacts, various combinations of capture and detection antibodies have been tested. On this basis, we defined the relative risks that standard ELISAs might be influenced by heterophilic anti-immunoglobulin antibodies. In general, assays that use monoclonal antibodies for both capture and detection are less susceptible than others which include at least one polyclonal antiserum. However, only systems utilizing rabbit F(ab')(2) fragments have been found to be immune to this interference.

Animals↗

Zinc and the immune system.

Zn is an essential trace element for all organisms. In human subjects body growth and development is strictly dependent on Zn. The nervous, reproductive and immune systems are particularly influenced by Zn deficiency, as well as by increased levels of Zn. The relationship between Zn and the immune system is complex, since there are four different types of influence associated with Zn. (1) The dietary intake and the resorption of Zn depends on the composition of the diet and also on age and disease status. (2) Zn is a cofactor in more than 300 enzymes influencing various organ functions having a secondary effect on the immune system. (3) Direct effects of Zn on the production, maturation and function of leucocytes. (4) Zn influences the function of immunostimulants used in the experimental systems. Here we summarize all four types of influence on the immune function. Nutritional aspects of Zn, the physiology of Zn, the influence of Zn on enzymes and cellular functions, direct effects of Zn on leucocytes at the cellular and molecular level, Zn-altered function of immunostimulants and the therapeutic use of Zn will be discussed in detail.

Adjuvants, Immunologic↗

The impaired immune response to diphtheria vaccination in elderly chronic hemodialysis patients is related to zinc deficiency.

Zinc deficiency causes abnormalities of the immune response. In chronic hemodialysis therapy abnormalities in zinc metabolism as well as an impaired immune response to vaccination have been reported. Therefore we performed a vaccination study against diphtheria and hypothesized that the response to diphtheria vaccination is related to serum zinc deficiency in hemodialysis patients. Serum zinc concentrations were assayed in 16 chronic hemodialysis patients (10 male, 6 female; mean age 65 years) without a documented vaccination history against diphtheria. Nine of these patients were triple immunized against diphtheria while seven received a single vaccination. The response to diphtheria vaccination was measured by ELISA detecting specific antibodies to diphtheria-toxoid. Seroconversion 6 and 12 months after vaccination was defined as the doubling of antibody titers in patients > or = 0.1 IU/ml prior to vaccination or as titers > 0.1 IU/ml in all other patients. Only 6/16 hemodialysis patients responded to immunization against diphtheria by specific antibody production (> 0.1 IU/ml). Twelve months after the single injection 3/7 patients seroconverted while six months after the triple vaccination 3/9 patients responded to immunization. This was not age-dependent, whereas in non-responders we detected significantly decreased serum zinc levels. In contrast, responders showed similar serum zinc levels as age-matched controls. Furthermore, we measured a decreased alpha 2-macroglobulin concentration only in the responders amongst the hemodialysis patients. Protection against diphtheria and the immune response to diphtheria vaccination in hemodialysis patients is poor. The failure to respond to active diphtheria vaccination is related to a significantly decreased serum zinc concentration in hemodialysis patients.

Aged↗

Zinc-altered immune function and cytokine production.

Although the intriguing role of zinc as an essential trace element for immune function is well established, particular progress in determining the molecular principles of action of this ion was made recently. Leukocyte responsiveness is delicately regulated by zinc concentration. Zinc deficiency as well as supraphysiologic levels impair immune function. Furthermore, the activities of many immunostimulants frequently used in immunologic studies are influenced by zinc concentration. Therefore, our knowledge from in vitro studies is widely dependent on the zinc concentration, and when not in physiologic range, immunologic responses are artificially low. Decreased production of TH1 cytokines and interferon-alpha by leukocytes in the healthy elderly person is correlated with low zinc serum level. The defect in interferon-alpha production is reconstituted by the addition of physiologic amounts of zinc in vitro. Interestingly, zinc induces cytokine production by isolated leukocytes. Zinc induces monocytes to produce interleukin-1, interleukin-6 and tumor necrosis factor-alpha in peripheral blood mononuclear cells and separated monocytes. This effect is higher in serum-free medium. However, only in the presence of serum does zinc also induce T cells to produce lymphokines. This effect on T cells is mediated by cytokines produced by monocytes. Stimulation also requires cell-to-cell contact of monocytes and T cells. Information is presented to illustrate the concepts that the zinc concentration must be taken into account whenever in vitro studies are made or complex alterations of immune functions are observed in vivo.

Humans↗

Polymorphisms in tumour necrosis factor and adhesion molecule genes in patients with inflammatory bowel disease: associations with HLA-DR and -DQ alleles and subclinical markers.

BACKGROUND: When investigating susceptibility to inflammatory bowel disease (IBD), a multifactorial disorder with a genetic predisposition, polymorphisms of molecules with immunoregulatory function are of potential interest. This is the first time that the polymorphisms of HLA-DR and -DQ, tumour necrosis factor (TNF), E-selectin (CD62E), L-selectin (CD62L), and intercellular adhesion molecule 1 (ICAM-1, CD54) were determined in Estonians, a population with a low IBD incidence rate, and their occurrence investigated in subgroups of a total of 53 IBD patients. METHODS: The reverse hybridization principle and sequence specific primers were used for HLA genotyping. To analyse the TNF and adhesion molecule polymorphisms, the polymerase chain reaction with subsequent restriction fragment length polymorphism or single-strand conformation polymorphism method was used. RESULTS: In the subgroup of antineutrophil cytoplasmic antibody (ANCA)-positive ulcerative colitis (UC) patients we found a higher frequency of the TNF2 (20.8% versus 0.0% in ANCA-negative UC patients, P = 0.051) and HLA-DRB1*15 allele (35.4% versus 15.7% in controls; P = 0.004). Of ANCA-positive UC patients 87.5% were carriers of one of these alleles (22.2% among ANCA-negative UC patients (P<0.001, Pc = 0.039) and 51.4% among controls (P = 0.002). Specific typing of HLA-DRB1*15 alleles showed that the HLA-DRB1*1501 allele was responsible for the HLA-DRB1*15 association with ANCA-positive UC. Associations of ICAM-1, E-selectin, or L-selectin polymorphisms with IBD were not found. CONCLUSIONS: TNF2 and HLA-DRB1*15 alleles were associated with ANCA-positive UC in the investigated population. ANCA might be a useful marker, at least in some ethnic groups, for dividing IBD patients into genetically more homogeneous subgroups.

Antibodies, Antineutrophil Cytoplasmic↗

Hypothermia enhances the biological activity of lipopolysaccharide by altering its fluidity state.

Lipopolysaccharides (LPS, endotoxin) of gram-negative bacteria are among the main causes of sepsis and septic shock. In the present study, the influence of temperature on the biological activity of LPS was investigated. Lowering the temperature from 37 degrees C to 34.5 degrees C or to 30 degrees C significantly enhances in vitro tumor necrosis factor-alpha (TNF-alpha), interleukin (IL)-1beta and IL-6 release induced by different LPS chemotypes and heat-inactivated Escherichia coli. This cytokine-increasing effect of lowering the temperature is highly mediated by serum proteins, particularly by LPS-binding protein (LBP) and low-density lipoproteins (LDL). In contrast, cytokine production induced by the superantigen toxic shock syndrome toxin-1 (TSST-1) from Gram-positive Staphyloccoccus aureus decreases by around 70% at 30 degrees C as compared with 37 degrees C, corresponding to the expected effect of change in temperature and regardless of the presence of serum proteins. In order to explain the unexpected biological hypothermia effect with regard to LPS, the fluidity state of the lipid A portion of LPS as one important physico-chemical property possibly involved was investigated. The fluidity, determined by fluorescence polarization measurements, was found to decrease with decreasing temperature. These data suggest that a low fluid LPS chemotype is biologically more active than a more fluid one (and vice versa). Statistical analysis of the results shows a strong correlation between cytokine secretion and fluidity state of a given LPS chemotype (0.71 < r < 0.89, all P<0.01). As a clinical consequence, these data may be one possible explanation for the higher mortality rate of hypothermic Gram-negative sepsis.

Bacterial Toxins↗

Altered cytokine production in the elderly.

Elderly persons are more susceptible to bacterial and virus infections and neoplasias than young adults. This is related to an impaired immune response. Lymphocytes of the elderly show a decreased proliferation after induction with mitogens. The decreased proliferation is correlated to a decreased release of interleukin (IL)-2 and soluble IL-2 receptor (sIL-2R). However, IL-2R expression on the cell surface is normal. Interferon (IFN)-gamma as the main T-helper-1 (TH1) cytokine is produced less by lymphocytes of the elderly, whereas the TH2 cytokines IL-4 and IL-10 are produced in higher amounts as compared to stimulated lymphocytes of young donors. The decreased production of IFN-gamma is correlated to a decreased number of CD45RO+/CD8+ T cells. Therefore in the elderly there seems to be a dysregulation in the TH1/TH2-system which is predominated by TH2-functions. Monocyte function seems to be increased in the elderly. Leukocytes of elderly persons produce higher amounts of IL-1, IL-6, IL-8 and tumor necrosis factor (TNF)-alpha after induction with lipopolysaccharide (LPS) than leukocytes from young donors. In contrast, in vitro induction of IFN-alpha by viruses is decreased in the elderly compared to the young. In conclusion, there are cellular defects and dysfunctions in the elderly resulting in an altered immune response.

Adult↗

The significance of zinc for leukocyte biology.

Zinc is an essential element important for growth, the nervous system, and especially the immune system. Zinc deficiency as well as levels well above normal, due to high-dose treatment, showed an impaired immune function. This review summarizes the current status of zinc's significance for leukocyte biology and health. In detail, the physiology of zinc and the impaired immune functions in zinc deficiency syndromes are described. The regulation of innate immunity as well as the function and maturation of lymphocytes and monocytes is critically discussed as a system dependent on the zinc concentration in vivo and in vitro. Furthermore, the influence of zinc on experimental systems as well as on widely used immunostimulants is described, showing the importance of the knowledge of zinc concentration in in vitro leukocyte studies. The specific interactions of zinc with immunologically important serum proteins, signal transduction components, and membrane functions is summarized, showing the molecular basis of this interaction as known so far. Finally, the therapeutic use of zinc is critically discussed with new aspects also using the immunosuppressive effects of zinc. In conclusion, these data show that the zinc concentration should be taken into account whenever complex alterations of immune functions are observed.

Adjuvants, Immunologic↗