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K Bendtzen

Publications and source records attributed to K Bendtzen.

At least 55 records · Page 3Linked to original sources

Massive parallel gene expression profiling of RINm5F pancreatic islet beta-cells stimulated with interleukin-1beta.

Interleukin 1 (IL-1) is a pleiotropic cytokine with the potential to kill pancreatic beta-cells, and this unique property is thought to be involved in the pathogenesis of type I diabetes mellitus. We therefore determined the quantitative expression of 24,000 mRNAs of RINm5F, an insulinoma cell line derived from rat pancreatic beta-cells, before and after challenge with 30 and 1,000 pg/ml of recombinant human IL-1beta. The highest concentration resulted in decreased insulin production and cell death over a period of 4 days. Using three different time points, 2, 4 and 24 hours after challenge, we found that 146 full-length genes and a large number of expressed sequence tags were differentially regulated 3-fold or more. Most of the differentially regulated transcripts have not previously been described to be regulated by IL-1beta in beta-cells. We have analysed the expression data and sorted the genes into groups according to functional relations on the basis of knowledge of the structure or function ascribed to the individual genes. Many of the differentially regulated genes are known to play a role in immune- and stress-related pathways as well as in insulin secretion and vesicle trafficking, e.g. alpha-endosulfine and K+ channel Kir6.2 are differentially regulated. A number of transcripts in the biosynthesis pathway for cholesterol are also differentially regulated.

Animals↗

Prevention of spontaneous autoimmune diabetes in NOD mice by transferring in vitro antigen-pulsed syngeneic dendritic cells.

To evaluate the effect of antigen-pulsed dendritic cell (DC) transfer on the development of diabetes, 5-week-old female NOD mice received a single iv injection of splenic syngeneic DC from euglycemic NOD mice pulsed in vitro with human y globulin (HGG). Eleven of 12 mice were protected from the development of diabetes up to the age of 25 weeks, and the insulitis score was significantly reduced. In contrast, NOD mice receiving unpulsed splenic DCs showed histological signs of insulitis and course of type 1 diabetes similar to untreated NOD mice. Treatment with HGG-pulsed DC was associated with profound modifications of cytokine secretory capacities within the islets. Thus, supernatants of islets from these mice contained increased levels of interleukin (IL)-4, IL-10, and, to a lesser extent, interferon-gamma and diminished levels of tumor necrosis factor-a compared with controls. Because exogenous IL-4 and IL-10 exert antidiabetogenic effect in NOD mice and early blockade of endogenous tumor necrosis factor-alpha prevents NOD mouse diabetes, these phenomena may be causally related to the antidiabetogenic effect of HGG-pulsed DC treatment.

Animals↗

Detection of autoantibodies to cytokines.

Autoantibodies to various cytokines have been reported in normal individuals and in patients with various infectious and immunoinflammatory disorders, and similar antibodies (Ab) may be induced in patients receiving human recombinant cytokines. The clinical relevance of these Ab is often difficult to evaluate. Not only are in vitro neutralizing cytokine Ab not necessarily neutralizing in vivo, but assays for binding and neutralizing Ab to cytokines are often difficult to interpret. For example, denaturation of immobilized cytokines in immunoblotting techniques and immunometric assays may leave Ab to the native forms of the mediators unrecognized. On the other hand, Ab may bind nonspecifically and/or with biologically irrelevant low affinities, leading to erroneous interpretations. This article describes in detail the use of radioimmunoassays that we have optimized and used successfully for the detection of high-affinity (auto) Ab to IL-1 alpha, IL-6, GM-CSF, and IFN alpha.

Autoantibodies↗

Cultures of human colonic epithelial cells isolated from endoscopical biopsies from patients with inflammatory bowel disease. Effect of IFNgamma, TNFalpha and IL-1beta on viability, butyrate oxidation and IL-8 secretion.

Cytokine-mediated impairment of viability and metabolic function of epithelial cells has been suggested as a possible early pathogenic event in the development of inflammatory bowel disease (IBD). It is currently unknown whether pro-inflammatory cytokines have a direct effect on human nontransformed colonic epithelial cells. We investigated the effects of TNFalpha, IFNgamma and IL-1beta on viability, short chain fatty acid (butyrate) oxidation and IL-8 secretion in human colonic epithelial cell cultures in vitro obtained from macroscopically normal mucosa from IBD patients and controls. Colonic crypts were isolated from endoscopical biopsies by ultra-short (10 min) EDTA/EGTA treatment, and exposed to TNFalpha, IFNgamma and IL-1beta for 24 hours. The combination of TNFalpha+IFNgamma induced a significant decrease in cell viability as judged by methyltetrazoleum (MTT) metabolism which decreased to median 68% of unexposed cultures (P < 0.01). This effect was more pronounced than that observed after addition of TNFalpha (median 88%) (P < 0.05), but not IFNgamma alone (median 78%), whereas IL-1beta had no significant effect. Cells from IBD patients were significantly less sensitive to TNFalpha + IFNgamma exposure (median 74%) compared to cells from controls (median 58 %) (P < 0.05). Butyrate oxidation, as measured by entrapment of 14CO2, was not inhibited in cells exposed to TNFalpha + IFNgamma, neither from controls (median 112%) nor from IBD patients (median 108%), suggesting a relative increase of this specific metabolic function in living cells in response to immunoinflammatory stress. IL-8 levels in cell supernatants were increased by TNFalpha + IFNgamma, supporting the role of the epithelium in signalling between luminal factors and mucosal immune cells. In conclusion, we report that TNFalpha and IFNgamma damage and influence human colonic epithelial cell function in vitro and that such mechanisms, if operative in vivo, also may be involved in the pathogenesis of IBD.

Adult↗

Immunogenicity of interferon-beta in multiple sclerosis patients: influence of preparation, dosage, dose frequency, and route of administration. Danish Multiple Sclerosis Study Group.

A total of 754 consecutive patients with relapsing-remitting multiple sclerosis were investigated for interferon-beta (IFNbeta) antibodies by protein-G affinity chromatography and antiviral neutralization bioassay during 24 months on 6 MIU (22 microg) of subcutaneous IFNbeta-1a once weekly (n = 143) or three times weekly (n = 160), 6 MIU (30 microg) of intramuscular IFNbeta-1a once weekly (n = 140), or 8 MIU every other day of IFNbeta-1b (n = 311). The proportion of binding antibodies was higher in those receiving IFNbeta-1b compared with 6 MIU of IFNbeta-1a three times weekly (97 vs 89% at 12 months), and fewer became positive if 6 MIU of IFNbeta-1a was administered once weekly (58 vs 89%). Fewer patients on intramuscular than subcutaneous IFNbeta-1a became positive (33 vs 58%). The binding and neutralizing capacities were higher in the IFNbeta-1b group than in the IFNbeta-1a groups; these differences, however, were not significant after 12 months. The number of positive patients varied considerably and depended on the amount of IFN added to the bioassay; adding 10 LU/ml or more masked antibody detection. Antibodies induced by either preparation neutralized both IFNbeta species but not IFNalpha. In conclusion, IFNbeta-induced antibodies are frequently found in multiple sclerosis patients, and IFNbeta-1b is more immunogenic than IFNbeta-1a. The immunogenicity of IFNbeta-1a increases with the frequency of administration and if it is given subcutaneously.

Adolescent↗

[Apoptosis--programmed cell death].

The health of multicellular organisms depends not only on the body's ability to produce new cells but also on controlled cell death. Apoptosis, or programmed cell death, is the opposite of mitosis. It is an active process for destruction of unwanted and superfluous cells. Changes in cell survival contribute to the pathogenesis of such varied disorders as cancer, many viral infections, neuropathies and immunopathies. The growing understanding of apoptosis forms the basis for development of new therapeutic strategies controlling cell death. This article describes mechanisms involved in the programmed cellular suicide.

Aging↗

In vitro production of cytokines is influenced by sulfatide and its precursor galactosylceramide.

Effects of sulfatide and its precursor galactosylceramide (gal-cer) on the kinetics of production of cytokines were studied. In human mononuclear leucocytes, gal-cer but not sulfatide induced significantly increased amounts of interleukin (IL)-1beta, IL-6 and tumor necrosis factor (TNF) mRNA. In phytohemagglutinin-stimulated cultures, gal-cer increased the levels of IL-1beta and IL-6 mRNA and secreted IL-1beta and IL-6, while sulfatide decreased the amounts of IL-6 mRNA and secreted IL-6. Gal-cer also increased TNF secretion. In lipopolysaccharide-stimulated cells, sulfatide but not gal-cer decreased the secretion of IL-1beta and IL-10, a potent suppressor of production of many cytokines. Thus, sulfatide and gal-cer affect cytokine production differently, most likely at the level of gene expression. This may have implications in diseases where inflammatory cytokines play a pathogenic role.

Adult↗

Interleukin-10 and posttransplant lymphoproliferative disorder after kidney transplantation.

BACKGROUND: Posttransplant lymphoproliferative disorder (PTLD) is a life-threatening complication of transplantation, which comprises a morphologically and clinically heterogeneous spectrum of B-lymphocyte diseases. Risk factors include primary or reactivated Epstein-Barr virus (EBV) infection, and the type and duration of immunosuppression. Interleukin-10 (IL-10) is a pleiotropic cytokine, produced primarily by T-helper 2 (Th2) lymphocytes in the later stages of T-cell activation, suggested to play a role in EBV-associated PTLD. We recently reported preliminary findings on IL-10 in relation to the development of PTLD in three kidney transplanted patients. The study now includes nine patients that could be followed before and/or after the occurrence of lymphoma. METHODS: Nine patients with lymphomas (eight PTLDs and one Hodgkin's disease) were diagnosed among 268 consecutive renal transplantations (1990-1997). All were treated with cyclosporine with an initial 10-day course of antilymphocyte globulin, supplemented from 1995 with mycophenolate mofetil. Serum antibodies against EBV were detected using recombinant antigens. A double sandwich enzyme-linked immunosorbent assay using rabbit antibodies to purified human recombinant IL-10 was employed; the assay is specific for human natural and viral IL-10. RESULTS: Three patients experienced primary EBV infection, five reactivated EBV infections, and one did not change EBV status. Three patients had a fulminant course and died with EBV-associated PTLD confirmed post mortem. The other six are alive and are apparently cured. Treatment was immediate discontinuation of immunosuppression (in all PTLDs) and long-term high-dose aciclovir in all but one. Two patients have maintained excellent graft function for 3 and 2 years, respectively, without immunosuppression and are now in a state of operational tolerance. In three of four cases with initial lymphoma, EBV infection (primary or reactivation) preceded the increase in IL-10. In all four cases, the IL-10 increase preceded the PTLD diagnosis. In six cases, IL-10 could be followed after treatment showing either immediate zero or a decrease to zero. CONCLUSION: IL-10 seems to play a role in EBV-associated PTLD. Moreover, IL-10 may have an important role in transplant tolerance by inducing long-lasting anergy to donor- and host-specific alloantigens, perhaps caused by down-regulation of Th1 cytokines in the graft. If substantiated, this may provide new insight into the pathogenesis of PTLD introducing new strategies for prevention and therapy of PTLD, and for the induction of tolerance in transplanted patients.

Acyclovir↗

Cytokine network in congestive heart failure secondary to ischemic or idiopathic dilated cardiomyopathy.

Inflammatory cytokines may play a pathogenic role in the development of congestive heart failure (CHF). Elevated circulating levels of inflammatory cytokines have been reported in CHF, but most studies have focused on only a few cytokine parameters. However, the activity of these cytokines are modulated by soluble cytokine receptors and cytokines with anti-inflammatory activities, and in the present study several of these interacting factors were examined simultaneously in 38 CHF patients with various degrees of heart failure and in 21 healthy controls. Patients with CHF had increased plasma concentrations of tumor necrosis factor (TNF)alpha, interleukin-6, soluble TNF receptors and the soluble interleukin-6 receptor, glycoprotein (gp)130. They also had elevated ratios of TNFalpha/soluble TNF receptors and interleukin-6/soluble gp130 as well as enhanced interleukin-6 bioactivity in serum, suggesting inflammatory net effects. In addition to raised circulating levels of inflammatory cytokines, CHF patients with severe heart failure also had abnormalities in the levels of anti-inflammatory cytokines, with decreased levels of transforming growth factor beta1 and inadequately raised interleukin-10 in relation to the elevated TNFalpha concentrations. This dysbalance between inflammatory and anti-inflammatory cytokines was also found in monocyte supernatants from CHF patients. The abnormalities in the cytokine network were most pronounced in patients with the most severe heart failure, and several of the immunologic parameters, in particular soluble gp130, were correlated with variables reflecting deranged hemodynamic status. The present study analyzing the complexity of the cytokine network in CHF, demonstrates profound disturbances in the levels of both inflammatory and anti-inflammatory mediators with a marked dysbalance favoring inflammatory effects.

Adult↗

The CC-chemokine receptor 5 (CCR5) is a marker of, but not essential for the development of human Th1 cells.

The CC-chemokine receptor 5 (CCR5) has recently been described as a surface marker of human T cells producing type 1 (Th1) cytokines. Here we confirm that CCR5 is expressed on human Th1 but not on Th2 T-cell clones. Using intracellular cytokine staining, we show that alloantigen specific CD4+ T-cell lines derived from a CCR5-deficient individual (delta32 allele homozygote) contain high numbers of both interferon gamma (IFN-gamma) and interleukin (IL)-2 producing cells, low numbers of IL-10 producing cells and no IL4 or IL-5 producing cells when stimulated with phorbol ester and ionomycin in vitro. These results were similar to those obtained from alloantigen specific CD4+ T-cell lines derived from CCR5 expressing individuals. An enzyme-linked immunoabsorbent assay (ELISA) confirmed that the Th1 cytokine-positive cells from the CCR5-deficient individual were able to produce equal amounts of cytokines when compared to T-cell lines from CCR5-expressing individuals, These results demonstrate that CCR5-negative T cells display the same capacity of Th1 T-cell differentiation as T cells derived from CCR5-expressing individuals. Thus, CCR5 expression is not essential for differentiation of human Th1 T cells.

Biomarkers↗

Administration of intravenous immunoglobulin (IVIG) in vivo--down-regulatory effects on the IL-1 system.

Modulation of the cytokine network may be of importance for the beneficial effects of therapy with IVIG seen in a wide range of immune-mediated disorders. In the present study we investigate the effect of IVIG administration in vivo on the IL-1 system in 12 patients with primary hypogammaglobulinaemia. Before IVIG infusion these patients had significantly elevated levels of IL-1alpha and IL-1beta both in plasma and in supernatants from peripheral blood mononuclear cells (PBMC) compared with healthy controls. After one bolus infusion with IVIG (0.4 g/kg) we found a significant change in the profile of the components of the IL-1 system: a marked increase in levels of IL-1 receptor antagonist (IL-1Ra) and neutralizing antibodies against IL-1alpha, a moderate decrease in levels of IL-1alpha, IL-1beta and soluble (s) IL-1 receptor type I and a significant increase in sIL-1 receptor type II levels. These changes were found both in plasma and in PBMC isolated after IVIG administration. Furthermore, pooled serum obtained after IVIG infusion suppressed lipopolysaccharide- and staphylococcal enterotoxin B-stimulated, but not phorbol myristate acetate-stimulated, release of IL-1alpha and IL-1beta from PBMC isolated from healthy controls. Finally, these changes in circulating levels of various IL-1 modulators after IVIG infusion appeared to cause a significantly impaired ability of IL-1 to stimulate PBMC for tumour necrosis factor-alpha release. Our findings suggest that IVIG administration may not only down-regulate the activity in the IL-1 system, but also hamper IL-1 stimulation of PBMC.

Adult↗

Blood levels of CD11b+ memory T lymphocytes are selectively upregulated in patients with active rheumatoid arthritis.

The adhesion molecules CD11b (a beta2-integrin component) and CD54 (ICAM-1) on blood leukocytes were studied by flow cytometry in patients with rheumatoid arthritis (RA). The fractions of CD4+ cells co-expressing CD11b were elevated in 16 patients with active RA compared with those in 16 RA patients who improved during therapy and 8 healthy controls: 0.8+/-0.12% (mean+/-SEM) versus 0.3+/-0.06% (p<0.002) and 0.3+/-0.06% (p<0.005), respectively. Increased levels of CD11b+CD45R0+ cells were observed in patients with active RA compared to those with improved RA and controls: 12.6+/-3.9% versus 4.8+/-2.7% (p<0.002) and 6.1+/-1.2% (p<0.003), respectively. Disease activity, determined by C-reactive protein, correlated with the numbers of CD11b+CD45R0+ cells: r=0.62 (p<0.001). Seven patients were followed during induction of remission with methotrexate and glucocorticoids. The numbers of CD11b+CD4+ and CD11b+CD45R0+ cells fell significantly after clinical improvement. The levels of CD11b+CD14+ cells (monocytes) did not differ between the groups. The number of CD11b+CD15+ cells (neutrophils) was elevated in patients with RA irrespective of disease activity. The levels of CD54+ cells were not different between the RA and control groups. We conclude that the increased numbers of CD11b+ memory T cells may arise from exposure to stimuli outside the synovial compartment.

Adult↗

Cytokine production in NOD mice on prophylactic insulin therapy.

We investigated whether cytokines produced primarily by monocytes/macrophages (IL-1alpha), Th1-lymphocytes (IFNgamma), or Th2-lymphocytes (IL-4) are modulated in diabetes-prone NOD mice by insulin treatment as used in prophylaxis studies. The cytokines were measured by ELISA in plasma and in supernatants of spleen cells activated ex vivo by lipopolysaccharide plus phytohemagglutinin. Insulin, 0.25-0.50 IU/day, was given subcutaneously for 8 weeks starting in 4-week-old female mice. The insulin-treated and control NOD mice showed similar weight gains and, by the end of the study, both groups exhibited cell infiltration in about 25% of their islets. IL-1alpha, IFNgamma and IL-4 were generally below detection in plasma of prediabetic animals and controls. Diabetic NOD mice, aged 28-45 weeks, had significantly elevated plasma IL-1alpha: 154+/-39 pg/ml (mean+/-SEM, p<0.0001). While ex vivo activated NOD splenocytes released similar amounts of IL-1alpha, insulin therapy increased the levels from 99+/-17 to 155+/-19 pg/10(6) cells (p<0.05). Supernatants of activated splenocytes from prediabetic NOD mice had lower levels of IL-4 (<15 pg/10(6) cells) compared with those from BALB/c mice (88+/-22 pg/10(6) cells; p<0.01), and this deficiency was partially compensated for when the NOD mice were given insulin (27+/-8; p<0.01). The levels of IFNgamma were comparable and largely unaffected by insulin treatment. Hence, insulin therapy appears to partially normalize an otherwise deficient Th2 response in NOD mice.

Animals↗

Validity of histopathological grading of articular cartilage from osteoarthritic knee joints.

OBJECTIVES: To determine the validity of the histological-histochemical grading system (HHGS) for osteoarthritic (OA) articular cartilage. METHODS: Human articular cartilage was obtained from macroscopically normal (n = 13) and OA (n = 21) knee joints. Sections of central and peripheral regions of normal samples were produced. Sections of regions containing severe, moderate, and mild OA changes were produced from each OA sample. A total of 89 sections were graded by means of the HHGS (0-14) twice by three observers. RESULTS: Average scores for regions designated severe (8.64) and moderate (5.83) OA were less than the expected (10-14 and 6-9, respectively) according to the HHGS, whereas average scores for the region designated mild (5.29) OA and central and peripheral regions (2.19) of normal cartilage were higher than expected (2-5 and 0-1, respectively). The HHGS was capable of differentiating between articular cartilage from macroscopically normal and OA joints and between the region designated severe OA and other regions. However, the HHGS did not adequately differentiate between regions designated mild and moderate OA. Values for sensitivity, specificity, and efficiency for all regions varied considerably. CONCLUSION: The HHGS is valid for normal and severe OA cartilage, but does not permit distinction between mild and moderate OA changes in articular cartilage.

Adolescent↗

Early prophylaxis with recombinant human interleukin-11 prevents spontaneous diabetes in NOD mice.

We evaluated the effects of recombinant human (rh) interleukin (IL)-11 on the development of spontaneous and cyclophosphamide-induced diabetes in female NOD mice. Prolonged treatment with rhIL-11 10 microg i.p. five consecutive times a week between the 4th and 22nd weeks of age significantly suppressed both development and cumulative incidence of type 1 diabetes. Disease protection was transient because most of the animals developed type 1 diabetes within 3 months of treatment withdrawal. In contrast, rhIL-11 failed to prevent type 1 diabetes when administered for the first time to euglycemic 18-week-old NOD mice. Most likely, this discrepancy was not due to age-dependent differences in the immunological responses of NOD mice to rhIL-11 because staphylococcus aureus enterotoxin B-induced tumor necrosis factor (TNF) and IL-12 production were equally suppressed by rhIL-11 in 12- and 25-week-old NOD mice. Relative to controls, NOD mice pretreated with rhIL-11 also showed significantly diminished blood levels of TNF, interferon-gamma, and IL-12 induced by anti-CD3 antibody and/or lipopolysaccharide. The results demonstrate that rhIL-11 has powerful anti-inflammatory effects that are capable of down-regulating early immunodiabetogenic pathways in NOD mice.

Aging↗

Interleukin-13 prevents autoimmune diabetes in NOD mice.

Interleukin (IL)-13 is a cytokine primarily produced by the T-helper (Th)-2 subset of lymphocytes that possesses powerful anti-inflammatory properties. Here, we have evaluated the impact of IL-13 treatment on development of type 1 diabetes in diabetes-prone nonobese diabetic (NOD) mice. Prolonged treatment with recombinant human IL-13 (hIL-13) markedly diminished the incidence of spontaneous type 1 diabetes in the mice. Female NOD mice treated from age 5-16 weeks with hIL-13 also showed significantly milder insulitis than control mice. The preventive action of hIL-13 was associated with a slight but significant change from a type 1 to a type 2 cytokine response. Accordingly, splenic lymphoid cells (SLC) from hIL-13-treated mice secreted less interferon (IFN)-gamma upon ex vivo stimulation with Concanavalin A than controls, and anti-CD3 monoclonal antibody-induced activation of T-cells in vivo resulted in lower blood levels of IFN-gamma and tumor necrosis factor-alpha and augmented blood levels of IL-4 in NOD mice pretreated with hIL-13. hIL-13 treatment also increased the blood levels of IgE and inhibited the transfer of type 1 diabetes by spleen cells from a diabetic donor to irradiated recipients. Taken together, these data add hIL-13 to the list of cytokines capable of downregulating immunoinflammatory diabetogenic pathways in NOD mice, and further support the concept that IL-4-related anti-inflammatory cytokines might have a role in the prevention of type 1 diabetes.

Animals↗

Production of IL-1beta, IL-1 receptor antagonist and IL-10 by mononuclear cells from patients with SLE.

Depositions of immune-complexes are responsible for many of the pathological features of systemic lupus erythematosus (SLE). For example, immune-complex-induced tissue damage in glomerulonephritis has been shown to be mediated, at least in part, by interleukin (IL)-1. Inappropriate production or function of IL-1 may therefore contribute to disease manifestations in SLE. We investigated lipopolysaccharide (LPS)- and adherent IgG-stimulated release of IL-1beta, IL-1 receptor antagonist (IL-1ra) and IL-10, a potent modulator of IL-1, by blood mononuclear cells from patients with SLE. Mediator production was measured as ng cytokines/10(6) monocytes and compared with clinical parameters. Release of IL-1beta was only detectable in LPS-stimulated cultures and substantially reduced in patients with both active and inactive disease (P < 0.001). LPS-stimulated IL-1ra release was normal and the IL-1ra/IL-1beta ratio was therefore increased (P < 0.05) and correlated inversely to prednisolone dosage (P = 0.009). IgG-stimulated release of IL-1ra was reduced in patients with active disease compared to those with inactive disease and controls (P = 0.002). IL-10 release was similar in patients and controls. We conclude that monocytes from patients with active SLE are deficient in Fc gamma-R-mediated production of IL-1ra, whereas LPS-stimulated IL-1beta release by SLE monocytes is reduced regardless of disease activity. The former may contribute to immune-complex-mediated tissue damage in SLE.

Adult↗