[DNA microchips: after a revolution in biotechnology with great clinical and scientific possibilities].
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Biomedical subjects
Publications and source records attributed to K Bendtzen.
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Pharmaceutical preparations of normal human immunoglobulin (IgG) are known to contain high-avidity and neutralizing antibodies (Ab) to the cytokines interleukin (IL)-1alpha, IL-6, and interferon (IFN)alpha. To test for other cytokine Ab, 23 batches of IgG were tested for saturable binding to eight 125I-labeled recombinant cytokines. All batches bound granulocyte-macrophage colony-stimulating factor (GM-CSF) with high avidity (Kav approximately 10 pmol/L) and capacities of up to 5 mumol GM-CSF/mol IgG. Only 1 of 15 batches bound IL-5, also with high avidity, whereas 13 of 15 batches bound to IL-10 but with lower capacities and avidities. None of the IgG preparations bound IL-1 receptor antagonist (IL-1ra), IL-2, IL-3, IL-4, or G-CSF. Cross-binding and absorption analyses revealed identical or slightly stronger binding of recombinant GM-CSF, IL-5, and IL-10 than their native counterparts. GM-CSF-IgG complexes did not bind to cellular GM-CSF receptors, but Fc-dependent binding occurred to blood polymorphonuclear cells. Increased binding of GM-CSF to patient sera correlated positively with the binding capacities of infused IgG preparations. Patient and normal sera did not interfere with the binding of Ab to GM-CSF. From these and previous experiments, we conclude that pools of normal human IgG contain variable amounts of specific and high-avidity Ab to some cytokines, and that Ab to GM-CSF constitute a dominant anti-cytokine activity in these preparations. These Ab are available for reaction in vivo following IgG therapy.
The cytokines are (glyco)proteins secreted by lymphoid and non-lymphoid cells which modulate several biological responses including the ovarian function. Interleukin (IL)-1 and tumour necrosis factor (TNF)-alpha suppress 17beta-estradiol (E2) and progesterone release from granulosa and luteal cells in vitro. TNF-alpha affects negatively folliculogenesis and ovarian maturation. Additional in vivo evidence for a role of this macrophage-derived cytokine came from our recent observation that women with infertility due to immunological causes have elevated intrafollicular fluid levels of TNF-alpha and decreased levels of E2 compared to women with a tubal factor of infertility. Because the macrophages are a primary component of the intrafollicular compartment, the present study was undertaken to evaluate whether other macrophage-derived cytokines are also released in the human follicular fluid. To accomplish this, we measured the levels of IL-1beta, IL-6, IL-10 and granulocyte-macrophage colony-stimulating factor (GM-CSF) in the follicular fluids of two groups of infertile women undergoing to an in vitro fertilization program. The first group of women had a significant titre of anti-spermatozoon antibodies in the serum and/or the mucus as the only cause of infertility, whilst the second group of women was infertile because of non patent fallopian tubes. Intrafollicular cytokines levels were measured by solid-phase ELISA and steroid concentrations by radioimmunoassay. Whilst IL-1beta, IL-6, IL-10, and GLM-CSF were all measurable in the follicular fluid of both groups of women, the levels of IL-6 were found to be significantly more elevated and those of GM-CSF lower in patients with infertility due to immunological causes as compared to those with tubal infertility. The former had also decreased intrafollicular E2 levels and increased progesterone concentrations. No difference was seen in the follicular fluid levels of testosterone and androstenedione. In conclusion, several macrophage-derived cytokines are present in the follicular fluids of infertile women. Patients with infertility due to immunological causes had higher levels of IL-6 and lower concentrations of GM-CSF as compared to patient with a tubal factor of infertility. We speculate that this abnormal cytokine profile may contribute to the altered intrafollicular steroid milieu.
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The peri-operative cytokine response was studied in 13 infants and young children undergoing major surgery. All children were anaesthetized with a combined general and epidural anaesthetic technique, followed by post-operative epidural analgesia with bupivacaine and fentanyl. Blood samples were taken before and after surgery, 24 h post-operatively, and finally, when the children were mobilized and had regained gastrointestinal function. Plasma samples were analysed for tumour necrosis factor-alpha, interleukin-1 alpha, interleukin-1 beta, interleukin-6, interferon-gamma, interleukin-10 and the interleukin-1 receptor antagonist. The cytokine responses were highly variable. Overall, no significant changes between pre- and post-operative plasma concentrations were found. Tumour necrosis factor-alpha and the interleukin-1 receptor antagonist were detectable in all children, and a trend towards an early increase in the interleukin-1 receptor antagonist levels at the end of surgery was seen. The other cytokines were only detectable at low concentrations among a minority of children. In conclusion, this study showed highly variable peri-operative cytokine responses in infants and young children undergoing major surgery.
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In the present study, we investigated the kinetics and the activation thresholds for the production of a number of pro-inflammatory cytokines and cytokine antagonists in Escherichia coli lipopolysaccharide (LPS) or phytohaemagglutinin (PHA) stimulated whole blood cultures of 13 patients with systemic juvenile chronic arthritis (SJCA) and 10 healthy children. In unstimulated cultures, the levels of interleukin (IL)-1beta, IL-6 and tumour necrosis factor alpha (TNF-alpha) were undetectable in both groups, suggesting that there was no spontaneous production of these cytokines by circulating leucocytes. The activation thresholds for the production of these cytokines, as well as the capacity for production, did not differ significantly between patients and controls. The level of interleukin-1 receptor antagonist (IL-1ra) in plasma of the patients was significantly elevated, while the in vitro production of IL-1ra was essentially normal and it did not correlate with plasma levels of IL-1ra. Supernatant levels of soluble TNF-alpha receptor (sTNF-R) I and II were both significantly elevated and correlated with the global activity score. In contrast, the supernatant levels of IL-10 were reduced in both PHA- and LPS-driven cultures. Although IL-10 levels did not correlate with laboratory or clinical indices of disease activity, the results suggest that reduced IL-10 production may play a pathogenetic role in SJCA.
Bacterial superantigens such as staphylococcal enterotoxin-A (SEA) have been implicated in the pathogenesis of psoriasis vulgaris. Major histocompatibility complex (MHC) class II molecules are high affinity receptors for SEA, and T cells found in psoriatic skin lesions express high levels of MHC class II. Here we address the question of whether SEA can directly activate psoriatic T cells in the absence of professional antigen-presenting cells. We show that SEA induces i) tyrosine phosphorylation of several proteins, ii) downregulation of the T-cell receptor (TCR), and iii) production of interferon-gamma (IFN-gamma), but not autocrine mitogenesis in CD8-positive T clones obtained from skin lesions of a patient with psoriasis vulgaris. Psoriatic T cells do not respond to SEA molecules if mutations are introduced in the TCRbeta- or in both the two MHC class II alpha- and beta-binding sites of SEA. Mutations in only one of the two MHC class II binding sites of SEA has different effects on T-cell activation. Thus, SEA molecules with a mutation in the MHC class II beta-binding site induce protein tyrosine phosphorylation, but not IFN-gamma production or co-stimulation of cytokine-mediated proliferation. In contrast, SEA with a mutation in the MHC class II alpha-binding site induces IFN-gamma and a qualitatively changed tyrosine phosphorylation profile. Both mutations delete the co-stimulatory effect on cytokine-mediated proliferation. This suggests that both MHC class II binding sites are involved in the autopresentation of SEA by psoriatic T cells. In conclusion, we provide evidence that SEA directly activates MVHC class H-positive psoriatic T-cell lines to produce IFN-gamma, a key cytokine in the pathogenesis of psoriasis vulgaris.
BACKGROUND: The inflammatory response in patients undergoing cardiac surgery with cardiopulmonary bypass is well known and increased levels of inflammatory cytokines have been shown. High levels of cytokines have been reported in blood drained from the surgical field. The present study aimed to elucidate whether autotransfusion of shed mediastinal blood in itself causes increased cytokine levels in coronary artery bypass graft (CABG) patients. METHODS: A prospective, randomized controlled study was performed in 23 patients having elective uncomplicated CABG. Autotransfusion of shed mediastinal blood was done every hour for 18 h in group I. In group II, the shed mediastinal blood was accumulated for 4 h in the cardiotomy reservoir and then autotransfused every hour for the next 14 h. Plasma levels of tumour necrosis factor-alpha (TNFalpha) and interleukin (IL)-1alpha, IL-1beta, IL-6 were measured. In vitro study of cytokine production was performed with or without stimulation (phytohaemagglutinin (PHA) and Escherichia coli (E. coli) lipopolysaccharide (LPS)). RESULTS: We found high levels of IL-6 in the shed mediastinal blood. However, autotransfusion of shed mediastinal blood did not lead to increased level of cytokines (TNFalpha, IL-1alpha, IL-1beta and IL-6) in plasma in group I nor in group II. In vitro study showed activation of the leucocytes in the shed mediastinal blood with a significantly increased production of TNFalpha and IL-6 both in the stimulated and non-stimulated samples. CONCLUSION: Shed mediastinal blood contains high levels of IL-6. However, autotransfusion of shed mediastinal does not cause measurable elevations in plasma levels of IL-6. In vitro study shows that autotransfusion activates leucocytes, which may enhance production of inflammatory cytokines.
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The promastigote surface antigen-2 (PSA-2) is a Leishmania parasite antigen, which can induce Th1-mediated protection against murine leishmaniasis when used as a vaccine. To evaluate PSA-2 as a human vaccine candidate the specific T-cell response to PSA-2 was characterised in individuals immune to cutaneous leishmaniasis. Peripheral blood mononuclear cells from Sudanese individuals with a past history of self-healing cutaneous leishmaniasis proliferated vigorously in response to PSA-2 isolated from Leishmania major, whereas the antigen did not activate cells from presumably unexposed Danes. Peripheral blood mononuclear cells from individuals with previous L. major infection had varying proliferative responses to PSA-2 derived from L. donovani promastigotes. Peripheral blood mononuclear cells activated by PSA-2 from L. major produced high amounts of interferon-gamma and tumour necrosis factor-beta, and little interleukin-4, thereby showing a Th1 cytokine pattern. Parallel cultures showed clear Th1 and Th2 response patterns to purified protein derivative of tuberculin or tetanus toxoid, respectively. Flow cytometric analysis revealed that PSA-2 induced blastogenesis in the CD3 positive population and that these cells were the major source of interferon-gamma. The results show that Th1-like cells recognising PSA-2 are expanded during infection by L. major and that they maintain their Th1-like cytokine profile upon reactivation in vitro. Since immunity to cutaneous leishmaniasis is mediated by antigen-specific Th1-like cells, PSA-2 might be considered a vaccine candidate for human leishmaniasis.
OBJECTIVE: The objective of this study was to detail the topographical and zonal distribution of alpha and beta subunits of the integrin superfamily in normal and osteoarthritic cartilage. METHODS: Immunohistochemistry utilising antibodies towards alpha and beta subunits was performed on cryostat sections of human articular cartilage from macroscopically normal (n = 6) and osteoarthritic (n = 6) femoral heads. Samples of articular cartilage were obtained from 12 topographically distinct sites from each femoral head. Each section was divided into zones (superficial, middle, deep) and staining scores were recorded. RESULTS: Normal cartilage stained for integrin subunits alpha 1, alpha 5, alpha V, beta 1, beta 4, and beta 5, but not for alpha 2, alpha 3, alpha 4, alpha 6, beta 2, beta 3, and beta 6. Intact and non-intact residual cartilage from osteoarthritic femoral heads stained for alpha 1, alpha 2, alpha 5, alpha V, beta 1, beta 4, and beta 5. Staining was occasionally seen for alpha 4 and beta 2, but not for alpha 3, alpha 6, beta 3, and beta 6. There was no topographical variation in the staining for any of the subunits in either normal or osteoarthritic cartilage. The only subunit that displayed a zonal variation was alpha V; staining for this subunit was most pronounced in the superficial zone compared with the middle and deep zones. CONCLUSION: Chondrocytes in normal and osteoarthritic cartilage express the integrin subunits alpha 1, alpha 5, alpha V, beta 1, beta 4, and beta 5. Chondrocytes in osteoarthritic cartilage, in addition, express the alpha 2, alpha 4, and beta 2 subunits. The alpha v subunit is expressed by more chondrocytes in the superficial zone in comparison with cells in the deeper zones. None of the subunits display topographical variation in expression.
A patient with Guillain-Barré syndrome is reported on who responded favourably to a short course treatment with the novel immunosuppressant sodium fusidate (Fucidin), given at a daily dose of 1.5 g for one week. Along with prompt and clear cut clinical improvement, treatment with Fucidin was associated with a rapid decline in the blood concentrations of inflammatory cytokines presumably implicated in the pathogenesis of Guillain-Barré syndrome such as interleukin-2, interferon-gamma, and tumor necrosis factor-alpha. The ex vivo production of these cytokines was also markedly diminished compared with pretreatment values. Fucidin was well tolerated and no clinical or biochemical side effects were seen.
The aim of this study was to characterise the localisation and staining intensity of immunoreactive (ir) interleukin-4 (IL-4) and IL-4 receptor (IL-4R) in human placenta and fetal membranes in association with pre-term and term labour, and pre-eclampsia. The data obtained in this study establish the presence of irIL-4 and IL-4R in human placenta and fetal membranes obtained from women at 25-41 completed weeks of gestation. IL-4 and IL-4R immunohistochemical staining was principally localised in villous and chorionic trophoblast, and to amnion epithelial cells. The intensity of IL-4 and IL-4R immunohistochemical staining was not significantly affected by labour status at term or pre-term (p > 0. 05), with the exception of IL-4R in the amnion (p < 0.05). In term amnion, IL-4R was only detectable following labour onset. When data were stratified with respect to the presence or absence of pre-eclampsia, no statistical difference in immunohistochemical localisation or staining intensity for either IL-4 or IL-4R could be identified for any of the tissues studied. Co-localisation of IL-4 and IL-4R within gestational tissues may indicate auto- and/or paracrine mechanisms of action for this cytokine. Tissue-specific, labour-associated induction of IL-4R may contribute to the regulation of biological effects of IL-4 within the uteroplacental unit.
Previous studies have demonstrated the presence of grass pollen-specific T cells in grass pollen-allergic patients (GPA) as well as nonallergic subjects (NA). In order to elucidate a possible seasonal variation in proliferation and cytokine production of peripheral blood mononuclear cells (PBMC), PBMC from 13 GPA and 11 NA were stimulated with extracts of Phleum pratense and tetanus toxoid before and during two grass pollen seasons. IL-4, IL-5 and interferon-gamma were determined by ELISAs. PBMC from GPA demonstrated a decreased proliferative response to grass pollen allergens during the pollen season as compared to NA (p < 0.05), but no difference was found in the response to tetanus toxoid. Cells from GPA produced higher amounts of IL-4 and IL-5 than NA (p < 0.05) and the seasonal variation in GPA proliferation was paralleled by the grass pollen-induced production of both IL-4 and IL-5 (p < 0.05). We conclude that during the grass pollen season PBMC from GPA have a reduced ability to proliferate and to produce Th2-type cytokines. This may be due to seasonal migration of the grass pollen-specific T cells from the blood to the tissues of primary allergen exposure.
The principal regulator of parathyroid hormone (PTH) secretion is ionized calcium, but other factors are also known to modulate PTH secretion, such as vitamin D, estrogen, and recently inorganic phosphate. Interleukin-1 (IL-1) possesses a wide variety of biological activities and is produced by leukocytes as well as by various other cells including cells from endocrine tissues and might play a role as a paracrine factor in the control of PTH secretion. We investigated the effect in vitro of IL-1 beta on PTH release, PTHmRNA and the mRNA for the extracellular calcium-sensing receptor (CaR) levels in preparations of bovine parathyroid cells. PTH secretion from cultured parathyroid tissue slices was significantly inhibited in a medium containing IL-1 beta at a concentration of 2000 pg/ml (PTH in % of control: 63.5 +/- 5.3), n=10 (p<0.01). The inhibitory effect of IL-1 beta was not found in preparations of dispersed cells. The inhibitory effect of IL-1 beta could be counteracted by the IL-1 receptor antagonist (IL-1ra), indicating that the inhibitory effect was mediated through the specific IL-1 receptor on the parathyroid cells. IL-1 beta (2000 pg/ml) up-regulated CaRmRNA levels to 180% of control, whereas no change in PTHmRNA was found. IL-1ra abolished the upregulating effect of IL-1 beta on the CaRmRNA. This study demonstrates a direct effect in vitro of IL-1 beta on PTH secretion from bovine parathyroid glands, an effect which may be mediated at least in part through the specific IL-1 receptor causing an upregulation of the calcium-sensing receptor mRNA. IL-1 might therefore play a role as a auto- and/or paracrine factor in the regulation of the PTH secretion.
High-avidity antibodies against interferon alpha (IFN alpha), interleukin-1alpha (IL-1alpha), and IL-6 have been demonstrated in preparations of normal human IgG, and in vivo modulation of these cytokines may therefore account for immunomodulatory and anti-inflammatory effects of high-dose intravenous IgG therapy. We have investigated the in vivo recovery and the effect on serum cytokine levels of antibodies to IFN alpha, IL-1alpha, and IL-6 infused with IgG preparations. Fifteen treatment series of 0.4 g IgG/kg/d were administered over 3 days to eight patients with autoimmune diseases. All IgG preparations contained variable amounts of antibodies binding to 125I-labeled human IFN alpha2A, -IL-1alpha, and -IL-6, and the contents of these molecules correlated with increased levels in serum anticytokine activities after IgG infusion. The infused anti-IL-1alpha antibody activity was fully recovered, whereas the recovery of anti-IFN alpha2A antibodies was significantly reduced. Serum antiviral activities were significantly reduced after IgG therapy (before, 0 to 5.6 IU/mL; after, 0 to 0.6 IU/mL). In contrast, enzyme-linked immunosorbent assay (ELISA) showed no significant reduction in the serum levels of IL-6 (before, 1 to 70 pg/mL; after, 2 to 55 pg/mL), and the levels of IL-1alpha were consistently below the detection limit (<30 pg/mL). In conclusion, increased levels of antibodies to IFN alpha2A, IL-1alpha, and IL-6 occurred in patients receiving IgG and this reduced the serum antiviral activity.
Adhesion molecules participate in a broad variety of biological processes, i.e. tumour progression and inflammation, through their involvement in cell-to-cell interactions and immunoinflammatory cell migration. This review describes the basic properties of adhesion molecules with reference to inflammatory bowel disease and colorectal carcinoma. Future therapeutic approaches in inflammatory and malignant disorders may include development of principles targeting adhesion molecules.