Serum folate and homocysteine levels in head and neck squamous cell carcinoma.
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Biomedical subjects
Publications and source records attributed to Dietmar Fuchs.
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OBJECTIVE: To study the effect of antiretroviral combination treatment on intrathecal immunoactivation in HIV-1 infection. METHOD: Lumbar punctures were performed at baseline, and after 4 months, 1 and 2 years on 30 neurologically asymptomatic, treatment-naive HIV-1-infected patients started on antiretroviral treatment with three or more drugs. Levels of neopterin, beta2-microglobulin and HIV-1 RNA were measured in cerebrospinal fluid (CSF) and blood. RESULTS: All patients continued the study until the 4-month follow-up, although seven discontinued before the 1-year control, and an additional five discontinued before the control after 2 years. Neopterin, beta2-microglobulin and HIV-1 RNA decreased significantly both in CSF and blood, but although 100% of the patients decreased their CSF concentrations of beta2-microglobulin and HIV-1 RNA to normal levels, only 55% had normal CSF neopterin concentrations after 2 years treatment. CONCLUSIONS: In addition to CSF viral load, antiretroviral combination therapy substantially decreases the intrathecal immunoactivation as reflected by CSF neopterin and beta2-microglobulin in neuroasymptomatic HIV-1-infected patients. However, almost half of the patients still have slightly increased CSF neopterin concentrations after 2 years of effective treatment, which might reflect an ongoing low-grade viral replication in brain tissue.
Serum neopterin concentrations were determined in 20,000 blood donations. For the 400 donations with neopterin concentrations above the 98 th percentile and another 1200 donations with neopterin concentrations in the lower range, results of human parvovirus (HPV) B19 tests were compared. Infectious specimens were identified by dot blot hybridization assay and polymerase chain reaction (PCR) that used the outer primers and detected 1 pg of HPV B19 DNA, corresponding to approximately 10(5) copies of the genome, in the specimens and by a nested PCR that detected 1-10 fg of DNA, corresponding to 10(2)-10(3) copies of the genome. Of 400 specimens with neopterin concentrations > or =12 nmol/L (98th percentile, current cutoff), 10 tested positive by dot blot hybridization assay (9 of these were confirmed by nested PCR). Among 1200 specimens with low neopterin concentrations (<12 nmol/L), no specimen containing HPV B19 DNA was detected. These findings suggest an association between elevated neopterin concentrations and HPV B19 infectivity.
In Austria serum neopterin measurement was introduced as an additional unspecific screening marker for the detection of routinely unscreened viral infections in blood donations in 1994. This study was performed to test for associations between serum neopterin concentrations in blood donations and cytomegalovirus infections of the donors. All consecutive blood donations from volunteer blood donors collected during 1 year were incorporated into the study. Serum neopterin concentrations were measured by enzyme-linked immunosorbent assay (ELISA), and each donation of donors with CMV seronegativity or unknown CMV status was also screened for CMV antibodies by CMV IgG/IgM antibody ELISA. Data of donors who had two or more donations within this period were retrospectively analyzed for CMV seroconversions. CMV seroconversion was defined as a change in the donor's CMV status from antibody negative to positive. Frozen, stored plasma samples of the matching donors were tested for CMV IgM antibodies to confirm seroconversion. CMV seroconversions were classified by antibody patterns. In total, 56,068 consecutive blood donations were given by 44,427 volunteer donors. Among these, 9,105 had more than one donation during the observation period, and 4,329 (47.5%) out of these repeated donors were initially CMV antibody negative, of whom 36 were recruited as candidates for CMV seroconversion; 20 conversions were confirmed. All early infections ( n=8) were associated with neopterin concentrations of more than 13 nmol/l (98th percentile of all donations = 12.1 nmol/l) and all donations were excluded from transfusion solely on the basis of their elevated neopterin level. In addition, 17% of late and carrier states ( n=12) showed elevated neopterin concentrations. Acute CMV infections among blood donors presented with elevated serum neopterin concentrations even before CMV IgG/IgM antibodies were detectable.
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Antiretroviral therapy (ART) has a significant impact on HIV-1 RNA levels, the CD4 cell count, and immune activation. We examined whether these changes are associated with a change in the rate of tryptophan degradation (expressed as the kynurenine to tryptophan ratio, kyn/trp) as an estimate for the activity of interferon-gamma inducible enzyme indoleamine (, )-dioxygenase (IDO). Plasma levels of tryptophan, kynurenine, and neopterin were measured pretherapy and 6 months postinitiation of therapy in 45 patients with HIV-1 RNA levels of less than 1000 copies/ml 6 months after initiation of ART. Before ART, the patients had decreased tryptophan and increased kynurenine concentrations compared to healthy controls. During ART, average tryptophan levels increased; in the same time kynurenine and kyn/trp decreased (P < 0.001), although not to normal levels. Since pretherapy tryptophan concentrations correlated inversely with neopterin, and kynurenine correlated with viral load and neopterin but not with CD4 cell count, the data support the view that HIV production may induce immune activation and consequently tryptophan is degraded at a higher rate. In agreement, kyn/trp positively correlated with neopterin (r(s) = 0.60, P < 0.001), with virus load (r(s) = 0.37, P = 0.013), and very weakly with CD4(+) cells counts (r(s) = 0.30, P = 0.049). The change in the kyn/trp ratio during ART correlated more strongly with the change in neopterin levels (r(s) = 0.49, P = 0.001) than with the change in HIV RNA levels and weakly with the CD4 cell count. The data underscore the fact that both neopterin production and tryptophan degradation are triggered by immune activation. Tryptophan degradation is increased in HIV infection and partially reversed under ART. The data agree with the concept that immune activation is the common background of IDO activation which may be an important factor underlying T-cell hyporesponsiveness.
In cerebrospinal fluid of patients with cerebral infections, elevated concentrations of the pteridine compounds neopterin and 7,8-dihydroneopterin were detected. Here, the potential of pteridines to induce apoptosis of the rat pheochromocytoma cells (PC12) was investigated. In contrast to aromatic pteridines like neopterin, the reduced forms 7,8-dihydroneopterin, 5,6,7,8-tetrahydrobiopterin and 7,8-dihydrobiopterin led to a significant increase of apoptotic cells. After terminal differentiation, cells were less sensitive to incubation with pteridines. A noticeable augmentation of apoptosis was observed upon incubation with 7,8-dihydroneopterin and 7,8-dihydrofolic acid. Antioxidants partly protected PC12 cells from pteridine-induced apoptosis, suggesting the involvement of reactive oxygen intermediates. Exposure of cells to 7,8-dihydroneopterin led to activation of the mitogen-activated protein (MAP) kinase and to a lesser degree also of JUN/SAP kinase. Results implicate that high concentrations of reduced pteridines, might contribute to the pathogenesis involved in neurodegeneration.
The cytokine interferon-gamma stimulates human monocytes/macrophages to release large amounts of neopterin. Increased neopterin concentrations in body fluids of patients are observed during diseases with activated cellular (=TH1-type) immune response such as allograft rejection, virus infections, autoimmune disorders, or malignant tumors but also in neurodegenerative diseases or during pregnancy. In various cells interferon-gamma induces indoleamine 2,3-dioxygenase (IDO) which degrades tryptophan via the kynurenine pathway. Therefore like increased neopterin formation, enhanced tryptophan degradation is observed in diseases concomitant with cellular immune activation. Disturbed metabolism of tryptophan affects biosynthesis of neurotransmitter 5-hydroxytryptamine (serotonin), and it appears to be associated with an increased susceptibility for depression. In fact, enhanced neopterin concentrations together with increased degradation of tryptophan and low serum levels of tryptophan correlate with neuropsychiatric abnormalities like cognitive decline and depressive symptoms especially in long-lasting and chronic diseases. Activation of IDO could represent an important link between the immunological network and the pathogenesis of depression.
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Activated cell-mediated immunity is known to be accompanied by elevated concentrations of 7,8-dihydroneopterin which in high concentrations was found to interfere with the oxidant-antioxidant balance. In this study we investigated whether 7,8-dihydroneopterin mediates apoptosis of Jurkat T-lymphocytes via a CrmA- or Bcl-2-sensitive pathway. Transient transfection assays with CrmA and Bcl-2 expression constructs showed that apoptosis was not affected by CrmA whereas it was significantly decreased upon cotransfection with Bcl-2 constructs. Results suggest that 7,8-dihydroneopterin-induced apoptosis of T-lymphocytes is mediated by a Bcl-2-sensitive pathway.
Low density lipoprotein (LDL) oxidation within the artery wall likely represents a key event in the formation of atherosclerotic lesions. Oxidatively modified LDL particles exert chemotactic properties on macrophages, and the uncontrolled uptake of modified LDL by macrophages leads to the formation of lipid-loaded foam cells, a hallmark of early stage atherosclerosis. Human macrophages stimulated by interferon-gamma generate reactive oxygen species (ROS), neopterin, and 7,8-dihydroneopterin. Higher concentrations of neopterin were found in atherosclerosis, and earlier studies have provided evidence that these neopterin derivatives are able to interfere with reactive species. We therefore investigated whether they also modulate LDL oxidation mediated by Cu(II) and/or peroxynitrite (ONOO-). By means of UV-absorption recording the formation of conjugated dienes in the course of lipid oxidation as well as by measuring the relative electrophoretic mobility of oxidized LDL, we found that neopterin is capable of enhancing ONOO- - as well as Cu(II)-mediated LDL oxidation, whereas 7,8-dihydroneopterin mainly protects LDL from oxidation. However, in case of Cu(II)-mediated LDL oxidation, an initial prooxidative effect of 7,8-dihydroneopterin could be observed. We hypothesize that 7,8-dihydroneopterin may chemically reduce Cu(II) to Cu(I) thereby increasing its oxidative capacity. After total reduction of Cu(II), excess 7,8-dihydroneopterin may block the oxidative potential of Cu(I) and thus decrease the oxidation of LDL. These findings confirm the general behavior of pteridines in redox processes and suggest an in vivo contribution to the process of LDL oxidation.
Biopsy is onerous and, for this reason, immunodiagnostics in sera of celiac disease patients are an "additional diagnostic standard." The objective of the study was to investigate the variability in diagnostic specificity of ELISAs for the detection of IgA anti-tissue transglutaminase antibodies in serum of celiac disease patients who underwent biopsy. All patients were included in the study on the basis that they had a small intestinal biopsy. We studied 18 patients with histological proven celiac disease (7 male, 11 female, mean age +/- SD: 35+/-19 years) from Graz, Austria. Healthy control subjects were also entered into the study. The determinations of the anti-tissue transglutaminase antibodies were simultaneously performed together with the endomysium and gliadin antibody markers. We analysed the 216 serum values according to Cochran's non-parametric Q-test. The complexity to the analysis reflects the complexity of the diagnostic situation with the patients. No real differences were found in the reactions of the anti-human IgA-type anti-tissue transglutaminase ELISAs. Based on these results, an association was established between the outcomes of anti-human IgA-type ELISAs for the specific antigen and patients with histologically proven celiac disease, treated for celiac disease after histology was carried out and the diagnosis was made, and healthy controls. The detection of IgA anti-tissue transglutaminase antibodies in serum is a promising alternative to the indirect immunofluorescence determination of IgA-type endomysium antibodies. One ELISA for the specific antigen showed some advantage with respect to its extended scale of detection. Immunopathology of celiac disease can be based on the results of the appropriate IgA anti-tissue transglutaminase ELISAs under uncomplicated gastrointestinal conditions.
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Increased neopterin concentrations in body fluids are found in diseases associated with activated, cell-mediated immunity including infections, autoimmune diseases, and certain malignancies. Monocytes/macrophages are known to secrete large amounts of neopterin upon stimulation with interferon-gamma (IFN-gamma). Ontogenetically, the major part of dendritic cells (DC) belongs to the myeloid lineage. Therefore, we investigated whether cultured monocyte-derived DC can elaborate neopterin. Cells were treated with cytokines in the presence or absence of monocyte-conditioned medium as a maturation stimulus. DC secreted an average 3.5 nmol/l neopterin. In response to IFN-gamma, cells significantly increased their output of neopterin. In distinction to monocytes/macrophages, neopterin production in DC was highly sensitive to IFN-alpha and IFN-beta. Further, lipopolysaccharides (LPS) enhanced neopterin synthesis, whereas tumor necrosis factor alpha, interleukin (IL)-1beta, IL-2, IL-10, and IL-18 were ineffective. Simultaneously, tryptophan degradation by induction of indoleamine (2,3)-dioxygenase (IDO) was tested in stimulated cells. Our results showed that IFN-gamma as well as LPS are inducers of IDO in DC.