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Biomedical subjects

B Widner

Publications and source records attributed to B Widner.

54 records · Page 3Linked to original sources

Kynurenine and neopterin in chronic glomerulonephritis.

The results of our clinical observations of 102 patients with chronic glomerulonephritis with normal renal function have shown that hyperkynureninemia in 22.5% of patients develops in cases of pyridoxal-5-phosphate deficiency (hyperkynureninemia after peroral L-tryptophan load), but in 14.8% of patients through the stimulation of the cellular immune system (hyperkynureninemia at fasting state, increase of serum neopterin concentration). In all 20 patients with chronic renal failure hyperkynureninemia develops due to decreased renal function (increased serum kynurenine, neopterin and creatinine concentrations). Therefore, L-tryptophan peroral loading test with the determination of serum concentration of kynurenine before and at 3rd hour after the load, as well as the detection of serum concentration of neopterin and creatinine are helpful for the differentiation of following pathologies in patients with chronic glomerulonephritis: pyridoxal-5-phosphate deficiency, cellular immune stimulation and chronic renal failure.

Biomarkers↗

Fructose malabsorption is associated with decreased plasma tryptophan.

Fructose malabsorption is characterized by the inability to absorb fructose efficiently. Consequently fructose reaches the colon and is broken down by bacteria to short-fatty-acids, CO2 and H2. Recently we found that fructose malabsorption was associated with signs of depression. It was therefore of interest to find out whether fructose malabsorption is associated with abnormal tryptophan metabolism. Breath hydrogen concentrations were measured in 50 after an oral dose of 50 g fructose allowing to classify them as normals (n = 15) or fructose malabsorbers (n = 35). Blood samples were taken for tryptophan and kynurenine measurements. Fructose malabsorbers showed significantly lower plasma tryptophan concentrations and significantly higher depression scores compared to normals. Fructose malabsorption is associated with lower tryptophan levels which may play a role in the development of depressive disorders.

Adolescent↗

Association between insulin resistance, body mass and neopterin concentrations.

Obesity is frequently associated with insulin resistance. Recently an important role of the cytokine tumor necrosis factor-alpha in mediating insulin resistance of obesity through its overexpression in fat tissue has been reported. In order to examine the relation of insulin resistance to obesity and to serum neopterin, as a parameter of immune activation, we studied 1234 otherwise healthy outpatients, who visited the physician's office for a medical health check-up. 7% showed elevated glucose concentrations, 34% elevated body mass indices. There were significant correlations between glucose concentrations and body mass indices and of the latter with serum neopterin concentrations. Neopterin concentrations were significantly higher in patients with elevated body mass indices (Mann-Whitney test, U = 131 358, p = 0.0003) and elevated glucose concentrations (Mann-Whitney test, U = 35 350 p =0.02). The data may indicate that moderate immune stimulation plays a role in the development of insulin resistance, and an influence of tumor necrosis factor-alpha seems to be probable.

Adolescent↗

Modulation of neopterin formation and tryptophan degradation by Th1- and Th2-derived cytokines in human monocytic cells.

In order to examine the regulatory effects of major Th1-derived cytokines, such as IL-12, and Th2 cytokines, IL-4 and IL-10, on the formation of neopterin and degradation of tryptophan, two metabolic pathways induced by interferon-gamma (IFN-gamma) in human monocytes/macrophages, we investigated the human monocytic cell line THP-1, primary human macrophages, and peripheral blood mononuclear cells (PBMC). Neopterin formation and tryptophan degradation were induced similarly by IFN-gamma in all three cell types investigated, but the effects of interleukins were different between THP-1, primary macrophages and PBMC. In PBMC, but not in THP-1 cells and primary macrophages, IL-12 was found to be additive to the effects of IFN-gamma to superinduce neopterin formation and tryptophan degradation. IL-4 and IL-10 reduced the effects of IFN-gamma on monocytic cells, and both cytokines were additively antagonistic to IFN-gamma in PBMC and THP-1 cells. Finally, on preincubation, but not on addition of IL-12, the effects of IL-4 and IL-10 on PBMC could be abrogated, whereas no such effect was seen in THP-1 cells. The results show that IL-12 up-regulates neopterin formation and tryptophan degradation by inducing additional IFN-gamma production by Th1 cells, while a direct effect of IL-12 on monocytes/macrophages appears to be absent. Similarly, IL-4 and IL-10 inhibit neopterin production and tryptophan degradation in PBMC by down-regulating Th1-type cytokine production and possibly also via direct deactivation of IFN-gamma effects towards monocytes/macrophages. The results clearly show how Th1 cell-mediated immunity may be up- or down-regulated by endogenous cytokine production.

Cell Line↗

Neopterin derivatives modulate toxicity of reactive species on Escherichia coli.

Neopterin and 7,8-dihydroneopterin are released by human monocytes/macrophages upon stimulation with interferon-gamma. In parallel, a panel of highly reactive species is produced by macrophages as part of their cytotoxic armature, which is directed against microbial and viral challenge and against malignant growth. Recently, neopterin and 7,8-dihydroneopterin were shown to modulate the action of reactive species in vitro. In this study we investigated the impact of neopterin and 7,8-dihydroneopterin on the toxicity of reactive species, namely chloramine-T, H2O2, hypochlorite, nitrite, and formaldehyde, respectively. We studied the growth inhibition of Escherichia Coli (E. coli) by these toxic agents and its modulation by neopterin and 7,8-dihydroneopterin. Bacterial growth was monitored by optical density of suspension cultures at 600 nm. Compared to control experiments, neopterin enhanced toxicity of all reactive species tested except formaldehyde, while 7,8-dihydroneopterin reduced activity of hypochlorite and chloramine-T. No significant impact of the pteridines could be established for H2O2-mediated and formaldehyde-mediated growth inhibition. The data support the concept that neopterin and 7,8-dihydroneopterin produced during immune response in humans could be important to modulate the action of reactive species released in parallel.

Anti-Bacterial Agents↗

Increased serum neopterin concentrations in patients with Alzheimer's disease.

We measured serum neopterin concentrations in 24 patients with Alzheimer's disease (8 males, 16 females; age: 73.1+/-6.2 years; free of any infectious process) and fourteen controls of similar age (4 males, 10 females; age: 69.7+/-8.8 years). Compared to controls, significantly higher concentrations of neopterin (p< 0.01) were found in patients with Alzheimer's disease. Among patients, concentrations of neopterin were higher in those with lower mini-mental-state (p < 0.05), and an inverse correlation existed between mini-mental-state and neopterin concentrations. No such association existed with the duration of the disease. There were also significant correlations between neopterin and serum concentrations of immune activation markers such as soluble tumor necrosis factor (TNF) receptor and soluble interleukin-2 receptor (all p<0.01). Thus, increased concentrations of neopterin in serum of patients with Alzheimer's disease correlate with the severity of dementia. The data imply a chronic state of peripheral immune activation in Alzheimer's disease.

Aged↗

7,8-Dihydroneopterin-induced apoptosis in Jurkat T lymphocytes: a comparison with anti-Fas- and hydrogen peroxide-mediated cell death.

Activated cell-mediated immunity, associated for example with HIV infection, is accompanied by elevated concentrations of neopterin and 7,8-dihydroneopterin. Recent data have indicated a role of neopterin derivatives in virus activation and apoptotic cell death, processes likely to involve the action of oxygen free radicals. Because T cell death in AIDS is likely to involve the Fas/Fas ligand system and the action of oxygen free radicals and 7,8-dihydroneopterin, we compared the kinetics and sensitivity of apoptotic cell death of human leukemic Jurkat T cells to that of treatments with 7,8-dihydroneopterin, anti-Fas, and H2O2. Upon incubation with 5 mM 7,8-dihydroneopterin and 50 microM hydrogen peroxide over a period of 24 hr, bimodal kinetics were observed with peaks at 5.5 hr (7,8-dihydroneopterin, 13.1%; H2O2, 11.4%) and at 24 hr (7,8-dihydroneopterin, 11.2%; H2O2, 13.2%). In contrast, anti-Fas (20 ng/mL)-induced apoptosis increased steadily over time, peaking at 11 hr (43.2%). Interestingly, anti-Fas-induced apoptosis was suppressed upon co-incubation with 7,8-dihydroneopterin and H2O2 by 62% and 68%, respectively. We also compared the sensitivity to drug treatments of apoptosis induced by 7,8-dihydroneopterin, anti-Fas antibodies, and H2O2. 7,8-Dihydroneopterin-mediated, and similarly anti-Fas- and H2O2-mediated, apoptosis was not inhibited by a broad range of pharmacological inhibitors, such as actinomycin D, cycloheximide, cyclosporin A, and various protein kinase inhibitors. On the contrary, inhibitors with antioxidant abilities, such as pyrrolidinedithiocarbamate, significantly blocked 7,8-dihydroneopterin-, H2O2- as well as anti-Fas-mediated apoptosis. These results imply that 7,8-dihydroneopterin-, H2O2-, and anti-Fas-mediated cell death might involve related redox sensitive signal transduction pathways.

Antibodies↗

Determination of silicon in urine by inductive coupled plasma-optical emission spectroscopy.

We describe an inductive coupled plasma-optical emission spectroscopic method to determine silicon in spot urine specimens. A 6-fold standard addition series of the urine specimen ranging from 0 to 356 micromol/l silicon was applied, and the method meets the requirement of matrix compensation in a frequently changing environment. The inter-assay variation was +/-3.0%, intra-assay variations for three specimens were +/-1.7%, +/-1.1% and +/-0.84%. To compensate for physiological variations of urine density, the silicon concentrations in urine were related to urinary creatinine which was measured in parallel by reversed-phase HPLC. Urinary silicon concentrations were examined in 43 healthy controls from the local population. The 5th-95th percentile was 12.6-237 micromol/mmol creatinine. A follow-up of three people over a period of 14 days showed that intra-individual variations of urinary silicon concentrations were smaller than variations between individuals, especially when silicon is related to creatinine.

Chromatography, High Pressure Liquid↗

Neopterin derivatives modulate the nitration of tyrosine by peroxynitrite.

The impact of neopterin and 7,8-dihydroneopterin on peroxynitrite-induced nitration of l-tyrosine was studied. Neopterin derivatives and peroxynitrite are formed during immune response. Tyrosine nitration represents one major effect of nitric oxide-mediated cytotoxicity. Peroxynitrite formed in situ was co-incubated with tyrosine and neopterin or 7,8-dihydroneopterin or other pteridine derivatives, respectively. The nitration product, 3-nitro-l-tyrosine, was measured by HPLC via UV absorption at 360 nm. Neopterin (200 microM) increased the nitration rate between pH 4.0 and 5.5 up to +60%. 7,8-Dihydroneopterin inhibited tyrosine nitration over the whole pH range examined. In a series of various pteridine derivatives, neopterin and 7,8-dihydroneopterin achieved the strongest modulating effects on tyrosine nitration. Interactions of peroxynitrite with hydroxypropyl side chains of fully aromatic pterin derivatives may increase nitration, while partially hydrated pyrazino ring structures abate the reactivity of peroxynitrite. The results of this study suggest a potential impact of neopterin derivatives on peroxynitrite-mediated cytotoxicity.

Hydrogen-Ion Concentration↗

Fructose malabsorption is associated with early signs of mental depression.

Fructose malabsorption is characterized by the inability to absorb fructose efficiently. As a consequence fructose reaches the colon were it is broken down by bacteria to short fatty acids, CO2 and H2. Bloating, cramps, osmotic diarrhea and other symptoms of irritable bowel syndrome are the consequence and can be seen in about 50% of fructose malabsorbers. Having made the observation that persons with fructose malabsorption very often seem to present not only with signs of irritable bowel syndrome but also with signs of pre-menstrual syndrome and mental depression, it was of interest to establish whether such an association could be demonstrated in patients. Fifty-five adults with gastrointestinal complaints of unknown origin (12 males, 43 females) were analyzed by measuring breath hydrogen concentrations after an oral dose of 50 g fructose and were classified as normals or fructose malabsorbers according to their breath H2 concentrations. All patients filled out a Beck s depression inventory - questionnaire. Fructose malabsorption was detected in 36 of 55 individuals (65.5%). Subjects with fructose malabsorption (DeltaH2 concentrations >10 p.p.m. after fructose load) showed a significantly higher score in the Beck s depression inventory than normal fructose absorbers. This was true especially for females. Fructose malabsorption may play a role in the development of depressed mood. Fructose malabsorption should be considered in patients with symptoms of major depression or pre-menstrual syndrome. Further studies are needed to clarify the background of this association.

Adult↗

Diatomaceous earth lowers blood cholesterol concentrations.

In this study a potential influence of diatomaceus earth to lower blood cholesterol was investigated. During 12 weeks we monitored serum lipid concentrations in 19 healthy individuals with a history of moderate hypercholesterinemia (9 females, 10 males, aged 35 - 67 years). Individuals administered orally 250 mg diatomaceous earth three-times daily during an 8 weeks observation period. Serum concentrations of cholesterol, high-density lipoprotein cholesterol, low-density lipoprotein cholesterol and triglycerides levels were measured before study entry, every second week during the period of diatomaceous earth intake and 4 weeks after stop of intake. Compared to baseline (285.8 +/- 37.5 mg/dl = 7.40 +/- 0.97 mM) diatomaceous earth intake was associated with a significant reduction of serum cholesterol at any time point, reaching a minimum on week 6 (248.1 mg/dl = 6.43 mM, -13.2% from baseline; p<0.001). Also low-density lipoprotein cholesterol (week 4: p<0.05) and triglycerides levels decreased (week 2: p<0.05, week 4: p<0.01). Four weeks after intake of diatomaceous earth was stopped, serum cholesterol, low-density lipoprotein cholesterol and triglycerides still remained low and also the increase of high-density lipoprotein cholesterol became significant (p<0.05). Diatomaceous earth, a bioproduct, is capable of reducing blood cholesterol and positively influencing lipid metabolism in humans. Placebo-controlled studies will be necessary to confirm our findings.

Adult↗

Inhibition of xanthine oxidase by pterins.

The effect of a panel of pterins on xanthine oxidase was investigated by measuring formation of urate from xanthine as well as formazan production from nitroblue tetrazolium. The pterin derivatives, depending on their chemical structure, decreased urate as well as formazan generation: 200 microM neopterin and biopterin suppressed urate formation (90% from baseline) and formazan production (80% from baseline) as well. Their reduced forms, 7,8-dihydroneopterin and 5,6,7,8-tetrahydrobiopterin, showed a lesser but still strongly diminishing influence (40% from baseline). Another oxidized pterin namely leukopterin showed only a weak inhibitory effect. Xanthopterin, a known substrate of xanthine oxidase, had a strong effect on urate formation (80% inhibition), but a lesser effect on formazan production (30% reduction). When iron-(III)-EDTA complex was added to the reaction mixture all the effects were more pronounced. Superoxide dismutase, which removes superoxide anion by dismutation into oxygen, decreased formazan production in addition to pterin derivatives and had a small but enhancing effect on urate formation. Also the reductant N-acetylcysteine had an additive effect to pterins to diminish formazan production in a dose-dependent way. The results of our study suggest that depending on their chemical structure pterins reduce superoxide anion generation by xanthine oxidase.

Acetylcysteine↗

Activated immune system in patients with Huntington's disease.

Abnormalities of immune system compartments were determined in 12 patients with Huntington's disease (eight males, four females; age 42.4+/-11.7 years) and 11 controls (7 males, 4 females; age 47.0+/-12.0). All patients were free from infectious diseases. Serum concentrations of a panel of serum soluble markers of immune activation were investigated, namely neopterin, 55-kDa-type soluble tumor necrosis factor receptor (sTNF-R), interleukin-2-receptor (sIL-2R), kynurenine, tryptophan, immunoglobulins (Ig) A, M and G as well as routine laboratory tests. Compared to controls, we found significantly higher serum levels of IgA (p<0.01), sTNF-R, sIL-2R, neopterin, and complement component C3 (all p<0.05), and serum tryptophan was decreased (p<0.001). Higher concentrations of circulating immune complexes, cardiolipin antibodies, IgM, neopterin and lower tryptophan were associated with loss of cognitive function as assessed by the mini-mental-test. Five patients died within 1 year after measurements were performed. In these patients IgM, circulating immune complexes and neopterin concentrations were higher compared to survivors and serum tryptophan was lower. The data indicate an activation of various immune system compartments in Huntington's disease and that systemic immunological alterations might be important in the course of the disease.

Adult↗

Streptococcal erythrogenic toxins induce tryptophan degradation in human peripheral blood mononuclear cells.

BACKGROUND: In various cells including monocytes the cytokine interferon-gamma as well as lipopolysaccharide induce indoleamine 2,3-dioxygenase which degrades tryptophan to form L-kynurenine. We addressed the question of whether the exposure of human peripheral mononuclear cells to superantigens derived from streptococci is associated with tryptophan degradation in vitro. METHODS: Peripheral blood mononuclear cells were exposed to streptococcal erythrogenic toxins A and B and a streptococcal-derived mitogen named BX. In addition, the myelomonocytic cell line THP-1 was treated with these toxin preparations. RESULTS: In peripheral blood mononuclear cells all three toxins induced tryptophan degradation. In parallel, production of interferon-gamma was found, and the tryptophan degradation could be blocked by antihuman interferon-gamma antibodies. Tryptophan degradation was not induced when the human myelocytoma cell line THP-1 was stimulated with these toxins, but there was a costimulatoty effect to interferon-gamma. CONCLUSIONS: In peripheral blood mononuclear cell culture streptococcal erythrogenic toxins are able to stimulate tryptophan degradation in humans via the induction of interferon-gamma production. There seems to be no direct effect on myelomonocytic THP-1 cells. Because some of the degradation products of tryptophan, such as quinolinic acid and kynurenic acid, are toxic, superantigen-driven degradation oftryptophan may play a role for example in the development of the toxic-shock-like syndrome associated with severe group A streptococcal infections.

Adult↗

Increased neopterin concentrations in patients with cancer: indicator of oxidative stress?

In vitro, large amounts of neopterin are produced by human monocytes/macrophages upon stimulation with interferon-gamma. In vivo increased neopterin concentrations in human serum and urine indicate activation of cell-mediated (Th1-type) immune response, e.g., during virus infections, autoimmune diseases, allograft rejection and in certain types of malignancy. In various groups of patients with malignant diseases neopterin concentrations correlate to the stage of disease, and higher neopterin concentrations in serum, urine or ascitic fluid were shown to significantly predict worse prognosis regarding relapse and survival. The amounts of neopterin produced by activated monocytes/macrophages correlate with their capacity to release reactive oxygen species (ROS). With this background, neopterin concentrations in body fluids can be regarded as an indirect estimate of the degree of oxidative stress emerging during cell-mediated immune response. Moreover, recently neopterin was found itself to be capable of enhancing toxic effects induced by ROS. In vitro, neopterin derivatives were able to interfere with intracellular signal transduction pathways involved in, e.g., programmed cell death and the induction of proto-oncogene c-fos or nuclear factor-chi B. The data support the view that increased production of ROS--indicated by increased neopterin concentrations--could modulate the development, the proliferation and the survival of malignant cells.

Anemia↗