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Biomedical subjects

H Wachter

Publications and source records attributed to H Wachter.

At least 109 records · Page 6Linked to original sources

Iron regulates nitric oxide synthase activity by controlling nuclear transcription.

Recently, it was reported that nitric oxide (NO) directly controls intracellular iron metabolism by activating iron regulatory protein (IRP), a cytoplasmic protein that regulates ferritin translation. To determine whether intracellular iron levels themselves affect NO synthase (NOS), we studied the effect of iron on cytokine-inducible NOS activity and mRNA expression in the murine macrophage cell line J774A.1. We show here that NOS activity is decreased by about 50% in homogenates obtained from cells treated with interferon gamma plus lipopolysaccharide (IFN-gamma/LPS) in the presence of 50 microM ferric iron [Fe(3+)] as compared with extracts from cells treated with IFN-gamma/LPS alone. Conversely, addition of the iron chelator desferrioxamine (100 microM) at the time of stimulation with IFN-gamma/LPS increases NOS activity up to 2.5-fold in J774 cells. These effects of changing the cellular iron state cannot be attributed to a general alteration of the IFN-gamma/LPS signal, since IFN-gamma/LPS-mediated major histocompatibility complex class II antigen expression is unaffected. Furthermore, neither was the intracellular availability of the NOS cofactor tetrahydrobiopterin altered by treatment with Fe(3+) or desferrioxamine, nor do these compounds interfere with the activity of the hemoprotein NOS in vitro. We demonstrate that the mRNA levels for NOS are profoundly increased by treatment with desferrioxamine and reduced by Fe(3+). The half-life of NOS mRNA appeared not to be significantly altered by administration of ferric ion, and NOS mRNA stability was only slightly prolonged by desferrioxamine treatment. Nuclear run-off experiments demonstrate that nuclear transcription of cytokine-inducible NOS mRNA is strongly increased by desferrioxamine whereas it is decreased by Fe(3+). Thus, this transcriptional response appears to account quantitatively for the changes in enzyme activity. Our results suggest the existence of a regulatory loop between iron metabolism and the NO/NOS pathway.

Amino Acid Oxidoreductases↗

Increased production of immune activation marker neopterin by colony-stimulating factors in gynecological cancer patients.

Granulocyte colony-stimulating factor (G-CSF) and granulocyte-macrophage colony-stimulating factor (GM-CSF) have recently been introduced in the treatment of chemotherapy-induced neutropenia. Effects of these CSFs on the cellular immune system were evaluated in 38 neutropenic gynecological cancer patients during chemotherapy. In addition to restoring the leukocyte count, GM-CSF--to a greater extent than G-CSF--also induced neopterin, a sensitive marker of macrophages activated by interferons. This effect was confirmed in vitro by investigating the effects of these CSFs on interferon-gamma-mediated pathways in THP-I human myelomonocytic cells. The results suggest activation of immune effector cells by GM-CSF.

Adult↗

Immune activation and enhanced urinary zinc concentrations in allograft recipients.

OBJECTIVES: Zinc metabolism is frequently abnormal in renal allograft recipients. These abnormalities may be immune mediated because zinc metabolism is affected by inflammation. METHODS: We determined urinary zinc and neopterin concentrations in 24 allograft recipients (18 kidney, 3 combined kidney-pancreas and 3 liver allografts) daily for 1-41 days. In addition, serum zinc concentrations were measured in 11 patients. RESULTS: Serum zinc was decreased and urinary zinc concentrations were increased in kidney as well as liver transplant recipients when compared with healthy controls. Urinary zinc concentrations were only slightly elevated in patients with uncomplicated post-transplant course, but the increase was more pronounced in renal allograft recipients with acute tubular necrosis. Urinary zinc concentrations were drastically increased during rejection of various organs. In addition, significant associations between urinary zinc and neopterin concentrations were observed. CONCLUSION: Our results suggest that enhanced urinary zinc excretion in allograft recipients is due to immune activation. The data indicate that cytokines play a role in zinc metabolism.

Adolescent↗

Enhancement of hydrogen peroxide-induced luminol-dependent chemiluminescence by neopterin depends on the presence of iron chelator complexes.

We have previously shown that neopterin, 6-D-erythro-trihydroxypropyl-pteridine, synthesized by human monocytes/macrophages upon stimulation by interferon-gamma, enhances toxicity of reactive oxygen at neutral or slightly alkaline pH (7.5), but not at acidic pH (below 6.5). In the present study, we explored in more detail the necessary requirements for neopterin to modulate the effects of hydrogen peroxide in a luminol-dependent chemiluminescence assay. We demonstrate that neopterin enhances hydrogen peroxide effects only in the presence of iron chelator complexes like iron-(III)- or iron-(II)-EDTA or iron-(III)-DTPA. Thus, iron chelator complexes together with neopterin may play an important role in macrophage-mediated effector mechanisms.

Biopterins↗

Increased concentrations of soluble tumor necrosis factor receptor 75 but not of soluble intercellular adhesion molecule-1 are associated with the decline of CD4+ lymphocytes in HIV infection.

Immune activation seems to be involved in the pathogenesis of human immunodeficiency virus (HIV) infection. The immune activation markers neopterin and beta 2-microglobulin can predict the future rate of the decrease in CD4+ T cells. In a longitudinal study, we assessed whether the decline in the CD4+ T-cell count is associated with increased concentrations of soluble intercellular adhesion molecule-1 (sICAM-1) and soluble tumor necrosis factor receptor 75 (sTNFR 75), compared to increased concentrations of beta 2-microglobulin and urinary neopterin. Forty-seven individuals representing all stages of HIV infection were followed-up for a mean of 12.7 months (range, 8 to 16 months). The percentage of the change of the CD4+ T-cell count from study entry to study end ranged from -97 to +98%; the median was -33%. Concentrations of urinary neopterin, sTNFR 75, and beta 2-microglobulin correlated with the percentage of the change of the CD4+ T-cell count from study entry to study end (r = -0.45, confidence interval (CI) -0.65 to -0.19; r = -0.42, 95% CI -0.63 to -0.15; and r = -0.416, 95% CI -0.62 to -0.15), but those of sICAM-1 did not. This difference was found despite significant correlations between sICAM-1 and sTNFR 75 and beta 2-microglobulin. Levels of sICAM-1 obtained at study entry correlated with levels of sICAM-1 obtained at study end (r = 0.46, 95% CI 0.17 to 0.68). In a multivariate linear regression analysis, urinary neopterin and sTNFR 75 were jointly significant for the percentage of the change of the CD4+ T-cell count. These results suggest that sTNFR 75 is a useful marker to estimate disease progression in HIV infection, whereas sICAM-1 does not seem to provide any information related to the decline of the CD4+ T-cell count.

Adult↗

Factors influencing serum neopterin and beta 2-microglobulin levels in a healthy diverse population.

Sera and questionnaire data from a population-based random sample of healthy adults was used to evaluate factors influencing neopterin and beta 2-microglobulin (beta 2m) values. Both neopterin and beta 2m levels increased with age and were higher among white than blacks (mean values for whites and blacks: neopterin, 5.06 vs 4.49 nmol/L; beta 2m, 1.36 vs 1.28 mg/L). Gender differences were noted for beta 2m but not neopterin values (beta 2m males vs females: 1.37 vs 1.29 mg/L). Neopterin values were lower among current smokers than among nonsmokers (4.32 vs 5.16 nmol/L) and were higher among users of antihistamines (5.46 among users vs 4.65 nmol/L among nonusers). Neopterin and beta 2m were correlated in this healthy adult population (adjusted r = 0.53, P = 0.001), yet no other interrelationships with numerous biologic markers except between beta 2m and serum-soluble interleukin-2 receptor levels (adjusted r = .41, P = 0.05) were observed. These findings provide important baseline information to consider before planning or evaluating studies utilizing neopterin or beta 2m levels.

Adult↗

Increased concentrations of neopterin in carotid atherosclerosis.

Activation of T-cells and macrophages may play a role in the pathogenesis of atherosclerosis. Therefore, serum concentrations of the immune activation markers neopterin and soluble interleukin-2 receptor were compared with routine laboratory parameters, candidate risk variables and degree of carotid atherosclerosis. Study subjects were 561 individuals (293 men and 268 women) aged between 50 and 79 years who were enrolled in a cross-sectional community based study (Ischemic Heart Disease and Stroke Prevention Study, Bruneck, Italy). Extent of carotid atherosclerosis was quantitated by an ultrasound B-mode procedure based scoring system. Detailed physical examination and quantification of laboratory and candidate risk variables were performed. By univariate as well as multivariate statistical analyses, serum concentrations of neopterin but not soluble interleukin-2 receptor were significantly higher in subjects with carotid atherosclerosis (men, 8.5 +/- 2.7 nmol/l neopterin; women, 9.6 +/- 3.3) than in those without (men, 6.7 +/- 2.3, P < 0.0001; women, 7.5 +/- 2.3, P < 0.0001). The data show that the macrophage-derived immune activation marker neopterin is closely correlated with the extent of carotid atherosclerosis. Chronic activation of immune cells, preferentially of macrophages, may play a key role in atherogenesis and/or progression of atherosclerosis.

Aged↗

Tumor necrosis factor alpha and soluble tumor necrosis factor receptors in individuals with human immunodeficiency virus infection.

There is some ongoing debate as to whether tumor necrosis factor (TNF) alpha levels are elevated in human immunodeficiency virus infection (HIV), however TNF alpha is rapidly cleared from the circulation and long-term markers have to be analyzed. Two distinct TNF alpha receptors have been identified, which also exist in soluble forms. The aim of this study was to investigate whether an association in HIV infection exists between the serum levels of TNF alpha, the two soluble TNF receptors (sTNFRs) and other soluble immune activation markers, namely neopterin and beta 2-microglobulin, and the number of CD4+ T-cells. We investigated 63 individuals with HIV infection for serum levels of TNF alpha, sTNFR 55, sTNFR 75, beta 2-microglobulin and urinary neopterin. The study population comprised all stages of HIV infection: 35 were asymptomatic, 8 had oral candidiasis, 4 had constitutional signs and 16 had AIDS. Circulating levels of TNF alpha were detectable in 22 of 63 (34.9%) individuals. For those with detectable TNF alpha levels the median concentration was 40 pg/ml. The frequency and extent of TNF alpha levels found in those with advanced HIV infection as defined by a CD4+ T-cell count below 320 x 10(6)/l did not differ significantly compared to those with a higher CD4+ T-cell count. Increased concentrations were found in 69.8% of the patients for sTNFR 55 and in 87.3% for sTNFR 75. Serum concentrations of sTNFR 55 and sTNFR 75 were higher in the group with the lower CD4 T-cell count (P = 0.006 and P = 0.0003). TNF alpha correlated with sTNFR 75 and weakly with sTNFR 55 and beta 2-microglobulin.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Coinduction of nitric oxide synthesis and intracellular nonheme iron-nitrosyl complexes in murine cytokine-treated fibroblasts.

Murine fibroblasts treated with interferon-gamma plus tumor necrosis factor-alpha plus lipopolysaccharide produce nitrite and EPR-observable intracellular nonheme iron-thiol-dinitrosyl species. Inhibition of .NO synthesis or de novo tetrahydrobiopterin (BH4) synthesis decreases nitrite and the EPR signal. The effects of BH4 synthesis inhibition are prevented by sepapterin, which increases BH4 through the salvage pathway.

Animals↗

Tryptophan concentrations increase in cerebrospinal fluid and blood after zidovudine treatment in patients with HIV type 1 infection.

Cerebrospinal fluid (CSF) and blood concentrations of indoleamines and catecholamines were analyzed in 14 HIV-1-seropositive individuals before antiviral treatment with zidovudine, after 3-14 months of treatment, and, in 8 of the patients, also after 14-30 months. The median pretreatment concentrations of tryptophan in CSF and blood were low (224 ng/ml and 6.0 micrograms/ml, respectively), but an increase in these values by an average of 40% in CSF and 23% in blood was seen after 3-14 months of zidovudine treatment (p < 0.01) and remained undiminished after 14-30 months of treatment. No significant change was observed in the 5-hydroxytryptamine (5-HT, serotonin) level in blood or in the CSF concentrations of the 5-HT metabolite 5-hydroxyindoleacetic acid (5-HIAA) and the dopamine metabolite homovanillic acid (HVA). The CSF concentrations of the noradrenalin metabolite 3-methoxy-4-hydroxyphenylglycol (MHPG) had decreased by 12% on average (p < 0.01) by the time of the second follow-up, that is, after 14-30 months of zidovudine treatment. A decrease in neopterin during antiretroviral treatment correlated with an increase in tryptophan (p < 0.01). The data suggest that an association between decreased immune stimulation and reduced tryptophan degradation in patients treated with zidovudine.

Adult↗