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Biomedical subjects

Dietmar Fuchs

Publications and source records attributed to Dietmar Fuchs.

At least 37 records · Page 2Linked to original sources

Bariatric surgery cannot prevent tryptophan depletion due to chronic immune activation in morbidly obese patients.

BACKGROUND: Increased activity of the immuno-modulatory enzyme indoleamine-2,3-dioxygenase (IDO) during immune activation, results in tryptophan depletion. Tryptophan metabolic changes reduce serotonin production and cause mood disturbances, depression, and impaired satiety, ultimately leading to increased food intake and obesity. Bariatric surgery significantly diminishes immune mediators by substantial weight reduction. We examined IDO-mediated tryptophan-catabolism in morbidly obese patients compared to lean individuals. METHODS: Serum concentrations of kynurenine and tryptophan, calculated kynurenine to tryptophan ratios (kyn trp-1) as an indirect estimate of IDO activity, and neopterin levels reflecting IFN-gamma mediated immune activation, were assessed before and after bariatric surgery. The study population included 22 morbidly obese individuals and 20 normal-weight volunteers. RESULTS: Median weight loss after 24.4+/-5.1 months was 40.6 kg resulting in a reduction of BMI from 44.1 kg/m(2) to 29.9 kg/m(2) (P<0.001). Preoperative kyn trp-1 in morbidly obese patients was significantly increased compared to the control group (41.6+/-20.1 mmol/mol vs 26.5+/-5.1 mmol/mol; P<0.001). Postoperative weight reduction did not lead to normalization of kyn trp-1 (37.9+/-14.0 mmol/mol). As a consequence, tryptophan levels were significantly lower in morbidly obese patients (pre-: 51.5+/-9.2 micromol L(-1) and postoperatively: 46.9+/-7.6 micromol L(-1)) when compared with those of normal-weight controls (64.8+/-9.5 micromol L(-1); P<0.001). In addition, neopterin levels were elevated in the study population pre- and postoperatively compared to normal-weight volunteers (both P<0.001). CONCLUSIONS: Tryptophan depletion in morbidly obese patients is due to chronic immune activation and persists in spite of significant weight reduction following bariatric surgery. This might thereby be responsible for diminished serotonin functions, leading to unchanged satiety dysregulation and a reward-deficiency-syndrome.

Adult↗

Antitumoral activity of interferon-gamma involved in impaired immune function in cancer patients.

Insufficient immunosurveillance is an important aspect in early tumorigenesis and in the pathogenesis of malignant disease. In the later course of cancer, the development of immunodeficiency is considered the major reason for disease progression and death. Within the anti-tumoral host defense reaction, Th1-type cytokine interferon-gamma (IFN-gamma) is of particular relevance. IFN-gamma stimulates several anti-proliferative and thus tumoricidal biochemical pathways in macrophages and other cells and also in tumor cell lines. These include inducible nitric oxide synthase, indoleamine (2, 3)-dioxygenase, an enzyme degrading the essential amino acid tryptophan, and the production of reactive oxygen species and neopterin in human macrophages and dendritic cells. Although the anti-proliferative strategy of the immune system aims to inhibit the growth of malignant cells, it can also affect T-cell response and thus contribute to the development of immunodeficiency. Accelerated degradation of tryptophan and increased production of neopterin were found to parallel the course of malignant diseases. Moreover, a higher degree of these metabolic changes characterizes poor prognosis and is associated with the development of anemia, weight loss and depressive mood in patients. Available data suggest that immunodeficiency in cancer patients may develop as a long-term side-effect of the antiproliferative and pro-apoptotic mechanisms elicited within Th1-type immune response, and enhanced production of pro-inflammatory cytokine IFN-gamma seems to be critically involved.

Anemia↗

Crucial role of interferon-gamma and stimulated macrophages in cardiovascular disease.

Inflammation and immune activation are crucially involved in the pathogenesis of atherosclerosis and cardiovascular disease. Accordingly, markers of inflammation such as fibrinogen, ferritin, C-reactive protein or neopterin are found in patients with vascular diseases, correlating strongly with the extent of disease and predicting disease progression. Neopterin formation by human monocyte-derived macrophages and dendritic cells is induced by the pro-inflammatory cytokine interferon-gamma, which is released by activated T-lymphocytes. Human macrophages are centrally involved in plaque formation, and interferon-gamma and macrophages are also of importance in the development of oxidative stress for antimicrobial and antitumoural defence within the cell-mediated immune response. Interferon-gamma also stimulates the enzyme indoleamine-2,3-dioxygenase, which degrades tryptophan to kynurenine. Again, macrophages are the most important cell type executing this enzyme reaction, but also other cells like dendritic cells, endothelial cells or fibroblasts can contribute to the depletion of tryptophan. Likewise, enhanced tryptophan degradation was reported in patients with coronary heart disease and was found to correlate with enhanced neopterin formation. In chronic diseases such as in cardiovascular disease, biochemical reactions induced by interferon-gamma may have detrimental consequences for host cells. In concert with other pro-inflammatory cytokines, interferon-gamma is the most important trigger for the formation and release of reactive oxygen species (ROS). Chronic ROS-production leads to the depletion of antioxidants like vitamin C and E and glutathione, with a consequence that oxidative stress develop. Oxidative stress plays a major role in the atherogenesis and progression of cardiovascular disease, and it may also account for the irreversible oxidation of other oxidation-sensitive substances like B-vitamins (e.g. folic acid and B12). They are essential cofactors in homocysteine-methionine metabolism. Associations between moderate hyperhomocysteinaemia and cellular immune activation are found in several diseases including coronary heart disease, and data indicate that hyperhomocysteinaemia may develop as a consequence of immune activation. Homocysteine accumulation in the blood is established as an independent risk factor for cardiovascular disease. Homocysteine itself has the capacity to further enhance oxidative stress. Interferon-gamma appears to be a central player in atherogenesis and in the development and progression of cardiovascular disease. Anti-inflammatory and immunosuppressive treatment (e.g. with non-steroidal anti-inflammatory drugs or statins) may among other consequences, also contribute to a slow-down of the adverse effects of interferon-gamma.

Animals↗

Method for urinary neopterin measurements by HPLC.

In the June 2004 issue of the Journal, Drs. Ribeiro de Castro and coworkers described a new method to determine neopterin concentrations in urine by HPLC and UV-absorption detection [de Castro MR, Di Marco GS, Arita DY, Teixeira LC, Pereira AB, Casarini DE. Urinary neopterin quantification by reverse-phase high-performance liquid chromatography with ultraviolet detection. J Biochem Biophys Methods 2004;59:275-83 ]. Although simple and rapid, unfortunately this report does not consider any possible analytical complications known from the biochemistry of neopterin. The major problem with this method is that the authors did not at all consider possible interferences with related compounds.

Biomarkers↗

Relationship between homocysteine and neopterin concentrations in patients with gynecological cancer.

Elevated concentrations of vascular risk factor homocysteine have been described in patients with malignant diseases, and homocysteine was supposed to be useful as tumor marker. Likewise, elevated concentrations of Th1-type immune activation marker neopterin are frequently observed in patients suffering from cancer and serve as prognostic marker for the survival of patients. In this study, the relationship between homocysteine and neopterin concentrations was examined in 18 patients with gynecological cancer. Concentrations of homocysteine and cysteine were measured by HPLC in sera of patients, folic acid and vitamin B(12) levels were determined by radioimmunoassay, and neopterin concentrations were measured by ELISA. Median homocysteine concentration was 11.2 microM (interquartile range: 9.9-13.2 microM), 3 patients had levels higher than 15 microM, the upper limit of the normal range. Neopterin concentrations were increased in 13 patients (median: 11.6; 7.7-24.9 nM), cysteine (median: 234; 216-255 microM), folate (median: 7.8; 6.2-11.7 ng/ml) and vitamin B(12) (median: 352; 258-570 pg/ml) concentrations were all within reference ranges although rather at the lower side. Higher homocysteine concentrations correlated inversely with low folate concentrations (r(s)=-0.605; P<0.01) and tended to be higher in patients with higher cysteine levels (r(s)=0.457; P<0.06; ). No correlation was found between homocysteine and immune activation marker neopterin, although the three patients with elevated homocysteine concentrations tended to have higher neopterin levels as well (P<0.07). In conclusion, only a few patients with gynecological cancer present with elevated homocysteine concentrations and hyperhomocysteinemia seems only weakly related to immune activation phenomena, tumor cell proliferation probably is more important for the increase of homocysteine.

Aged↗

Tryptophan degradation increases with stage in patients with rheumatoid arthritis.

Immune system activation is known to be involved in the progression of rheumatoid arthritis (RA). The proinflammatory cytokine interferon-gamma in various cells, including monocytes, induces the enzyme indoleamine (2,3)-dioxygenase (IDO), which converts tryptophan to kynurenine. In sera of 22 patients (17 women and 5 men) with RA stages 1 to 4 according to Steinbrocker, the concentrations of tryptophan and kynurenine were measured by high-pressure liquid chromatography. To estimate IDO activity, the kynurenine to tryptophan ratio (kyn/trp) was calculated. In parallel, concentrations of the macrophage activation marker neopterin were determined by enzyme-linked immunosorbent assay. Tryptophan concentrations were lower in patients with RA, and the decrease in serum tryptophan correlated with increase in stage (p<0.05). Kyn/trp correlated well with neopterin concentrations, which were elevated in most patients. Whereas higher C-reactive protein concentrations and erythrocyte sedimentation rates were observed in patients with greater disease activity, tryptophan and neopterin concentrations did not differ between patients with different subjective disease activity graded by the physician. Deficiency of the essential amino acid tryptophan in patients with RA most likely results from immune activation involved in the pathogenesis of the disease. It could also be relevant for the mood of patients, as tryptophan is the precursor of serotonin.

Arthritis, Rheumatoid↗

Apoptosis induced by the Tibetan herbal remedy PADMA 28 in the T cell-derived lymphocytic leukaemia cell line CEM-C7H2.

The Tibetan herbal remedy PADMA 28 revealed promising results to support treatment of atherosclerosis, Charot syndrome (intermittent claudication), chronic active hepatitis and infection of the respiratory tract. The remedy was confirmed to be closely linked with anti- and pro-oxidative properties in vitro. In this study, apoptogenic and survival effects of PADMA 28 were investigated in the T cell-derived lymphocytic leukaemia cell line CEM-C7H2. PADMA 28 led to a concentration-dependent inhibition of cell proliferation accompanied by the accumulation of CEM-C7H2 cells in subG1 phase, fragmentation of poly (ADP-ribose) polymerase (PARP) and nuclear body formation. Treatment with PADMA 28 rescued to some extent cells over-expressing Bcl-2 from apoptosis. This finding suggests that the mechanism of action of PADMA 28 may be via interference with Bcl-2 triggered survival pathways.

Journal Article↗

Monitoring tryptophan metabolism in chronic immune activation.

The essential amino acid tryptophan is a constituent of proteins and is also a substrate for two important biosynthetic pathways: the generation of neurotransmitter 5-hydroxytryptamine (serotonin) by tryptophan 5-hydroxylase, and the formation of kynurenine derivatives and nicotinamide adenine dinucleotides. The latter pathway is initiated by the enzymes tryptophan pyrrolase (tryptophan 2,3-dioxygenase, TDO) and indoleamine 2,3-dioxygenase (IDO). TDO is located in liver cells, whereas IDO is expressed in a variety of cells including monocyte-derived macrophages and dendritic cells and is preferentially induced by Th1-type cytokine interferon-gamma. Tryptophan depletion via IDO is part of the cytostatic and antiproliferative activity mediated by interferon-gamma in cells. In vivo tryptophan concentration can be measured by HPLC by monitoring its natural fluorescence (285 nm excitation and 365 nm emission wavelength). IDO activity is characterized best by the kynurenine to tryptophan ratio which correlates with concentrations of immune activation markers such as neopterin. Low serum/plasma tryptophan concentration is observed in infectious, autoimmune, and malignant diseases and disorders that involve cellular (Th1-type) immune activation as well as during pregnancy due to accelerated tryptophan conversion. Thus, in states of persistent immune activation, low tryptophan concentration may contribute to immunodeficiency. Decreased serum tryptophan can also effect serotonin biosynthesis and thus contribute to impaired quality of life and depressive mood. As such, monitoring tryptophan metabolism in chronic immunopathology provides a better understanding of the association between immune activation and IDO and its role in the development of immunodeficiency, anemia and mood disorders.

Autoimmune Diseases↗

Interleukin-6 and oncostatin M stimulation of proliferation of prostate cancer 22Rv1 cells through the signaling pathways of p38 mitogen-activated protein kinase and phosphatidylinositol 3-kinase.

INTRODUCTION: Interleukin-6 (IL-6) is a pleiotropic regulator of prostate cancer cell growth. Oncostatin M (OSM), an IL-6-type cytokine, affects the growth of prostate cancers in a paracrine and autocrine manner. In order to understand better the mechanisms controlling proliferation and intracellular signaling by these cytokines in advanced prostate carcinoma, we performed studies in 22Rv1 cells derived from the relapsed xenograft CWR22R. METHODS: Expression of IL-6 and OSM receptors (OSMR-beta) and elements of signal transduction pathways in 22Rv1 cells were investigated by RT-PCR. Proliferation was assessed by cell counting after treatment with either IL-6 or OSM. IL-6 secretion was measured in conditioned medium from 22Rv1 cells by ELISA. Expression and phosphorylation status of signal transducers and activators of transcription factor (STAT) 3, mitogen-activated protein kinases (MAPK) p44/p42 and p38, and protein kinase B (Akt) was investigated by Western blot. RESULTS: 22Rv1 cells express both subunits of the IL-6 receptor (gp80 and gp130) and leukemia inhibitory factor receptor-beta (LIFR-beta) but not OSMR-beta. Their proliferation was stimulated by IL-6 or OSM and the maximal effect was observed at a concentration of 10 ng/ml of either cytokine. Interestingly, neither IL-6 nor OSM induced phosphorylation of STAT3. OSM modestly increased the phosphorylation of p38 and both cytokines exerted an effect on Akt phosphorylation. CONCLUSIONS: IL-6 and OSM stimulate proliferation of 22Rv1 cells, at least in part through activation of the phosphatidylinositol 3-kinase (PI 3-K) signaling pathway. Our data provide additional evidence for the growth-stimulatory role of IL-6 and related cytokines in advanced prostate cancer and may serve as a basis for the development of novel experimental therapies.

Cell Line, Tumor↗

Mechanism of neopterin-induced myocardial dysfunction in the isolated perfused rat heart.

Neopterin is a sensitive marker for diseases involving increased activity of the cellular immune system in humans. Many studies, however, provide evidence for neopterin not only as a marker, but also for its characteristic effects. Recently, we were able to demonstrate a considerable influence of exogenous neopterin at a concentration of 100 mumol/l on cardiac performance in the Langendorff model of isolated perfused rat hearts. The present study was designed to investigate its possible mechanism. During co-infusion of neopterin at a concentration of 100 mumol/l with the unspecific nitric oxide synthase inhibitor N(G)-monomethyl-l-arginine monoacetate, the nitric oxide donor PAPA NONOate, the free radical scavenger N-acetylcysteine, or the pro-inflammatory cytokine tumor necrosis factor-alpha the effects on cardiac contractility parameters and coronary vascular resistance were studied in 67 male Sprague-Dawley rats. The temperature-controlled and pressure-constant Langendorff apparatus was used with retrograde perfusion of the aorta and a Krebs-Henseleit buffer. Neither the unspecific nitric oxide synthase inhibitor nor the nitric oxide donor excludes nitric oxide from playing a mechanistic role in our perfusion studies. Tumor necrosis factor-alpha was without any synergistic or antagonistic effects when co-treated with neopterin. N-acetylcysteine was most effective in abolishing neopterin-dependent effects on cardiac function. The negative effects of neopterin on cardiac performance might be due to an enhancement of oxidative stress by neopterin that can be attenuated by the antioxidant N-acetylcysteine. Neopterin has to be considered a pathogenic factor in the development of cardiac dysfunction in chronic disease states with high neopterin levels secondary to activation of the immune system.

Acetylcysteine↗

Resveratrol suppresses interferon-gamma-induced biochemical pathways in human peripheral blood mononuclear cells in vitro.

A wide range of biological activities of resveratrol (3,5,4'-trihydroxystilbene) in vitro and in vivo has been proved, including antioxidant, antitumor, and also anti-inflammatory effects. Resveratrol found in, e.g., grapes and red wine has been suggested to counteract the progression of coronary heart disease by lowering serum lipid concentrations and inhibiting platelet aggregation. Cellular immune activation is known to be involved crucially in the pathogenesis of coronary heart diseases. In this in vitro study, the modulatory effect of resveratrol on two interferon-gamma-mediated pathways, the degradation of tryptophan by the enzyme indoleamine 2,3-dioxygenase, and the production of neopterin by activation of the GTP-cyclohydrolase I, was tested. Cultures of human peripheral blood mononuclear cells were exposed to resveratrol, in combination with mitogenic stimulation. A significant down-regulatory effect of resveratrol on both biochemical pathways was found, and also the production of Th1-type cytokine interferon-gamma was significantly suppressed. If these results can be verified in vivo, an explanation is provided how resveratrol may interfere with immune activation and cytokine cascades, which are important in the development and progression of cardiovascular disorders and also other diseases.

Anti-Inflammatory Agents, Non-Steroidal↗

Monocyte-mediated T-cell suppression and augmented monocyte tryptophan catabolism after human hematopoietic stem-cell transplantation.

T-cell dysfunction after human hematopoietic stem-cell transplantation (HSCT) is generally attributed to intrinsic T-cell defects. Here we show that the characteristic impaired proliferative responses to polyclonal stimulation of post-HSCT peripheral blood mononuclear cells (PB-MCs) were markedly (4-fold) improved by T-cell enrichment. Conversely, addback of post-HSCT monocytes to these enriched T cells dampened their proliferative responses, suggesting that post-HSCT monocytes effectively mediate T-cell suppression. As a mechanism possibly contributing to monocyte-mediated T-cell suppression, we investigated monocyte tryptophan catabolism by indoleamine 2,3-dioxygenase into kynurenine, which has been implicated in regulating T-cell responses. Compared with controls, all post-HSCT monocyte-containing cell cultures (total PBMCs, monocytes, and monocyte/T-cell cocultures), but not monocyte-depleted populations, secreted elevated amounts of kynurenine. Blockade of tryptophan catabolism improved the proliferative responses. The slightly increased kynurenine release and substantial release of neopterin by unstimulated post-HSCT monocytes suggests that they were in a state of continuous activation. Superimposed on this state, stimulation of these cells caused a striking, additional increase (10-fold) in kynurenine release, and they triggered marked apoptosis of autologous post-HSCT T cells. We conclude that the amplified kynurenine release by post-HSCT monocytes, particularly induced upon stimulation, may underlie their suppressor activity, which in turn may contribute to the depressed T-cell immune responses after HSCT.

Adolescent↗

Homocysteine and serum markers of immune activation in primary dystonia.

The cause of primary dystonia remains unknown. Several reports point to immune system disturbances in primary dystonia and a recent study demonstrated hyperhomocysteinemia in cervical dystonia. Homocysteine (HCY) is an amino acid and elevated HCY concentrations were shown to be associated with immune system activation and increased neopterin serum concentrations. We examined HCY serum concentrations together with serum markers of immune activation in patients with different types of primary dystonia. Eighty-three patients with different types of primary dystonia were included and investigated at least 3 months following botulinum toxin treatment. Thirty-six healthy volunteers with similar age and sex distribution served as controls. Total serum HCY, kynurenine, and tryptophan concentrations were determined by high-performance liquid chromatography; neopterin, folate, and vitamin B12 concentrations were measured by immunoassays. Routine blood analysis, including C-reactive protein (CRP), erythrocyte sedimentation rate (ESR), and white blood count (WBC), was performed. Patients with primary dystonia had significantly higher HCY concentrations compared to controls. Among the dystonia subtypes, no significant difference of HCY serum concentrations was observed. CRP and ESR were within the normal range in >90% of the patients and all had normal WBC. Neopterin, kynurenine, and tryptophan serum concentrations were similar in patients and controls and not correlated with HCY serum concentrations. The results provide evidence against enhanced cellular immune activation in patients with primary dystonia. However, hyperhomocysteinemia was present in all dystonia subtypes and unrelated to immune activation in this study. HCY is a neuronal excitotoxic amino acid and hyperhomocysteinemia is considered an independent vascular risk factor. Further studies are required to define the background of hyperhomocysteinemia in primary dystonia.

Adult↗

Serum neopterin for early assessment of severity of severe acute respiratory syndrome.

Neopterin and C-reactive protein (CRP) concentrations were determined in serum samples from 129 severe acute respiratory syndrome (SARS) patients and 156 healthy blood donors. In the patients with confirmed SARS, an early neopterin elevation was detected already at the day of onset of symptoms and rose to a maximum level of 45.0 nmol/L 3 days after the onset. All SARS patients had elevated neopterin concentrations (>10 nmol/L) within 9 days after the onset. The mean neopterin concentrations were 34.2 nmol/L in acute sera of SARS patients, 5.1 nmol/L in convalescent sera, and 6.7 nmol/L in healthy controls. In contrast, the mean CRP concentrations in both acute and convalescent sera of SARS patients were in the normal range (<10 mg/L). Serum neopterin level in SARS patients was associated with fever period and thus the clinical progression of the disease, while there was no significant correlation between the CRP level and the fever period. Serum neopterin may allow early assessment of the severity of SARS. The decrease of neopterin level was found after steroid treatment, which indicates that blood samples should be collected before steroid treatment for the neopterin measurement.

Adrenal Cortex Hormones↗

Neopterin concentrations in blood donors differ between AB0 blood group phenotypes.

OBJECTIVES: Neopterin is produced by human monocyte-derived macrophages upon stimulation with interferon-gamma and is therefore a sensitive indicator for cellular immune activation. Common factors like age, diastolic blood pressure, body mass index, or smoking habits were found to be associated with neopterin concentrations in humans. DESIGN AND METHODS: In order to find possible genetic determinants which might influence neopterin production, we investigated 8288 consecutive blood donors after exclusion of samples suspicious of infections. RESULTS: Donors with blood group phenotype 0 had moderately, but significantly (P < 0.0001) higher neopterin concentrations (mean +/- SD: 6.94 +/- 1.52 nmol/L) than those with phenotype A (6.75 +/- 1.50 nmol/L), phenotype B (6.73 +/- 1.48 nmol/L), and phenotype AB (6.68 +/- 1.57 nmol/L). CONCLUSIONS: Neopterin levels are higher in donors with blood group phenotype 0 than in other phenotypes. Data point to a genetic background of different neopterin concentrations. However, alterations of neopterin levels were much less expressed than the changes known to occur during diseases with an activated immune response.

ABO Blood-Group System↗