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Biomedical subjects

R Claus

Publications and source records attributed to R Claus.

At least 37 records · Page 2Linked to original sources

High concentration of soluble HLA-DR in the synovial fluid: generation and significance in "rheumatoid-like" inflammatory joint diseases.

In the search for its role in inflammatory joint diseases, soluble HLA-DR (sHLA-DR) was quantitated in 72 synovial fluids (SF) by a newly established immunoenzyme assay. Unlike other soluble receptors which accumulated only moderately (sCD25, sCD4) or negligibly (sHLA class I, sCD8) in the SF, SF sHLA-DR levels exceeded serum levels by up to 3 orders of magnitude and varied disease dependently from "control" values (traumatic synovitis and osteoarthritis: 9.9 +/- 6.1 ng/ml). Clear-cut different SF sHLA-DR values in HLA-DR-associated "rheumatoid-like" (136.5 +/- 130.0 ng/ml) vs HLA-B27-associated "spondylarthropathy-like" arthritic forms (28.4 +/- 29.1 ng/ml) were most significant comparing oligoarticular juvenile chronic arthritis type I (147.6 +/- 112.6 ng/ml) and type II (3.3 +/- 1.1 ng/ml), thus offering a new classification marker. Also ex vivo, large amounts of sHLA-DR were released spontaneously by SF mononuclear cells and found to be related to the T-cell activation state. SF sHLA-DR may be shed in large complexes or micelles, as it eluted mainly at >450 kDa on gel filtration. Western blotting revealed that the majority of SF sHLA-DR consisted of full-length alpha- and beta-chains. Minor fractions of smaller sized antigens seemed to be generated by proteolytic cleavage rather than by alternative splicing, since only minute amounts of HLA-DRB mRNA lacking the transmembrane exon could be amplified by RT-PCR. Distinct forms of high-dose sHLA-DR, able to provoke rather than to suppress T-cell responses, are discussed as contributing to some HLA-DR disease association.

Adolescent↗

Course of epidermal growth factor (EGF) and insulin-like growth factor I (IGF-I) in mammary secretions of the goat during end-pregnancy and early lactation.

The epidermal growth factor (EGF) plays a crucial role in mammogenesis in many species. In ruminants, studies are limited, as EGF does not occur in peripheral plasma and specific analytical systems do not exist. Therefore a heterologous radioimmunoassay based on rhEGF was set up to monitor EGF in mammary gland secretions from goats during end-pregnancy and early lactation. IGF-I was measured with an established radioimmunoassay. Samples were collected from 13 goats for 25 days ante-partum and 25 days post-partum. Mammary gland secretions were obtained ante-partum by removing a small amount of the udder secretions (control half) or milking (stimulated half). Post-partum normal milk samples were collected. Blood samples were drawn by jugular venipuncture for the same period. EGF was found to occur in different molecular weight forms in the mammary glands. For routine measurements these proteins were extracted with acetone and not further separated. IGF-I and EGF concentrations in mammary secretions and similarly IGF-I in blood were high ante-partum and decreased slightly towards birth. IGF-I but not EGF is found in the peripheral plasma. Whereas IGF-I concentrations in blood were quite constant post-partum, IGF-I and EGF dropped in mammary secretions close to the detection limits. The decrease was more pronounced in the stimulated half than in the control half. The data support a synergistic role for EGF and IGF-I for mammogenesis. Both factors are further influenced by the milking stimulus and thus the functional state of the udder.

Animals↗

Antiapoptotic effects of propolis extract and propol on human macrophages exposed to minimally modified low density lipoprotein.

An aqueous extract of propolis and the phenolic component of propolis, propol, were assayed for antioxidative and antiapoptotic properties. Both additions inhibited Cu(2+)-initiated low density lipoprotein (LDL) oxidation as characterized by a reduction of the lag time, reduced the increase of relative electrophoretic mobility during oxidation and markedly diminished apoptosis of human macrophages exposed to minimally modified (mmLDL). Moreover, aqueous propolis extract and propol blocked the mmLDL-induced decrease of glutathione (GSH) and the activation of the transcription factor NF-kappa B in these cells. The potent phenolic antioxidant propol thus expands the capability of cells to neutralize oxidative stress and to prevent apoptosis and is therefore suggested to significantly contribute to the antiinflammatory and antioxidative effects of propolis.

Acrylates↗

Modulation of the ceramide level, a novel therapeutic concept?

The sphingomyelin (SM) pathway is an ubiquitous and evolutionarily conserved signaling system in which ceramide (CA), generated from SM by the action of various isoforms of sphingomyelinases (SMases) functions as an important second messenger. Recent evidence suggests that branching pathways of sphingolipid metabolism mediate either apoptotic or mitogenic responses depending on cell type and the nature of the stimulus. Events involving SM metabolites and CA in particular include proliferation, differentiation and growth arrest as well as the induction of apoptosis. An improved understanding of SMase-dependent signaling may afford relevant insights into the pathogenesis of diseases and provide novel strategies and selective targets for a therapeutic intervention e.g. in cancer, cardiovascular and neurodegenerative diseases, HIV and septic shock. This article briefly summarizes the role of SMases in signaling pathways, its potential contribution in the development and maintenance of various pathobiological states and analyzes the perspective of a potentially isotype-specifc inhibition of SMases as a novel therapeutic concept.

Animals↗

Influences on skatole formation from tryptophan in the pig colon.

Variable amounts of skatole (3-methyl-indole) are formed by microbes out of tryptophan in the colon of pigs. It is resorbed and accumulated in fat, leading to a fecal odor of the meat. We investigated the mechanisms by which differences in diet composition lead to variations in skatole concentrations in blood plasma and fat. The experiments were based on the hypothesis that tryptophan is derived from mucosa cell debris from the small intestine. It was found, that gut cell mitosis is stimulated by the growth factor IGF-I. This factor increases when energy in the diet is high. In addition, the mitotic rate is elevated when high amounts of purines are available in the diet, allowing a more rapid DNA- and RNA-synthesis. Thus, high energy combined with high purines in the diet lead to a remarkable increase of gut cell mitosis which is accompanied by an increase of apoptosis. These apoptotic cells ultimately provide the substrate for skatole formation. In consequence, a dramatically rise of skatole in blood plasma and fat was measurable.

Animals↗

Novel reversible, irreversible and fluorescent inhibitors of platelet-activating factor acetylhydrolase as mechanistic probes.

Phosphatidylcholines (1-O-alcoxy-2-amino-2-desoxy-phosphocholines and 1-pyrene-labeled analogs) were synthesized and used to examine interactions with recombinant human PAF-acetylhydrolase (PAF-AH), an enzyme purified from plasma, and with macrophage-like U937 cells. Novel phosphatidylcholines containing a sn-2-carbamoylester group such as 1-O-hexadecyl-2-desoxy-2-amino-methylcarbamoyl-2-methyl-rac-glycer o-3-phosphocholine 11 were found to act as site-specific irreversible enzyme inhibitors with Ki-values up to 83 (K(irev)) and 177 (Ki(inact)) microm. The compounds exhibit only marginal inhibition of Ca2+-dependent phospholipases. Kinetic data show that phosphocholines carrying a terminal sn-1-pyrene moiety inhibit PAF-AH activity with an effectivity similar to analogs with an aliphatic chain. 1-O-Decyloxy-[10-(4-pyrenyl)-butoxy]-2-desoxy-2-amino-carbamoyl-me thyl-rac(-glycero-3-phosphocholine 13 could be used for enzyme labeling and to demonstrate an inhibitor-enzyme stoichiometry of 0.7:1. At 8 degrees C, the compound accumulated in the membranes of U937 cells, at 37 degrees C it was internalized into intracellular compartments. Structure activity studies in a mixed micelle assay indicated that the inhibition power of reversible and irreversible inhibitors increases along with the (sn)-1-chain length similar to the structure-dependent binding of ether phospholipids to the PAF-receptor. Unlike the situation at the (sn)-1-position, increasing chain length at the sn-2-position, or an alkyl branching of the glycerol backbone significantly reduced the inhibitory potency.

1-Alkyl-2-acetylglycerophosphocholine Esterase↗

Effects of energy and purines in the diet on proliferation, differentiation, and apoptosis in the small intestine of the pig.

The effects of the energy and purine content in the diet on mucosal cell mitosis, function, and apoptosis in the small intestine of pigs were investigated in two experiments. In experiment I, three groups of five pigs were first fed a commercial diet that contained 9.1 MJ metabolizable energy (ME) per kilogram dry matter (DM) and 16.4% crude protein. It was followed by the experimental diets for 5 days each starting with an energy deficit (5.8 MJ ME/kg DM; 7% crude protein) followed by a high-energy diet with low purine content (14.1 MJ ME/kg DM; 13.6% crude protein; 460 mg purines/kg), or alternatively an isocaloric high-purine diet (2,160 mg purines/kg). During experimental periods, blood samples were drawn daily through catheters for insulin-like growth factor-I (IGF-I) determination. The animals were killed at the end of the corresponding feeding period and gut tissue samples were collected. In tissue samples, IGF-I and parameters for the characterization of mitosis (thymidine kinase [TK], proliferating-cell nuclear antigen [PCNA]) and differentiation (RNA content, alkaline phosphatase, sucrase) were measured. The degree of apoptosis was determined histologically. In experiment II, five pigs were fitted with simple T-cannula at the distal jejunum. They were fed the three experimental diets consecutively for 7 days each and sucrase and alkaline phosphatase were measured in digesta (four samples daily). IGF-I in blood but not in tissue clearly responded to the energy content of the diet with a decrease during the deficit and an increase in the two high-energy groups. However, purines had no additional effect on IGF-I. TK, PCNA, and gut weight showed an energy effect on mitosis, which was paralleled by increased peripheral IGF-I. Purines led to a further increase of mitosis, but IGF-I and gut weight were not increased. The degree of mitosis was correlated with higher activities of sucrase and alkaline phosphatase and also with the number of apoptotic cells. The enzyme activity increased from the deficit to the high-energy group and was further elevated due to purines. The results from experiment II also confirm these effects of energy and purines, because the activities of the enzymes in digesta decreased during energy deficit, but increased due to energy and in addition to purines.

Alkaline Phosphatase↗

Apoptosis caused by oxidized LDL is manganese superoxide dismutase and p53 dependent.

Oxidized low density lipoprotein (oxLDL) induces apoptosis in human macrophages (Mphi), a significant feature in atherogenesis. We found that induction of apoptosis in Mphi by oxLDL, C2-ceramide, tumor necrosis factor alpha (TNF-alpha), and hydrogen peroxide (H2O2) was associated with enhanced expression of manganese superoxide dismutase (MnSOD) and p53. Treatment of cells with p53 or MnSOD antisense oligonucleotides prior to stimulation with oxLDL, C2-ceramide, TNF-alpha, or H2O2 caused an inhibition of the expression of the respective protein together with a marked reduction of apoptosis. Exposure to N-acetylcysteine before treatment with oxLDL, C2-ceramide, TNF-alpha, or H2O2 reversed a decrease in cellular glutathione concentrations as well as the enhanced production of p53 and MnSOD mRNA and protein. In apoptotic macrophages of human atherosclerotic plaques, colocalization of MnSOD and p53 immunoreactivity was found. These results indicate that in oxLDL-induced apoptosis, a concomitant induction of p53 and MnSOD is critical, and suggest that it is at least in part due to an enhancement of the sphingomyelin/ceramide pathway.

Apoptosis↗

Modified low density lipoprotein delivers substrate for ceramide formation and stimulates the sphingomyelin-ceramide pathway in human macrophages.

Exposure of human blood monocytes derived macrophages to modified (oxidized or acetylated) LDL induced a approximately 40% elevation (60 pmol/10(6) cells) of the endogenous level of the sphingolipid ceramide. A rise of both neutral and acidic SMase activity was found after treatment with oxidized LDL (250 and 80%), while addition of acLDL stimulated only the neutral enzyme (280%). Sphingo(phospho)lipids from LDL were transferred to the cell membrane and distributed into intracellular compartments as observed with acLDL containing BODIPY-FL-C5-SM. Quantitation of ceramide after the addition of [3H-N-acetyl]- or BODIPY-FL-C5-SM-labeled modified LDL (27 microg/ml) to the cell culture medium indicated that approximately 210 pmol CA/10(6) cells was generated from exogenous (ox/acLDL) SM. These results demonstrate a stimulation of the sphingomyelin-ceramide pathway by modified LDL utilizing primarily exogenous (LDL-derived) substrate and suggest that the effects of modified LDL are at least partially due to an increased level of the messenger ceramide.

Boron Compounds↗

Oxidized low density lipoprotein stimulates protein kinase C (PKC) activity and expression of PKC-isotypes via prostaglandin-H-synthase in P388D1 cells.

Treatment of P388D1 macrophage-like cells with oxLDL enhanced protein kinase C (PKC) activity in cell extracts. Similar effects were induced by acetylated LDL (acLDL) and maleylated albumin (malBSA). Treatment with oxLDL, acLDL and malBSA was also accompanied by increased production of prostaglandins as well as by an enhanced level of prostaglandin H synthase 2 (cyclooxygenase 2, COX 2). Modified (lipo)proteins differentially affected the levels of individual cytosolic PKC-isoenzymes. Effects of oxLDL on PKC activity/expression were abrogated by indometacin, by pre-exposure to the dual lipoxygenase/cyclooxygenase inhibitor ML 3000 and by treatment with N-(2-cyclohexyloxy-4-nitrophenyl)methane sulfonamide (NS-398). These results suggest a predominantly COX 2-dependent and isotype-specific effect of modified (lipo)proteins on PKC.

Acetates↗

Stimulation of mitogen activated protein kinase by LDL and oxLDL in human U-937 macrophage-like cells.

Mitogen activated protein kinase in extracts of U-937 macrophage-like cells was stimulated by LDL and oxLDL. A maximum value (161% of the basal phosphotransferase activity) was obtained after 6 min exposure to oxidized LDL (27 microgram/ml) using APRTPGGRR peptide substrate. The activatory effect was more pronounced (LDL 181%, oxLDL 201%) when MAPK of stimulated cells was immunoprecipitated with anti-p42MAPK antibodies and phosphotransferase activity was assayed in immune complexes. Stimulation produced by oxLDL was inhibited by poly I, fucoidan, dextran sulfate and by the MAPKK inhibitor PD 098059 but not by PMA-mediated depletion of PKC or by pre-treatment with chloroquine or with pertussis toxin. These results suggest a direct mitogenic effect of LDL which, in the case of oxLDL, is dependent on scavenger receptor ligation but not on G-protein mediated or PKC-dependent signal transduction.

Amino Acid Sequence↗

Oxidized low-density lipoprotein stimulates protein kinase C (PKC) and induces expression of PKC-isotypes via prostaglandin-H-synthase in P388D1 macrophage-like cells.

Treatment of cells with LPS-free oxLDL significantly enhanced protein kinase C (PKC) activity in cell extracts from P388D1 macrophage-like cells as determined by phosphorylation of histone H1 or Ac-MBP[4-14] substrate peptide. This effect was abolished by the PKC inhibitors H-7 and bisindolylmaleimide I while pertussis toxin failed to block stimulation. The phosphotransferase activity was also increased by acetylated LDL (acLDL) and maleylated albumin (malBSA), the oxLDL effect was inhibited by chloroquine which also blocked oxLDL-induced stimulation of tyrosine kinase activity. Marginal stimulation of PKC activity was observed when lipid extracts from oxLDL were used, indicating that uptake via scavenger receptors (SR) is mandatory. Polyinosinic acid (poly I) exhibited a concentration-dependent inhibition of the oxLDL-induced effect suggesting that SR II/I but not CD36 interactions are critical to PKC activation. Modified (lipo)proteins increased the concentration of diacylglycerol and differentially affected the levels of individual PKC isoenzymes predominantly in the cytosolic fraction. Changes of activity induced by oxLDL could be primarily assigned to alterations of the activities and levels of the isoenzymes beta and delta. Treatment with oxLDL, acLDL, and malBSA was also accompanied by increased production of prostaglandins as well as by an enhanced level of cyclooxygenase 2 (COX 2) as determined by Western blot analysis. Effects (correction) of oxLDL on PKC activity/expression was suppressed by the cyclooxygenase, 2,2-dimethyl-6-(4-chlorophenyl)-7-phenyl-2,2-dihydro-1H-pyrrolizine-5- ylacetic acid (ML 3000), and by treatment with the specific COX 2-inhibitor N-(2-cyclohexyloxy-4-nitrophenyl) methane-sulfonamide (NS-398). These results indicate that oxLDL, acLDL, and malBSA exhibit a COX 2-dependent and isotype specific effect on PKC in P388D1 cells following uptake via SR II/I and subsequent lysosomal degradation.

Animals↗

Relationships between IGF-I, cortisol, and osteocalcin in peripheral plasma of growing pigs.

Osteocalcin is a bone specific protein which is secreted by mature osteoblasts and is measurable in peripheral blood plasma. In growing female pigs (n = 6) osteocalcin was measured in daily blood samples between an age of 125 to 238 days and the values were compared to IGF-I and cortisol. Mean concentrations of osteocalcin were 158 +/- 2.7 ng/ml and the concentrations were significantly correlated to those of IGF-I (r = 0.12 p < or = 0.01 n = 581) and cortisol (r = 0.13 p < or = 0.01 n = 503). Both hormones and less pronounced osteocalcin revealed a rhythm-like pattern with a period of 10-14 days. In addition, rhythm-like variations with a period of about 5 weeks are visible. The highest correlation was found between IGF-I and cortisol both within the animals (r = 0.28, n = 508, p < or = 0.001) and between the individuals (r = 0.94, n = 6, p < or = 0.01). Thus a dialog between IGF-I and cortisol may be assumed. A possible physiological role is discussed.

Age Factors↗

Influence of anticoagulants on the level of soluble HLA class I and class II antigens measured in blood samples.

The existence of soluble forms of HLA class I and class II antigens in human serum is well established and altered concentrations of these serum proteins have been described to be associated with various diseases. Since soluble HLA antigens (sHLA) can be measured both in serum and plasma samples, we investigated whether anticoagulant treatment influences the determined levels of soluble HLA class I (sHLA-I) or soluble HLA-DR (sHLA-DR). Analyzing paired samples of serum and plasma of 40 healthy individuals we found significantly lower serum levels of sHLA-DR (0.31 +/- 0.15 ng/ml) compared to EDTA plasma levels (0.58 +/- 0.20 ng/ml). By contrast, serum levels of sHLA-I (0.89 +/- 0.74 micrograms/ml) were only slightly lower than EDTA plasma values (0.95 +/- 0.86 micrograms/ml), a situation similar to that of sIL-2R and sCD4 levels. Further experiments intended to clarify the reasons of the reduced sHLA-DR serum levels revealed that (i) the blood storage time before centrifugation did not influence the sHLA-DR level, (ii) treatment of serum with anticoagulant did not augment the measured sHLA-DR concentration, and (iii) the recovery of spiked sHLA-DR was significantly lower when added to native blood than to serum or anticoagulant-treated blood. These results suggest that sHLA-DR is partly removed by the process of blood clotting thus resulting in diminished sHLA-DR serum levels.

Anticoagulants↗

Glucocorticoid receptors in the pig intestinal tract and muscle tissue.

Due to the known differences of protein turnover in skeletal muscle (slow turnover) and intestinal tract (rapid turnover), these tissues were analysed for the free glucocorticoid receptor (GR) concentrations. Cytosol was prepared from different parts of pig intestinal tract and two different muscles (longissimus thoracis: ML; trapezius: MT) under either energy restriction (5.8 MJ ME; 4 kg/d) or sufficient supply (14.0 MJ ME; 4 kg/d) for 4 days before sacrification. Care was taken that all samples were obtained within 15 min post-mortem and that premortem treatment did not elevate circulating cortisol. A Scatchard plot was performed both for muscle and gut tissue and the KD (0.4 +/- 0.04 nM; 0.7 +/- 0.02 nM) as well as Bmax (0.2 +/- 0.01 nM; 1.2 +/- 0.02 nM) pointed to specific binding. GR were generally high in intestinal tract irrespective of the anatomical site, but were significantly (P < or = 0.001) higher under energy restriction compared to adequate feeding (103.2 vs. 76.5 fmol/mg protein). GR was much lower in muscle tissues and tended to be slightly higher in MT (with high proportion of red fibres) compared to ML (white fibres) (12.4 vs. 9.1 fmol/mg protein). GR in muscles was not significantly influenced by energy. The tissue specific differences in GR provide the explanation for the known differences in the protein turnover rate.

Animals↗

Increased serum level of total homocysteine in CAPD patients despite fish oil therapy.

It has been shown that serum total homocysteine (HC) is a risk factor for vascular disease which characterizes endothelial damage. The incidence of vascular disease is increased in continuous ambulatory peritoneal dialysis (CAPD) patients. Our aim was to investigate: (1) whether concentration of HC correlates with atherosclerotic and inflammatory events, and (2) if fish oil therapy can retard the disturbance in lipid metabolism which promotes atherosclerosis. Fourteen patients with various degrees of impaired peritoneal clearance and lipid metabolism were observed. In all patients the serum HC was elevated. Seven patients were treated with fish oil for three months. The results indicate an average increase of HC (+18%), total cholesterol (+6.6%), aggregation of erythrocytes (+9%), and an average decrease of dialysate-to-plasma creatinine (D/P) ratio (-7%), deformability of erythrocytes (-8%), and normalization of elevated soluble interleukin-2 receptor (sIL-2R) values. Regression analysis of all data demonstrated a significant correlation between HC and parameters of lipid metabolism and hemorheology. There were no significant correlations between HC and peritoneal function and serum cytokine levels. We conclude that the treatment in CAPD patients with fish oil did not improve the lipid metabolism disturbances in atherosclerosis and peritoneal function. Elevated HC confirms the progression of the disease.

Adult↗

Short-term culture of surface-biotinylated cells: application in non-radioactive analysis of surface protein shedding.

As an alternative to radiolabelling, cell surface biotinylation followed by immunoprecipitation and enhanced chemiluminescence detection can be used to characterize membrane-bound surface proteins. Since many membrane proteins are known to be shed from the surface, we tested whether surface biotinylation can also be used to characterize these soluble proteins released into culture supernatant. First, we found that biotinylated cells could be cultured for up to 7 days without any influence on viability and 3H-thymidine incorporation. Moreover, the PHA response (3H-thymidine incorporation) of peripheral blood mononuclear cells was affected only by high concentrations of the biotinylation reagent N-hydroxysuccinimidobiotin and the LPS response (cytokine release) was unaffected by surface biotinylation. Second, we were able to monitor the shedding of biotinylated HLA class I antigens from Balm 1 cells by immunoprecipitation, SDS-PAGE, and enhanced chemiluminescence detection on blots. Membrane-bound HLA class I antigens disappeared from the cell surface during 5-day culture and, simultaneously, two forms of soluble HLA class I heavy chains (36 and 44 kDa) accumulated in the culture supernatant. Thus, short-term culture of surface biotinylated cells can be used in the analysis of the shedding processes of leukocyte antigens.

Biotin↗

Consequences of selection on muscle composition. A comparative study on gracilis muscle in wild and domestic pigs.

European domestic pigs are derived from the European wild pig by genetic selection and differ in their muscular-growth ability. Thus, it was the aim of this study to investigate the consequences of genetic selection on muscle composition and fibre size in the gracilis muscle. Fibre typing based on the ATPase reaction revealed that this muscle in wild pigs is composed mainly of type-I and -IIa fibres, whereas, in domestic pigs, type-IIb fibres were predominant. For all fibre types, domestic pigs had about threefold larger fibres than wild pigs. Type-I fibres tended to be the smallest fibres in domestic pigs, but the largest fibres in wild pigs, which may be due to long-term training effects in the free-ranging animals. Giant fibres as an indicator of degeneration were obvious only in the domestic-pig samples. Their occurrence, as well as the larger fibre size and the predominance of type-IIb fibres in domestic pigs, may be ascribed to high concentrations of growth hormone. It is concluded that selection for muscular growth may favour metabolic dysbalances within the muscle and, therefore, degenerative processes.

Adenosine Triphosphatases↗