PubMed Health⌕ Search

Biomedical subjects

G Kolb

Publications and source records attributed to G Kolb.

At least 37 records · Page 2Linked to original sources

Hemophan versus hemophan--a philippic against the suggestion of constant membrane quality.

All statements referring to biocompatibility of dialyzers depend on the suggestion of a constant and reproducible structure of the investigated membrane material. The data presented here strike this concepts in case of hemophane. Two commercially available hemophane dialyzers, the GF MC 120 (Gambro) and the MO 450 (SMAD) membranes, were compared. Significant differences could be seen in the induction of leukopenia and leukocyte sequestration reaction within patients lungs, but also in capacity to influence granulocyte oxidative metabolism and release of granular enzymes. According to these data it seems questionable whether hemophane is a membrane material with constant structure and quality normally expected for products bearing trade names. Excluding other differences (like surface-area or sterilization method) variable amounts of DEAE substituents and/or an inconstant distribution of the DEAE groups within the membranes may be the most possible reason responsible for the differences found. The study underlines the urgent need of an exact physico-chemical characterization of dialyzer membranes and is therefore a challenge for free publication of such basic data by the producers.

Biocompatible Materials↗

Regulation of neutrophil functions by elastase-generated IgG fragments.

IgG is split by neutrophil elastase into Fc and Fab fragments. These IgG fragments influence the functions of stimulated neutrophils such as chemotaxis, oxidative burst, and enzyme release. FMLP stimulated leukocyte chemotaxis is specifically inhibited by the elastase generated Fc fragments. Seven nmol Fc/10(6) PMN totally inhibit the chemotaxis stimulated by 16 to 125 nM FMLP. Native IgG and Fab fragments show no effect. FMLP-stimulated superoxide anion generation is specifically inhibited by Fc fragments with half maximal inhibition by 1.2 nmol/10(6) PMN. The generation of hydrogen peroxide is concomitantly stimulated, resulting in a superoxide dismutase-like effect. FMLP-stimulated elastase and myeloperoxidase release are enhanced by Fab fragments (10 nmol/10(6) PMN) to 206 and 155%, respectively, of reference values by 25 nM FMLP, while Fc and native IgG stimulate to a less extent. Consequently, elastase-generated Fc fragments have an inhibitory effect on inflammation by reducing chemotaxis and oxidative burst of stimulated neutrophils. The release stimulating activity of Fab fragments results in an up-regulation of elastase induced IgG degradation.

Chemotaxis, Leukocyte↗

Inhibition of neutrophil chemotaxis by elastase-generated IgG fragments.

IgG1 is cleaved in vitro by granulocyte elastase into Fc and Fab fragments. The elastase-specific Fc fragment has been previously detected in vivo. Biological activity of the fragments has been described in modulating neutrophil oxidative metabolism and enzyme release. To investigate further effects granulocyte chemotaxis (CT) was tested. The CT was assayed in Boyden chambers and the chemotactic index (CI) was calculated which represents the mean distance travelled by the activated cells. Stimulation of leucocyte CT by casein, activated serum and FMLP gives maximal values of delta CI = 46.7, 26.4 and 7.2 microns, respectively. Native IgG1 and the elastase-produced IgG fragments do not stimulate leucocyte CT. FMLP-stimulated CT is specifically inhibited by the elastase-produced Fc fragments. Addition of 7 nmol Fc to stimulus concentrations of 16 to 125 nM FMLP results in total inhibition of chemotaxis demonstrated by CI values which are lower than those for unstimulated cells. The inhibition of CT is concentration dependent in the range of 2 to 7 nmol Fc/10(6) PMN. Number and affinity of FMLP receptors are not influenced by Fc fragments, so Fc binds neither to FMLP nor the FMLP receptor. CT stimulated by casein shows a large portion of chemokinesis. Only at suboptimal casein concentrations do Fc and IgG have an inhibitory effect on CT (0.63 mg casein/ml, 10 nmol peptide/10(6) PMN). C5a-stimulated CT is not influenced by IgG or IgG fragments which indicates that the samples are not cytotoxic. So the FMLP and casein-stimulated CT is specifically inhibited by the elastase-produced Fc fragments in a low concentration range.

Binding Sites↗

Polymorphonuclear neutrophil chemiluminescence in periodontal disease.

The oxidative metabolism of polymorphonuclear leukocytes (PMNs) in rapidly progressive periodontitis (RPP, n = 19), localized juvenile periodontitis (LJP, n = 10), adults periodontitis (AP, n = 10) and healthy control subjects (HS, n = 39) was compared using the luminol chemiluminescence (CL) method. Possible influences of the isolation procedure on CL were circumvented by replacing starch with Haemaccell 35 as the sedimentation agent. In all groups, CL was significantly higher with autologous serum than with normal pooled serum (NPS) and there was a significant linear relationship between the two values. Comparisons of both pooled and autologous serum between patient groups and their matched controls were not statistically significant. There was a suggestion of serum-induced defects in 2 patients and 1 control. The range of individual values within each group was very heterogeneous, probably because of the many factors that are able to influence both the production of CL and the basal levels of CL observed.

Adolescent↗

Gingival crevicular fluid elastase-inhibitor complex: correlation with clinical indices and subgingival flora.

This investigation analyzed, in a cross-sectional study, the possible relationship between gingival crevicular fluid (GCF) elastase-like protease (ELP) levels and the periodontal clinical parameters or the presence of specific bacteria in subgingival plaque. A total of 388 periodontal sites from 8 adult periodontitis patients were examined for plaque index (PII), gingival index (GI), pocket depth (PD) and alveolar bone loss (ABL). GCF ELP levels were determined as ELP alpha-1 protease inhibitor (ELP-alpha 1-PI) complex levels with a commercially available ELISA. Subgingival plaque samples were tested for the presence of Bacteroides gingivalis, B. intermedius and Actinobacillus actinomycetemcomitans by indirect immunofluorescence (IF) microscopy. GCF ELP-alpha 1-PI levels were then correlated with clinical periodontal indices and proportions of IF-positive bacteria per site. Statistically significant positive correlations were found between GCF ELP-alpha 1-PI concentrations and subgingival Bacteroides proportions. When the sites examined were analyzed depending on the level of each clinical parameter, the levels of these correlations changed. A. actinomycetemcomitans correlated highly (r = 0.716) with ABL for sites with low GI score. The correlations between GCF ELP-alpha 1-PI and B. gingivalis (r = 0.642) or B. intermedius (r = 0.774) were the highest for ABL less than or equal to 20% and PD less than or equal to 3 mm, respectively. The strong association between GCF ELP-alpha 1-PI concentrations and subgingival bacteria previously associated with advancing periodontitis indicates that measurement of GCF ELP-alpha 1-PI concentrations may be useful in the evaluation of periodontal sites, especially those with very little or no tissue destruction.

Actinobacillus↗

The role of membrane contact in hemodialysis-induced granulocyte activation.

Besides complement, interleukin-1 and beta 2-microglobulin, activation of granulocyte function has been found out to be the major parameter in the determination of dialyzer biocompatibility. Unfortunately, the term 'granulocyte activation' has been widely used without restriction to distinct functions or definition of the related metabolic pathways. Therefore, the present study aims to elucidate the influence of hemodialysis (HD) pure membrane contact on granulocyte O2- release. The activation of this metabolic pathway which is also known as the so-called oxidative burst has been generally accepted as the initial signal in the granulocyte inflammatory activation cascade. Two membranes which have been previously shown to differ most widely in biocompatibility, cuprophane and polysulfone, have been selected. During HD with cuprophane the stimulatable O2- release was initially decreased, whereas polysulfone HD was effectless on granulocyte oxidative metabolism. The inhibition was due to a prestimulation of the granulocyte by pure interaction of the cell with the surface of the dialyzer membrane which could be proved by evaluating a plasma-free model. Activation of oxidative metabolism was strongly correlated with granulocyte adherence, showing a significantly higher rate of cell adherence in the case of cuprophane. Nevertheless, sheer forces were able to prevent granulocytes becoming adherent directly to the dialyzer membrane, but sheer forces were not able to influence the oxidative burst reaction, suggesting that the membrane-related stimulation of oxidative metabolism occurs immediately after a very short, possibly a single and hasty contact of the cell to the surface of the dialyzer membrane.

Aged↗

Hemodialysis and blood coagulation: the effect of hemodialysis on coagulation factor XIII and thrombin-antithrombin III complex.

Blood membrane interaction during hemodialysis (HD) regularly leads to stimulation of leukocyte function and related release of granular enzymes. The present study aimed to investigate the possible influence of an HD-induced release of granulocyte elastase on blood coagulation. Therefore a highly sensitive substrate of polymorphonuclear elastase, the plasma coagulation factor XIII and its subunits A and S were determined in the course of HD. Consumption of both subunit A and S have been previously shown to be due to proteolysis by elastase, whereas a decrease in subunit A will be typical for thrombin activation. Furthermore, the thrombin-antithrombin III complex (TAT) acting as a predisposition parameter for thrombotic events was measured during HD treatment. Apart from a virtual fall in factor XIII total activity simulated by heparin, no significant HD-induced consumption of factor XIII could be observed. There was also no indication of an elastase- or thrombin-related change in subunit concentrations. Predialysis values of the TAT complex were generally elevated in HD patients, but only patients with acute renal failure showed a constant increase of TAT during HD. These findings suggest that HD patients are exposed to a latent activation of coagulation resulting in an elevated thrombogenetic risk mainly due to the underlying disease. An additional coagulatory stimulation by the HD procedure seems to be restricted to cases of acute renal failure.

Acute Kidney Injury↗

Protein C degradation in vitro by neutrophil elastase.

Purified protein C is completely degraded into small peptides by in vitro incubation with purified elastase. Protein C is a rather sensitive substrate as degradation is already accomplished by low elastase concentrations (molar enzyme-to-substrate ratio 1:510) and short incubation periods (5 min-60 min). Protein C in a PPSB coagulation factor concentrate is equally degraded and similar split products are detected by blotting techniques. The protein C activity (measured by a chromogenic substrate) is faster reduced by elastase than the protein C concentration (measured by an ELISA). Incubation of normal plasma with high elastase concentrations (5.7 nmol/ml plasma) results in reduction of the protein C band while no split products are detectable. The pathophysiologic significance of the effects of elastase on protein C remains to be elucidated.

Blood Coagulation Factors↗

[Sulcus fluid in periodontal diagnosis. A review].

In the present review, the composition of the gingival crevicular fluid (GCF) as well as its important role in the diagnosis of periodontal disease have been discussed. Furthermore, the different sampling methods and the subsequent analytical procedures have been described. Some of the GCF-components, such as elastase, prostaglandin, arylsulphatase and beta-glucuronidase, are examined for their use as suitable markers of future disease activity. At the present time, the interest of research is focussing on the host-parasite interaction, the prediction of disease activity, and the identification of risk groups of patients. Therefore, GCF is considered a valuable research subject and a possible diagnostic marker.

Gingival Crevicular Fluid↗

Investigation of the PMN chemotaxis in periodontal disease.

The chemotactic responses of peripheral polymorphonuclear leukocytes in 36 patients with rapidly progressive periodontitis (RPP) were compared to responses in 15 patients with localized juvenile periodontitis (LJP) and 10 patients with adult periodontitis (AP). In the RPP group, 13 (36%) patients exhibited reduced chemotactic activity and 7 (19%) exhibited activity. Compared to this, 12 (80%) of the LJP patients displayed reduced chemotactic activity. Among the AP-patients 4 (40%) showed altered chemotactic activity including 1 (10%) with reduced chemotactic activity and 3 (30%) with increased activity. These results suggest that depressed chemotaxis is greatest in LJP, intermediate in RPP and least in AP.

Adolescent↗

Latent inhibition of granulocyte function by cyclosporine A.

According to the literature, Cyclosporine A (CsA) is said to suppress specifically the activity of T and B cells. A significant influence on phagocyte function has been neglected. However, aggravated courses of bacterial and fungal infections have been frequently reported under the treatment with CsA, suggesting that a latent depression of phagocytic activity may possibly occur under clinical circumstances. Therefore, this study set out to assess whether CsA can also change granulocyte function under therapy conditions or not. Thirty-seven patients, 3 months-10 years after kidney transplantation being under immunosuppressive treatment with CsA + Prednisolone (n = 25), Azathioprine + Prednisolone (n = 6) and under Prednisolone alone (n = 6) underwent the study. 18 healthy persons served as a normal control group. Granulocyte function was tested ex vivo by chemiluminescence (CL) after stimulation with phorbolmyristate acetate (PMA) and with zymosan (zym) activated autologous or pool-serum. The obtained data were correlated to corresponding serum or plasma levels of CsA, human leukocyte elastase (HLE) and neopterin. Comparing the three therapy groups with the healthy control and with each other no differences could be seen in median CL values; but there was a significant (p = 0.05) negative correlation between CsA blood levels and maximum CL values of PMN. Such inhibition of CL could be calculated for zym but not for PMA stimulated PMN; suggesting that the CsA mediated inhibition of granulocyte function may be only partial and restricted to phagocytosis. In addition, a positive correlation between serum levels of human leukocyte elastase (HLE) and neopterin could be found. This indicates a simultaneous influence of CsA on both PMN and macrophages.

Adult↗

Stimulation of neutrophil elastase and myeloperoxidase release by IgG fragments.

Human leucocyte elastase (HLE) cleaves IgG into Fab and Fc fragments. The Fc fragment bears an elastase-specific antigen and has previously been reported to be found in synovial fluid during rheumatoid arthritis. In addition, biological activity of elastase-specific Fc fragments has been described in modulating granulocyte oxidative metabolism. To investigate further regulatory effects of the elastase-induced IgG cleavage products, we tested the elastase and myeloperoxidase release of granulocytes. IgG fragments induce no enzyme release of unstimulated neutrophils. But elastase and myeloperoxidase release of cytochalasin b/FMLP-treated neutrophils is stimulated in a dose-dependent manner by the Fab fragments. The extent of stimulation depends on stimulus concentration and is at its maximum for low (e.g. 2.5 x 10(-8) M) FMLP concentration. Ten nanomoles Fab/4 x 10(6) PMN augment elastase release to 206% and myeloperoxidase release to 155% after pre-stimulation with 2.5 x 10(-8) M FMLP. Fc fragments stimulate elastase release to 162% but no MPO release. Untreated IgG1 and analog Fab and Fc fragments produced by papain cleavage react similarly. Elastase-generated IgG fragments may therefore up-regulate their concentration by simulating elastase release. The concomitantly stimulated release of myeloperoxidase may influence bactericidal activity and termination of oxidative burst.

Cytochalasin B↗

Inhibition of neutrophil oxidative burst by elastase-generated IgG fragments.

IgG1 is cleaved in vitro by granulocyte elastase into Fc, Fab and Fabc fragments. The cleaved products have been isolated by a series of chromatographic procedures and characterized with regard to molecular mass and isoelectric point. The Fc fragment has been previously shown to express at its N-terminal site a neoantigen which is specific for elastase (Kolb, G., Eckle, I., Heidtmann, H.-H., Neurath, F. & Havemann, K. (1988) Scand. J. Rheumatol. S75, 179-189). The production of superoxide radical anions in prestimulated neutrophils is inhibited dose-dependently by the elastase-generated Fc and Fabc fragments. Native IgG1 and Fab fragments show no inhibitory effect, nor do papain-generated Fc fragments. The degree of inhibition depends on the stimulus applied: half-maximal inhibition is obtained by 6 microM Fc after stimulation with 4 beta-phorbol and 2.4 microM after stimulation with fMet-Leu-Phe; neutrophils stimulated with serum-activated zymosan are not inhibited by IgG fragments. The effect of Fc is purely cellular; no inhibition of O2 generation can be produced by applying Fc to the xanthine oxidase/xanthine system. The fragments have no effect on the activation or activity of crude NADPH oxidase, which is the O2-forming enzyme system of neutrophils. Possible mechanisms are discussed by which Fc acts on stimulated neutrophils.

Dose-Response Relationship, Drug↗

High affinity binding of immunoglobulin G fragments to human polymorphonuclear leukocytes.

Human neutrophil elastase splits IgG into Fc, Fabc, and Fab fragments. The Fc and Fabc fragments bind with high affinity (KD 2.1 and 2.5 nM respectively) to a small number of binding sites (1175 and 1370 sites/cell respectively) on untreated human polymorphonuclear leukocytes. Molecular mass determination of the binding site by crosslinking of Fc fragments to the neutrophils followed by SDS electrophoresis yields one band corresponding to a molecular mass of 67 kDa for the binding site. Incubation of neutrophils with rIFN-gamma (50 ng/ml, 18 h, 37 degrees C) enhances the expression of binding sites by about 6 fold to about 14,500 sites/cell, while the binding affinity and the molecular mass of the ligand receptor complex remain constant. By comparison with known affinities of leukocyte Fc receptors it is concluded that IgG fragments bind to the high affinity FcRI receptor of human neutrophils.

Cells, Cultured↗

Kinetics of pulmonary leukocyte sequestration in man during hemodialysis with different membrane-types.

Although it has been suggested that pulmonary sequestration of leukocytes could account for membrane-dependent white blood cell depletion in HD, direct evidence in patients is still lacking. Therefore a study was initiated to test whether and how leukocytes distribute in the lung circulation during HD with different membranes. Thirteen patients suffering from chronic renal failure underwent lung scintigraphy during HD with cuprophane (n = 3), hemophane (n = 8) and polysulfone (n = 2) lowflux capillary dialyzers. Isolated autologous leukocytes were labelled with 99m-Technetium and reinfused before starting HD. Distribution of leukocyte related activity was registered by lung scintigraphy. In comparison to normal lung scintigraphy performed without HD, an impressive redistribution peak was demonstrated 10-20 min after the start of HD with cuprophane and also to a lesser extent with hemophane. When HD was performed with polysulfone the decrease in activity was delayed but no real redistribution was obtained. In accordance with other phenomena, such as peripheral leukopenia and changes in granulocyte oxidative metabolism, pulmonary sequestration of leukocytes takes place in man in the initial phase of HD and appears to be strongly dependent on the type of membrane.

Humans↗