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C Tagesson

Publications and source records attributed to C Tagesson.

At least 163 records · Page 9Linked to original sources

Association of some enterobacteria with the intestinal mucosa of mouse in relation to their partition in aqueous polymer two-phase systems.

The association of enterobacteria with mouse intestinal mucosa has been investigated by pumping heat-killed, radioactively-labelled bacteria through the gut lumen in vitro. Approximately 20 cm of the small intestine proximal to the ileo-caecal valve was rinsed, excised and maintained in an organ bath. By using two different bacteria labelled with different radioactive isotopes, the relative association of the two bacterial pumped through the same piece of gut was determined. Cross-labelling showed that choice of isotope did not affect the association. Salmonella typhimurium 395 MR10 was used as reference and the other bacteria investigated related to it. S. typhimurium MR10 and Escherichia coli O 14 K7, which are relatively lipophilic, showed greater association than S. typhimurium 395 MS and E. coli O 111 K58, which are more hydrophilic. Prolonged incubation of bacteria with the length of intestine in vitro leading to damage of the brush border of the mucosal epithelium enhanced the association of the bacteria. These data suggest that similar physico-chemical surface properies govern the association certain enterobacteria to the intestinal mucosa as in phagocytosis with professional phagocytes.

Acetylglucosaminidase↗

Surface-charge characteristics of smooth and rough Salmonella typhimurium bacteria determined by aqueous two-phase partitioning and free zones electrophoresis.

Aqueous biphasic partitioning of Salmonella typhimurium S and R bacteria in a system containing 6.2 per cent (w/w) dextran 500 and 4.4 per cent (w/w) poly(ethyleneglycol) 6000 (PEG) was similar to the partition of the corresponding surface lipopolysaccharide (LPS). Further partition analysis with charged PEG showed that S bacteria and their LPS exposed very little charge, whereas R bacteria and their LPS showed a conspicuous negative charge at neutral pH. Free zone electrophoresis also indicated that the S bacteria have a much lower surface charge density than the R bacteria and accordingly a different surface structure. Thus, the physico-chemical properties of the bacterial surface seem to be determined to a great extent by the characteristics of the cell surface LPS.

Cell Wall↗

Liability to hydrophobic and charge interaction of smooth Salmonella typhimurium 395 MS sensitized with anti-MS immunoglobulin G and complement.

Sensitization of smooth Salmonella typhimurium 395 MS bacteria with hyper-immune anti-MS immunoglobulin G (IgG) antibodies increased the liability to hydrophobic interaction as assessed by the affinity for a column of Octyl-Sepharose. After sensitization, the material originally eluted with 1 M (NH4)SO4 in a 0.01 M phosphate buffer (pH 6.8) was not desorbed until the ionic strength was reduced to nil, and 0.1% (vol/vol) Triton X-100 in the 0.01 M phosphate buffer was used as eluant. Furthermore, by including positively charged bis-trimethylamino-polyethylene glycol (PEG) or negatively charged bis-sulfoamino-PEG in an aqueous two-phase system of dextran T500 and PEG 6000, the partition of the IgG-sensitized bacteria was affected by either of the polymers, whereas that of the parent bacteria was not. The hydrophobic effect of IgG binding was enhanced by complement. With heat-inactivated complement, the effect of IgG was diminished. The F(ab')2 fragment showed a much lower capacity to promote a hydrophobic interaction than the complete IgG molecule.

Antibodies, Bacterial↗

Physiochemical consequences of opsonization of Salmonella typhimurium with hyperimmune IgG and complement.

Partition in an aqueous, two-polymer phase system containing dextran and polyethylene glycol was employed to investigate the physico-chemical changes inflicted upon the cell surface of a smooth strain of Salmonella typhimurium by the binding of antibody IgG and complement. The minimum antibody concentration for increased phagocytosis in vitro was approximately the same as that for a significant change in two-phase partition, ca 8000 mol/bacterium, whereas a lower concentration, less than 4000 mol/bacterium, was sufficient to increase clearance in vivo. After pepsin digestion of IgG, larger quantities, ca 35,000 mol/bacterium, was required for opsonization and to influence two-phase partition. Addition of normal rabbit or guinea-pig serum to bacteria sensitized with a low concentration of antibody IgG conspicuously enhanced phagocytosis and affinity for the dextran-rich phase. The results show that binding of 8000 IgG antibody molecules or more to smooth S. typhimurium generates physicochemical changes of the bacterial surface which from studies on S leads to R mutations are known to correlate with hydrophobicity, negative charge and phagocytosis. Such results support the view that one important function of IgG antibody and complement is to decrease the hydrophilic properties of the bacteria which is thought to be a prerequisite for phagocytosis.

Binding Sites, Antibody↗

Physicochemical consequences of opsonization: perturbation of liposomal membranes by Salmonella typhimurium 395 MS opsonized with IgG antibodies.

When phagocytosis-resistant Salmonella typhimurium 395 MS bacteria sensitized with anti-MS IgG antibodies were incubated with liposomes composed of phosphatidylcholine, cholesterol, and dicetylphosphate, a previously sequestered liposomal marker (4-methylumbelliferylphosphate) was released. Unsensitized or F(ab')2-sensitized bacteria had no such effect. This perturbation was neither dependent upon negatively charged dicetylphosphate nor upon cholesterol. It was further evident that palmitoyl-poly(ethyleneglycol) caused release of the trapped marker in a similar way as sensitized bacteria. These findings demonstrate a similarity between sensitized bacteria and a hydrophobic probe and lend support to the hypothesis that the perturbation was brought about by hydrophobic interaction. The observations indicate that liposomes, like phagocytes, possess "receptor sites" for the activated part of IgG and raise the possibility that phagocytic effectors can operate in a relatively nonspecific manner.

Antibodies, Bacterial↗

On the mediation inflammatory reaction in the human gallbladder epithelium.

Human gallbladder epithelium was homogenized with a view to maintaining the integrity of subcellular components. In such homogenates, N-acetyl-beta-glucosaminidase, beta-glucuronidase, beta-galactosidase, beta-glucosidase, beta-fucosidase, beta-xylosidase, and acid phosphatase were demonstrated together with phospholipase activity. All the enzymes exhibited structure-linked latency. After discarding cellular debris from the homogenate, remaining subcellular organelles were analytically separated by density gradient centrifugation. After 100,000 g for 1 hour, particles containing acid glycosidases were recovered at a sucrose density of 1.18-1.19, whereas the mitochondrial marker enzyme succinate-reductase accumulated at a density of 1.16. The bulk of sedimentable phospholipase activity was recovered with particles sedimenting at 1.18-1.19. The results are interpreted as indicating that phosphalipase is present in lysosomes of the human gallbladder epithelium. Release of acid hydrolases, in lysosomes of the human gallbladder epithelium. Release of acid hydrolases, in lysosomes of the human gallbladder epithelium. Release of acid hydrolases, particularly phospholipase A, from the gallbladder epithelium is discussed as mediation of an inflammatory reaction in the gallbladder, i.e. cholecystitis.

Acetylglucosaminidase↗

Rapidly progressive glomerulonephritis with antibodies against glomerular basement membranes in serum and kidneys.

Four cases of rapidly progressive glomerulonephritis with similar clinical courses are presented. Examination of kidney biopsies from these patients showed severe glomerulitis with capillary necrosis, fibrin thrombi and interstitial inflammation but no vasculitis. Electron microscopy showed wrinkled capillary basement membranes which were irregularly thickened, homogenous and had an irregular fibrillar structure. No localized deposits were observed. Immunohistological examination demonstrated linear and diffuse deposition of IgG and C3 along glomerular basement membranes. Nephrectomized kidneys from these patients were eluted and shown to contain antibodies against glomerular basement membrane. These antibodies were also present in sera of three of the patients.

Adolescent↗

Formation and inhibition of lysolecithin in human gallbladder bile.

Homogenized human gallbladder epithelium was incubated at 37 degrees C with 14C-lecithin in diluted gallbladder bile. During the incubation, lecithin was transformed to lysolecithin. The reaction rate was higher at pH 4.5 than at pH 7.0. No degradation of lecithin occurred if the reaction mixture did not contain the homogenate. Lysolecithin was mixed with red blood cells in (a) diluted human gallbladder bile and (b) 0.15 M saline. The surface activity in the different systems was then assessed from the amount of hemoglobin recovered in the red cell pellet after centrifugation. In human bile, 500 mug lysolecithin/ml did not affect the amount of hemoglobin recovered whereas in saline, concentrations exceeding 25-30 mug/ml affected the red blood cells such that no hemoglobin was pelleted by the centrifugation. Lysolecithin was further studied for effect upon lecithin-3H-cholesterol-dicetylphosphate liposomes containing 14C-glucose. The surface activity of lysolecithin was assessed from the distribution of 3H- and 14C-activity after centrifugation. Although 500 mug lysolecithin/ml increased the non-sedimented 14C-activity, 5000 mug lysolecithin/ml was necessary to decrease significantly the amount of sedimented 3H-activity. The results are interpreted such that phospholipase A activity from the gallbladder epithelium, if released into the gallbladder bile, may generate lysolecithin from lecithin. However, the surface activity and, thus, the inflammatory mediating activity of lysolecithin is inhibited by components in the gallbladder bile, possibly lecithin.

Bile↗

The biochemical prerequisites for preventing pathogenic lysolecithin activity in the human gallbladder.

Human gallbladder epithelium was disintegrated to complete loss of microscopic structure and incubated at 37 degree C together with unlabelled lysolecithin and 14C-lysolecithin. During each incubation lysolecithin was degraded and stoichiometrically equivalent amounts of free fatty acids formed. The maximum rate of degradation was obtained at pH 7.0 and at 200 muM lysolecithin. With increasing amounts of gallbladder epithelial cell constituents the reaction became faster. After heating the epithelial components at 70 degrees C for 10 min the reaction was inhibited. The results suggest the presence of a heat labile lysophospholipase (phospholipase B) activity in the human gallbladder epithelium. This activity may operate to protect the gallbladder epithelium against potentially pathogenic lysolecithin activity. Its presence in the gallbladder epithelium meets the prerequisites for a local anti-inflammatory mechanism and lends further support to the hypothesis of lysolecithin as a mediator of cholecystitis.

Cholecystitis↗

On the physical-chemical effect of colostral antibody binding to Escherichia coli O 86.

Sensitization of Escherichia coli O 86 with colostrum or purified colostral sIgA antibody produces a physical-chemical change of the bacterial surface detectable as a change in partition in dextran-polyethylene glycol polymer two-phase systems. Sensitization with colostrum or sIgA reduces affinity for the dextran-rich phase. In contrast immune serum, IgG and complement increase the affinity for that phase. The results are compatible with the hypothesis that hydrophilic particles, e.g. certain strains of bacteria, are less liable to attachment to and phagocytosis by animal cells than hydrophobic particles, e.g. other bacterial strains. Sensitization with secretory IgA enhances the hydrophilicity thereby making possible an escape mechanism operating at the mucosal surfaces.

ABO Blood-Group System↗

The prerequisites for local lysolecithin formation in the human gallbladder.

Human gallbladder epithelium was disintegrated to complete loss of microscopic structure. The material obtained - an extract - was incubated at 37 degrees C together with a mixture of lecithin and lysolecithin, phospholipids known to be present in bile. During such incubation a change in the phospholipid composition occurred, indicating that lecithin was converted to lysolechitin. This conversion increased in the presence of CaCl2. Heating the disintegrated epithelium (70 degrees C for 10 min at pH 4) considerably increased the phospholipid conversion. The results are consistent with the presence of phospholipase A activity in human gallbladder epithelium. The possible significance of this activity is discussed in view of the inflammation-mediating activity of lysolecithin in the gallbladder epithelium.

Calcium Chloride↗

Lysolecithin-mediated inflammatory reaction in rabbit gallbladder. Permeability increase and enzyme liberation.

Aseptic inflammation in the gallbladder wall was studied in vitro using rabbit gallbladders. Wall permeability changes, measured as changes in the transmural passage of radioactively labelled hippuran and biligraphin as well as enzyme (acid phosphatase) release from wall to lumen were registered as parameters permitting quantitative assessment of an inflammatory process. Lysolecithin, a surface-active substance of possible significance in the pathogenesis of acute cholecystitis was chosen as inflammation-inducing agent. When 6-20 mg/ml lysolecithin was instilled into the gallbladders, dose-dependent increases in permeability and enzyme release occurred. No effects as compared with controls were seen when 2 mg/ml was instilled. Lysolecithin-treated gallbladders showed morphological signs of inflammation as opposed to untreated. The data reported are consistent with earlier observations that lysolecithin may cause inflammatory lesions to the gallbladder wall. The experimental model used may prove useful in examining the effects of aggressive and protective agents upon the gallbladder mucous membrane.

Acid Phosphatase↗

Influence of hyperimmune immunoglobulin G on the physicochemical properties of the surface of Salmonella typhimurium 395 MS in relation to interaction with phagocytic cells.

Partition in an aqueous, two-polymer phase system containing dextran and polyethylene glycol was employed to investigate the physicochemical changes inflicted by the presence of immunoglobulin G (IgG) antibodies on the cell surface of a smooth strain of Salmonella typhimurium. Adding increasing amounts of anti-Salmonella IgG to the bacteria decreased the affinity for the polyethylene glycol-rich top phase, with a concomitant increase in in vivo clearance and in vitro phagocytosis by rabbit polymorphonuclear cells. Similarly, S --> R mutations in the same S. typhimurium strain decrease the affinity for the top phase and increase the liability to phagocytosis. The limiting antibody concentration to demonstrate increase of in vitro phagocytosis was approximately the same as that to produce a significant effect in the phase system, whereas lower concentrations were needed to increase the in vivo clearance. The results show that adsorption of IgG antibodies to bacteria brings about physicochemical changes of the cell surface which seem to promote the phagocytosis by polymorphonuclear cells and uptake in the reticuloendothelial system.

Animals↗

Characterization of mutants of Salmonella typhimurium by counter-current distribution in an aqueous two-polymer phase system.

An aqueous, two-polymer phase system was employed in an attempt to separate and characterize a series of R mutants, derived from Salmonella typhimurium 395 MS, with differing lengths of lipopolysaccharide chains on their surfaces. R mutants with varying degrees of virulence and phagocytic resistance were unresolved in this system. However, the smooth MS bacteria were clearly separated from the rough cells and showed a high affinity for the polyethylene glycol-rich top phase. A uridine 5'-diphosphate-gal-4-epimeraseless mutant, phenotypically in R or S form depending on the growth medium, partitioned as the R mutants and S bacteria, respectively. These results demonstrate the great influence of long polysaccharide chains on the physicochemical properties of the cell surface.

Bacteriological Techniques↗

Partition of Salmonella typhimurium in a two-polymer acqueous phase system in relation to liability to phagocytosis.

Analysis of the partition in a two-polymer phase system of Salmonella typhimurium R mutants with different susceptibility to phagocytosis distinguished between the mutants. Close to 80% of the R mutants least resistant to phagocytosis accumulated in the dextran-rich phase, whereas more phagocytosis-resistant mutants showed higher affinity for the interface and the polyethylene glycol-rich top phase. By growing the uridine diphosphate (pyro)-gal-4-epimeraseless mutant LT2-M1 in the presence of d-galactose for different periods of time, two well-defined peaks were obtained in counter-current distribution analysis with an aqueous two-polymer phase system revealing a heterogeneous population in the culture. One peak was located at a site characteristic of R bacteria, the other at the site of S bacteria. As growth proceeded, more bacteria transferred from the R-type to the S-type peak. Within each peak, a gradual increase in resistance to phagocytosis by rabbit polymorphonuclear cells occurred with increasing length of growth in d-galactose.

Countercurrent Distribution↗