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A Pantosti

Publications and source records attributed to A Pantosti.

At least 37 records · Page 2Linked to original sources

Monoclonal antibodies to detect capsular diversity among Bacteroides fragilis isolates.

The capsular polysaccharide complex (CPC) of Bacteroides fragilis is composed of two distinct polysaccharides, designated PS A and PS B, and is a major virulence factor of this microorganism. In order to investigate the antigenic diversity of the CPCs of B. fragilis strains, we generated and characterized 10 monoclonal antibodies (MAbs) directed to the CPCs of three reference strains. The specificities of the MAbs were determined by enzyme-linked immunosorbent assay and dot-immunobinding assay. At least one MAb was specific for each PS A and PS B of the three strains. The MAbs were used to detect capsular antigens on the surface of 231 B. fragilis isolates from different geographical areas by a whole-cell dot-immunobinding assay. Over half of the strains, regardless of the country of origin, reacted with at least one MAb. Clinical extraintestinal infection isolates were significantly more reactive than fecal isolates, suggesting an association between capsular composition and the propensity to cause clinical infections. The patterns of reactivity of the isolates with the 10 MAbs were very different and sometimes extremely complex and indicated a sharing of epitopes among different capsular polysaccharides. The reactive strains could be grouped according to 32 different patterns; some patterns were relatively common, while others were rarer and were shown by only one or two strains. These results show that B. fragilis capsular polysaccharides are antigenically extremely diverse. This complexity and the large number of nonreactive strains indicate that a typing system based on B. fragilis capsular antigens will be difficult to establish.

Antibodies, Bacterial↗

Detection of intestinal and extra-intestinal strains of enterotoxigenic Bacteroides fragilis by the HT-29 cytotoxicity assay.

Bacteroides fragilis strains with enterotoxic activity can be isolated from the faeces of newborn farm animals with diarrhoea and are called enterotoxigenic B. fragilis (ETBF). These strains can now be detected in an in-vitro cytotoxicity assay with HT-29 cells. In this study, 146 B. fragilis strains (95 faecal and 40 extra-intestinal isolates) and 64 Bacteroides isolates belonging to species other than B. fragilis were tested for their ability to produce enterotoxin. Sixteen strains of ETBF were identified; all belonged to the fragilis species and represented 11% of all B. fragilis examined. The prevalence was similar among extraintestinal and faecal strains, 11.5% and 10%, respectively. The production of enterotoxin in clinical isolates appeared to be associated with infections where tissue destruction was more prominent. Enterotoxigenicity was not associated with the presence of a plasmid and the plasmid profiles of ETBF strains that harboured plasmids were different. These results show that enterotoxin production by human isolates of B. fragilis is not uncommon and could represent a new virulence factor of B. fragilis.

Adult↗

Bacteroides fragilis strains express multiple capsular polysaccharides.

Previous studies by our group have demonstrated that the capsule of Bacteroides fragilis type strain NCTC 9343 consists of two chemically distinct polysaccharides, designated PS A and PS B. These polysaccharides can be isolated as an aggregate from the surface of the organism and give a complex multiprecipitin profile when they are reacted with homologous antiserum in an immunoelectrophoresis assay. Following structural analysis of PS A and PS B, we have determined that the complex precipitin profile is formed as a result of the differing electrophoretic and antigenic properties associated with each of these polymers. Presently, we have examined the capsular polysaccharides of 13 other strains of B. fragilis according to methods used for the prototype strain. The capsules of these strains were extracted, partially purified, and analyzed by immunoelectrophoresis at pH 7.3. Following reaction with homologous polyclonal antisera, each of the capsular preparations tested yielded a complex precipitin profile similar to that of the prototype strain. When reacted by immunoelectrophoresis with polyclonal antiserum to 9343 or with monoclonal antibodies to PS A and PS B, these capsular preparations appeared to be antigenically diverse; some preparations (50%) showed complete or partial cross-reaction. These results suggest that the dual polysaccharide motif seen with the prototype strain is a common feature of B. fragilis strains. In addition, the antigenic heterogeneity of B. fragilis capsular polysaccharides could be used for the development of a serological typing scheme.

Antibodies, Bacterial↗

The capsular polysaccharide of Bacteroides fragilis comprises two ionically linked polysaccharides.

Recently, we have shown that the capsular polysaccharide of Bacteroides fragilis NCTC 9343 is composed of an aggregate of two discrete large molecular weight polysaccharides (designated polysaccharides A and B). Following disaggregation of this capsular complex by very mild acid treatment, high resolution NMR spectroscopy demonstrated that polysaccharides A and B consist of highly charged repeating unit structures with unusual substituent groups (Baumann, H., Tzianabos, A. O., Brisson, J.-R., Kasper, D.L., and Jennings, H.J. (1992) Biochemistry 31, 4081-4089). Presently, we report that the capsular polysaccharide of B. fragilis represents a complex structure that is formed as a result of ionic interactions between polysaccharides A and B. Electron microscopy of immunogold-labeled organisms (with monoclonal antibodies specific for polysaccharides A and B) demonstrated that the two polysaccharides are co-expressed on the cell surface of B. fragilis. We have shown that the purified capsule complex is made up exclusively of polysaccharide A and polysaccharide B (no other macromolecular structure was detected) in a 1:3.3 ratio and that disaggregation of this complex into the native forms of the constituent polysaccharides could be accomplished by preparative isoelectric focusing. Structural analyses of the native polysaccharides A and B showed that they possessed the same repeating unit structures as the respective acid-derived polysaccharides. The ionic nature of the linkage between polysaccharides A and B was demonstrated by reassociation of the native polysaccharides to form an aggregated polymer comparable to the original complex. The distinctive composition of this macromolecule may provide a rationale for the unusual biologic properties associated with the B. fragilis capsular polysaccharide.

Bacteroides fragilis↗

Purification and characterization of an immunodominant 36 kDa antigen present on the cell surface of Clostridium difficile.

The 36 kDa antigen represents the major EDTA-extracted protein of Clostridium difficile strains belonging to electrophoretic group 2. Antibodies to this antigen are found in sera of patients with C. difficile-associated diarrhoea. The 36 kDa antigen was extracted from C. difficile C253 by EDTA and purified by gel filtration (Sephacryl S300) and ion exchange chromatography (DEAE-Trisacryl M). The molecular weight of the purified protein was 36 kDa as determined by SDS-PAGE, also in non-reducing conditions. By gel filtration, the molecular size appeared to be 72 kDa and was not modified by the presence of EDTA or SDS in the column buffer. Since IEF showed a single isoelectric form of pI 4.6, the protein could be a homodimeric molecule. Immunofluorescence demonstrated that the 36 kDa antigen was located on the surface of the C. difficile cell. Monospecific antiserum raised in rabbits reacted positively with the 36 kDa protein of most group 2 C. difficile strains isolated from antibiotic-associated diarrhoea (AAD) outbreaks in Italy and other European countries.

Antigens, Surface↗

Immunochemical characterization of two surface polysaccharides of Bacteroides fragilis.

Immunochemical analysis of the capsular polysaccharide from Bacteroides fragilis NCTC 9343 revealed a novel structure composed of two distinct polysaccharides. Immunoelectrophoresis of an extract of purified surface polysaccharide from fermenter-grown organisms showed a complex precipitin profile with varying anodal mobility. DEAE-Sephacel anion-exchange chromatography of the polysaccharide extract failed to separate the majority of this aggregate. Disaggregation of this complex was accomplished by very mild acid treatment; purification was achieved by DEAE-Sephacel anion-exchange chromatography. Polysaccharide A had a neutral charge at pH 7.3, a net negative charge at pH 8.6, and an average Mr = 110,000; chemical analysis showed it to contain galactose, galactosamine, and an unidentified amino sugar. Polysaccharide B eluted from the anion-exchange column with increased salt concentration; it had a net negative charge and an average Mr = 200,000, and contained fucose, galactose, quinovosamine, galacturonic acid, and glucosamine. Neither of these polysaccharides contained detectable 3-deoxy-D-manno-octolusonic acid, and both were recognized as distinct antigens on the basis of their reactivity with monoclonal antibodies CE3 and F10, which reacted with the complex before acid treatment. These data indicate that the capsule of B. fragilis NCTC 9343 comprises two discrete, surface-exposed polysaccharides with differing physiochemical properties that are distinct from the lipopolysaccharide of this organism. The finding of two surface polysaccharides has not been described for other bacteria pathogenic to humans.

Animals↗

Haemagglutination and surface structures in strains of Clostridium spiroforme.

Five strains of Clostridium spiroforme were examined for their surface properties. All strains were able to agglutinate human erythrocytes. Electron microscopy showed a ruthenium red-positive capsule mediating the attachment of bacteria to erythrocytes. Two strains, showing the lowest degree of haemagglutination, exhibited an additional external layer of filamentous structures, possibly interfering with the agglutinating activity. In spite of their agglutinating ability, the C. spiroforme strains did not show surface hydrophobicity, thus suggesting the possible existence of a new type of clostridial adhesin.

Animals↗

Effects on oral and intestinal microfloras of norfloxacin and pefloxacin for selective decontamination in bone marrow transplant patients.

We monitored the modifications of oral and intestinal microfloras of 10 allogeneic bone marrow recipients who received randomly either norfloxacin or pefloxacin (400 mg three times a day) as selective decontamination for infection prevention. After 1 week of treatment, in all patients members of the family Enterobacteriaceae were no longer detectable and in all but one pefloxacin-treated patient enterococci were also eliminated in the intestine. The anaerobic flora was not affected, with the exception of Bacteroides spp., markedly reduced after treatment with pefloxacin. In most patients the most striking effect was the increase in staphylococcal counts. These strains were found to be resistant to both quinolones in the study. Less consistent changes were observed in oral flora. No relevant difference could be demonstrated between the two regimens on bacterial counts either in feces or in saliva. This study shows the efficacy of both quinolones in eradicating gram-negative bacilli in the alimentary tract of bone marrow transplant patients; however, the finding of the overgrowth of resistant gram-positive organisms during treatment with these agents deserves further evaluation.

Adult↗

Immunoblot analysis of serum immunoglobulin G response to surface proteins of Clostridium difficile in patients with antibiotic-associated diarrhea.

We examined by immunoblot analysis the serum immunoglobulin G antibody response to EDTA-extracted surface proteins of Clostridium difficile in 16 patients with antibiotic-associated diarrhea. For each patient, paired serum samples were tested against proteins of the infecting strain and of a collection strain (C253) known to belong to the electrophoretic group 2 pattern. Eight patients, all harboring group 2 C. difficile strains, exhibited responses to the proteins of the infecting strain; six patients showed increases in the level of antibodies between acute-phase and convalescent-phase sera. A great variability in the antigens recognized was found; however, seven patients possessed antibodies directed against an antigen of about 35 kilodaltons, corresponding to the major protein of group 2 strains. The sera of these seven patients cross-reacted also with the 35-kilodalton and other proteins of strain C253. Our data show that C. difficile proteins other than toxins can elicit an immune response in patients with C. difficile-associated disease; in this group of patients, the major surface protein of the group 2 strains was the antigen most often recognized.

Adolescent↗

[Hospital epidemic of Clostridium difficile diarrhea: demonstration of cross-infection using a typing technic].

Two hospital outbreaks of Clostridium difficile diarrhoea in two general surgery units of different hospitals are described. Moreover, the results of a study on the circulation of C. difficile in a neurosurgery unit following two cases of colitis are reported. C. difficile strains isolated from patients and environment have been typed using antimicrobial susceptibility testing and electrophoretic profiles of EDTA-extracted proteins. The majority of strains isolated in each hospital shared the same protein profile and the same pattern of antibiotic susceptibility. This provides strong evidence of cross-infection and hospital acquisition of C. difficile.

Bacterial Proteins↗

Evidence for cross-infection in an outbreak of Clostridium difficile-associated diarrhoea in a surgical unit.

Environmental studies were performed in a hospital outbreak of Clostridium difficile-associated diarrhoea. Transmission was associated with the sluice room and the storage room where medical equipment was found to be contaminated with C.difficile. Typing of isolates by antibiotic-susceptibility patterns and profiles of EDTA-extracted proteins showed the presence of an "epidemic" strain common to the majority of patients and environmental sites. Control of the outbreak was achieved by improvement of environmental hygiene and use of disposable equipment.

Adult↗

Electrophoretic characterization of Clostridium difficile strains isolated from antibiotic-associated colitis and other conditions.

Clostridium difficile has been recognized as the cause of antibiotic-associated pseudomembranous colitis and of less severe diarrheal diseases associated with the use of antimicrobial agents. However, healthy carriers of this microorganism have been found, particularly healthy neonates and small children. Various typing systems have been used to clarify the epidemiology of C. difficile. We used the electrophoretic patterns of EDTA-extracted proteins to characterize C. difficile strains from various sources. Altogether, 110 strains were studied, including 2 reference strains, and 21 different protein profiles were obtained. However, two patterns were the most common: the group 2 pattern, characterized by a major 35-kilodalton polypeptide band, and the group 5 pattern, identified by principal bands of 37 and 56 kilodaltons. The group 2 pattern was characteristic of strains isolated during hospital outbreaks and from sporadic cases of pseudomembranous colitis and antibiotic-associated diarrhea. The group 5 pattern was obtained only from isolates from healthy neonates and children. A correlation between electrophoretic characteristics and virulence can be hypothesized, namely that group 2 strains are more prone to induce diseases and cause outbreaks. It is noteworthy that strains isolated from children with diarrhea of unknown etiology, not related to antibiotic use, belong to the "virulent" group 2; strains from leukemic patients showed a variety of different patterns, and only two belong to group 2. This characterization can be used to aid studies on the virulence and clinical significance of C. difficile.

Adult↗

Pathogenesis of postantibiotic diarrhoea caused by Clostridium difficile: an in vitro study in the rabbit intestine.

To elucidate the pathophysiological changes leading to postantibiotic diarrhoea caused by Clostridium difficile and its cytotoxin, oral ampicillin was given to rabbits, and jejunal, ileal, and caecal segments of those that developed diarrhoea were investigated in vitro. The rabbits that, in response to treatment, harboured Clostridium difficile in their colonic lumen were studied, and the results expressed according to the presence or absence of Clostridium difficile and/or its cytotoxin. Thus, we refer to either CD+ or CD- segments. The influx of glucose, phenylalanine, glycylphenylalanine, and lysine across the brush border of jejunum and ileum of CD+ segments was severely impaired, while only slightly blunted in CD-. No significant change was detected in the influx of glutamic acid in the jejunum of all treated animals and in the CD- ilea. Morphologic damage in ileum and caecum of CD+ was also more evident than in CD-. Transepithelial ion transport across short circuited ileal mucosa (CD+ and CD-) revealed secretory changes in Cl net transport that were more marked in CD-. We conclude that: (1) Clostridium difficile may also colonise the upper intestinal tract, where it induces morphological and functional damage, severely impairing nutrient absorption; and (2) the ileum contributes to the diarrhoea caused by CD even when the micro-organism is confined to the more distal gut by showing moderate impairment of nutrient absorption and marked electrolyte secretion.

Ampicillin↗