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Biomedical subjects

H Karch

Publications and source records attributed to H Karch.

At least 181 records · Page 10Linked to original sources

Purification and characterization of a phage-encoded cytotoxin from an Escherichia coli O111 strain associated with hemolytic-uremic syndrome.

Cytotoxin production by Escherichia coli O111:H-strain HUS-2 (Hamburg) is associated with a temperate toxin-converting bacteriophage (Tcp-111). E. coli laboratory strain C600 transduced and subsequently lysed by the phage produced and liberated large amounts of cytotoxin (CT111) which was purified by sequential chromatography. When compared with published procedures for toxin release from viable cells, lysis of the C600 culture by the phage was most effective. By SDS-PAGE CT111 as Shiga toxin from Shigella dysenteriae 1 were shown to consist of two polypeptides of MW 31 kd and 4-5 kd. Both toxins share common antigenic epitopes as revealed by immunoblotting and neutralization studies. With rabbit anti-CT111 toxic activity of only 5 out of 8 clinical E. coli O111 isolates was neutralized suggesting the presence of different cytotoxins in E. coli serogroup O111. Taken together, our data established CT111 as a potent cytotoxin with significant enterotoxic and neurotoxic properties similar or identical to Shiga toxin and to Shiga-like toxin I from E. coli O26:H11 and O157:H7 strains.

Adult↗

A new method for induction of specific polyclonal antibodies using immunostained proteins on nitrocellulose membrane, and HIV 1 core antigen and Escherichia coli verotoxin as examples.

Two polyclonal antibodies against verotoxin 1 and the core protein p24 of HIV 1 were raised in mice by a new immunization procedure. Both proteins were transferred to nitrocellulose, reacted with polyspecific antisera and the antigen-antibody complexes were then visualized by immunostaining. For preparation of antisera the stained protein bands were cut from the nitrocellulose sheets and implanted subcutaneously into the backs of BALB/c mice, without any adjuvant. A single booster was given 4 weeks later by implanting a second strip. All mice produced high titers of antibody directed against the antigen used for immunization. Thus, antibodies of high specificity can be elicited against protein bands in stained immunoblots.

Animals↗

Hemolytic-uremic syndrome associated with an infection by verotoxin producing Escherichia coli 0111 in a woman on oral contraceptives.

A case of hemolytic-uremic syndrome (HUS) associated with an infection by a verotoxin-producing Escherichia coli (VTEC), serotype 0111:NM, in a 22-year-old woman who had been on oral contraceptives is presented. VTEC-associated cases of HUS infected by E. coli 0111 have been reported before, but never in adults. The kinetics of the humoral immune response to verotoxin in the patient is observed over three months and described for the first time. The possible role of contraceptives that have been incriminated in the etiology of HUS before is discussed as well. Possible benefits of therapeutical interventions such as hemodialysis, therapeutic plasma exchange, converting enzyme inhibitors, or antibiotics still need clarification. However, it is strongly suggested to include tests for VTEC in the work-up of patients suffering from HUS.

Adult↗

HIV-infection in forensic autopsy cases.

Sudden and unexpected death and violent death of persons with a high risk of acquiring HIV-infections, especially homosexual males and intravenous drug abusers, have to be investigated by forensic autopsies. Therefore every forensic pathologist has to be aware of this infection and should try to make the proper diagnosis. Three typical cases are described: (1) suicide by hanging, (2) homicide by cutting the throat and (3) intravenous heroin overdose. Merely retrospectively it could be cleared up that the deceased were homosexual but did not manifestly suffer from AIDS. The morphological findings in the lymph nodes and the postmortem serological findings are described in detail.

Acquired Immunodeficiency Syndrome↗

Serological response to type 1-like somatic fimbriae in diarrheal infection due to classical enteropathogenic Escherichia coli.

Fimbriae from enteropathogenic Escherichia coli strain E2349/69 (0127:H6) and its plasmid-minus derivative, MAR20, were purified and characterized as type 1-like by their physicochemical and hemagglutination patterns. Sera from adult volunteers challenged with the diarrheagenic parent strain and the attenuated plasmid-minus derivative were examined to detect an immune response, using the purified fimbriae as antigens in an enzyme linked immunosorbent assay (ELISA) and immunoblot assay. An anti-fimbrial response was evident in sera of 7 of 10 volunteers fed the diarrheagenic parent strain E2348 but also in 8 of 9 individuals fed the attenuated, plasmid-cured, derivative MAR20. The antibody response appeared specific in that the sera failed to react in an ELISA and by immunoblot assay with type 1 fimbriae from other E. coli. These findings suggest that the type 1 fimbriae of this representative EPEC strain are antigenically distinct. The results of this investigation provide the first evidence of seroconversion to type 1-like fimbriae in infections caused by diarrheagenic E. coli.

Adult↗

Plasmid-mediated formaldehyde resistance in Serratia marcescens and Escherichia coli: alterations in the cell surface.

The plasmid-mediated formaldehyde resistance of Serratia marcescens and Escherichia coli was examined. For that purpose the outer membranes of isogenic strains (with and without resistance plasmid) were compared. No quantitative or immunological differences in lipopolysaccharide of resistant and sensitive strains were noted. By contrast analysis of outer membrane proteins revealed that the sensitive variants had a higher protein content than the resistant strains. When outer membrane proteins were separated by SDS-PAGE the number of bands seemed identical for sensitive and resistant strains but the intensity of some of the bands was greater for the sensitive isolates. In addition, the surface hydrophobicity was greater for the resistance than for the sensitive strains. These findings suggest that the formaldehyde resistance plasmid of Serratia marcescens confer changes in cell surface proteins and surface hydrophobicity.

Bacterial Outer Membrane Proteins↗

Phage-associated cytotoxin production by and enteroadhesiveness of enteropathogenic Escherichia coli isolated from infants with diarrhea in West Germany.

We assessed the frequency of isolating enteropathogenic Escherichia coli (EPEC) from the stools of infants with diarrhea, the enteroadhesiveness of the EPEC, their production of cytotoxin, and the association of cytotoxin synthesis with lysogenic phages. One hundred twenty-five isolates of EPEC obtained from 1,674 children with diarrhea; three were isolated from 868 controls. Thirty EPEC made elevated levels (greater than or equal to 10(4) 50% cytotoxic doses/mg of cell lysate protein) of a cytotoxin for HeLa cells, and cell-associated cytotoxicity for 27 of these isolates was neutralized by antibody to Shiga toxin. Cell lysates of these isolates were paralytic and lethal for mice. Phages from cytotoxin-producing strains were tested for toxin-converting capacity. Fifteen of 30 such strains harbored toxin-converting phages, and the cytotoxicity of 12 isolates of E. coli K12 transduced with these phages was neutralized by antibody to Shiga toxin. Fifty-seven EPEC exhibited either localized or diffuse adherence to HEp-2 cells, but only nine producers of elevated levels of cytotoxin were adherent.

Bacterial Adhesion↗

A DNA probe to identify enterohemorrhagic Escherichia coli of O157:H7 and other serotypes that cause hemorrhagic colitis and hemolytic uremic syndrome.

Enterohemorrhagic Escherichia coli (EHEC) cause hemorrhagic colitis and hemolytic uremic syndrome (HUS), make potent cytotoxins (Verotoxins [VT] or Shiga-like toxins), and possess a plasmid (approximately 60 megadaltons) that encodes a new fimbrial antigen and promotes attachment to epithelial cells. We evaluated the use of a DNA probe, prepared from a 3.4-kilobase segment of the EHEC plasmid, to detect EHEC. The probe hybridized with 106 (99%) of 107 O157:H7 and 34 (77%) of 44 O26:H11, VT-positive strains from patients with colitis, HUS, and diarrheal disease and hybridized with 21 (81%) of 26 VT-positive E. coli of serotypes other than O157:H7 or O26:H11 from patients with hemorrhagic colitis and HUS. We examined 601 other strains, including 18 serotype O26 isolates of H types other than H11, 306 enteropathogenic E. coli, 60 enteroinvasive E. coli, 119 enterotoxigenic E. coli, and 20 isolates from the urinary tract and 77 isolates from the normal intestinal flora; only one (O127:H-) was positive (specificity, 99.8%). Serotype O26:H11, previously considered a classic enteropathogenic E. coli serotype, is now shown to be EHEC.

Child↗

Role of a 60-megadalton plasmid and Shiga-like toxins in the pathogenesis of infection caused by enterohemorrhagic Escherichia coli O157:H7 in gnotobiotic piglets.

Enterohemorrhagic Escherichia coli (EHEC) of serotype O157:H7 has two putative virulence factors: (i) a fimbrial adhesin, specified by a 60-megadalton (MDa) plasmid, and (ii) bacteriophage-specified cytotoxin(s), known as Shiga-like toxin (SLT) or verotoxin. The contribution of these factors to the pathogenesis of EHEC-induced disease in gnotobiotic piglets was examined. The bacterial strains included the following: two EHEC strains and their corresponding plasmid-cured derivatives; another EHEC isolate and its derivative which had spontaneously lost the ability to produce SLT; one E. coli K-12 transconjugatant containing a 60-MDa plasmid from an EHEC strain; two K-12 strains into which an SLT-producing phage had been transduced (one of these strains also carried a 60-MDa EHEC-derived plasmid); and the parent K-12 strain. Each strain was fed to four piglets, which were observed for diarrhea and examined for development of characteristic mucosal lesions 3 or 5 days after inoculation. All 24 piglets inoculated with the three EHEC strains and their respective derivatives (two plasmid cured and one SLT negative) showed the typical mucosal lesions of bacterial attachment: effacement of microvillous border and cell membrane dissolution culminating in destruction of surface and glandular epithelium in the cecum and colon. No such lesions were observed in 12 piglets inoculated with three strains of E. coli K-12, including the strain which carried both the 60-MDa plasmid and a phage which specified production of SLT. Moderate to severe diarrhea was observed in 16 piglets inoculated with two EHEC strains and their derivatives (one plasmid cured and one SLT negative). The third EHEC strain and its plasmid-cured derivative produced fewer typical mucosal lesions and no diarrhea. The reason for the reduced virulence of this strain was not clear. These results demonstrate that neither the 60-MDa plasmid nor the capacity to produce SLT is essential for expression of virulence by E. coli O157:H7 in gnotobiotic piglets.

Animals↗

A plasmid of enterohemorrhagic Escherichia coli O157:H7 is required for expression of a new fimbrial antigen and for adhesion to epithelial cells.

Of 14 strains of Escherichia coli O157:H7 isolated from patients with hemorrhagic colitis or hemolytic uremic syndrome that were examined for fimbriae, the presence of plasmids, and the ability to adhere to intestinal cells, 13 possessed a 60-megadalton plasmid and were fimbriated as assessed by electron microscopy. These strains adhered to Henle 407 intestinal cells but not to HEp-2 cells or erythrocytes. Three strains were cured of the plasmid and thereafter failed to express fimbriae and lost the ability to adhere to intestinal cells. Conversely, E. coli K-12 transformed with the 60-megadalton plasmid from each of the three strains produced fimbriae and was able to adhere to intestinal cells. A single fimbrial subunit of 16 kilodaltons was observed when purified fimbriae from the transformants and from the 60-megadalton plasmid-containing E. coli O157:H7 strains were disaggregated and subjected to sodium dodecyl sulfate-polyacrylamide gel electrophoresis. Antisera raised against one preparation of the purified fimbriae reacted strongly with 12 of 14 O157:H7 isolates in an agglutination assay and with purified fimbrial preparations from five E. coli O157:H7 strains in an enzyme-linked immunosorbent assay.

Animals↗

Influence of beta-lactam antibiotics and ciprofloxacin on composition and immunogenicity of Escherichia coli outer membrane.

The effects of subinhibitory concentrations of different beta-lactam antibiotics and one quinolone on the sedimentation of outer membranes (OMs) of Escherichia coli and on the qualitative properties and immunogenicity of OM components were studied. Membranes were prepared by osmotic lysis of plasmolyzed bacteria. OM and cytoplasmic membrane vesicles were separated by sucrose density ultracentrifugation. Two peaks of OM vesicles with different buoyant densities could be isolated; the quantitative contribution of these to the total OM varied, depending upon the growth phase. In early log phase, the OM consisted mainly of lighter material; in late log and stationary phases, the OM consisted mainly of heavier material. Moxalactam, imipenem, and ciprofloxacin inhibited the formation of heavier material in all growth phases. The immunogenicity of OM vesicles was tested in mice by the hemolytic plaque test. The lighter OM material was markedly less immunogenic than the heavier OM material. The vesicles from antibiotic-treated bacteria and those from early-log-phase cells were less immunogenic than vesicles from untreated late-log-phase and stationary-phase bacteria. These changes were found for the immune response against lipopolysaccharides, as well as against OM proteins. Thus, the immunogenicity of OM components seems to be dependent upon the quantitative composition of lighter and heavier compounds, which is strongly influenced by growth phase and treatment with certain antibiotics.

Animals↗

The diarrheal response of humans to some classic serotypes of enteropathogenic Escherichia coli is dependent on a plasmid encoding an enteroadhesiveness factor.

Isolates of the most common O serogroups of enteropathogenic Escherichia coli (EPEC) associated with infant diarrhea (designated class I) adhere to Hep-2 cells; the genes for this adhesin, termed EPEC adherence factor (EAF), are located on plasmids 50-70 MDa in size. Volunteers ingested 10(10) organisms of an O127:H6 Hep-2-adhesive class I strain (E2348/69) or its plasmid-minus, nonadhesive derivative. Diarrhea occurred in nine of 10 volunteers who ingested the parent strain (mean, 1,178 ml) but in only two of nine who took the plasmid-minus variant (mean, 433 ml; P less than .006). All volunteers ill from strain E2348/69 mounted serum IgA and IgG responses to a 94-kDa plasmid-associated outer membrane protein of E2348/69; this protein was found in other class I EPEC but not in enterotoxigenic or meningitic strains. The 50-70-MDa EAF plasmid seems necessary for full expression of pathogenicity in EPEC that exhibit Hep-2 adhesiveness. EPEC isolates of certain other, less common, O serogroups (O44, O86, and O114) are rarely Hep-2 adhesive. These EPEC, designated class II, possess distinct 50-70 MDa plasmids lacking EAF genes. Diarrhea was caused by 10(8) or 10(10) organisms of an O114:H2 class II EPEC strain (mean, 1,156 ml) in six of 11 volunteers. This result confirmed that class II EPEC are pathogenic by a mechanism not involving Hep-2 adhesiveness.

Adhesins, Escherichia coli↗

Isolation and separation of physicochemically distinct fimbrial types expressed on a single culture of Escherichia coli O7:K1:H6.

The fimbrial (pili) profile of a single strain of Escherichia coli O7:K1:H6 (WF96) was evaluated. Fimbriae were isolated by sucrose density gradient ultracentrifugation, purified from flagellae by the use of 0.4% sodium dodecyl sulfate (SDS), and separated into distinct fimbrial types. Analysis of the purified WF96 fimbriae by SDS-polyacrylamide gel electrophoresis revealed two polypeptide bands with molecular weights of 16,000 and 21,000. Treatment of the fimbrial mixture with saturated guanidine hydrochloride resulted in the appearance of a third band with a molecular weight of 19,500. The relative susceptibilities of the WF96 fimbrial types to disrupting chemicals (octyl-glucoside, urea, SDS, and guanidine hydrochloride) were assessed by exposure of the fimbrial mixture to each agent, separation of the depolymerized fimbriae from intact fimbriae by gel filtration on Sepharose CL-4B, and identification of the disaggregated fimbrial types by SDS-polyacrylamide gel electrophoresis of column fractions. The physicochemical heterogeneity of the three fimbrial types coexpressed on WF96 was exploited to develop a method for separation of individual fimbriae.

Bacterial Proteins↗

Three-dimensional structure of fimbriae determines specificity of immune response.

We recently described how a fraction of isolated fimbriae from a multifimbriated strain of Escherichia coli O7:K1:H6 (WF96) could be subdivided by sequential disaggregation in disrupting agents into individual subunits with different molecular weights. In this study, antibodies were raised in rabbits against these isolated fimbrial subunits and against purified intact WF96 fimbriae. These sera were tested by Western blot analysis or by enzyme-linked immunosorbent assays for reactivity against the following antigens: intact WF96 fimbriae, dissociated WF96 fimbriae, dissociated and reaggregated WF96 fimbriae, the WF96 21K fimbrial subunit, reaggregated WF96 21K subunits, the WF96 16K subunits, reaggregated WF96 16K subunits, intact fimbriae from four other E. coli strains, and deaggregated fimbriae from these strains. We found that antibody against intact WF96 fimbriae only reacted strongly with intact WF96 fimbriae, depolymerized and reaggregated WF96 fimbriae, or reaggregated fimbrial subunits; no reactions were evident with intact fimbriae from four other E. coli strains. Conversely, antisera prepared against the WF96 16K subunit and against the WF96 21K subunit did not react with intact WF96 fimbriae or with depolymerized and reaggregated WF96 fimbriae, but did react with homologous isolated subunits. One cross-reaction between fimbrial subunits was apparent: anti-WF96 16K subunit bound to a 21K subunit of deaggregated fimbriae, from another E. coli strain. Taken together, the findings indicate that the three-dimensional structure of the fimbrial preparation used to immunize animals determines the specificity of the immune response.

Electrophoresis, Polyacrylamide Gel↗

Flagella of Salmonella typhimurium are a virulence factor in infected C57BL/6J mice.

To determine whether flagella, chemotaxis, and motility of Salmonella typhimurium are virulence factors in infected C57BL/6J mice, we constructed isogenic pairs of derivatives of the nonfimbriated virulent strain SL3201. Of each pair, one member contained a mutation in a single gene that is required for expression of normal chemotactically directed motility, whereas the other member contained the wild-type form of the gene. No additional differences between the members of a pair were evident. The phenotypic parameters examined for all derivatives included in vitro growth rate, sensitivity to P22 phage, amino acid auxotrophy, and biotype. For a flagellated and nonflagellated pair, the electron microscopic appearance of each member was examined as well as its lipopolysaccharide and outer membrane profiles by sodium dodecyl sulfate-polyacrylamide gel electrophoresis. The virulence of the various derivatives was then assessed in mice challenged orally, intraperitoneally, or intravenously. The results established that flagella, whether functional or nonfunctional as organelles of motility, were S. typhimurium virulence factors and that neither chemotaxis nor motility was required for virulence.

Animals↗