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H Karch

Publications and source records attributed to H Karch.

At least 109 records · Page 6Linked to original sources

Analysis of the enterohemorrhagic Escherichia coli O157 DNA region containing lambdoid phage gene p and Shiga-like toxin structural genes.

In this study, we determined the nucleotide sequence of the p gene contained within a 5-kb EcoRI restriction fragment cloned from Shiga-like toxin II (SLT-II)-converting phage 933W of Escherichia coli O157:H7 strain EDL933. The p gene was 702 bp long and had 95.3% sequence similarity to the p gene of phage lambda. Multiple hybridization patterns were obtained when genomic DNA fragments were hybridized with both p and slt-I, slt-II, or slt-IIc sequences. All O157 isolates also possessed an analog of lambda gene p which was not linked with either slt-I or slt-II. Restriction fragment length polymorphism comparisons of clinical O157 isolates and derivates undergoing genotype turnover during infection were made, and loss of large DNA fragments that hybridized with slt-II and p sequences was observed. To further analyze the DNA region containing the p and slt genes, we amplified fragments by using a PCR with one primer complementary to p and the other complementary to either the slt-I or the slt-II gene. PCR analysis with enterohemorrhagic E. coli O157 and non-O157 strains yielded PCR products that varied in size between 5.1 and 7.8 kb. These results suggest that even within O157 isolates, the genomes of SLT-converting phages differ. The methods described here may assist in further investigation of SLT-encoding phages and their role in the epidemiology of infection with enterohemorrhagic E. coli.

Bacterial Toxins↗

Specific antibody reactivity against a 110-kilodalton Actinobacillus actinomycetemcomitans protein in subjects with periodontitis.

The purpose of the present study was to determine the serum immunoglobulin A (IgA), IgM, and IgG reactivities against proteins of Actinobacillus actinomycetemcomitans in patients with periodontitis. Serum samples from 20 patients with early-onset periodontitis, 20 patients with adult periodontitis, and 20 age- and sex-matched healthy controls were assessed by immunoblot analysis. IgG antibody reactivity against a sarcosyl-insoluble 110-kDa protein of A. actinomycetemcomitans was detected in 65 and 45% of patients with early-onset periodontitis and adult peritonitis, respectively, and IgA antibodies against this protein were found in 70 and 55% of these patients, respectively. However, control subjects showed no IgG reactivity, and IgA antibodies against the sarcosyl-insoluble 110-kDa protein were detected in only 5% of the patients (P < 0.05). There was no IgM antibody reactivity against this protein in any of the diseased or healthy subjects. The sensitivity and specificity of serum IgA antibody reactivity against the 110-kDa protein in detecting subgingival A. actinomycetemcomitans infection, as determined by PCR, were 77 and 66%, respectively. The results of the study indicated that the sarcosyl-insoluble 110-kDa protein is a potential candidate for use in the serodiagnosis of periodontal disease.

Adult↗

Enterohemolytic phenotypes and genotypes of shiga toxin-producing Escherichia coli O111 strains from patients with diarrhea and hemolytic-uremic syndrome.

Thirty-six Shiga toxin-producing Escherichia coli (STEC) O111:H- strains, 18 of which were isolated from patients with hemolytic-uremic syndrome (HUS) and 18 from patients suffering from diarrhea, were investigated for their enterohemolytic phenotypes and genotypes. Twenty-two strains were EHEC hemolysin (EHEC Hly) positive by probe hybridization and by PCR with sequences complementary to the EHEC hlyA gene of E. coli O157:H7, but only 20 of these were hemolytic on blood agar plates. The remaining 14 strains were EHEC Hly negative according to DNA-based methods and did not express the enterohemolytic phenotype. The enterohemolytic phenotype was observed in 16 of 18 (88%) strains from patients with HUS but only in 4 of 18 (22.2%) of the STEC O111:H- strains from patients with diarrhea. All STEC O111:H- strains carried large plasmids, as shown by plasmid analysis, but only plasmids of EHEC Hly probe-positive strains hybridized with the CVD419 probe. A BamHI fragment of approximately 12 kb was cloned from the large plasmid of the E. coli O111:H- strain 78/92 and shown to mediate hemolytic activity when transformed into the E. coli laboratory strain HB101. The EHEC O111 hlyA gene was sequenced completely and shown to have 99.4% sequence identity to the corresponding EHEC O157 hlyA gene of the E. coli O157:H7 strain EDL 933. Our results indicate that detection of EHEC Hly either by DNA-based methods or by investigation of the enterohemolytic phenotype on blood agar alone is insufficient for screening STEC O111 strains. However, the high incidence of EHEC Hly in isolates from patients with HUS and its rare occurrence in isolates from patients with diarrhea may indicate that STEC O111 strains have a distinct pathogenic potential for humans and that the presence of EHEC Hly increases the ability of an STEC O111 strain to cause extraintestinal complications in humans.

Bacterial Toxins↗

Serodiagnosis of Porphyromonas gingivalis infection by immunoblot analysis with recombinant collagenase.

The Porphyromonas gingivalis collagenase-specific serum immunoglobulin A (IgA), IgM, and IgG responses from 20 patients with early-onset periodontitis (EOP), 20 patients with adult periodontitis, (AP), and 20 age- and sex-matched healthy controls were examined by immunoblot analysis. A recombinant collagenase antigen used for the immunoblot analysis was produced by using the plasmid pGEX-2T, which allows the fusion between the collagenase and glutathione S-transferase. There was no significant difference in collagenase-specific IgG antibody detection between samples from the EOP, AP, and control groups. In contrast, 85% of AP and EOP sera had collagenase-specific IgA antibodies, whereas only 20% of control sera showed collagenase-specific IgA reactivity. Plaque samples from all groups were assessed by PCR with primers complementary to the collagenase-encoding gene prtC. The results indicated that 90% of AP and EOP plaque samples and 10% of control samples were positive for P. gingivalis. All patients with collagenase-specific IgA antibodies were PCR positive. The results of the study indicate a nearly complete concordance (k = 0.856) between the presence of collagenase-specific IgA antibodies and PCR detection of P. gingivalis. By using PCR as the "gold standard," the sensitivity and specificity of the IgA immunoblot test were 94.7 and 90.9%, respectively. Therefore, the recombinant collagenase is a potential candidate for use in the serodiagnosis of periodontitis.

Adult↗

Isolation of enterohemorrhagic Escherichia coli O157 strains from patients with hemolytic-uremic syndrome by using immunomagnetic separation, DNA-based methods, and direct culture.

We examined 30 children with classical hemolytic-uremic syndrome (HUS) for the presence of enterohemorrhagic Escherichia coli (EHEC) strains in stool samples and determined the specific immune response to O157 lipopolysaccharide in acute-phase serum samples from these patients. EHEC O157 strains were isolated from stool samples of 18 (60%) of the patients, and non-O157 EHEC strains were isolated from 5 (17%) of the patients. For O157 strain isolation from stools, we introduced a selective enrichment step using O157-specific antibodies attached to paramagnetic particles (immunomagnetic separation [IMS] method). This procedure allowed the detection of O157 strains at 10(2) CFU/g of stool in the presence of 10(7) coliform background flora organisms. By using IMS followed by plating on sorbitol MacConkey (SMAC) agar and cefixime-tellurite SMAC (CT-SMAC) agar, O157 strains were detected in 18 samples, whereas colony hybridization detected a subset of 12 positive samples and direct culture on CT-SMAC or SMAC agar detected only 7. Three of the 18 O157-positive stools were negative by cytotoxicity assay performed with stool filtrates and by direct PCR with DNA extracted from stools. The IMS technique allowed the isolation of O157 strains from 18 of 20 patients with serological evidence for O157 infection. Apart from the increase in sensitivity in O157 detection compared with that of direct culture, the IMS technique also has the advantage of being less labor-intensive and less time-consuming than the molecular methods. IMS can therefore be considered an efficient method for wide-spread use in the detection of O157 strains in clinical microbiology laboratories. However, because a significant number of HUS cases were attributable to non-O157 EHEC serogroups, the use of additional methods besides IMS in the bacteriological diagnosis of HUS is necessary.

Antibodies, Bacterial↗

Effect of L-glutamine and n-butyrate on the restitution of rat colonic mucosa after acid induced injury.

BACKGROUND: L-glutamine and n-butyrate are important nutrients for colonocytes affecting both their structure and function. The effect of these epithelial substrates on resealing of rat distal colon after acid induced injury was studied. METHODS: Isolated colonic mucosa of 32 rats was mounted in Ussing chambers and exposed to Krebs-Ringer solution for four hours. Epithelial injury was induced by short-term exposure to luminal hydrochloric acid and resealing was studied with or without added glutamine or butyrate. RESULTS: Glutamine (luminal and serosal) reduced tissue conductance, mannitol and lactulose permeability, and permeation of enteropathogenic Escherichia coli. Glutamine (serosal) diminished conductance and mannitol permeability. Both interventions stimulated bromodeoxyuridine incorporation in nuclei of colonocytes. Luminal butyrate had no measurable effect on these parameters. CONCLUSIONS: These data suggest that L-glutamine stimulates repair mechanisms of rat colonic mucosa after acid injury. This effect on the gut barrier is associated with a stimulation of crypt cell proliferation. The addition of glutamine to parenteral solutions may be beneficial for patients under intensive care whose intestinal barrier is weakened in the course of sepsis and trauma.

Animals↗

Lyme arthritis in European children and adolescents. The Pediatric Rheumatology Collaborative Group.

OBJECTIVE: To evaluate and describe Lyme arthritis in European children and adolescents. METHODS: This was a prospective multicenter study. The diagnosis of Lyme arthritis required the exclusion of other diseases and positive findings on serology for IgG antibodies to Borrelia burgdorferi. Enzyme-linked immunosorbent assay, immunoblotting, and polymerase chain reaction techniques to identify infection by B burgdorferi were used. RESULTS: Among 62 children and adolescents with Lyme arthritis, only 1 had a preceding erythema migrans. Arthritis was episodic in 62% and was chronic at onset in 18%. The most common manifestation was monarthritis of the knee. Joint involvement in patients with oligoarthritis was predominantly unilateral or symmetric. Arthralgia was very rare. Treatment with 1 or 2 courses of different antibiotics resulted in disappearance of the arthritis in 77% of the patients. CONCLUSION: The clinical presentation of Lyme arthritis in children is different from that in adults. The calculated incidence of Lyme arthritis in persons under the age of 17 years (4/100,000) exceeds previous estimations.

Adolescent↗

Diagnostic value of synovial fluid analysis in children with reactive arthritis.

We report on three children with pauciarticular arthritis in whom the clinical picture and serology were compatible with both arthritis reactive to infection with Yersinia or Salmonella and with Lyme arthritis. Results of analysis of synovial fluid by polymerase chain reaction for enterobacterial or borrelial sequences were negative. Immunofluorescence with specific antibodies revealed the presence of amorphous enterobacterial antigens in synovial fluid cells. Since this staining did not reveal enterobacterial morphology, we infected synovial fluid cells of two children with juvenile rheumatoid arthritis in vitro with Yersinia or Salmonella. After 24 h typical rods were observed, but after about 1 week amorphous antigen similar to what had been found in the three patients was seen. In cases of reactive arthritis with ambiguous results of serological testing the diagnosis may be confirmed by demonstration of enterobacterial antigens in synovial fluid.

Adolescent↗

Construction of recombinant Shiga-like toxin-IIv (SLT-IIv) and its use in monitoring the SLT-IIv antibody status of pigs.

We constructed and purified recombinant B-subunits of the SLT-IIv as well as tested their usefulness in an immunoblot assay. The slt-IIvB gene amplified by PCR was ligated into the fusion vector pGEX-2T, and expressed in E. coli K 12 laboratory strains. Deletion of the signal sequence was necessary for optimal expression. High quantities of the fusion protein could be purified by affinity chromatography and subsequently used as antigen for immunoblot analysis with serum samples from diseased pigs and healthy controls. IgG antibodies against SLT-IIv were detected in the sera of 11 of 52 (21.15%) healthy pigs. By contrast, only in 1 of 28 (3.57%) serum samples of pigs with edema disease caused by SLT-IIv-producing E. coli we could demonstrate SLT-IIv-specific antibodies. During an outbreak of edema disease, sera from 10 pigs were taken at 4, 20, and 40 days after disease onset to investigate the immune response elicited by SLT-IIv. Immunoblot analysis with the recombinant SLT-IIv fusion protein revealed that the number of IgG-positive serum samples increased within this period of 40 days from one on day 4, to seven on day 20, to ten on day 40; the number of IgM-positive samples also increased from one after 4 days to eight after 20 days. Forty days after disease onset, IgM reactivity was no longer detectable. Since all animals seroconverted in the follow-up sera, the antigenicity of SLT-IIv during infection of pigs seems to differ from that of SLT-II in human hemolytic uremic syndrome where only a minority of patients are known to mount an immune response. The recombinant SLT-IIvB described here may be a possible candidate for vaccination trials.

Animals↗

Genotyping of Shiga-like toxin genes in non-O157 Escherichia coli strains associated with haemolytic uraemic syndrome.

The pheno- and genotypes of Shiga-like toxins (SLTs) in non-O157 Escherichia coli strains from patients with haemolytic uraemic syndrome were determined. The clinical isolates investigated were from Italy and Germany and belonged to serotypes O22:H8, O26:H-, O26:H11, O91:H-, O111:H- and O128:H-; one isolate was non-typable. SLT genotypes were analysed by complete nucleotide sequence analysis of the B-subunit genes. The results showed that 14 strains possessed slt-I alone, two contained slt-II alone and five isolates harboured both slt-I and slt-II genes. In only two strains were slt-II-related genes found, together with either slt-I or slt-II. These findings indicate that variants of SLT-II are rarely found in non-O157 E. coli isolates from patients with haemolytic uraemic syndrome. Polymerase chain reaction (PCR) with Taq cycle sequencing was found to be a suitable method for classification of slt genotypes.

Bacterial Toxins↗

Pheno-genotyping of verotoxin 2 (VT2)-producing Escherichia coli causing haemorrhagic colitis and haemolytic uraemic syndrome by direct analysis of patients' stools.

The subtype of verotoxin 2 (VT2) found in 22 VT2-positive stool samples from severely diseased Italian and German children with haemorrhagic colitis or haemolytic uraemic syndrome, or both, and that produced by the corresponding VT-producing Escherichia coli (VTEC) strains isolated from the stools were studied by cytotoxicity seroneutralisation assays and by polymerase chain reaction (PCR) amplification of the VT2 B-subunit gene, followed by restriction fragment length polymorphism (RFLP) analysis. The free faecal toxin was serotyped as the classical VT2 in 21 stool samples, and as the VT2 variant VT2c in one. For all but one of the VTEC isolates, the toxin phenotype was consistent with the type of VT produced in vivo and found in the corresponding stool samples. Genotyping was in agreement with phenotyping for those strains harbouring a single type of VT2 gene. Three O157:H7 isolates carrying both VT2 and VT2c genes had the VT2 phenotype, instead of the expected VT2c phenotype. Direct PCR analysis of stools detected VT genes in only 11 of 20 VT-positive stool samples suggesting that the Vero cell cytotoxicity assay is more sensitive in diagnosing VTEC infection. Immunological and genetic subtyping of VT2 performed directly on stool samples from patients with haemolytic uraemic syndrome could be a useful complementary approach to understanding the role of the different types of VT in this syndrome.

Animals↗

Bactericidal properties of Campylobacter jejuni-specific immunoglobulin M antibodies in commercial immunoglobulin preparations.

Campylobacter jejuni is one of the most common enterocolitis-causing microorganisms worldwide. It is of particular importance in immunodeficient patients, who frequently are prone to develop extraintestinal manifestations. Since these cases respond poorly to antibiotic treatment, a supportive immunomodulating therapy including the administration of C. jejuni-specific immunoglobulins would be desirable. In the present study, nine commercial immunoglobulin preparations for intravenous use were tested for the presence of C. jejuni lipopolysaccharide (LPS)- and outer membrane protein (OMP)-specific antibodies by using immunoblot and enzyme-linked immunosorbent assay techniques. The immunoglobulin G (IgG) antibody reactivities against these antigens were comparable in eight of nine tested immunoglobulin preparations. Only in one preparation were C. jejuni OMP- and LPS-specific IgM antibodies found. In this preparation the immunoblot test revealed a strong reactivity against both flagellin and a major OMP. Moreover, all immunoglobulin preparations recognized OMPs of C. jejuni serotypes Lior 4, 9, 11, and 29 equally strongly, while the reactivity to an anti-Lior 36 isolate was less marked. Furthermore, the bactericidal properties of three immunoglobulin preparations were tested by means of chemiluminescence signaling in and bacterial killing by human polymorphonuclear leukocytes (PMNL). The results show that the IgM preparation enhanced Campylobacter-triggered chemiluminescence signaling in PMNL as well as killing of C. jejuni by PMNL, while the other immunoglobulin preparations did not do so. These results suggest that the administration of immunoglobulin preparations containing C. jejuni-specific IgM antibodies would be beneficial for patients with severe C. jejuni infections.

Antibodies, Bacterial↗

Molecular analysis of the plasmid-encoded hemolysin of Escherichia coli O157:H7 strain EDL 933.

In this study, we determined the nucleotide sequence of the 5.4-kb SalI restriction fragment of the recombinant plasmid pEO40-1, cloned from the large plasmid of enterohemorrhagic Escherichia coli (EHEC) O157:H7 strain EDL 933. This revealed two open reading frames which shared approximately 60% homology to the hlyC and hlyA genes of the E. coli alpha-hemolysin (alpha-hly) operon. We termed these genes EHEC-hlyA and EHEC-hlyC to distinguish them from the alpha-hly genes. Preliminary sequence analysis indicated that another open reading frame homolog to the hlyB gene is located close to the 3' end of EHEC-hlyA. The predicted molecular masses of the EHEC-hlyA and EHEC-hlyC gene products were 107 and 19.9 kDa, respectively. The EHEC hemolysin protein (EHEC-Hly) was not secreted into the culture supernatant by the strain EDL 933. However, hemolytic activity was found in the broth culture supernatant after transforming EDL 933 with the recombinant plasmid pRSC6 carrying the hlyB and hlyD genes from the E. coli alpha-hemolysin operon. The EHEC hemolysin was precipitated and used as an antigen for immunoblot analysis. This demonstrated that 19 of 20 reconvalescent-phase serum samples from patients with hemolytic uremic syndrome reacted specifically with the antigen; conversely, only 1 of 20 control serum samples demonstrated reactivity. To investigate the prevalence of EHEC hemolysin genes in diarrheagenic E. coli, a PCR was developed to specifically detect EHEC-hlyA. All Shiga-like toxin-producing O157 strains and 12 of 25 Shiga-like toxin-producing non-O157 strains were PCR positive; strains of other categories of diarrheagenic E. coli were PCR negative. All PCR-positive strains hybridized with the CVD 419 probe. We found the CVD 419 probe to be identical to the 3.4-kb HindIII fragment of plasmid pEO40 carrying most of the EHEC-hlyA gene and a part of the putative EHEC-hlyB gene. In this study, the newly discovered EHEC hemolysin was shown to be responsible for the enterohemolytic phenotype and demonstrated to be related but not identical to alpha-hemolysin. The EHEC hemolysin appears to have clinical importance because it occurs in all O157 strains tested and is reactive to sera of patients with hemolytic uremic syndrome.

Acyltransferases↗

Identification of Actinobacillus actinomycetemcomitans in subgingival plaque by PCR.

The purpose of this study was to assess the sensitivity and specificity of the PCR in detecting Actinobacillus actinomycetemcomitans. The PCR's detection capability was compared with those of three other methods: culture-enhanced PCR (CE-PCR), colony hybridization (CH), and conventional culture with presumptive biochemical identification. A 285-bp stretch of the leukotoxin gene lktA of A. actinomycetemcomitans was amplified by PCR with primers TT-15 and TT-16. For CH, the PCR product was labeled with digoxigenin and used as a hybridization probe. Nucleotide sequence analysis of the PCR product of A. actinomycetemcomitans 1D4 and 1664 and three clinical isolates revealed complete homology among the tested strains, with only one base substitution (at position 1344) in comparison with the published sequence. With artificially infected subgingival plaque, the detection limit of PCR for A. actinomycetemcomitans was 10(3) CFU/ml of plaque suspension. Culturing subgingival plaque on tryptic soy-serum-bacitracin-vancomycin agar prior to PCR (CE-PCR) improved the limit of detection to 10(2) CFU/ml. Analysis of subgingival plaque samples from 35 patients with periodontal disease and 10 periodontally healthy subjects revealed that CE-PCR and CH had the highest overall rate of A. actinomycetemcomitans detection (both 58%), followed by PCR and culture (both 42%). With CH as the "gold standard", the sensitivities of CE-PCR, PCR, and culture were 88, 65, and 58%, respectively; the specificities were 84, 89, and 79%, respectively. The CE-PCR provided acceptable positive and negative predictive values (> or = 70%) when the prevalence of A. actinomycetemcomitans varied between 30 and 70%. PCR alone provided comparable predictive values over a narrower range of prevalence rates (30 to 50%), while culture did not afford acceptable predictive values at any prevalence rate. PCR and CE-PCR were found to be superior to culture with presumptive biochemical identification and should be the preferred methods for the detection of A. actinomycetemcomitans in subgingival plaque.

Aggregatibacter actinomycetemcomitans↗

Clonal relatedness of Shiga-like toxin-producing Escherichia coli O101 strains of human and porcine origin.

Shiga-like toxin (SLT)-producing Escherichia coli (SLTEC) O101 has recently been associated with hemorrhagic colitis and hemolytic-uremic syndrome in humans. In this study, SLTEC O101 strains from humans and pigs were characterized for clonal relatedness by nucleotide sequence analysis of their slt genes, DNA finger-printing of genomic DNA, and determination of virulence factors. The slt genes of five E. coli O101 strains were cloned and sequenced. For all strains, the deduced amino acid sequences of the B subunits were identical to those of the SLT-IIe present in the classical SLTEC O139 strains that cause edema disease in pigs. The A subunit revealed more than 99% homology to that of SLT-IIe. DNA fingerprinting revealed a high degree of genetic relatedness between the human and porcine O101 isolates. None of the O101 strains investigated had virulence factors frequently found in porcine (F107 fimbriae or heat-stable or heat-labile enterotoxins) or human SLTEC strains (eaeA or enterohemorrhagic E. coli hemolysin). The absence of virulence factors typical of SLT-I- and SLT-II-producing E. Coli together with the presence of SLT-IIe, a toxin previously seen only in porcine E. coli, suggests a new pathogenic mechanism for E. coli O101 infection of humans. For diagnostic purposes, we recommend the use of PCR primers and DNA probes complementary to slt-IIe to correctly identify such strains and to further evaluate their role in human diseases.

Amino Acid Sequence↗

Virulence markers of Shiga-like toxin-producing Escherichia coli strains originating from healthy domestic animals of different species.

Shiga-like toxin (verotoxin)-producing strains of Escherichia coli (SLTEC) originating from healthy cattle, sheep, goats, pigs, cats, and dogs were investigated for properties which are related to virulence of E. coli for humans. The slt-II (Shiga-like toxin II) and slt-IIc genes were frequent in SLTEC from healthy cattle and dogs but were rarely found in SLTEC from other animals. The slt-IIe gene was detected only in porcine SLTEC. SLTEC from goats and SLTEC from sheep were found to carry different SLT-II determinants which were not further characterized genetically. Sixty (28.8%) of 208 SLTEC from healthy animals showed diffuse adherence to HEp-2 cells. However, none of the strains was positive for genes specific for the local adherence (eaf), diffuse adherence (daa), or enteroaggregative (EAggEC) E. coli type. Only 3 (1.4%) of the 208 SLTEC were positive for attaching and effacing E. coli (eae) sequences. The enterohemolytic phenotype was present in 128 of the 208 SLTEC. Almost all enterohemolytic animal SLTEC were found to carry DNA sequences specific for the plasmid-encoded enterohemorrhagic E. coli hemolysin of E. coli O157. Bacteriophage-associated enterohemolysin (Ehly1 and Ehly2)-specific sequences were detected only in 14.4% of the 208 SLTEC and were linked with certain serotypes. The SLTEC from healthy animals constitute a very heterogeneous group of E. coli, and many of these strains appeared to be specific for their hosts. The absence of eae sequences in most animal SLTEC could indicate that these strains are less virulent for humans than the classical eae-positive enterohemorrhagic E. coli types.

Animals↗

Development of PCR for screening of enteroaggregative Escherichia coli.

In this study, we determined the sequence of the EcoRI-PstI fragment of the plasmid pCVD432, also termed the enteroaggregative Escherichia coli (EAggEC) probe. A primer pair complementary to this probe was designed for PCR amplification of a 630-bp region. Comparison of the analysis of the EAggEC probe sequence with those in database libraries revealed no significant similarity to any known bacterial gene. Pure cultures of E. coli cells, as well as mixed cultures from stool specimens, were investigated with the PCR assay, the EAggEC probe test, and the adherence test. Of 50 E. coli strains which demonstrated aggregative adherence to HEp-2 cells, 43 (86%) were positive with the EAggEC PCR. All 43 of these strains reacted with the EAggEC probe. Six EAggEC strains gave negative results by both molecular techniques. In contrast, only 4 of 418 (0.96%) strains representing other categories of diarrheagenic E. coli demonstrated a positive PCR result. The PCR was also successful in screening for the presence of EAggEC in enriched cultures grown from stool specimens. Compared with cell culture assays and colony hybridization, our findings revealed that the PCR assay was more rapid, simple, and highly sensitive and can therefore be recommended as a screening method for EAggEC in the clinical laboratory.

Adolescent↗

Long-term shedding and clonal turnover of enterohemorrhagic Escherichia coli O157 in diarrheal diseases.

To investigate the length of time that Shiga-like toxin-producing Escherichia coli O157 is excreted after the onset of diarrhea, 456 serial stool specimens were obtained from 53 children. E. coli O157 cells were identified by the use of DNA probes followed by agglutination with a specific antiserum. Specimens were collected until three consecutive stool samples (collected within 9 days) were negative for E. coli O157. The median durations of shedding were 13 days (range, 2 to 62 days) in patients with diarrhea or hemorrhagic colitis and 21 days (range, 5 to 124 days) in patients that developed hemolytic uremic syndrome. In 36 (68%) of the patients, only the first culture was O157 positive, and the three cultures that followed were negative. In 7 (13%) of the patients, E. coli O157 cells were shed for more than 32 days after the onset of diarrhea; these long-term shedders were clinically asymptomatic by the end of this period. In 12 patients, one or two serial O157-negative cultures, obtained up to 8 days after a positive culture, were followed by another positive culture. Comparison of the first and last E. coli O157 isolates by pulsed-field gel electrophoresis revealed that in three of the seven long-term shedders, pulsed-field gel electrophoresis types varied. In two cases, a Shiga-like toxin gene was apparently lost during infection. The observation of long-term shedding accompanied by genotypic turnover has epidemiological and diagnostic implications.

Bacterial Toxins↗