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Avian-pathogenic Escherichia Coli Strains Are Similar to Neonatal Meningitis E. Coli Strains and Are Able to Cause Meningitis in the Rat Model of Human Disease

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Journal Infect Immun
Date 2010 Jun 3
PMID 20515929
Citations 103
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Abstract

Escherichia coli strains causing avian colibacillosis and human neonatal meningitis, urinary tract infections, and septicemia are collectively known as extraintestinal pathogenic E. coli (ExPEC). Characterization of ExPEC strains using various typing techniques has shown that they harbor many similarities, despite their isolation from different host species, leading to the hypothesis that ExPEC may have zoonotic potential. The present study examined a subset of ExPEC strains: neonatal meningitis E. coli (NMEC) strains and avian-pathogenic E. coli (APEC) strains belonging to the O18 serogroup. The study found that they were not easily differentiated on the basis of multilocus sequence typing, phylogenetic typing, or carriage of large virulence plasmids. Among the APEC strains examined, one strain was found to be an outlier, based on the results of these typing methods, and demonstrated reduced virulence in murine and avian pathogenicity models. Some of the APEC strains tested in a rat model of human neonatal meningitis were able to cause meningitis, demonstrating APEC's ability to cause disease in mammals, lending support to the hypothesis that APEC strains have zoonotic potential. In addition, some NMEC strains were able to cause avian colisepticemia, providing further support for this hypothesis. However, not all of the NMEC and APEC strains tested were able to cause disease in avian and murine hosts, despite the apparent similarities in their known virulence attributes. Thus, it appears that a subset of NMEC and APEC strains harbors zoonotic potential, while other strains do not, suggesting that unknown mechanisms underlie host specificity in some ExPEC strains.

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References
1.
Mora A, Lopez C, Dabhi G, Blanco M, Blanco J, Alonso M . Extraintestinal pathogenic Escherichia coli O1:K1:H7/NM from human and avian origin: detection of clonal groups B2 ST95 and D ST59 with different host distribution. BMC Microbiol. 2009; 9:132. PMC: 2713252. DOI: 10.1186/1471-2180-9-132. View

2.
Johnson J, Sannes M, Croy C, Johnston B, Clabots C, Kuskowski M . Antimicrobial drug-resistant Escherichia coli from humans and poultry products, Minnesota and Wisconsin, 2002-2004. Emerg Infect Dis. 2007; 13(6):838-46. PMC: 2792839. DOI: 10.3201/eid1306.061576. View

3.
Ewers C, Li G, Wilking H, Kiessling S, Alt K, Antao E . Avian pathogenic, uropathogenic, and newborn meningitis-causing Escherichia coli: how closely related are they?. Int J Med Microbiol. 2007; 297(3):163-76. DOI: 10.1016/j.ijmm.2007.01.003. View

4.
Skyberg J, Johnson T, Johnson J, Clabots C, Logue C, Nolan L . Acquisition of avian pathogenic Escherichia coli plasmids by a commensal E. coli isolate enhances its abilities to kill chicken embryos, grow in human urine, and colonize the murine kidney. Infect Immun. 2006; 74(11):6287-92. PMC: 1695531. DOI: 10.1128/IAI.00363-06. View

5.
Ginns C, Benham M, Adams L, Whithear K, Bettelheim K, Crabb B . Colonization of the respiratory tract by a virulent strain of avian Escherichia coli requires carriage of a conjugative plasmid. Infect Immun. 2000; 68(3):1535-41. PMC: 97312. DOI: 10.1128/IAI.68.3.1535-1541.2000. View