Pathogenesis of 'Cronobacter' Species: Enterotoxin Production, Adhesion and Invasion of the Blood Brain Barrier

Cronobacter species cause serious infections such as meningitis and enteritis in newborns and neonates, with the major vehicle being contaminated powdered infant formula. The main objectives of this study were i) to identify potential virulence factors, such as enterotoxin production; ii) characteri...

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Main Author: Abdesselam, Kahina
Language:en
Published: 2012
Subjects:
Online Access:http://hdl.handle.net/10393/23167
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spelling ndltd-LACETR-oai-collectionscanada.gc.ca-OOU-OLD.-231672013-04-05T03:21:38ZPathogenesis of 'Cronobacter' Species: Enterotoxin Production, Adhesion and Invasion of the Blood Brain BarrierAbdesselam, KahinaCronobacter spp.Enterotoxin productionAdhesion and Invasion of the blood brain barrierBiofilmsDiguanylate cyclaseThreonine SynthaseCronobacter species cause serious infections such as meningitis and enteritis in newborns and neonates, with the major vehicle being contaminated powdered infant formula. The main objectives of this study were i) to identify potential virulence factors, such as enterotoxin production; ii) characterize the gene(s) involved in adhesion and invasion of the human brain microvascular endothelial cells (HBMEC); and iii) determine whether strains from clinical, food, and environmental sources differ in their ability to produce surface-attached bacterial aggregates, known as biofilms. Random transposon mutagenesis was used on strains demonstrating the best adherence and invasion to blood- brain barrier cell lines (BBB). Isogenic mutants were then screened for increased or decreased adherence and invasion. Screening of the transposon library identified one isogenic mutant of a clinical strain which lost the ability to adhere to BBB cells. The transposon rescue revealed the insertion site to be within a diguanylate cyclase (DGC) gene. The major function of DGC in many Gram-negative bacteria is to synthesize cyclic diguanylate (c-di-GMP), a secondary bacterial metabolite known for regulating biofilm formation, motility, and virulence or aspects of microbial pathogenicity. Based on the findings of this study, DGC appears to play an important role in Cronobacter species’ ability to produce biofilms and may also have a role of the pathogenicity in the microorganism.2012-08-21T09:15:48Z2012-08-21T09:15:48Z20122012-08-21Thèse / Thesishttp://hdl.handle.net/10393/23167en
collection NDLTD
language en
sources NDLTD
topic Cronobacter spp.
Enterotoxin production
Adhesion and Invasion of the blood brain barrier
Biofilms
Diguanylate cyclase
Threonine Synthase
spellingShingle Cronobacter spp.
Enterotoxin production
Adhesion and Invasion of the blood brain barrier
Biofilms
Diguanylate cyclase
Threonine Synthase
Abdesselam, Kahina
Pathogenesis of 'Cronobacter' Species: Enterotoxin Production, Adhesion and Invasion of the Blood Brain Barrier
description Cronobacter species cause serious infections such as meningitis and enteritis in newborns and neonates, with the major vehicle being contaminated powdered infant formula. The main objectives of this study were i) to identify potential virulence factors, such as enterotoxin production; ii) characterize the gene(s) involved in adhesion and invasion of the human brain microvascular endothelial cells (HBMEC); and iii) determine whether strains from clinical, food, and environmental sources differ in their ability to produce surface-attached bacterial aggregates, known as biofilms. Random transposon mutagenesis was used on strains demonstrating the best adherence and invasion to blood- brain barrier cell lines (BBB). Isogenic mutants were then screened for increased or decreased adherence and invasion. Screening of the transposon library identified one isogenic mutant of a clinical strain which lost the ability to adhere to BBB cells. The transposon rescue revealed the insertion site to be within a diguanylate cyclase (DGC) gene. The major function of DGC in many Gram-negative bacteria is to synthesize cyclic diguanylate (c-di-GMP), a secondary bacterial metabolite known for regulating biofilm formation, motility, and virulence or aspects of microbial pathogenicity. Based on the findings of this study, DGC appears to play an important role in Cronobacter species’ ability to produce biofilms and may also have a role of the pathogenicity in the microorganism.
author Abdesselam, Kahina
author_facet Abdesselam, Kahina
author_sort Abdesselam, Kahina
title Pathogenesis of 'Cronobacter' Species: Enterotoxin Production, Adhesion and Invasion of the Blood Brain Barrier
title_short Pathogenesis of 'Cronobacter' Species: Enterotoxin Production, Adhesion and Invasion of the Blood Brain Barrier
title_full Pathogenesis of 'Cronobacter' Species: Enterotoxin Production, Adhesion and Invasion of the Blood Brain Barrier
title_fullStr Pathogenesis of 'Cronobacter' Species: Enterotoxin Production, Adhesion and Invasion of the Blood Brain Barrier
title_full_unstemmed Pathogenesis of 'Cronobacter' Species: Enterotoxin Production, Adhesion and Invasion of the Blood Brain Barrier
title_sort pathogenesis of 'cronobacter' species: enterotoxin production, adhesion and invasion of the blood brain barrier
publishDate 2012
url http://hdl.handle.net/10393/23167
work_keys_str_mv AT abdesselamkahina pathogenesisofcronobacterspeciesenterotoxinproductionadhesionandinvasionofthebloodbrainbarrier
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