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Crosstalk between Entamoeba histolytica and the human intestinal tract during amoebiasis
by
Labruyère, Elisabeth
, Thibeaux, Roman
, Guillén, Nancy
, Olivo-Marin, Jean-Christophe
in
amebiasis
/ Amebiasis - parasitology
/ Amebiasis - physiopathology
/ Animals
/ Bacteria
/ Carbohydrate metabolism
/ Carbohydrates
/ Cellular Biology
/ Colon
/ Colon - cytology
/ Colon - parasitology
/ Crosstalk
/ Cysts
/ Disease
/ Entamoeba histolytica
/ Entamoeba histolytica - pathogenicity
/ Enzymes
/ Epithelium
/ Extracellular matrix
/ Gene expression
/ Genome, Bacterial
/ Genotype & phenotype
/ glycosylation
/ Host-Parasite Interactions
/ Human health and pathology
/ Humans
/ Infections
/ Infectious diseases
/ Inflammation
/ Inflammatory response
/ intestinal mucosa
/ Intestinal Mucosa - parasitology
/ Intestinal Mucosa - physiology
/ Intestine
/ Life Sciences
/ Lytic enzymes
/ Microbiology and Parasitology
/ Microbiota
/ Microorganisms
/ Morbidity
/ mortality
/ Motility
/ Mucosa
/ Mucus
/ Parasites
/ Parenchyma
/ parenchyma (animal tissue)
/ Pathogenesis
/ phenotype
/ Phenotypes
/ Protozoa
/ Signal Transduction
/ Special Issue Review
/ Tissues and Organs
/ Transcriptome
/ virulence
2019
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Crosstalk between Entamoeba histolytica and the human intestinal tract during amoebiasis
by
Labruyère, Elisabeth
, Thibeaux, Roman
, Guillén, Nancy
, Olivo-Marin, Jean-Christophe
in
amebiasis
/ Amebiasis - parasitology
/ Amebiasis - physiopathology
/ Animals
/ Bacteria
/ Carbohydrate metabolism
/ Carbohydrates
/ Cellular Biology
/ Colon
/ Colon - cytology
/ Colon - parasitology
/ Crosstalk
/ Cysts
/ Disease
/ Entamoeba histolytica
/ Entamoeba histolytica - pathogenicity
/ Enzymes
/ Epithelium
/ Extracellular matrix
/ Gene expression
/ Genome, Bacterial
/ Genotype & phenotype
/ glycosylation
/ Host-Parasite Interactions
/ Human health and pathology
/ Humans
/ Infections
/ Infectious diseases
/ Inflammation
/ Inflammatory response
/ intestinal mucosa
/ Intestinal Mucosa - parasitology
/ Intestinal Mucosa - physiology
/ Intestine
/ Life Sciences
/ Lytic enzymes
/ Microbiology and Parasitology
/ Microbiota
/ Microorganisms
/ Morbidity
/ mortality
/ Motility
/ Mucosa
/ Mucus
/ Parasites
/ Parenchyma
/ parenchyma (animal tissue)
/ Pathogenesis
/ phenotype
/ Phenotypes
/ Protozoa
/ Signal Transduction
/ Special Issue Review
/ Tissues and Organs
/ Transcriptome
/ virulence
2019
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Crosstalk between Entamoeba histolytica and the human intestinal tract during amoebiasis
by
Labruyère, Elisabeth
, Thibeaux, Roman
, Guillén, Nancy
, Olivo-Marin, Jean-Christophe
in
amebiasis
/ Amebiasis - parasitology
/ Amebiasis - physiopathology
/ Animals
/ Bacteria
/ Carbohydrate metabolism
/ Carbohydrates
/ Cellular Biology
/ Colon
/ Colon - cytology
/ Colon - parasitology
/ Crosstalk
/ Cysts
/ Disease
/ Entamoeba histolytica
/ Entamoeba histolytica - pathogenicity
/ Enzymes
/ Epithelium
/ Extracellular matrix
/ Gene expression
/ Genome, Bacterial
/ Genotype & phenotype
/ glycosylation
/ Host-Parasite Interactions
/ Human health and pathology
/ Humans
/ Infections
/ Infectious diseases
/ Inflammation
/ Inflammatory response
/ intestinal mucosa
/ Intestinal Mucosa - parasitology
/ Intestinal Mucosa - physiology
/ Intestine
/ Life Sciences
/ Lytic enzymes
/ Microbiology and Parasitology
/ Microbiota
/ Microorganisms
/ Morbidity
/ mortality
/ Motility
/ Mucosa
/ Mucus
/ Parasites
/ Parenchyma
/ parenchyma (animal tissue)
/ Pathogenesis
/ phenotype
/ Phenotypes
/ Protozoa
/ Signal Transduction
/ Special Issue Review
/ Tissues and Organs
/ Transcriptome
/ virulence
2019
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Crosstalk between Entamoeba histolytica and the human intestinal tract during amoebiasis
Journal Article
Crosstalk between Entamoeba histolytica and the human intestinal tract during amoebiasis
2019
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Overview
The protozoan parasite Entamoeba histolytica is the microbial agent of amoebiasis – an infection that is endemic worldwide and is associated with high morbidity and mortality rates. As the disease develops, virulent E. histolytica deplete the mucus layer, interact with the intestinal epithelium, and then degrade the colonic mucosa and disrupt the extracellular matrix (ECM). Our research demonstrated that virulent parasites with an invasive phenotype display rapid, highly specific changes in their transcriptome (notably for essential factors involved in carbohydrate metabolism and the processing of glycosylated residues). Moreover, combined activation of parasite and host lytic enzymes leads to the destruction of the intestinal parenchyma. Together, these enzymes degrade the mucus layer and the ECM, and trigger the inflammatory response essential to the development of amoebiasis.
Publisher
Cambridge University Press
Subject
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