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Metabolic alterations in children with environmental enteric dysfunction
Richard D. Semba
, Michelle Shardell
, Indi Trehan
, Ruin Moaddel
, Kenneth M. Maleta
, M. Isabel Ordiz
, Klaus Kraemer
, Mohammed Khadeer
, Luigi Ferrucci
,
Mark J. Manary
Division of Emergency Medicine
Institute of Clinical and Translational Sciences (ICTS)
Research output
:
Contribution to journal
›
Article
›
peer-review
48
Scopus citations
Overview
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Keyphrases
Metabolic Alterations
100%
Environmental Enteric Dysfunction
100%
Increased Intestinal Permeability
66%
Inflammation
33%
Low Serum
33%
Acute Malnutrition
33%
Phosphatidylcholine
33%
Major Contributor
33%
Tryptophan
33%
Serum Serotonin
33%
Extracellular Glutamate
33%
Malabsorption
33%
Small Intestinal mucosa
33%
Low-income Countries
33%
Rural Malawi
33%
Gut Function
33%
Sphingomyelin
33%
Serum Metabolites
33%
Villous Atrophy
33%
Child Stunting
33%
Circulating Metabolites
33%
Gut Integrity
33%
Gut Permeability
33%
Citrulline
33%
Ornithine
33%
Medicine and Dentistry
Gut
100%
Metabolite
100%
Intestinal Permeability
100%
Malabsorption
50%
Glutamic Acid
50%
Serotonin
50%
Tryptophan
50%
Intestine Villus Atrophy
50%
Egg Lecithin
50%
Sphingomyelin
50%
Small Intestine Mucosa
50%
Asymptomatic Disease
50%
Taurine
50%
Ornithine
50%
Citrulline
50%
Serum Metabolite
50%
Pharmacology, Toxicology and Pharmaceutical Science
Intestinal Permeability
100%
Inflammation
50%
Serotonin
50%
Taurine
50%
Glutamic Acid
50%
Malabsorption
50%
Tryptophan
50%
Sphingomyelin
50%
Intestine Villus Atrophy
50%
Asymptomatic Disease
50%
Ornithine
50%
Egg Lecithin
50%
Citrulline
50%
Biochemistry, Genetics and Molecular Biology
Metabolite
100%
Grand Unified Theory
100%
Small Intestine Mucosa
50%
Taurine
50%
Tryptophan
50%
Glutamic Acid
50%
Serotonin
50%
Lecithin
50%
Ornithine
50%
Citrulline
50%
Sphingomyelin
50%
Serum Metabolite
50%
Immunology and Microbiology
Metabolite
100%
Small Intestine Mucosa
33%
Tryptophan
33%
Taurine
33%