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Helicobacter pylori infection in infant rhesus macaque monkeys is associated with an altered lung and oral microbiome
by
Dandekar, Satya
, Rolston, Matthew
, Solnick, Jay V.
, Jimenez, Monica T.
, Siegel, Noah A.
, Rocha, Clarissa Santos
, Miller, Lisa A.
in
631/326/2565/2134
/ 692/308/1426
/ 692/308/3187
/ Animal models
/ Animals
/ Biopsy
/ Children
/ Colonization
/ Disease Models, Animal
/ Firmicutes
/ Helicobacter Infections - microbiology
/ Helicobacter pylori
/ Helicobacter pylori - genetics
/ Humanities and Social Sciences
/ Infants
/ Infections
/ Interleukin 8
/ Lung - microbiology
/ Lungs
/ Macaca mulatta
/ Macaca mulatta - microbiology
/ Male
/ Microbial activity
/ Microbiomes
/ Microbiota
/ Mouth - microbiology
/ multidisciplinary
/ Oral cavity
/ Proteobacteria
/ Relative abundance
/ RNA, Ribosomal, 16S - genetics
/ rRNA 16S
/ Science
/ Science (multidisciplinary)
/ World population
2024
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Helicobacter pylori infection in infant rhesus macaque monkeys is associated with an altered lung and oral microbiome
by
Dandekar, Satya
, Rolston, Matthew
, Solnick, Jay V.
, Jimenez, Monica T.
, Siegel, Noah A.
, Rocha, Clarissa Santos
, Miller, Lisa A.
in
631/326/2565/2134
/ 692/308/1426
/ 692/308/3187
/ Animal models
/ Animals
/ Biopsy
/ Children
/ Colonization
/ Disease Models, Animal
/ Firmicutes
/ Helicobacter Infections - microbiology
/ Helicobacter pylori
/ Helicobacter pylori - genetics
/ Humanities and Social Sciences
/ Infants
/ Infections
/ Interleukin 8
/ Lung - microbiology
/ Lungs
/ Macaca mulatta
/ Macaca mulatta - microbiology
/ Male
/ Microbial activity
/ Microbiomes
/ Microbiota
/ Mouth - microbiology
/ multidisciplinary
/ Oral cavity
/ Proteobacteria
/ Relative abundance
/ RNA, Ribosomal, 16S - genetics
/ rRNA 16S
/ Science
/ Science (multidisciplinary)
/ World population
2024
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While trying to remove the title from your shelf something went wrong :( Kindly try again later!
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Helicobacter pylori infection in infant rhesus macaque monkeys is associated with an altered lung and oral microbiome
by
Dandekar, Satya
, Rolston, Matthew
, Solnick, Jay V.
, Jimenez, Monica T.
, Siegel, Noah A.
, Rocha, Clarissa Santos
, Miller, Lisa A.
in
631/326/2565/2134
/ 692/308/1426
/ 692/308/3187
/ Animal models
/ Animals
/ Biopsy
/ Children
/ Colonization
/ Disease Models, Animal
/ Firmicutes
/ Helicobacter Infections - microbiology
/ Helicobacter pylori
/ Helicobacter pylori - genetics
/ Humanities and Social Sciences
/ Infants
/ Infections
/ Interleukin 8
/ Lung - microbiology
/ Lungs
/ Macaca mulatta
/ Macaca mulatta - microbiology
/ Male
/ Microbial activity
/ Microbiomes
/ Microbiota
/ Mouth - microbiology
/ multidisciplinary
/ Oral cavity
/ Proteobacteria
/ Relative abundance
/ RNA, Ribosomal, 16S - genetics
/ rRNA 16S
/ Science
/ Science (multidisciplinary)
/ World population
2024
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Helicobacter pylori infection in infant rhesus macaque monkeys is associated with an altered lung and oral microbiome
Journal Article
Helicobacter pylori infection in infant rhesus macaque monkeys is associated with an altered lung and oral microbiome
2024
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Overview
It is estimated that more than half of the world population has been infected with
Helicobacter pylori
. Most newly acquired
H. pylori
infections occur in children before 10 years of age. We hypothesized that early life
H. pylori
infection could influence the composition of the microbiome at mucosal sites distant to the stomach. To test this hypothesis, we utilized the infant rhesus macaque monkey as an animal model of natural
H. pylori
colonization to determine the impact of infection on the lung and oral microbiome during a window of postnatal development. From a cohort of 4–7 month-old monkeys, gastric biopsy cultures identified 44% of animals infected by
H. pylori
. 16S ribosomal RNA gene sequencing of lung washes and buccal swabs from animals showed distinct profiles for the lung and oral microbiome, independent of
H. pylori
infection. In order of relative abundance, the lung microbiome was dominated by the phyla Proteobacteria, Firmicutes, Bacteroidota, Fusobacteriota, Campilobacterota and Actinobacteriota while the oral microbiome was dominated by Proteobacteria, Firmicutes, Bacteroidota, and Fusobacteriota. In comparison to the oral cavity, the lung was composed of more genera and species that significantly differed by
H. pylori
status, with a total of 6 genera and species that were increased in
H. pylori
negative infant monkey lungs. Lung, but not plasma IL-8 concentration was also associated with gastric
H. pylori
load and lung microbial composition. We found the infant rhesus macaque monkey lung harbors a microbiome signature that is distinct from that of the oral cavity during postnatal development. Gastric
H. pylori
colonization and IL-8 protein were linked to the composition of microbial communities in the lung and oral cavity. Collectively, these findings provide insight into how
H. pylori
infection might contribute to the gut-lung axis during early childhood and modulate future respiratory health.
Publisher
Nature Publishing Group UK,Nature Publishing Group,Nature Portfolio
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