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Innate Immune Responses and Gut Microbiomes Distinguish HIV-Exposed from HIV-Unexposed Children in a Population-Specific Manner
Author(s) -
Nelly Amenyogbe,
Pedro A. Dimitriu,
Patricia Cho,
Candice Ruck,
Edgardo S. Fortuno,
Bing Cai,
Ariane Alimenti,
Hélène C. F. Côté,
Evelyn J. Maan,
Amy L. Slogrove,
Monika Esser,
Arnaud Marchant,
Tessa Goetghebuer,
Casey P. Shan,
Scott J. Tebbutt,
Tobias R. Kollmann,
William W. Mohn,
Kinga K. Smolen
Publication year - 2020
Publication title -
the journal of immunology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 2.737
H-Index - 372
eISSN - 1550-6606
pISSN - 0022-1767
DOI - 10.4049/jimmunol.2000040
Subject(s) - microbiome , innate immune system , biology , immunology , population , immunity , immune system , medicine , environmental health , genetics
In both high- and low-income countries, HIV-negative children born to HIV-positive mothers (HIV exposed, uninfected [HEU]) are more susceptible to severe infection than HIV-unexposed, uninfected (HUU) children, with altered innate immunity hypothesized to be a cause. Both the gut microbiome and systemic innate immunity differ across biogeographically distinct settings, and the two are known to influence each other. And although the gut microbiome is influenced by HIV infection and may contribute to altered immunity, the biogeography of immune-microbiome correlations among HEU children have not been investigated. To address this, we compared the innate response and the stool microbiome of 2-y-old HEU and HUU children from Belgium, Canada, and South Africa to test the hypothesis that region-specific immune alterations directly correlate to differences in their stool microbiomes. We did not detect a universal immune or microbiome signature underlying differences between HEU versus HUU that was applicable to all children. But as hypothesized, population-specific differences in stool microbiomes were readily detected and included reduced abundances of short-chain fatty acid-producing bacteria in Canadian HEU children. Furthermore, we did not identify innate immune-microbiome associations that distinguished HEU from HUU children in any population. These findings suggest that maternal HIV infection is independently associated with differences in both innate immunity and the stool microbiome in a biogeographical population-specific way.

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