Human cytomegalovirus in breast milk is associated with milk composition and the infant gut microbiome and growth

Human cytomegalovirus (CMV) is a highly prevalent herpesvirus that is often transmitted to the neonate via breast milk. Postnatal CMV transmission can have negative health consequences for preterm and immunocompromised infants, but any effects on healthy term infants are thought to be benign. Furthe...

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Published inNature communications Vol. 15; no. 1; pp. 6216 - 15
Main Authors Johnson, Kelsey E, Hernandez-Alvarado, Nelmary, Blackstad, Mark, Heisel, Timothy, Allert, Mattea, Fields, David A, Isganaitis, Elvira, Jacobs, Katherine M, Knights, Dan, Lock, Eric F, Rudolph, Michael C, Gale, Cheryl A, Schleiss, Mark R, Albert, Frank W, Demerath, Ellen W, Blekhman, Ran
Format Journal Article
LanguageEnglish
Published England Nature Publishing Group 23.07.2024
Nature Publishing Group UK
Nature Portfolio
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Summary:Human cytomegalovirus (CMV) is a highly prevalent herpesvirus that is often transmitted to the neonate via breast milk. Postnatal CMV transmission can have negative health consequences for preterm and immunocompromised infants, but any effects on healthy term infants are thought to be benign. Furthermore, the impact of CMV on the composition of the hundreds of bioactive factors in human milk has not been tested. Here, we utilize a cohort of exclusively breastfeeding full-term mother-infant pairs to test for differences in the milk transcriptome and metabolome associated with CMV, and the impact of CMV in breast milk on the infant gut microbiome and infant growth. We find upregulation of the indoleamine 2,3-dioxygenase (IDO) tryptophan-to-kynurenine metabolic pathway in CMV+ milk samples, and that CMV+ milk is associated with decreased Bifidobacterium in the infant gut. Our data indicate two opposing CMV-associated effects on infant growth; with kynurenine positively correlated, and CMV viral load negatively correlated, with infant weight-for-length at 1 month of age. These results suggest CMV transmission, CMV-related changes in milk composition, or both may be modulators of full-term infant development.
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ISSN:2041-1723
2041-1723
DOI:10.1038/s41467-024-50282-4