Dynamic molecular changes during the first week of human life follow a robust developmental trajectory.

Amy H Lee ORCID logo; Casey P Shannon ORCID logo; Nelly Amenyogbe; Tue B Bennike ORCID logo; Joann Diray-Arce; Olubukola T Idoko; Erin E Gill; Rym Ben-Othman; William S Pomat; Simon D van Haren; +34 more... Kim-Anh Lê Cao ORCID logo; Momoudou Cox; Alansana Darboe ORCID logo; Reza Falsafi; Davide Ferrari; Daniel J Harbeson; Daniel He ORCID logo; Cai Bing; Samuel J Hinshaw; Jorjoh Ndure; Jainaba Njie-Jobe; Matthew A Pettengill; Peter C Richmond; Rebecca Ford; Gerard Saleu; Geraldine Masiria; John Paul Matlam; Wendy Kirarock; Elishia Roberts; Mehrnoush Malek; Guzmán Sanchez-Schmitz; Amrit Singh ORCID logo; Asimenia Angelidou; Kinga K Smolen; EPIC Consortium; Ryan R Brinkman; Al Ozonoff; Robert EW Hancock ORCID logo; Anita HJ van den Biggelaar; Hanno Steen ORCID logo; Scott J Tebbutt ORCID logo; Beate Kampmann ORCID logo; Ofer Levy ORCID logo; Tobias R Kollmann ORCID logo; (2019) Dynamic molecular changes during the first week of human life follow a robust developmental trajectory. Nature communications, 10 (1). 1092-. ISSN 2041-1723 DOI: 10.1038/s41467-019-08794-x
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Systems biology can unravel complex biology but has not been extensively applied to human newborns, a group highly vulnerable to a wide range of diseases. We optimized methods to extract transcriptomic, proteomic, metabolomic, cytokine/chemokine, and single cell immune phenotyping data from <1 ml of blood, a volume readily obtained from newborns. Indexing to baseline and applying innovative integrative computational methods reveals dramatic changes along a remarkably stable developmental trajectory over the first week of life. This is most evident in changes of interferon and complement pathways, as well as neutrophil-associated signaling. Validated across two independent cohorts of newborns from West Africa and Australasia, a robust and common trajectory emerges, suggesting a purposeful rather than random developmental path. Systems biology and innovative data integration can provide fresh insights into the molecular ontogeny of the first week of life, a dynamic developmental phase that is key for health and disease.


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