Neonatal gut and respiratory microbiota: coordinated development through time and space
Alex Grier,Andrew McDavid,Bokai Wang,Xing Qiu,James J. Java,Sanjukta Bandyopadhyay,Hongmei Yang,Jeanne Holden-Wiltse,Haeja A. Kessler,Ann L. Gill,Heidie Huyck,Ann R. Falsey,David J. Topham,Kristin Scheible,Mary T. Caserta,Gloria S. Pryhuber,Steven R. Gill +16 more
TL;DR: Findings suggest that early microbiota is shaped by neonatal innate and adaptive developmental responses, and significant associations of microbiota across body sites reveal distal connections and coordinated development of the infant microbial ecosystem.
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Abstract: Postnatal development of early life microbiota influences immunity, metabolism, neurodevelopment, and infant health. Microbiome development occurs at multiple body sites, with distinct community compositions and functions. Associations between microbiota at multiple sites represent an unexplored influence on the infant microbiome. Here, we examined co-occurrence patterns of gut and respiratory microbiota in pre- and full-term infants over the first year of life, a period critical to neonatal development. Gut and respiratory microbiota collected as longitudinal rectal, throat, and nasal samples from 38 pre-term and 44 full-term infants were first clustered into community state types (CSTs) on the basis of their compositional profiles. Multiple methods were used to relate the occurrence of CSTs to temporal microbiota development and measures of infant maturity, including gestational age (GA) at birth, week of life (WOL), and post-menstrual age (PMA). Manifestation of CSTs followed one of three patterns with respect to infant maturity: (1) chronological, with CST occurrence frequency solely a function of post-natal age (WOL), (2) idiosyncratic to maturity at birth, with the interval of CST occurrence dependent on infant post-natal age but the frequency of occurrence dependent on GA at birth, and (3) convergent, in which CSTs appear first in infants of greater maturity at birth, with occurrence frequency in pre-terms converging after a post-natal interval proportional to pre-maturity. The composition of CSTs was highly dissimilar between different body sites, but the CST of any one body site was highly predictive of the CSTs at other body sites. There were significant associations between the abundance of individual taxa at each body site and the CSTs of the other body sites, which persisted after stringent control for the non-linear effects of infant maturity. Canonical correlations exist between the microbiota composition at each pair of body sites, with the strongest correlations between proximal locations. These findings suggest that early microbiota is shaped by neonatal innate and adaptive developmental responses. Temporal progression of CST occurrence is influenced by infant maturity at birth and post-natal age. Significant associations of microbiota across body sites reveal distal connections and coordinated development of the infant microbial ecosystem.
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Unravelling the gut-lung axis: insights into microbiome interactions and Traditional Indian Medicine's perspective on optimal health
Swati Haldar,Snehal R. Jadhav,V. Gulati,David J. Beale,Acharya Balkrishna,Anurag Varshney,Enzo A. Palombo,Avinash V. Karpe,Rohan M. Shah +8 more
TL;DR: An overview of the gut-lung axial microbiome and its importance in maintaining optimal health is provided, including the traditional Indian system of medicine and its theories and practices regarding the maintenance of optimally customized gut health.
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TL;DR: In this article, the origin of the microbiota in the newborn is not well understood, but it is widely accepted that the microbiota is critical for human well-being; however, the origins of microbiota in newborns are unknown.
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Aberrant newborn T cell and microbiota developmental trajectories predict respiratory compromise during infancy
Alex Grier,Nathan Laniewski,Ann L. Gill,Haeja A. Kessler,Heidie Huyck,Jeanne Holden-Wiltse,Sanjukta Bandyopadhyay,Jennifer Carnahan,Andrew M. Dylag,David J. Topham,Ann R. Falsey,Mary T. Caserta,Gloria S. Pryhuber,Steven R. Gill,Andrew McDavid,Kristin Scheible +15 more
TL;DR: T cells and microbiota follow predictable, coordinated trajectories in newborns, and their coordination is an important determinant of illness in the first year, and prenatal antibiotics or infection disrupt the normal T cell population developmental trajectory, influencing subsequent respiratory microbial colonization and predicting respiratory morbidity.
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Microbial characterization of the nasal cavity in patients with allergic rhinitis and non-allergic rhinitis
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TL;DR: The Human Microbiome Project Consortium reported the first results of their analysis of microbial communities from distinct, clinically relevant body habitats in a human cohort; the insights into the microbial communities of a healthy population lay foundations for future exploration of the epidemiology, ecology and translational applications of the human microbiome as discussed by the authors.
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