Cargando…

A Non-Invasive Neonatal Signature Predicts Later Development of Atopic Diseases

Background: Preterm birth is a major cause of morbidity and mortality in infants and children. Non-invasive methods for screening the neonatal immune status are lacking. Archaea, a prokaryotic life domain, comprise methanogenic species that are part of the neonatal human microbiota and contribute to...

Descripción completa

Detalles Bibliográficos
Autores principales: Sereme, Youssouf, Michel, Moïse, Mezouar, Soraya, Guindo, Cheick Oumar, Kaba, Lanceï, Grine, Ghiles, Mura, Thibault, Mège, Jean-Louis, Tran, Tu Anh, Corbeau, Pierre, Filleron, Anne, Vitte, Joana
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9143112/
https://www.ncbi.nlm.nih.gov/pubmed/35628877
http://dx.doi.org/10.3390/jcm11102749
_version_ 1784715725251805184
author Sereme, Youssouf
Michel, Moïse
Mezouar, Soraya
Guindo, Cheick Oumar
Kaba, Lanceï
Grine, Ghiles
Mura, Thibault
Mège, Jean-Louis
Tran, Tu Anh
Corbeau, Pierre
Filleron, Anne
Vitte, Joana
author_facet Sereme, Youssouf
Michel, Moïse
Mezouar, Soraya
Guindo, Cheick Oumar
Kaba, Lanceï
Grine, Ghiles
Mura, Thibault
Mège, Jean-Louis
Tran, Tu Anh
Corbeau, Pierre
Filleron, Anne
Vitte, Joana
author_sort Sereme, Youssouf
collection PubMed
description Background: Preterm birth is a major cause of morbidity and mortality in infants and children. Non-invasive methods for screening the neonatal immune status are lacking. Archaea, a prokaryotic life domain, comprise methanogenic species that are part of the neonatal human microbiota and contribute to early immune imprinting. However, they have not yet been characterized in preterm neonates. Objective: To characterize the gut immunological and methanogenic Archaeal (MA) signature in preterm neonates, using the presence or absence of atopic conditions at the age of one year as a clinical endpoint. Methods: Meconium and stool were collected from preterm neonates and used to develop a standardized stool preparation method for the assessment of mediators and cytokines and characterize the qPCR kinetics of gut MA. Analysis addressed the relationship between immunological biomarkers, Archaea abundance, and atopic disease at age one. Results: Immunoglobulin E, tryptase, calprotectin, EDN, cytokines, and MA were detectable in the meconium and later samples. Atopic conditions at age of one year were positively associated with neonatal EDN, IL-1β, IL-10, IL-6, and MA abundance. The latter was negatively associated with neonatal EDN, IL-1β, and IL-6. Conclusions: We report a non-invasive method for establishing a gut immunological and Archaeal signature in preterm neonates, predictive of atopic diseases at the age of one year.
format Online
Article
Text
id pubmed-9143112
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-91431122022-05-29 A Non-Invasive Neonatal Signature Predicts Later Development of Atopic Diseases Sereme, Youssouf Michel, Moïse Mezouar, Soraya Guindo, Cheick Oumar Kaba, Lanceï Grine, Ghiles Mura, Thibault Mège, Jean-Louis Tran, Tu Anh Corbeau, Pierre Filleron, Anne Vitte, Joana J Clin Med Article Background: Preterm birth is a major cause of morbidity and mortality in infants and children. Non-invasive methods for screening the neonatal immune status are lacking. Archaea, a prokaryotic life domain, comprise methanogenic species that are part of the neonatal human microbiota and contribute to early immune imprinting. However, they have not yet been characterized in preterm neonates. Objective: To characterize the gut immunological and methanogenic Archaeal (MA) signature in preterm neonates, using the presence or absence of atopic conditions at the age of one year as a clinical endpoint. Methods: Meconium and stool were collected from preterm neonates and used to develop a standardized stool preparation method for the assessment of mediators and cytokines and characterize the qPCR kinetics of gut MA. Analysis addressed the relationship between immunological biomarkers, Archaea abundance, and atopic disease at age one. Results: Immunoglobulin E, tryptase, calprotectin, EDN, cytokines, and MA were detectable in the meconium and later samples. Atopic conditions at age of one year were positively associated with neonatal EDN, IL-1β, IL-10, IL-6, and MA abundance. The latter was negatively associated with neonatal EDN, IL-1β, and IL-6. Conclusions: We report a non-invasive method for establishing a gut immunological and Archaeal signature in preterm neonates, predictive of atopic diseases at the age of one year. MDPI 2022-05-12 /pmc/articles/PMC9143112/ /pubmed/35628877 http://dx.doi.org/10.3390/jcm11102749 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Sereme, Youssouf
Michel, Moïse
Mezouar, Soraya
Guindo, Cheick Oumar
Kaba, Lanceï
Grine, Ghiles
Mura, Thibault
Mège, Jean-Louis
Tran, Tu Anh
Corbeau, Pierre
Filleron, Anne
Vitte, Joana
A Non-Invasive Neonatal Signature Predicts Later Development of Atopic Diseases
title A Non-Invasive Neonatal Signature Predicts Later Development of Atopic Diseases
title_full A Non-Invasive Neonatal Signature Predicts Later Development of Atopic Diseases
title_fullStr A Non-Invasive Neonatal Signature Predicts Later Development of Atopic Diseases
title_full_unstemmed A Non-Invasive Neonatal Signature Predicts Later Development of Atopic Diseases
title_short A Non-Invasive Neonatal Signature Predicts Later Development of Atopic Diseases
title_sort non-invasive neonatal signature predicts later development of atopic diseases
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9143112/
https://www.ncbi.nlm.nih.gov/pubmed/35628877
http://dx.doi.org/10.3390/jcm11102749
work_keys_str_mv AT seremeyoussouf anoninvasiveneonatalsignaturepredictslaterdevelopmentofatopicdiseases
AT michelmoise anoninvasiveneonatalsignaturepredictslaterdevelopmentofatopicdiseases
AT mezouarsoraya anoninvasiveneonatalsignaturepredictslaterdevelopmentofatopicdiseases
AT guindocheickoumar anoninvasiveneonatalsignaturepredictslaterdevelopmentofatopicdiseases
AT kabalancei anoninvasiveneonatalsignaturepredictslaterdevelopmentofatopicdiseases
AT grineghiles anoninvasiveneonatalsignaturepredictslaterdevelopmentofatopicdiseases
AT murathibault anoninvasiveneonatalsignaturepredictslaterdevelopmentofatopicdiseases
AT megejeanlouis anoninvasiveneonatalsignaturepredictslaterdevelopmentofatopicdiseases
AT trantuanh anoninvasiveneonatalsignaturepredictslaterdevelopmentofatopicdiseases
AT corbeaupierre anoninvasiveneonatalsignaturepredictslaterdevelopmentofatopicdiseases
AT filleronanne anoninvasiveneonatalsignaturepredictslaterdevelopmentofatopicdiseases
AT vittejoana anoninvasiveneonatalsignaturepredictslaterdevelopmentofatopicdiseases
AT seremeyoussouf noninvasiveneonatalsignaturepredictslaterdevelopmentofatopicdiseases
AT michelmoise noninvasiveneonatalsignaturepredictslaterdevelopmentofatopicdiseases
AT mezouarsoraya noninvasiveneonatalsignaturepredictslaterdevelopmentofatopicdiseases
AT guindocheickoumar noninvasiveneonatalsignaturepredictslaterdevelopmentofatopicdiseases
AT kabalancei noninvasiveneonatalsignaturepredictslaterdevelopmentofatopicdiseases
AT grineghiles noninvasiveneonatalsignaturepredictslaterdevelopmentofatopicdiseases
AT murathibault noninvasiveneonatalsignaturepredictslaterdevelopmentofatopicdiseases
AT megejeanlouis noninvasiveneonatalsignaturepredictslaterdevelopmentofatopicdiseases
AT trantuanh noninvasiveneonatalsignaturepredictslaterdevelopmentofatopicdiseases
AT corbeaupierre noninvasiveneonatalsignaturepredictslaterdevelopmentofatopicdiseases
AT filleronanne noninvasiveneonatalsignaturepredictslaterdevelopmentofatopicdiseases
AT vittejoana noninvasiveneonatalsignaturepredictslaterdevelopmentofatopicdiseases