Literature DB >> 30113227

Early airway microbial metagenomic and metabolomic signatures are associated with development of severe bronchopulmonary dysplasia.

Charitharth Vivek Lal1, Jegen Kandasamy1, Kalsang Dolma1, Manimaran Ramani1, Ranjit Kumar1, Landon Wilson2, Zubair Aghai3, Stephen Barnes2, J Edwin Blalock4, Amit Gaggar4, Vineet Bhandari5, Namasivayam Ambalavanan1.   

Abstract

The pathogenesis of bronchopulmonary dysplasia (BPD) is not well understood. We previously identified differences in the airway microbiome at birth between preterm infants who were BPD predisposed versus those who were BPD resistant. In this study, we attempted to identify mechanisms by which the airway microbiome could modify the risk for BPD. We used a software-based method to predict the metagenome of the tracheal aspirate (TA) microbiome from 16S rRNA sequencing data in preterm infants and to identify functional ortholog genes that were differentially abundant in BPD-predisposed and BPD-resistant infants. We also identified metabolites that were differentially enriched in these samples by use of untargeted mass spectrometry and mummichog to identify the metabolic pathways involved. Microbial metagenome analysis identified specific pathways that were less abundant in the functional metagenome of the microbiota of BPD-predisposed infants compared with BPD-resistant infants. The airway metabolome of BPD-predisposed infants was enriched for metabolites involved in fatty acid activation and androgen and estrogen biosynthesis compared with BPD-resistant infants. These findings suggest that in extremely preterm infants the early airway microbiome may alter the metabolome, thereby modifying the risk of BPD. The differential enrichment of sex steroid metabolic pathways supports previous studies suggesting a role for sexual dimorphism in BPD risk. This study also suggests a role for metabolomic and metagenomic profiles to serve as early biomarkers of BPD risk.

Entities:  

Keywords:  airway metabolomics; biomarkers of BPD; bronchopulmonary dysplasia; metabolomics and metagenomics; microbiome

Mesh:

Substances:

Year:  2018        PMID: 30113227      PMCID: PMC6295508          DOI: 10.1152/ajplung.00085.2018

Source DB:  PubMed          Journal:  Am J Physiol Lung Cell Mol Physiol        ISSN: 1040-0605            Impact factor:   5.464


  23 in total

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6.  Urinary metabolomics of bronchopulmonary dysplasia (BPD): preliminary data at birth suggest it is a congenital disease.

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Journal:  J Matern Fetal Neonatal Med       Date:  2014-10

7.  The Airway Microbiome at Birth.

Authors:  Charitharth Vivek Lal; Colm Travers; Zubair H Aghai; Peter Eipers; Tamas Jilling; Brian Halloran; Waldemar A Carlo; Jordan Keeley; Gabriel Rezonzew; Ranjit Kumar; Casey Morrow; Vineet Bhandari; Namasivayam Ambalavanan
Journal:  Sci Rep       Date:  2016-08-04       Impact factor: 4.379

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  16 in total

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Authors:  Kent A Willis; David T Siefker; Michael M Aziz; Catrina T White; Naiha Mussarat; Charles K Gomes; Amandeep Bajwa; Joseph F Pierre; Stephania A Cormier; Ajay J Talati
Journal:  Am J Physiol Lung Cell Mol Physiol       Date:  2019-10-23       Impact factor: 5.464

3.  Effects of hyperoxia on alveolar and pulmonary vascular development in germ-free mice.

Authors:  Kalsang Dolma; Amelia E Freeman; Gabriel Rezonzew; Gregory A Payne; Xin Xu; Tamas Jilling; J Edwin Blalock; Amit Gaggar; Namasivayam Ambalavanan; Charitharth Vivek Lal
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Authors:  Kent A Willis; Joseph F Pierre; Stephania A Cormier; Ajay J Talati
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Authors:  Sharon M Carney; Jose C Clemente; Michael J Cox; Robert P Dickson; Yvonne J Huang; Georgios D Kitsios; Kirsten M Kloepfer; Janice M Leung; Tricia D LeVan; Philip L Molyneaux; Bethany B Moore; David N O'Dwyer; Leopoldo N Segal; Stavros Garantziotis
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Review 7.  Bronchopulmonary dysplasia.

Authors:  Bernard Thébaud; Kara N Goss; Matthew Laughon; Jeffrey A Whitsett; Steven H Abman; Robin H Steinhorn; Judy L Aschner; Peter G Davis; Sharon A McGrath-Morrow; Roger F Soll; Alan H Jobe
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8.  Metabolome and microbiome multi-omics integration from a murine lung inflammation model of bronchopulmonary dysplasia.

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Review 9.  Halogen exposure injury in the developing lung.

Authors:  Dylan R Addis; Adam Molyvdas; Namasivayam Ambalavanan; Sadis Matalon; Tamas Jilling
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10.  Differences in airway microbiome and metabolome of single lung transplant recipients.

Authors:  Nirmal S Sharma; Grant Vestal; Keith Wille; Kapil N Patel; Feng Cheng; Srinivas Tipparaju; Sultan Tousif; Mudassir M Banday; Xin Xu; Landon Wilson; Viswam S Nair; Casey Morrow; Don Hayes; Andreas Seyfang; Stephen Barnes; Jessy S Deshane; Amit Gaggar
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