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Obesity and disease severity magnify disturbed microbiome-immune interactions in asthma patients

  • David Michalovich
  • , Noelia Rodriguez-Perez
  • , Sylwia Smolinska
  • , Michal Pirozynski
  • , David Mayhew
  • , Sorif Uddin
  • , Stephanie Van Horn
  • , Milena Sokolowska
  • , Can Altunbulakli
  • , Andrzej Eljaszewicz
  • , Benoit Pugin
  • , Weronika Barcik
  • , Magdalena Kurnik-Lucka
  • , Ken A. Saunders
  • , Karen D. Simpson
  • , Peter Schmid-Grendelmeier
  • , Ruth Ferstl
  • , Remo Frei
  • , Noriane Sievi
  • , Malcolm Kohler
  • Pawel Gajdanowicz, Katrine B. Graversen, Katrine Lindholm Bøgh, Marek Jutel, James R. Brown, Cezmi A. Akdis, Edith M. Hessel, Liam O’Mahony
  • GlaxoSmithKline
  • University of Zurich
  • Wrocław Medical University
  • Medical Centre for Postgraduate Education, Warsaw
  • Boehringer Ingelheim GmbH
  • Christine Kühne-Center for Allergy Research and Education (CK-CARE)
  • Medical University of Białystok
  • Jagiellonian University Medical College
  • Technical University of Denmark

Research output: Contribution to journalArticlepeer-review

Abstract

In order to improve targeted therapeutic approaches for asthma patients, insights into the molecular mechanisms that differentially contribute to disease phenotypes, such as obese asthmatics or severe asthmatics, are required. Here we report immunological and microbiome alterations in obese asthmatics (n = 50, mean age = 45), non-obese asthmatics (n = 53, mean age = 40), obese non-asthmatics (n = 51, mean age = 44) and their healthy counterparts (n = 48, mean age = 39). Obesity is associated with elevated proinflammatory signatures, which are enhanced in the presence of asthma. Similarly, obesity or asthma induced changes in the composition of the microbiota, while an additive effect is observed in obese asthma patients. Asthma disease severity is negatively correlated with fecal Akkermansia muciniphila levels. Administration of A. muciniphila to murine models significantly reduces airway hyper-reactivity and airway inflammation. Changes in immunological processes and microbiota composition are accentuated in obese asthma patients due to the additive effects of both disease states, while A. muciniphila may play a non-redundant role in patients with a severe asthma phenotype.

Original languageEnglish
Article number5711
JournalNature Communications
Volume10
Issue number1
DOIs
Publication statusPublished - 1 Dec 2019

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 3 - Good Health and Well-being
    SDG 3 Good Health and Well-being

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