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The EXIMIOUS project—Mapping exposure-induced immune effects: connecting the exposome and the immunome

  • Steven Ronsmans
  • , Karin Sørig Hougaard
  • , Tim S. Nawrot
  • , Michelle Plusquin
  • , François Huaux
  • , María Jesús Cruz
  • , Horatiu Moldovan
  • , Steven Verpaele
  • , Murali Jayapala
  • , Michael Tunney
  • , Stéphanie Humblet-Baron
  • , Hubert Dirven
  • , Unni Cecilie Nygaard
  • , Birgitte Lindeman
  • , Nur Duale
  • , Adrian Liston
  • , Esben Meulengracht Flachs
  • , Kenneth Kastaniegaard
  • , Matthias Ketzel
  • , Julia Goetz
  • Jeroen Vanoirbeek, Manosij Ghosh, Peter H. M. Hoet, The EXIMIOUS Consortium§
  • Centre for Environment and Health, KU Leuven, Leuven, Belgium.
  • Hasselt University
  • Université catholique de Louvain
  • Vall d'Hebron Research Institute
  • University of Medicine, Pharmacy, Science and Technology of Targu-Mures, Romania.
  • Belgian Center for Occupational Hygiene, Zwijnaarde, Belgium.
  • Imec, Interuniversitair Microelectronica Centrum, KU Leuven, Belgium.
  • Queen's University Belfast
  • Department of Microbiology and Immunology, KU Leuven, Belgium.
  • Norwegian Institute of Public Health, Oslo, Norway.
  • Babraham Institute
  • Region Hovedstaden
  • Biogenity
  • Department of Environmental Science, Aarhus University, Roskilde, Denmark.
  • Accelopment AG, Zurich, Switzerland.

Publikation: Bidrag til tidsskriftTidsskriftartikelForskningpeer review

Abstract

Immune-mediated, noncommunicable diseases—such as autoimmune and inflammatory diseases—are chronic disorders, in which the interaction between environmental exposures and the immune system plays an important role. The prevalence and societal costs of these diseases are rising in the European Union. The EXIMIOUS consortium—gathering experts in immunology, toxicology, occupational health, clinical medicine, exposure science, epidemiology, bioinformatics, and sensor development—will study eleven European study populations, covering the entire lifespan, including prenatal life. Innovative ways of characterizing and quantifying the exposome will be combined with high-dimensional immunophenotyping and -profiling platforms to map the immune effects (immunome) induced by the exposome. We will use two main approaches that “meet in the middle”—one starting from the exposome, the other starting from health effects. Novel bioinformatics tools, based on systems immunology and machine learning, will be used to integrate and analyze these large datasets to identify immune fingerprints that reflect a person’s lifetime exposome or that are early predictors of disease. This will allow researchers, policymakers, and clinicians to grasp the impact of the exposome on the immune system at the level of individuals and populations.
OriginalsprogEngelsk
TidsskriftEnvironmental Epidemiology
Vol/bind6
Udgave nummer1
Sider (fra-til)e193
DOI
StatusUdgivet - feb. 2022

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