Genome, Environment, Microbiome & Metabolome in Autism: an integrated multi-omic systems biology approach to identify biomarkers for personalized treatment and primary prevention of Autism Spectr

Akronym

GEMMA

Bidragets beskrivning

GEMMA will be the first project to combine a multi-omic approach with robust environmental data to exploit the analysis of the composition and function of the microbiome for personalized treatment and, ultimately, disease interception in infants at risk of Autistic Spectrum Disorders (ASD) . The project will provide solid mechanistic evidence of the disease onset and progression in relation to dynamic changes in abnormal gut microbiota causing epigenetic modifications controlling gut barrier and immune functions, based on the in-depth evaluation of 600 infants at risk observed from birth and followed over time. These data will be integrated with pre-clinical studies to mechanistically link human microbiota composition/function with clinical outcome through humanized murine models transplanted with stools obtained from the ASD proband patient of recruited families. The project will support novel personalized prediction (personalized treatment) and disease interception (prevention) approaches that attempt to modulate gut microbiota to re-establish/maintain immune homeostasis. The biomarkers identified in this project will contribute to a better understanding of the pathogenesis of ASD in at-risk children and the possibility to manipulate the microbiota through pre/pro/symbiotic administration for prevention and treatment, a complete paradigm shift in ASD pathogenesis and early intervention. The identification of specific ASD metabolic phenotypes will further aid to define biomarkers that can be used as diagnostic tools and patient stratification models for other conditions in which the interplay between genome, microbiome and metabolic profile has been suspected or proved. Finally, the project will collect biospecimens from a cohort of 600 infants as risk of ASD observed from birth, generating a unique biobank of 16,000+ blood, stool, urine and saliva samples prospectively collected that can be exploited in future multiomic studies.
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Startår

2019

Slutår

2024

Beviljade finansiering

558 125 €
Participant
EUFORMATICS OY
728 437.5 €
Participant
MEDINOK SPA (IT)
549 375 €
Participant
AZIENDA SANITARIA LOCALE SALERNO (IT)
642 270.58 €
Participant
THEOREO SRL (IT)
426 250 €
Participant
FONDAZIONE EBRIS (IT)
2 316 635.67 €
Coordinator
THE GENERAL HOSPITAL CORPORATION (US)
1 256 468.75 €
Participant
BIO MODELING SYSTEMS OU BMSYSTEMS (FR)
548 125 €
Participant
JOHNS HOPKINS UNIVERSITY (US)
747 212.5 €
Participant
NUTRICIA RESEARCH BV (NL)
812 423.75 €
Participant
NATIONAL UNIVERSITY OF IRELAND GALWAY (IE)
1 873 750 €
Participant
CONSIGLIO NAZIONALE DELLE RICERCHE (IT)
544 375 €
Participant
UNIVERSITEIT UTRECHT (NL)
881 116.25 €
Participant
INSTITUT NATIONAL DE LA RECHERCHE AGRONOMIQUE (FR)
1 060 617.5 €
Participant
IMPERIAL COLLEGE OF SCIENCE TECHNOLOGY AND MEDICINE (UK)
832 812.5 €
Participant
INSTITUT NATIONAL DE LA SANTE ET DE LA RECHERCHE MEDICALE (FR)
447 762.5 €
Participant

Beviljat belopp

14 225 758 €

Finansiär

Europeiska unionen

Typ av finansiering

Research and Innovation action

Ramprogram

Horizon 2020 Framework Programme

Utlysning

Programdel
Health (5290)
Preventing disease (5295)
Tema
Exploiting research outcomes and application potential of the human microbiome for personalised prediction, prevention and treatment of disease (SC1-BHC-03-2018)
Utlysnings ID
H2020-SC1-2018-Single-Stage-RTD

Övriga uppgifter

Finansieringsbeslutets nummer

825033

Identifierade teman

microbiome, microbiology