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Published on: August 7, 2017
Multi-Omic Profiles in Infants at Risk for Food Reactions
Ramin Beheshti1,2, Shane Stone1, Desirae Chandran1
1Penn State Health Milton S Hershey Medical Center, Department of Pediatrics, Hershey, PA 17033, USA.
Insights
Multi-omic analysis of infant saliva identified specific microRNAs, bacteria, and viruses associated with food reactions (FR). These biomarkers can help predict FR development in infants, improving early identification and understanding of underlying mechanisms.
Area of Science:
- Immunology
- Microbiology
- Genomics
Background:
- Food reactions (FR) in infants are complex, influenced by various factors.
- Understanding host-microbial interactions is crucial for FR development.
Purpose of the Study:
- To investigate multi-omic host-microbial factors in saliva for predicting infant food reactions.
- To identify specific salivary biomarkers associated with FR development.
Main Methods:
- Longitudinal cohort study of 164 infants from birth to two years.
- Saliva multi-omic analysis at six months (cytokines, mRNAs, microRNAs, microbiome/virome).
- Statistical analysis including logistic regression to assess predictive value.
Main Results:
- Lower levels of miR-203b-3p and Proteus virus PM135 in infants who developed FRs.
- Higher levels of Cyanobacteria phylum in infants who developed FRs.
- Multi-omic features improved FR prediction accuracy to 72% (AUC = 0.81).
Conclusions:
- Salivary multi-omic analysis enhances the identification of infants at risk for food reactions.
- Identified biomarkers provide insights into host/microbiome interactions predisposing infants to FRs.
Abstract:
Food reactions (FR) are multifactorial and impacted by medical, demographic, environmental, and immunologic factors. We hypothesized that multi-omic analyses of host-microbial factors in saliva would enhance our understanding of FR development. This longitudinal cohort study included 164 infants followed from birth through two years. The infants were identified as FR (n = 34) or non-FR (n = 130) using the Infant Feeding Practice II survey and medical record confirmation. Saliva was collected at six months for the multi-omic assessment of cytokines, mRNAs, microRNAs, and the microbiome/virome. The levels of one miRNA (miR-203b-3p, adj. p = 0.043, V = 2913) and one viral phage (Proteus virus PM135, adj. p = 0.027, V = 2955) were lower among infants that developed FRs. The levels of one bacterial phylum (Cyanobacteria, adj. p = 0.048, V = 1515) were higher among infants that developed FR. Logistical regression models revealed that the addition of multi-omic features (miR-203b-3p, Cyanobacteria, and Proteus virus PM135) improved predictiveness for future FRs in infants (p = 0.005, X2 = 12.9), predicting FRs with 72% accuracy (AUC = 0.81, sensitivity = 72%, specificity = 72%). The multi-omic analysis of saliva may enhance the accurate identification of infants at risk of FRs and provide insights into the host/microbiome interactions that predispose certain infants to FRs.
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