Zinc supplementation with or without additional micronutrients does not affect peripheral blood gene expression or serum cytokine level in Bangladeshi children
Details
Publication Year 2021,Volume 13,Issue #10,Page 3516
Journal Title
Nutrients
Abstract
Preventive zinc supplementation provided as a stand-alone dispersible tablet, or via home fortification as multiple micronutrient powders (MNPs), has been considered a potential strategy to prevent zinc deficiency and improve health (including immune) outcomes among children in low- and middle-income countries. However, the impact of zinc supplementation on immune profiles has not been well characterized. We sought to define the effect of zinc supplementation on peripheral blood gene expression and cytokine levels among young children in Dhaka, Bangladesh. In a sub-study of a large randomized, controlled, community-based efficacy trial where children 9–11 months of age received one of the following interventions on a daily basis for 24 weeks: (1) MNPs containing 10 mg of zinc; (2) dispersible tablet containing 10 mg zinc; or (3) placebo powder, we used RNA sequencing to profile the peripheral blood gene expression, as well as highly sensitive multiplex assays to detect cytokine profiles. We profiled samples from 100 children enrolled in the parent trial (zinc MNPs 28, zinc tablets 39, placebo 33). We did not detect an effect from either zinc intervention on differential peripheral blood gene expression at the end of the intervention, or an effect from the intervention on changes in gene expression from baseline. We also did not detect an effect from either intervention on cytokine concentrations. Exploratory analysis did not identify an association between undernutrition (defined as stunting, underweight or wasting) and peripheral blood gene expression. Zinc interventions in children did not produce a gene expression or cytokine signature in the peripheral blood. However, this study demonstrates a proof of principle that sensitive multi-omic techniques can be applied to samples collected in field studies.
Publisher
MDPI
Keywords
zinc; RNA sequencing; Bangladesh; transcriptomics; immunology
Research Division(s)
Population Health And Immunity; Advanced Technology And Biology
Open Access at Publisher's Site
https://doi.org/10.3390/nu13103516
Terms of Use/Rights Notice
Refer to copyright notice on published article.


Creation Date: 2021-10-26 10:03:45
Last Modified: 2021-10-26 10:27:40
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