Zinc–amino-acid conjugate supplementation shapes maternal and infant gut microbiomes—a pilot study

Introduction: Human pregnancy is a critical period in which maternal nutritional status strongly influences fetal development and long-term health in newborn individuals. Studies suggest that adequate zinc intake plays a key role in maternal and fetal health, impacting various physiological processes including but not limited to endocrine and immune function, growth, and neurodevelopment. The relationship between zinc and the gut microbiota emerges as an interacting factor in this dynamic relationship. Material and methods: This randomized double-blind, placebo-controlled pilot study explores the significance of prenatal supplementation, with a particular emphasis on zinc–amino-acid conjugates, on a baby’s microbiota. Results: Our results show that zinc status impacts the composition and function of gut microbial communities in the mother. More importantly, our data show that maternal zinc supplementation with a zinc–amino-acid conjugate during pregnancy alters the microbiota of the progeny. In particular, the abundance of the genera Prevotellaceae UCG-003 and Lachnospiraceae NK3A20 is different in babies from zinc-supplemented mothers and correlates with their mothers’ serum zinc levels. Conclusions: We conclude that zinc supplementation can optimize the intricate balance between gut microbiota composition and healthy development, which may present a novel strategy for promoting the health of mothers and babies.

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Publication Details

Journal
Academia Nutrition and Dietetics
Published
2026-09-30
DOI
https://doi.org/10.20935/acadnutr8545
Primary Topic
Trace Elements in Health
Type
article
Field-Weighted Citation Impact
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article

Zinc–amino-acid conjugate supplementation shapes maternal and infant gut microbiomes—a pilot study

Janelle E. Stanton, Peter Stark, Victor Javier Lara Díaz, Marcus Joakim Claesson et al.
Academia Nutrition and Dietetics
Trace Elements in Health
article

Zinc–amino-acid conjugate supplementation shapes maternal and infant gut microbiomes—a pilot study

Janelle E. Stanton, Peter Stark, Victor Javier Lara Díaz, Marcus Joakim Claesson, Ann Katrin Sauer, Andreas Martin Grabrucker, Guillermo Vela, A. Ramı́rez Vela, Beatriz Osorio-Carranza, Rebeca Thelma Martínez-Villareal, Shriram Hasmukhbhai Patel
article en

Abstract

Introduction: Human pregnancy is a critical period in which maternal nutritional status strongly influences fetal development and long-term health in newborn individuals. Studies suggest that adequate zinc intake plays a key role in maternal and fetal health, impacting various physiological processes including but not limited to endocrine and immune function, growth, and neurodevelopment. The relationship between zinc and the gut microbiota emerges as an interacting factor in this dynamic relationship. Material and methods: This randomized double-blind, placebo-controlled pilot study explores the significance of prenatal supplementation, with a particular emphasis on zinc–amino-acid conjugates, on a baby’s microbiota. Results: Our results show that zinc status impacts the composition and function of gut microbial communities in the mother. More importantly, our data show that maternal zinc supplementation with a zinc–amino-acid conjugate during pregnancy alters the microbiota of the progeny. In particular, the abundance of the genera Prevotellaceae UCG-003 and Lachnospiraceae NK3A20 is different in babies from zinc-supplemented mothers and correlates with their mothers’ serum zinc levels. Conclusions: We conclude that zinc supplementation can optimize the intricate balance between gut microbiota composition and healthy development, which may present a novel strategy for promoting the health of mothers and babies.

Academia Nutrition and DieteticsVol. 3(3)
Universidad Autónoma de Nuevo León (MX), University of Limerick (IE), University College Cork (IE), UNSW Sydney (AU), Zinpro (United States) (US), Centro de Investigación y de Estudios Avanzados del Instituto Politécnico Nacional (MX), University of Monterrey (MX)
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Trace Elements in Health
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