Folate Deficiency Alters microRNA Expression and Transcriptomic Networks in a Human Trophoblast Model

Background: Low maternal folate status is associated with placental dysfunction and adverse pregnancy outcomes; however, the mechanisms linking reduced folate availability to altered placental function remain incompletely understood. We investigated whether folate deficiency directly alters trophoblast function and microRNA (miRNA) expression, and whether folate-responsive miRNAs mediate these functional changes. Methods and Results: Human placental villous explants, BeWo choriocarcinoma cells, and primary human cytotrophoblasts were cultured under physiological or folate-deficient conditions to assess the direct impact of reduced folate availability. Although intracellular folate depletion was achieved in all models, only primary cytotrophoblasts reproduced functional changes consistent with those observed in placentas from folate-deficient pregnancies, exhibiting increased apoptosis and reduced system A amino acid transport. Of sixteen miRNAs previously associated with low maternal folate status, miR-30e-3p and miR-34b-5p were significantly reduced in trophoblast following folate depletion. Targeted inhibition of either miRNA did not alter apoptosis or system A activity. Pathway analysis of differentially expressed genes following miRNA inhibition identified processes related to cytoskeletal organisation, cell adhesion, PI3K/AKT and MAPK signalling. Conclusions: Folate deficiency directly impairs trophoblast survival, amino acid transport, and miRNA expression in primary trophoblasts. Our findings demonstrate that only a subset of folate-associated placental miRNAs respond directly to folate depletion and that inhibition of individual folate-responsive miRNAs is insufficient to reproduce the trophoblast phenotype. These results indicate that trophoblast adaptation to reduced folate availability is likely mediated through coordinated nutrient-sensitive regulatory networks rather than individual miRNAs acting in isolation.

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Publication Details

Journal
Nutrients
Published
2026-08-26
DOI
https://doi.org/10.3390/nu18172785
Primary Topic
Folate and B Vitamins Research
Type
article
Field-Weighted Citation Impact
0.00

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article

Folate Deficiency Alters microRNA Expression and Transcriptomic Networks in a Human Trophoblast Model

Karen Forbes, Susan Greenwood, Abigail Byford, Bernadette Baker et al.
Nutrients
Folate and B Vitamins Research
article

Folate Deficiency Alters microRNA Expression and Transcriptomic Networks in a Human Trophoblast Model

Karen Forbes, Susan Greenwood, Abigail Byford, Bernadette Baker, Georgia Fakonti, Ainslie Garrod, Fiona L. Mackie, Leo Zeef, Alexander Heazell, Samantha C. Lean, Rebecca L. Jones, Lucy Poffley
article en

Abstract

Background: Low maternal folate status is associated with placental dysfunction and adverse pregnancy outcomes; however, the mechanisms linking reduced folate availability to altered placental function remain incompletely understood. We investigated whether folate deficiency directly alters trophoblast function and microRNA (miRNA) expression, and whether folate-responsive miRNAs mediate these functional changes. Methods and Results: Human placental villous explants, BeWo choriocarcinoma cells, and primary human cytotrophoblasts were cultured under physiological or folate-deficient conditions to assess the direct impact of reduced folate availability. Although intracellular folate depletion was achieved in all models, only primary cytotrophoblasts reproduced functional changes consistent with those observed in placentas from folate-deficient pregnancies, exhibiting increased apoptosis and reduced system A amino acid transport. Of sixteen miRNAs previously associated with low maternal folate status, miR-30e-3p and miR-34b-5p were significantly reduced in trophoblast following folate depletion. Targeted inhibition of either miRNA did not alter apoptosis or system A activity. Pathway analysis of differentially expressed genes following miRNA inhibition identified processes related to cytoskeletal organisation, cell adhesion, PI3K/AKT and MAPK signalling. Conclusions: Folate deficiency directly impairs trophoblast survival, amino acid transport, and miRNA expression in primary trophoblasts. Our findings demonstrate that only a subset of folate-associated placental miRNAs respond directly to folate depletion and that inhibition of individual folate-responsive miRNAs is insufficient to reproduce the trophoblast phenotype. These results indicate that trophoblast adaptation to reduced folate availability is likely mediated through coordinated nutrient-sensitive regulatory networks rather than individual miRNAs acting in isolation.

NutrientsVol. 18(17)
University of Leeds (GB), Manchester Academic Health Science Centre (GB), New Cross Hospital (GB), University of Manchester (GB), St Mary's Hospital (GB), St Mary's Hospital (GB)
Wellcome Trust, Tommy's Baby Charity
Good health and well-being
Openalex Percentile: Top 9%
Folate and B Vitamins Research
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