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May 8, 2026Frontiers in Psychiatry0 citationsOpen Access

Circulating microRNA molecular signatures converge with erythroid phenotypes and iron homeostasis in pediatric tic disorders

RJRu JiaTZTingting ZhuXTXue Tian

Key Points

  • This study aims to investigate the relationship between circulating microRNAs, erythroid phenotypes, and iron homeostasis in pediatric tic disorders.
  • Enrolled 30 children with tic disorders and 10 healthy controls.
  • Measured serum levels of five candidate microRNAs and assessed erythroid indicators and iron metabolism.
  • Utilized differential expression analyses, multivariate modeling, and network-based enrichment analyses.
  • Hsa-miR-125b-5p and hsa-miR-23a-3p were upregulated in tic disorder children.
  • The integrated model of hsa-miR-125b-5p, MCV, and TrF achieved an AUC of 0.977 for diagnostic performance.
  • Convergent biological pathways were identified linking miRNA regulatory networks to erythroid and iron-related processes.

Abstract

Introduction Tic disorders (TDs) are common neurodevelopmental conditions with unclear pathogenesis and a lack of objective biomarkers. This study aimed to explore the associations among circulating microRNAs (miRNAs), erythroid phenotypes, iron homeostasis, and pediatric TD. Methods A total of 30 TD children and 10 healthy controls were enrolled. Serum levels of five candidate miRNAs, erythroid parameters, and iron metabolism indicators were detected. In this study, serum levels of five candidate miRNAs were quantified in children with tic disorders and age- and sex-matched normal controls using RT-qPCR. Erythroid phenotypes and serum iron-metabolism indicators were assessed in parallel. Differential expression analyses, multivariate modeling, and network-based target and functional enrichment analyses were performed to explore integrated molecular signatures. Results Results showed that hsa-miR-125b-5p and hsa-miR-23a-3p were significantly upregulated in the TD group. TD children exhibited lower hemoglobin, mean corpuscular volume (MCV), serum ferritin, transferrin (TrF), total ironbinding capacity, and soluble transferrin receptor, along with higher mean corpuscular hemoglobin concentration, while hemoglobin fractions remained unchanged. The integrated model combining hsa-miR-125b-5p, MCV, and TrF showed excellent diagnostic performance (AUC=0.977). Network and enrichment analyses revealed convergent biological pathways involving cellular and multicellular homeostasis, metal ion regulation, and TGF-β/BMP-associated signaling, linking miRNA-associated regulatory networks to erythroid and ironrelated processes. Discussion In conclusion, children with TD may exhibit homeostatic dysregulation of circulating miRNAs, erythroid profiles, and iron metabolism. This integrative molecular framework may provide insight into peripheral regulatory mechanisms relevant to neurodevelopmental pathology.

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Cite This Study

Jia et al. (2026) studied this question.

synapsesocial.com/papers/69fd7cd4bfa21ec5bbf05b00https://doi.org/10.3389/fpsyt.2026.1807959
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