1 Department of Community Medicine and Primary Health Care, Faculty of Medicine, College of Health Sciences, Nnamdi Azikiwe University, Awka, Nigeria.
2 Department of Healthcare Management, University of New Orleans, Louisiana, USA.
3 Department of Clinical Pharmacy and Pharmacy Practice, Usmanu Danfodiyo University, Sokoto, Nigeria.
4 Department of Pharmacognosy and Phytotherapy, Faculty of Pharmaceutical Scences, University of Port-Harcourt, Port-Harcourt, Nigeria.
5 Department of Medicine and Surgery, Igbinedion University, Okada, Nigeria.
6 Department of Internal Medicine, Obafemi Awolowo University Ile-Ife, Nigeria.
7 Department of Pharmacology and Toxicology, Faculty of Pharmacy, Madonna University, Elele, Nigeria.
World Journal of Biology Pharmacy and Health Sciences, 2025, 24(03), 065-081
Article DOI: 10.30574/wjbphs.2025.24.3.1048
Received on 02 November 2025; revised on 09 December 2025; accepted on 11 December 2025
Preterm birth remains the leading cause of neonatal mortality and lifelong morbidity worldwide, yet its underlying biology has long eluded precise molecular definition. The discovery of placental epigenetic clocks is highly accurate. Gestationally programmed DNA methylation signatures has dramatically reframed gestational age as a measurable biological variable rather than a mere calendar milestone. This review synthesizes a transformative body of evidence demonstrating that accelerated placental epigenetic aging, driven by dysregulation of the maternal-fetal glucocorticoid, thyroid, and sex-steroid axes constitutes one of the earliest and most powerful predictors of both spontaneous and medically indicated preterm delivery yet identified. Through integration of large prospective cohorts, single-cell atlases, organoid models, and cell-free DNA technologies, we reveal how endocrine perturbations induce premature trophoblast senescence, inflammatory priming, and telomere-independent clock acceleration, converging on a final common pathway to parturition. Critically, existing endocrine-modifying interventions, vaginal progesterone, low-dose aspirin, and levothyroxine can decelerate these clocks when initiated in high-risk pregnancies identified by non-invasive blood-based assays that now outperform all conventional screening tools. As randomized trials of clock-guided precision prevention launch globally, placental epigenetic age assessment stands poised to shift obstetrics from reactive management to proactive, biologically informed care, offering the first realistic prospect of substantially reducing the global burden of prematurity and its intergenerational consequences.
Placental Epigenetic Clock; Gestational Age Acceleration; Preterm Birth Prediction; Maternal-Fetal Endocrine Crosstalk; DNA Methylation Biomarkers; Glucocorticoid Signaling; Cell-Free Placental DNA; Precision Obstetrics
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Ifeoma Nwamaka Monago, Nyerovwo Charity Okei, Alina Jonah Salihu, Chibuike Stephen Nzereogu, Chukwuemeka Kandudi Monago, Marvellous Ebubechukwu Osarhiaekhimen and Oluwatosin Roseline Olumeyan. Placental epigenetic clocks and maternal-fetal endocrine crosstalk: From DNA Methylation to Gestational Age Prediction and Preterm Birth Risk. World Journal of Biology Pharmacy and Health Sciences, 2025, 24(03), 065-081. Article DOI: https://doi.org/10.30574/wjbphs.2025.24.3.1048.