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Placental Dysfunction as a Common Pathway Linking Preeclampsia, Fetal Growth Restriction, and Preterm Birth: Current
Shankar Burute1, Sehenaz Parvin
1Department of Obstetrics and Gynecology, Dr. D. Y. Patil Medical College Hospital and Research Centre, Dr. D. Y. Patil Vidyapeeth (Deemed to be University), Pune, Maharashtra, India.
Insights
Preeclampsia, fetal growth restriction (FGR), and preterm birth stem from placental dysfunction. Understanding this common link improves risk stratification and early management for better maternal and infant outcomes.
Area of Science:
- Obstetrics and Gynecology
- Perinatal Medicine
- Reproductive Biology
Background:
- Preeclampsia, fetal growth restriction (FGR), and preterm birth are leading causes of maternal and infant mortality.
- These conditions often coexist, suggesting shared underlying causes despite distinct clinical definitions.
- Placental dysfunction is increasingly recognized as a central factor linking these adverse pregnancy outcomes.
Purpose of the Study:
- To synthesize evidence supporting placental dysfunction as the common mechanistic pathway for preeclampsia, FGR, and preterm birth.
- To review key findings related to placental pathology, molecular signaling, and imaging.
- To discuss the implications of a placenta-centered approach for clinical management.
Main Methods:
- Narrative review of contemporary scientific literature.
- Synthesis of histopathological, molecular, and imaging data.
- Emphasis on angiogenic signaling, Doppler velocimetry, and biomarkers of placental health.
Main Results:
- Impaired placentation, spiral artery remodeling issues, and uteroplacental hypoperfusion trigger key pathological processes.
- These placental disturbances, including oxidative stress and angiogenic imbalance, precede clinical manifestations.
- Differences in early- vs. late-onset disease correlate with the timing and severity of placental insult.
Conclusions:
- Recognizing preeclampsia, FGR, and preterm birth as part of a placental disease spectrum is clinically significant.
- Integrating placenta-focused biomarkers and imaging can enhance risk stratification and personalized surveillance.
- A placenta-centered framework offers opportunities for earlier, prevention-oriented management strategies.
Abstract:
Preeclampsia, fetal growth restriction (FGR), and preterm birth remain major contributors to maternal and perinatal morbidity and mortality worldwide. Although these conditions are traditionally approached as distinct clinical entities, they frequently coexist and share overlapping risk factors, suggesting a common underlying pathophysiology. Increasing evidence indicates that placental dysfunction represents a central biological substrate linking these adverse pregnancy outcomes. Impaired placentation, inadequate spiral artery remodeling, and resultant uteroplacental hypoperfusion initiate a cascade of oxidative stress, angiogenic imbalance, immune dysregulation, and altered placental transport function. These placental disturbances precede clinical disease and shape both maternal and fetal manifestations across gestation. This narrative review synthesizes contemporary evidence supporting placental dysfunction as the shared mechanistic pathway underlying preeclampsia, FGR, and a substantial proportion of preterm births. Key histopathological, molecular, and imaging findings are reviewed, with particular emphasis on angiogenic signaling, Doppler velocimetry, and emerging biomarker-based approaches that reflect placental health. Differences between early- and late-onset disease phenotypes are discussed, highlighting how the timing and severity of placental insult influence clinical presentation and outcomes. The review also examines the implications of a placenta-centered framework for screening, surveillance, and timing of delivery. Recognition of these obstetric complications as manifestations of a common placental disease spectrum has important clinical implications. Integrating placenta-focused biomarkers and imaging into routine care offers an opportunity to improve risk stratification, personalize surveillance, and move toward earlier, prevention-oriented management. Future advances will depend on refining placenta-based phenotyping and translating mechanistic insights into equitable and clinically actionable strategies across diverse healthcare settings.
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