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Review: Eicosanoids in preterm labor and delivery: Potential roles of exosomes in eicosanoid functions
H N Peiris1, K Vaswani1, F Almughlliq1
1University of Queensland Centre for Clinical Research, The University of Queensland, Brisbane, Queensland, Australia.
Insights
Preterm delivery affects millions globally. This review explores how exosomes may influence prostaglandin functions critical to labor and delivery, offering new insights into predicting preterm birth.
Area of Science:
- Obstetrics and Gynecology
- Cellular Biology
- Biochemistry
Background:
- Preterm delivery is a leading cause of neonatal complications worldwide.
- Prostaglandins are key mediators of labor, but their measurement is challenging due to rapid clearance and unknown sources.
- Exosomes are emerging as critical mediators of intercellular communication.
Purpose of the Study:
- To review the potential role of exosomes in the intercellular signaling of eicosanoids.
- To explore the significance of exosomal eicosanoids in the context of preterm labor and delivery.
Main Methods:
- Literature review of recent publications on exosomes, eicosanoids, and preterm labor.
- Analysis of current understanding of intercellular signaling pathways involving exosomes.
Main Results:
- Eicosanoids, including prostaglandin E2 (PGE2), have been identified within exosomes.
- Exosomes may facilitate the transport and delivery of eicosanoids between cells.
Conclusions:
- Exosomes represent a novel mechanism for eicosanoid-mediated signaling in pregnancy.
- Understanding exosome-eicosanoid interactions could lead to new strategies for predicting and managing preterm birth.
Abstract:
Preterm delivery is a major obstetric health problem contributing to poor neonatal outcome including low birth weight, respiratory distress syndrome, gastrointestinal, immunologic, central nervous system, hearing, and vision problems. Worldwide, approximately 15 million babies are born prematurely each year. The critical question which remains is how to identify women destined to deliver preterm from those who will achieve a term delivery. Prostaglandins, in all mammals, are important in the parturient process. Increased intrauterine prostaglandin production is associated with labor and in fact prostaglandin E2 (PGE2) or analogs are widely used clinically for cervical ripening and labor induction. Measurements of circulating eicosanoids have been problematic because of the rapid and major clearance by the lungs and then kidneys resulting in very low concentrations in plasma. Moreover, since eicosanoids are produced by all mammalian tissues, the sources of the measured eicosanoids are unknown. Our understanding of how cells communicate has undergone a paradigm shift with the recognition of the role of exosomes in intercellular signaling. Recent publications have identified enzymes and products of arachidonic acid metabolism (eicosanoids) within exosomes. This review will explore the potential roles of exosomes in eicosanoid functions that are critical in preterm labor and delivery.
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