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Author Spotlight: Studying the Impact of Maternal Dietary Deficiencies on Long-Term Offspring Health Outcomes
Published on: June 28, 2024
Maternal-fetal cross-talk via the placenta: influence on offspring development and metabolism
Avery C Kramer1, Thomas Jansson1, Tracy L Bale1
1Departments of Obstetrics & Gynecology, Psychiatry and Pediatrics, Anschutz Medical Campus, University of Colorado, Aurora, CO 80045, USA.
Insights
A suboptimal intrauterine environment, particularly altered placental function, can lead to cardiometabolic and neuropsychiatric diseases. Interventions targeting the placenta may prevent chronic diseases in future generations.
Area of Science:
- Developmental biology
- Maternal-fetal medicine
- Metabolic disease research
Background:
- Epidemiological and animal studies link suboptimal intrauterine environments to cardiometabolic and neuropsychiatric diseases.
- Altered placental function is a potential mediator between maternal environment and fetal development.
- The placenta influences fetal tissue development via nutrient sensing, transport modulation, and extracellular vesicle signaling.
Conclusions:
- Altered placental function is a key mechanism linking intrauterine environment to later-life disease.
- Targeting placental function offers potential for preventing cardiometabolic diseases.
- Understanding maternal-fetal cross-talk is vital for future preventive strategies.
Abstract:
Compelling epidemiological and animal experimental data demonstrate that cardiometabolic and neuropsychiatric diseases originate in a suboptimal intrauterine environment. Here, we review evidence suggesting that altered placental function may, at least in part, mediate the link between the maternal environment and changes in fetal growth and development. Emerging evidence indicates that the placenta controls the development and function of several fetal tissues through nutrient sensing, modulation of trophoblast nutrient transporters and by altering the number and cargo of released extracellular vesicles. In this Review, we discuss the development and functions of the maternal-placental-fetal interface (in humans and mice) and how cross-talk between these compartments may be a mechanism for in utero programming, focusing on mechanistic target of rapamycin (mTOR), adiponectin and O-GlcNac transferase (OGT) signaling. We also discuss how maternal diet and stress influences fetal development and metabolism and how fetal growth restriction can result in susceptibility to developing chronic disease later in life. Finally, we speculate how interventions targeting placental function may offer unprecedented opportunities to prevent cardiometabolic disease in future generations.
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