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Published on: August 2, 2017
Nutritional and Physiological Regulation of Water Transport in the Conceptus
Cui Zhu1, Zongyong Jiang2, Gregory A Johnson3
1School of Life Science and Engineering, Foshan University, Foshan, 528225, China.
Insights
Maternal diet and physiological factors significantly impact aquaporin (AQP) expression in the conceptus, influencing water transport crucial for embryonic and fetal development. Understanding these effects can enhance mammalian pregnancy outcomes.
Area of Science:
- Reproductive Biology
- Developmental Biology
- Physiology
Background:
- Water transport is vital for conceptus development during pregnancy.
- Aquaporins (AQPs) are key proteins facilitating water movement across membranes.
- AQPs are expressed in mammalian placental tissues and fetal organs.
Purpose of the Study:
- To review the influence of maternal nutrition and physiological factors on conceptus aquaporin expression.
- To elucidate the role of AQPs in supporting placentation and fluid homeostasis.
- To explore mechanisms regulating mother-fetus fluid exchange.
Main Methods:
- Literature review of studies on aquaporin expression in mammalian conceptuses.
- Analysis of maternal dietary factors (nutrients, toxins) and their impact on AQPs.
- Examination of physiological regulators (hormones, oxygen, pH) affecting fluid exchange.
Main Results:
- Maternal dietary factors like protein, lipids, and minerals modulate AQPs in the conceptus.
- Hormonal changes, oxygen levels, and pH influence aquaporin-mediated water transport.
- AQP expression is critical for amniotic/allantoic fluid volume homeostasis.
Conclusions:
- Aquaporins play a central role in supporting embryonic and fetal survival, growth, and development.
- Maternal factors significantly regulate AQP expression and function during pregnancy.
- Insights can improve fetal development strategies in livestock and humans.
Abstract:
Water transport during pregnancy is essential for maintaining normal growth and development of conceptuses (embryo/fetus and associated membranes). Aquaporins (AQPs) are a family of small integral plasma membrane proteins that primarily transport water across the plasma membrane. At least 11 isoforms of AQPs (AQPs 1-9, 11, and 12) are differentially expressed in the mammalian placenta (amnion, allantois, and chorion), and organs (kidney, lung, brain, heart, and skin) of embryos/fetuses during prenatal development. Available evidence suggests that the presence of AQPs in the conceptus mediates water movement across the placenta to support the placentation, the homeostasis of amniotic and allantoic fluid volumes, as well as embryonic and fetal survival, growth and development. Abundances of AQPs in the conceptus can be modulated by nutritional status and physiological factors affecting the pregnant female. Here, we summarize the effects of maternal dietary factors (such as intakes of protein, arginine, lipids, all-trans retinoic acid, copper, zinc, and mercury) on the expression of AQPs in the conceptus. We also discuss the physiological changes in hormones (e.g., progesterone and estrogen), oxygen supply, nitric oxide, pH, and osmotic pressure associated with the regulation of fluid exchange between mother and fetus. These findings may help to improve the survival, growth, and development of embryo/fetus in livestock species and other mammals (including humans).
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