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Placental regulation of fetal nutrient supply

机译:胎盘对胎儿营养供应的调节

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PURPOSE OF REVIEW: Placental nutrient uptake and transfer may have a unique role, as changes in trophoblast nutrient-sensing signaling pathways regulate cell metabolism and may affect the fetal growth and health programming in the offspring. RECENT FINDINGS: The functionality of the placenta could affect the neonatal adiposity and the fetal levels of key nutrients such as long-chain polyunsaturated fatty acids. Insulin, oxygen and amino acid concentrations may regulate the mammalian target of rapamycin (mTOR) nutrient sensor in the human placenta affecting trophoblast metabolism and nutrient delivery. SUMMARY: The mechanisms involved in both placental uptake and transfer of macronutrients are reviewed. Fatty acid, cholesterol and amino acid transport across the placenta involves a complex system to ensure nutrient delivery to the growing fetus. The placental glucose transfer is important for fetal macrosomia, but lipid disturbances in both maternal and placental compartments may contribute to neonatal fat accretion. Maternal insulin has little effect on the avidity of glucose transport by the placenta, but may interfere in placental metabolism via mTOR nutrient sensor. mTOR is a positive regulator of the amino acid carriers and constitutes a critical link between maternal nutrient availability and fetal growth, thereby influencing the long-term health of the fetus.
机译:审查目的:胎盘营养素的摄取和转移可能具有独特的作用,因为滋养层营养素传感信号传导途径的改变调节细胞代谢,并可能影响胎儿的生长和后代的健康程序。最近的发现:胎盘的功能可能会影响新生儿肥胖和胎儿关键营养素的水平,例如长链多不饱和脂肪酸。胰岛素,氧气和氨基酸的浓度可能会调节人胎盘中雷帕霉素(mTOR)营养传感器的哺乳动物靶标,从而影响滋养层的代谢和营养传递。摘要:审查了胎盘摄取和大量营养素转移相关的机制。跨胎盘的脂肪酸,胆固醇和氨基酸的运输涉及复杂的系统,以确保将营养物质输送至成长中的胎儿。胎盘葡萄糖转移对于胎儿巨大儿很重要,但是母体和胎盘区室的脂质紊乱都可能导致新生儿脂肪积聚。母体胰岛素对胎盘葡萄糖转运的亲和力影响很小,但可能通过mTOR营养素传感器干扰胎盘的代谢。 mTOR是氨基酸载体的正向调节剂,并构成了孕妇营养物质可利用性与胎儿生长之间的关键纽带,从而影响了胎儿的长期健康。

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