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年轻初产妇胎盘形成障碍的潜在围产期起源。

The potential perinatal origin of placentation disorders in the young primigravida.

作者信息

Brosens Ivo, Benagiano Giuseppe, Brosens Jan J

机构信息

Catholic University Leuven and Leuven Institute for Fertility and Embryology, Leuven, Belgium.

Department of Gynecology, Obstetrics, and Urology, Sapienza University, Rome, Italy.

出版信息

Am J Obstet Gynecol. 2015 May;212(5):580-5. doi: 10.1016/j.ajog.2015.01.013. Epub 2015 Jan 9.

Abstract

The fetus is exposed to high plasma concentrations of unbound estrogens and progesterone throughout pregnancy. However, secretory or decidual changes in the fetal uterus occur relatively infrequently before birth, suggesting a variable endometrial progesterone response at the time of birth. Arguably, partial progesterone resistance that persists into adolescent years may compromise the physiological transformation of the spiral arteries and predispose for defective placentation in the case of pregnancy. Decidualization of the endometrial stromal compartment and junctional zone myometrium precedes trophoblast invasion. It represents the first step in the process of spiral artery remodeling needed to establish effective uteroplacental blood flow by midpregnancy. The major obstetric syndromes caused by impaired placental bed spiral artery remodeling are prevalent in teenage pregnancies, including preeclampsia, fetal growth restriction, and spontaneous preterm labor. Preconditioning of the uterus in response to cyclic menstruation during adolescence may be critical to achieve full uterine responsiveness to hormonal cues. Understanding the mechanisms of functional maturation of the uterus during the early reproductive years may yield novel insights into the major obstetric syndromes.

摘要

在整个孕期,胎儿都会暴露于高血浆浓度的游离雌激素和孕酮中。然而,胎儿子宫的分泌性或蜕膜变化在出生前相对较少发生,这表明出生时子宫内膜对孕酮的反应存在差异。可以说,持续到青春期的部分孕酮抵抗可能会损害螺旋动脉的生理转变,并在怀孕时易导致胎盘形成缺陷。在滋养层侵入之前,子宫内膜基质区和交界区子宫肌层会发生蜕膜化。它是孕中期建立有效的子宫胎盘血流所需的螺旋动脉重塑过程的第一步。由胎盘床螺旋动脉重塑受损引起的主要产科综合征在青少年怀孕中很常见,包括先兆子痫、胎儿生长受限和自发性早产。青春期期间子宫对周期性月经的预处理对于实现子宫对激素信号的充分反应可能至关重要。了解青春期早期子宫功能成熟的机制可能会为主要产科综合征带来新的见解。

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