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首页> 外文期刊>The Journal of Physiology >Sodium transport across the chorioallantoic membrane of porcine placenta involves the epithelial sodium channel (ENaC).
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Sodium transport across the chorioallantoic membrane of porcine placenta involves the epithelial sodium channel (ENaC).

机译:跨猪胎盘绒膜尿囊膜的钠转运涉及上皮钠通道(ENaC)。

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摘要

The properties of chorioallantoic membrane derived from Large White Landrace sows at 45, 65 and 100 days gestation are examined. Under short circuit conditions positive charge flows from fetal to maternal sides of the tissue. Na+ is shown to be the sole charge carrier as the short circuit current is inhibited reversibly by fetal applications of amiloride and replacement of Na+ by choline in the Ringer solution, and irreversibly by both fetal and maternal applications of ouabain. The initial short circuit current is smaller at day 100 compared to days 45 and 65. The dose responses to amiloride indicate that the epithelial sodium channel (ENaC) is involved in the movement of Na+ and that it is accessible on the fetal side of the tissue only. Immunostaining shows that the ENaC-alpha subunit is present in both the allantoic membrane and the trophoblast. Uptake studies using microvillous (apical) membrane vesicles suggest it is either inactive or only weakly active at this site. The trophoblast at day 100 has a higher content of ENaC than at days 45 and 65. This is the first report of the presence of ENaC in placental tissues. The effects of ouabain indicate the presence of a Na+ pump that is more readily inhibited by applications of the drug on the maternal aspect of the tissue than on the fetal side. Differential mechanisms may be present that would allow net movement of Na+ in either direction across the chorioallantoic membrane according to the changing demands of the developing fetus.
机译:检查了在妊娠45、65和100天时来自大白长白母猪的绒毛尿囊膜的特性。在短路条件下,正电荷从胎儿流向组织的母体。 Na +被证明是唯一的电荷载体,因为短路电流受到阿米洛利的胎儿应用和林格溶液中胆碱对Na +的替代可逆地抑制,而哇巴因的胎儿和母体应用均不可逆地抑制了短路电流。与第45天和第65天相比,第100天的初始短路电流较小。对阿米洛利的剂量反应表明上皮钠通道(ENaC)参与了Na +的运动,并且可以在组织的胎儿侧进入只要。免疫染色表明,尿囊膜和滋养细胞中都存在ENaC-α亚基。使用微绒毛(顶端)膜囊泡的摄取研究表明,该微囊在该部位要么是无活性的,要么仅是弱活性的。与第45和65天相比,第100天的滋养层具有更高的ENaC含量。这是胎盘组织中存在ENaC的第一个报道。哇巴因的作用表明存在Na +泵,该药物在组织的母体方面比在胎儿侧更容易受到药物的抑制。可能存在不同的机制,根据发育中的胎儿不断变化的需求,该机制将允许Na +在任一方向上穿过绒膜尿囊膜的净运动。

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