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双侧肾缺如的Lrp4基因敲除小鼠中的羊水过多:羊水清除途径的缺陷

Polyhydramnios in Lrp4 knockout mice with bilateral kidney agenesis: Defects in the pathways of amniotic fluid clearance.

作者信息

Tanahashi Hiroshi, Tian Qing-Bao, Hara Yoshinobu, Sakagami Hiroyuki, Endo Shogo, Suzuki Tatsuo

机构信息

Department of Neuroplasticity, Institute of Pathogenesis and Disease Prevention, Graduate School of Medicine, Shinshu University, 3-1-1 Asahi, Matsumoto 390-8621, Japan.

Department of Biological Sciences for Intractable Neurological Diseases, Institute for Biomedical Sciences, Shinshu University, 3-1-1 Asahi, Matsumoto 390-8621, Japan.

出版信息

Sci Rep. 2016 Feb 5;6:20241. doi: 10.1038/srep20241.

Abstract

Amniotic fluid volume during mid-to-late gestation depends mainly on the urine excretion from the foetal kidneys and partly on the fluid secretion from the foetal lungs during foetal breathing-like movements. Urine is necessary for foetal breathing-like movements, which is critical for foetal lung development. Bilateral renal agenesis and/or obstruction of the urinary tract lead to oligohydramnios, which causes infant death within a short period after birth due to pulmonary hypoplasia. Lrp4, which functions as an agrin receptor, is essential for the formation of neuromuscular junctions. Herein, we report novel phenotypes of Lrp4 knockout (Lrp4(-/-)) mice. Most Lrp4(-/-) foetuses showed unilateral or bilateral kidney agenesis, and Lrp4 knockout resulted in polyhydramnios. The loss of Lrp4 compromised foetal swallowing and breathing-like movements and downregulated the expression of aquaporin-9 in the foetal membrane and aquaporin-1 in the placenta, which possibly affected the amniotic fluid clearance. These results suggest that amniotic fluid removal was compromised in Lrp4(-/-) foetuses, resulting in polyhydramnios despite the impairment of urine production. Our findings indicate that amniotic fluid removal plays an essential role in regulating the amniotic fluid volume.

摘要

妊娠中后期的羊水量主要取决于胎儿肾脏的尿液排泄,部分取决于胎儿类似呼吸运动时胎儿肺部的液体分泌。尿液对于胎儿类似呼吸运动是必需的,而这种运动对胎儿肺部发育至关重要。双侧肾发育不全和/或尿路梗阻会导致羊水过少,这会因肺发育不全在出生后短时间内导致婴儿死亡。Lrp4作为聚集蛋白聚糖受体发挥作用,对神经肌肉接头的形成至关重要。在此,我们报告了Lrp4基因敲除(Lrp4(-/-))小鼠的新表型。大多数Lrp4(-/-)胎儿表现出单侧或双侧肾发育不全,并且Lrp4基因敲除导致羊水过多。Lrp4的缺失损害了胎儿吞咽和类似呼吸的运动,并下调了胎膜中aquaporin-9和胎盘中aquaporin-1的表达,这可能影响了羊水清除。这些结果表明,Lrp4(-/-)胎儿的羊水清除受损,尽管尿液生成受损但仍导致羊水过多。我们的研究结果表明,羊水清除在调节羊水量中起着至关重要的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5f5c/4742865/dcac7fd1254d/srep20241-f1.jpg

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