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首页> 外文期刊>Journal of Pathology: Journal of the Pathological Society of Great Britain and Ireland >Neonatal vascularization and oxygen tension regulate appropriate perinatal renal medulla/papilla maturation
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Neonatal vascularization and oxygen tension regulate appropriate perinatal renal medulla/papilla maturation

机译:新生儿血管生成和氧气张力可调节围产期适当的肾髓质/乳头成熟

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摘要

Congenital medullary dysplasia with obstructive nephropathy is a common congenital disorder observed in paediatric patients and represents the foremost cause of renal failure. However, the molecular processes regulating normal papillary outgrowth during the postnatal period are unclear. In this study, transcriptional profiling of the renal medulla across postnatal development revealed enrichment of non-canonical Wnt signalling, vascular development, and planar cell polarity genes, all of which may contribute to perinatal medulla/papilla maturation. These pathways were investigated in a model of papillary hypoplasia with functional obstruction, the Crim1(KST264/KST264) transgenic mouse. Postnatal elongation of the renal papilla via convergent extension was unaffected in the Crim1(KST264/KST264) hypoplastic renal papilla. In contrast, these mice displayed a disorganized papillary vascular network, tissue hypoxia, and elevated Vegfa expression. In addition, we demonstrate the involvement of accompanying systemic hypoxia arising from placental insufficiency, in appropriate papillary maturation. In conclusion, this study highlights the requirement for normal vascular development in collecting duct patterning, development of appropriate nephron architecture, and perinatal papillary maturation, such that disturbances contribute to obstructive nephropathy. Copyright (c) 2016 Pathological Society of Great Britain and Ireland. Published by John Wiley & Sons, Ltd.
机译:伴有阻塞性肾病的先天性髓质发育异常是在儿科患者中观察到的常见先天性疾病,是肾衰竭的最主要原因。但是,尚不清楚调节出生后正常乳头生长的分子过程。在这项研究中,整个产后发育过程中肾脏延髓的转录谱显示非典型Wnt信号,血管发育和平面细胞极性基因的富集,所有这些都可能有助于围产期延髓/乳头的成熟。在具有功能性阻塞的乳头状增生模型,Crim1(KST264 / KST264)转基因小鼠中研究了这些途径。在Crim1(KST264 / KST264)发育不良的肾乳头中,通过会聚延伸引起的肾乳头的产后延长不受影响。相反,这些小鼠表现出紊乱的乳头状血管网络,组织缺氧和Vegfa表达升高。此外,我们证明了由胎盘功能不全引起的伴随的系统性缺氧与适当的乳头成熟有关。总而言之,这项研究强调了在收集导管模式,发展适当的肾单位和围产期乳头成熟中正常血管发育的要求,以至于干扰导致阻塞性肾病。版权所有(c)2016英国和爱尔兰病理学会。由John Wiley&Sons,Ltd.出版

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