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利用计算机三维追踪和电子显微镜观察小鼠初始肾单位集合管连接的形态。

Morphology of the initial nephron-collecting duct connection in mice using computerized 3D tracing and electron microscopy.

机构信息

Department of Histology and Embryology, Basic Medical College, China Medical University, Shenyang, China; Department of Histology and Embryology, Jin Zhou Medical University, Jinzhou, China.

Department of Histology and Embryology, Basic Medical College, China Medical University, Shenyang, China.

出版信息

Biochem Biophys Res Commun. 2019 Jan 29;509(1):114-118. doi: 10.1016/j.bbrc.2018.12.079. Epub 2018 Dec 19.

Abstract

Recently, the cellular origin of the connecting tubule (CNT) has been genetically characterized. The CNT is a segment between two embryonically different structures, the collecting duct originating from ureteric bud (UB), and the nephron derived from the cap mesenchyme. However, the cellular detail at the initial connection is limited. The present study demonstrated that the initial connection was composed of cells which were closely associated with the renal vesicle (RV), the initial nephron, and connected with the basal epithelium of the terminal UB tip at discrete points. The identification of the RV and UB tip was based on tracing of tubules on serial epoxy sections at mouse embryonic day 17.5. The cells at the initial connection were characterized by 1) irregularly-shaped nuclei and cells with cytoplasmic processes, 2) electron dense nuclei, 3) abundant intercellular spaces, 4) extensive cell-cell contacts with cell junctions, often zonulae adherences and occasionally focal fusion of opposing plasma membranes, and 5) numerous mitochondria, densely packed rosette-like polyribosomes, and widespread rER in the cytoplasm. Moreover, the tracing revealed that a terminal UB tip frequently connected to two nephrons at different developing stages. The UB tips, the initial connections, and the distal tubules of the S-shaped bodies did not express Na-Cl cotransporter, H-ATPase, or aquaporin 2, while they were expressed in immature CNT of the capillary-loop stage nephrons throughout the kidney development. Consequently, the cells at the initial connection exhibit the morphological features suggestive of energy demanding, protein producing, and intercellular communicating. The cell morphology together with transporter development indicates that these cells serve several functions during the development of the initial connection, and that these functions are different from the cells' final functions as transportation.

摘要

最近,连接小管(CNT)的细胞起源已通过遗传特征得到了确定。CNT 是两个在胚胎上不同的结构之间的一段,即起源于输尿管芽(UB)的集合管,以及来源于帽状间充质的肾单位。然而,最初连接的细胞细节有限。本研究表明,最初的连接由与肾小囊(RV)、初始肾单位紧密相关的细胞组成,并在离散点与末端 UB 尖端的基底上皮连接。RV 和 UB 尖端的鉴定是基于在小鼠胚胎第 17.5 天对连续环氧切片上的小管进行追踪。最初连接的细胞具有以下特征:1)不规则形状的核和具有细胞质突起的细胞,2)电子致密核,3)丰富的细胞间隙,4)广泛的细胞-细胞接触和细胞连接,通常是粘着小带,偶尔有对向质膜的局灶融合,以及 5)大量的线粒体、密集排列的玫瑰花结样多核糖体和广泛分布的 rER 在细胞质中。此外,追踪显示末端 UB 尖端经常与两个处于不同发育阶段的肾单位相连。UB 尖端、初始连接和 S 形体的远端小管不表达 Na-Cl 共转运体、H-ATP 酶或水通道蛋白 2,但在整个肾脏发育过程中,它们在不成熟的毛细血管环阶段肾单位的 CNT 中表达。因此,最初连接中的细胞表现出形态特征,提示其需要能量、蛋白质产生和细胞间通讯。细胞形态和转运体发育表明,这些细胞在最初连接的发育过程中具有多种功能,并且这些功能与细胞的最终运输功能不同。

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