Zhai Xiao-Yue, Thomsen Jesper S, Birn Henrik, Kristoffersen Inger B, Andreasen Arne, Christensen Erik I
Department of Cell Biology, Institute of Anatomy, University of Aarhus, DK-8000 Arhus C, Denmark.
J Am Soc Nephrol. 2006 Jan;17(1):77-88. doi: 10.1681/ASN.2005080796. Epub 2005 Nov 30.
Renal function is crucially dependent on renal microstructure which provides the basis for the regulatory mechanisms that control the transport of water and solutes between filtrate and plasma and the urinary concentration. This study provides new, detailed information on mouse renal architecture, including the spatial course of the tubules, lengths of different segments of nephrons, histotopography of tubules and vascular bundles, and epithelial ultrastructure at well-defined positions along Henle's loop and the distal convolution of nephrons. Three-dimensional reconstruction of 200 nephrons and collecting ducts was performed on aligned digital images, obtained from 2.5-mum-thick serial sections of mouse kidneys. Important new findings were highlighted: (1) A tortuous course of the descending thin limbs of long-looped nephrons and a winding course of the thick ascending limbs of short-looped nephrons contributed to a 27% average increase in the lengths of the corresponding segments, (2) the thick-walled tubules incorporated in the central part of the vascular bundles in the inner stripe of the outer medulla were identified as thick ascending limbs of long-looped nephrons, and (3) three types of short-looped nephron bends were identified to relate to the length and the position of the nephron and its corresponding glomerulus. The ultrastructure of the tubule segments was identified and suggests important implications for renal transport mechanisms that should be considered when evaluating the segmental distribution of water and solute transporters within the normal and diseased kidney.
肾功能严重依赖于肾脏微观结构,该结构为控制滤液与血浆之间水和溶质转运以及尿液浓缩的调节机制提供了基础。本研究提供了关于小鼠肾脏结构的新的详细信息,包括肾小管的空间走向、肾单位不同节段的长度、肾小管与血管束的组织局部解剖关系,以及沿髓袢和肾单位远曲小管特定位置的上皮超微结构。对从小鼠肾脏2.5微米厚的连续切片获得的对齐数字图像进行了200个肾单位和集合管的三维重建。突出了重要的新发现:(1)长襻肾单位降支细段的曲折走向和短襻肾单位升支粗段的蜿蜒走向使相应节段的长度平均增加了27%,(2)在外髓质内带血管束中央部分包含的厚壁肾小管被确定为长襻肾单位的升支粗段,(3)确定了三种类型的短襻肾单位弯曲与肾单位及其相应肾小球的长度和位置有关。确定了肾小管节段的超微结构,这对肾脏转运机制具有重要意义,在评估正常和患病肾脏中水和溶质转运体的节段分布时应予以考虑。