Dept. of Histology and Embryology, China Medical Univ., No. 92, Beier Road, Heping District, Shenyang 110001, China.
Am J Physiol Renal Physiol. 2014 Feb 1;306(3):F321-6. doi: 10.1152/ajprenal.00429.2013. Epub 2013 Dec 4.
The vascular bundle (VB) is a complex structure that resides in the inner stripe of the outer medulla. At present, the tubulovascular spatial organization of the VB, which is crucial for the formation of the osmolarity gradient and for solute transport, is still under debate. In this study, we used computer-assisted digital tracing combined with aquaporin-1 immunohistochemistry to reconstruct all tubules and vessels in the VB of the mouse kidney. We found, first, that the descending and ascending vasa recta travelled exclusively through the VB. The ascending vasa recta received no tributaries (no branches) along their entire path in the medulla and were not connected with the capillary plexus in the interbundle region. Second, a specific group of the descending vasa recta were closely accompanied by the longest ascending vasa recta, which connected only to the capillary plexus at the tip of the papilla. Third, the descending thin limbs of all short-looped nephrons travelled exclusively through the outer part of the VB. The loops of these nephrons (both descending and ascending parts) were distributed in a regular pattern based on their length. Finally, the thick ascending limbs of all long-looped nephrons were located at the margin of the VB (except a few within the VB), which formed a layer separating the VB from the interbundle region. In conclusion, our three-dimensional analysis of the VB strongly suggest a lateral osmolarity heterogeneity across the inner stripe of the outer medulla, which might work as a driving force for water and solute transport.
血管束(VB)是一种位于外髓内层的复杂结构。目前,对于 VB 的管状血管空间组织(对于渗透压梯度的形成和溶质运输至关重要)仍存在争议。在本研究中,我们使用计算机辅助数字追踪结合水通道蛋白-1 免疫组织化学,重建了小鼠肾脏 VB 中的所有小管和血管。我们首先发现,降支和升支直血管仅通过 VB 行进。升支直血管在整个髓质中没有分支,也不与束间区的毛细血管丛相连。其次,一组特定的降支直血管与最长的升支直血管紧密相伴,仅在乳头尖端与毛细血管丛相连。第三,所有短袢肾单位的降支细段均仅通过 VB 的外部分行进。这些肾单位的袢(降支和升支)根据其长度呈规则分布。最后,所有长袢肾单位的升支粗段均位于 VB 的边缘(除了少数位于 VB 内),形成了将 VB 与束间区分开的一层。总之,我们对 VB 的三维分析强烈表明,外髓内层存在横向渗透压异质性,可能作为水和溶质运输的驱动力。