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大鼠髓质直小血管的分离与灌注

Isolation and perfusion of rat inner medullary vasa recta.

作者信息

Evans Kristen K, Nawata C Michele, Pannabecker Thomas L

机构信息

Department of Physiology, University of Arizona Health Sciences Center, Tucson, Arizona.

Department of Physiology, University of Arizona Health Sciences Center, Tucson, Arizona

出版信息

Am J Physiol Renal Physiol. 2015 Aug 15;309(4):F300-4. doi: 10.1152/ajprenal.00214.2015. Epub 2015 Jun 10.

Abstract

Outer medullary isolated descending vasa recta have proven to be experimentally tractable, and consequently much has been learned about outer medullary vasa recta endothelial transport, pericyte contractile mechanisms, and tubulovascular interactions. In contrast, inner medullary vasa recta have never been isolated from any species, and therefore isolated vasa recta function has never been subjected to in vitro quantitative evaluation. As we teased out inner medullary thin limbs of Henle's loops from the Munich-Wistar rat, we found that vasa recta could be isolated using similar protocols. We isolated ∼30 inner medullary vasa recta from 23 adult male Munich-Wistar rats and prepared them for brightfield or electron microscopy, gene expression analysis by RT-PCR, or isolated tubule microperfusion. Morphological characteristics include branching and nonbranching segments exhibiting a thin endothelium, axial surface filaments radiating outward giving vessels a hairy appearance, and attached interstitial cells. Electron microscopy shows multiple cells, tight junctions, and either continuous or fenestrated endothelia. Isolated vasa recta express genes encoding the urea transporter UT-B and/or the fenestral protein PV-1, genes expressed in descending or ascending vasa recta, respectively. The transepithelial NaCl permeability (383.3 ± 60.0 × 10(-5) cm/s, mean ± SE, n = 4) was determined in isolated perfused vasa recta. Future quantitative analyses of isolated inner medullary vasa recta should provide structural and functional details important for more fully understanding fluid and solute flows through the inner medulla and their associated regulatory pathways.

摘要

实验证明,外髓质孤立下行直小血管易于操作,因此人们对外髓质直小血管内皮细胞转运、周细胞收缩机制以及肾小管与血管相互作用有了很多了解。相比之下,从未从任何物种中分离出内髓质直小血管,因此孤立直小血管的功能从未经过体外定量评估。当我们从慕尼黑-维斯塔大鼠分离出亨氏袢的内髓质细段时,发现可以使用类似的方法分离直小血管。我们从23只成年雄性慕尼黑-维斯塔大鼠中分离出约30条内髓质直小血管,并将它们制备用于明场或电子显微镜观察、通过逆转录聚合酶链反应进行基因表达分析或孤立肾小管微灌注。形态学特征包括具有薄内皮的分支和非分支段、轴向表面细丝向外辐射使血管呈现多毛外观以及附着的间质细胞。电子显微镜显示有多个细胞、紧密连接以及连续或有窗孔的内皮。孤立直小血管表达分别在下行或上行直小血管中表达的编码尿素转运体UT-B和/或窗孔蛋白PV-1的基因。在孤立灌注的直小血管中测定了跨上皮NaCl通透性(383.3±60.0×10(-5) cm/s,平均值±标准误,n = 4)。未来对孤立内髓质直小血管的定量分析应能提供重要的结构和功能细节,有助于更全面地理解通过内髓质的液体和溶质流动及其相关调节途径。

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