Fan Letao, Wang Shaoxun, He Xiaochen, Gonzalez-Fernandez Ezekiel, Lechene Claude, Fan Fan, Roman Richard J
Department of Pharmacology and Toxicology, University of Mississippi Medical Center, Jackson, Mississippi.
Center of Nanoimaging, Brigham and Women's Hospital, Cambridge, Massachusetts.
Physiol Rep. 2019 Apr;7(8):e14065. doi: 10.14814/phy2.14065.
This study describes a modified technique to fill the renal vasculature with a silicon rubber (Microfil) compound and obtain morphologic information about the intrarenal distribution of capillary blood flow under a variety of conditions. Kidneys and cremaster muscles of rats were perfused in vivo with Microfil using a perfusion pressure equal to the animal's mean arterial pressure at body temperature. Microfil did not alter arteriolar diameter or the pattern of flow in the microcirculation of the cremaster muscle. The modified protocol reproducibly filled the renal vasculature, including; glomerular, peritubular, and vasa recta capillaries. We compared the filling of the renal circulation in control rats with that seen in animals subjected to maneuvers reported to alter the intrarenal distribution of blood flow. Infusion of angiotensin II, hypotension, volume expansion, and mannitol- or furosemide-induced diuresis redistributed flow between renal cortical and medullary capillaries. The advantage of the current technique is that it provides anatomical information regarding the number, diameter, and branching patterns of capillaries in the postglomerular circulation critical in determining the intrarenal distribution of cortical and medullary blood flow.
本研究描述了一种改良技术,用于用硅橡胶(Microfil)化合物填充肾血管系统,并获取在各种条件下肾内毛细血管血流分布的形态学信息。使用等于动物体温下平均动脉压的灌注压力,在体灌注大鼠的肾脏和提睾肌。Microfil不会改变提睾肌微循环中的小动脉直径或血流模式。改良方案可重复性地填充肾血管系统,包括肾小球、肾小管周围和直小血管毛细血管。我们将对照大鼠的肾循环充盈情况与据报道进行了改变肾内血流分布操作的动物的情况进行了比较。输注血管紧张素II、低血压、容量扩张以及甘露醇或呋塞米诱导的利尿,会使肾皮质和髓质毛细血管之间的血流重新分布。当前技术的优点在于,它提供了有关肾小球后循环中毛细血管数量、直径和分支模式的解剖学信息,这对于确定皮质和髓质血流的肾内分布至关重要。