首页> 美国卫生研究院文献>American Journal of Physiology - Renal Physiology >Mathematical Modeling of Renal Function: Isolated interstitial nodal spaces may facilitate preferential solute and fluid mixing in the rat renal inner medulla
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Mathematical Modeling of Renal Function: Isolated interstitial nodal spaces may facilitate preferential solute and fluid mixing in the rat renal inner medulla

机译:肾功能的数学模型:孤立的间质结节空间可促进大鼠肾内髓质中优先溶质和液体混合

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摘要

Recent anatomic findings indicate that in the upper inner medulla of the rodent kidney, tubules, and vessels are organized around clusters of collecting ducts (CDs). Within CD clusters, CDs and some of the ascending vasa recta (AVR) and ascending thin limbs (ATLs), when viewed in transverse sections, form interstitial nodal spaces, which are arrayed at structured intervals throughout the inner medulla. These spaces, or microdomains, are bordered on one side by a single CD, on the opposite side by one or more ATLs, and on the other two sides by AVR. To study the interactions among these CDs, ATLs, and AVR, we have developed a mathematical compartment model, which simulates steady-state solute exchange through the microdomain at a given inner medullary level. Fluid in all compartments contains Na+, Cl, urea and, in the microdomain, negative fixed charges that represent macromolecules (e.g., hyaluronan) balanced by Na+. Fluid entry into AVR is assumed to be driven by hydraulic and oncotic pressures. Model results suggest that the isolated microdomains facilitate solute and fluid mixing among the CDs, ATLs, and AVR, promote water withdrawal from CDs, and consequently may play an important role in generating the inner medullary osmotic gradient.
机译:最近的解剖学发现表明,在啮齿动物肾脏的上部内侧髓质中,肾小管和血管围绕着收集导管(CD)的簇组织。从横断面看,在CD团簇中,CD和一些上升的直肠直肠(AVR)和瘦肢(ATL)形成间隙节空间,这些间隙空间以结构化的间隔排列在整个髓内。这些空间或微域在一侧以单个CD为边界,在另一侧以一个或多个ATL为边界,在另一侧以AVR为边界。为了研究这些CD,ATL和AVR之间的相互作用,我们开发了一个数学隔室模型,该模型可以在给定的内部髓核水平上模拟通过微区的稳态溶质交换。所有隔室中的流体均包含Na + ,Cl -,尿素以及在微域中的负固定电荷,这些负固定电荷表示受Na +平衡的大分子(例如透明质酸) 。假定流体进入AVR是由液压和渗透压驱动的。模型结果表明,分离的微区可促进CD,ATL和AVR之间的溶质和流体混合,促进CD吸水,因此可能在产生内部髓质渗透梯度中起重要作用。

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