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肾氧合:肾小体前血管系统不太可能导致肾内氧分流。

Renal oxygenation: preglomerular vasculature is an unlikely contributor to renal oxygen shunting.

作者信息

Olgac Ufuk, Kurtcuoglu Vartan

机构信息

The Interface Group, Institute of Physiology, University of Zurich, Zurich, Switzerland;

The Interface Group, Institute of Physiology, University of Zurich, Zurich, Switzerland; Zurich Center for Integrative Human Physiology, University of Zurich, Zurich, Switzerland

出版信息

Am J Physiol Renal Physiol. 2015 Apr 1;308(7):F671-88. doi: 10.1152/ajprenal.00551.2014. Epub 2014 Dec 10.

Abstract

The primary aim of this study was to assess the plausibility of preglomerular arterial-to-venous oxygen shunting in the kidney. To this end, we have developed a segment-wise three-dimensional computational model that takes into account transport processes in arteries, veins, cortical tissue, and capillaries. Our model suggests that the amount of preglomerular oxygen shunting is negligible. Consequently, it is improbable that preglomerular shunting contributes to the hypothesized regulation of renal oxygenation. Cortical tissue oxygenation is more likely determined by the interplay between oxygen supply, either from the preglomerular vasculature or from capillaries, and oxygen consumption. We show that reported differences in permeability to oxygen between perfused and unperfused tissue may be explained by what we refer to as advection-facilitated diffusion. We further show that the preglomerular vasculature is the primary source of oxygen for the tissue when cortical consumption is high or renal arterial blood is highly oxygenated, i.e., under hyperoxemic conditions. Conversely, when oxygen demand in the tissue is decreased, or under hypoxemic conditions, oxygen is supplied predominantly by capillaries.

摘要

本研究的主要目的是评估肾脏中球前动脉到静脉的氧分流的合理性。为此,我们开发了一个逐段三维计算模型,该模型考虑了动脉、静脉、皮质组织和毛细血管中的传输过程。我们的模型表明,球前氧分流的量可以忽略不计。因此,球前分流对假设的肾脏氧合调节作用不大可能。皮质组织的氧合更可能由来自球前血管系统或毛细血管的氧供应与氧消耗之间的相互作用决定。我们表明,灌注组织和未灌注组织之间报道的氧通透性差异可能由我们所称的平流促进扩散来解释。我们进一步表明,当皮质消耗高或肾动脉血高度氧合时,即高氧血症条件下,球前血管系统是组织的主要氧源。相反,当组织中的氧需求降低时,或在低氧血症条件下,氧主要由毛细血管供应。

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