CALL FOR PAPERS Renal Hypoxia Renal oxygenation: preglomerular vasculature is an unlikely contributor to renal oxygen shunting
نویسندگان
چکیده
Olgac U, Kurtcuoglu V. Renal oxygenation: preglomerular vasculature is an unlikely contributor to renal oxygen shunting. Am J Physiol Renal Physiol 308: F671–F688, 2015. First published December 10, 2014; doi:10.1152/ajprenal.00551.2014.—The primary aim of this study was to assess the plausibility of preglomerular arterial-tovenous 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.
منابع مشابه
Renal oxygenation: preglomerular vasculature is an unlikely contributor to renal oxygen shunting.
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. Cons...
متن کاملThe Bohr Effect Is Not a Likely Promoter of Renal Preglomerular Oxygen Shunting
The aim of this study was to evaluate whether possible preglomerular arterial-to-venous oxygen shunting is affected by the interaction between renal preglomerular carbon dioxide and oxygen transport. We hypothesized that a reverse (venous-to-arterial) shunting of carbon dioxide will increase partial pressure of carbon dioxide and decrease pH in the arteries and thereby lead to increased oxygen ...
متن کاملCALL FOR PAPERS Mathematical Modeling of Renal Function Diffusive oxygen shunting between vessels in the preglomerular renal vasculature: anatomic observations and computational modeling
Bruce S. Gardiner, Sarah L. Thompson, Jennifer P. Ngo, David W. Smith, Amany Abdelkader, Brad R. S. Broughton, John F. Bertram, and Roger G. Evans School of Computer Science and Software Engineering, The University of Western Australia, Perth, Australia; Department of Physiology, Monash University, Melbourne, Australia; Department of Pharmacology, Monash University, Melbourne, Australia; and De...
متن کاملSPECIAL TOPIC Water and Electrolyte Homeostasis Section Invited Reviews Renal oxidative stress, oxygenation, and hypertension
Palm F, Nordquist L. Renal oxidative stress, oxygenation, and hypertension. Am J Physiol Regul Integr Comp Physiol 301: R1229–R1241, 2011. First published August 10, 2011; doi:10.1152/ajpregu.00720.2010.—Hypertension is closely associated with progressive kidney dysfunction, manifested as glomerulosclerosis, interstitial fibrosis, proteinuria, and eventually declining glomerular filtration. The...
متن کاملA mathematical model of diffusional shunting of oxygen from arteries to veins in the kidney.
To understand how arterial-to-venous (AV) oxygen shunting influences kidney oxygenation, a mathematical model of oxygen transport in the renal cortex was created. The model consists of a multiscale hierarchy of 11 countercurrent systems representing the various branch levels of the cortical vasculature. At each level, equations describing the reactive-advection-diffusion of oxygen are solved. F...
متن کامل