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The Effect of Small Changes in Hematocrit on Nitric Oxide Transport in Arterioles

机译:血细胞比容的微小变化对小动脉中一氧化氮转运的影响

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摘要

We report the development of a mathematical model that quantifies the effects of small changes in systemic hematocrit (Hct) on the transport of nitric oxide (NO) in the microcirculation. The model consists of coupled transport equations for NO and oxygen (O2) and accounts for both shear-induced NO production by the endothelium and the effect of changing systemic Hct on the rate of NO production and the rate of NO scavenging by red blood cells. To incorporate the dependence of the plasma layer width on changes in Hct, the model couples the hemodynamics of blood in arterioles with NO and O2 transport in the plasma layer. A sensitivity analysis was conducted to determine the effects of uncertain model parameters (the thicknesses of endothelial surface layers and diffusion coefficients of NO and O2 in muscle tissues and vascular walls) on the model's predictions. Our analysis reveals that small increases in Hct may raise NO availability in the vascular wall. This finding sheds new light on the experimental data that show that the blood circulation responds to systematic increases of Hct in a manner that is consistent with increasing NO production followed by a plateau. Antioxid. Redox Signal. 14, 175–185.
机译:我们报告了数学模型的发展,该数学模型量化了系统血细胞比容(Hct)的微小变化对微循环中一氧化氮(NO)运输的影响。该模型由NO和氧(O2)的耦合输运方程组成,并考虑了内皮引起的剪切诱导的NO生成以及系统性Hct改变对NO生成速率和红细胞NO清除速率的影响。为了合并血浆层宽度对Hct变化的依赖性,该模型将小动脉中血液的血液动力学与血浆层中NO和O2的运输结合在一起。进行了敏感性分析,以确定不确定的模型参数(内皮表面层的厚度以及肌肉组织和血管壁中NO和O2的扩散系数)对模型预测的影响。我们的分析表明,Hct的小幅增加可能会增加血管壁的NO利用率。这一发现为实验数据提供了新的亮点,表明血液循环以与NO生成增加并随后趋于平稳相一致的方式响应Hct的系统性增加。抗氧化。氧化还原信号。 14,175-185。

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