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Numerical Modeling of Electroosmotic Push-Pull Perfusion and Assessment of its Application to Quantitative Determination of Enzymatic Activity in the Extracellular Space of Mammalian Tissue

机译:电渗推挽灌流的数值模型及其在哺乳动物组织细胞外空间酶活性定量测定中的应用评估

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摘要

Many sampling methods have been developed to measure the extracellular concentrations of solutes in the extracellular space of mammalian tissue. However, few have been used to quantitatively study the various processes, such as enzymatic degradation, that determines the fate of these solutes. For a method to be useful in this pursuit, it must be able to 1) perfuse tissue and collect the perfusate for quantitative analysis of the solutes introduced and reaction products produced, 2) control the average residence time of the active solutes, and 3) have the appropriate spatial resolution for the process of interest. Our lab previously developed a perfusion technique based on electroosmosis (EO), called EO push-pull perfusion (EOPPP), that is in principle suitable to meet these needs. However, much like the case for other sampling methods that came before, there are parameters that are needed for quantitative interpretation of data but that cannot be measured easily (or at all). In this paper, we present a robust finite element model that provides a deep understanding of fluid dynamics and mass transport in the EOPPP method, assesses the general applicability of EOPPP to studying enzyme activity in the ECS, and grants a simple approach to data treatment and interpretation to obtain, for example, Vmax and Km for an enzymatic reaction in the extracellular space of the tissue. This model is a valuable tool in optimizing and planning experiments without the need for costly experiments.
机译:已经开发了许多采样方法来测量哺乳动物组织细胞外空间中溶质的细胞外浓度。但是,很少有方法用于定量研究决定这些溶质命运的各种过程,例如酶促降解。为了使这种方法有用,它必须能够1)灌注组织并收集灌注液,以对引入的溶质和产生的反应产物进行定量分析; 2)控制活性溶质的平均停留时间;以及3)对感兴趣的过程具有适当的空间分辨率。我们的实验室以前开发了一种基于电渗(EO)的灌注技术,称为EO推挽式灌注(EOPPP),从原理上讲,该技术可满足这些需求。但是,与以前的其他采样方法一样,有些参数需要定量解释数据,但无法轻松(或根本无法测量)。在本文中,我们提出了一个鲁棒的有限元模型,该模型提供了对EOPPP方法中流体动力学和质量传输的深刻理解,评估了EOPPP在研究ECS中酶活性方面的一般适用性,并为数据处理和分析提供了一种简单的方法。解释以获得例如在组织的细胞外空间中的酶促反应的Vmax和Km。该模型是优化和计划实验的宝贵工具,无需进行昂贵的实验。

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    Yangguang Ou; Stephen G. Weber;

  • 作者单位
  • 年(卷),期 -1(89),11
  • 年度 -1
  • 页码 5864–5873
  • 总页数 24
  • 原文格式 PDF
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