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Analysis of pH Gradients Resulting from Mass Transport Limitations in Engineered Heart Tissue

机译:工程心脏组织中由于运输受限而导致的pH梯度分析

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摘要

Transport limitations of critical nutrients are a major obstacle in the construction of engineered heart tissues (EHTs), and the importance of oxygen in this regard is well-documented throughout the literature. An indirect effect of cellular hypoxia is the shunt to the less-efficient glycolytic metabolism, which is accompanied by a reduction in extracellular pH. Image analysis of phenol red coloration in an experimental model of EHTs demonstrated pH gradients towards the center of the construct, which were dependent on experimental variables. Based on these observations, a four-species, 2-D diffusion–reaction mathematical model was developed to predict pH in a radial-diffusion model. The mathematical model predicted lethal values of pH (<6.5) in EHTs comprised of a nominal cell density of 106 cells/cm3. pH predictions were moderately dependent on O2 concentration, and strongly dependent on cell density, CO2 concentration, and diffusion path length. It can be concluded from this study that hypoxia-induced acidosis is an important element in the mass transport problem, and future experiments measuring pH with more sensitive methods is expected to further elucidate the extent of this effect.
机译:关键营养素的运输限制是工程心脏组织(EHT)构建的主要障碍,并且在这方面,氧气的重要性已在整个文献中得到了充分证明。细胞缺氧的间接作用是分流到效率较低的糖酵解代谢,同时伴有细胞外pH的降低。在EHT的实验模型中对酚红着色的图像分析表明,pH朝着构建体的中心倾斜,这取决于实验变量。基于这些观察,开发了一种四物种二维扩散反应数学模型来预测径向扩散模型中的pH。该数学模型预测了EHT中pH的致死值(<6.5),其名义细胞密度为106 细胞/ cm3 。 pH的预测值适度地依赖于O2 的浓度,而强烈地依赖于细胞密度,CO2 的浓度和扩散路径的长度。从这项研究可以得出结论,低氧引起的酸中毒是物质运输问题中的重要因素,未来有望通过更敏感的方法测量pH值的实验进一步阐明这种影响的程度。

著录项

  • 来源
    《Annals of Biomedical Engineering》 |2007年第11期|1885-1897|共13页
  • 作者单位

    Department of Bioengineering University of California Los Angeles 7523 Boelter Hall 420 Westwood Plaza Los Angeles CA 90095 USA;

    Departments of Medicine Physiology and The Cardiovascular Research Laboratories David Geffen School of Medicine University of California Los Angeles 3-645 MRL Box 951760 Los Angeles CA 90095-1760 USA;

    Department of Bioengineering University of California Los Angeles 7523 Boelter Hall 420 Westwood Plaza Los Angeles CA 90095 USA;

    Department of Surgery University of California Los Angeles 62-232 CHS Box 951741 Los Angeles CA 90095-1741 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Cardiac tissue engineering; Diffusion; Hypoxia; Hydrogel;

    机译:心脏组织工程;扩散;缺氧;水凝胶;

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