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首页> 外文期刊>International Journal of Heat and Mass Transfer >High-precision approach based on microfluidic perfusion chamber for quantitative analysis of biophysical properties of cell membrane
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High-precision approach based on microfluidic perfusion chamber for quantitative analysis of biophysical properties of cell membrane

机译:基于微流灌注室的高精度定量分析细胞膜生物物理特性的方法

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摘要

Cell membrane permeability, one of the key biophysical properties of cells, plays an important role in bioengineering, regenerative medicine, tissue engineering, and biopreservation and biobanking. One featured and cell specific approach has been well established by the cryobiologists for determination of cell membrane permeability, i.e., osmotic shift experiments utilizing perfusion microchamber. The design of such microdevices and the corresponding experimental procedures have never been systematically discussed before, and this is the possible reason for that the measured parameters are different by different research groups. In this study, we developed a novel microfluidic perfusion chamber under the guidance of heat and mass transfer, and flow and diffusion theories. Two obvious improvements were implemented in our approach, i.e., the thermocouple was placed into the microchannel of the chamber during manufacturing to ensure that the temperature of the local extracellular solution could be accurately monitored, and being different from the previous studies, the concentration profile for the change of the extracellular solution during an osmotic shift process was carefully determined according to both experimental examination and computational finite element analysis on the fluid flow in both the capillary tube and the microchannel. Comparative experiments revealed that the commonly assumed ideal step function for the concentration changes of extracellular solution during an osmotic shift experiment inevitably introduced overlarge error when determining the cell membrane permeability by fitting the water transport equation to the experimental data, instead, the profile determined by this study effectively ensured the reliability and precision of the fitted parameters. Thus, we manufactured a novel microfluidic perfusion chamber, and implemented the improved data processing strategy, finally, successfully developed a high-precision approach for the quantitative analysis of cell membrane permeability. Our approach has great potential for improving cryobiology research by improving the precision of experimentally determined cell membrane permeability.
机译:细胞膜渗透性是细胞的关键生物物理特性之一,在生物工程,再生医学,组织工程以及生物保存和生物储库中起着重要作用。冷冻生物学家已经很好地确定了一种特征性的和细胞特异性的方法,用于测定细胞膜的渗透性,即利用灌注微腔的渗透转变实验。此类微型设备的设计和相应的实验程序以前从未进行过系统的讨论,这可能是由于不同研究小组的测量参数不同而引起的。在这项研究中,我们在传热传质,流动和扩散理论的指导下开发了一种新型的微流灌注室。我们的方法实现了两个明显的改进,即在制造过程中将热电偶放入腔室的微通道中,以确保可以准确地监控局部细胞外溶液的温度,并且与之前的研究不同,根据对毛细管和微通道中流体流动的实验检查和计算有限元分析,仔细确定了渗透转变过程中细胞外溶液的变化。对比实验表明,通常认为的理想步函数是渗透迁移实验中细胞外液浓度变化的理想步函数,当通过将水运移方程拟合到实验数据来确定细胞膜通透性时,不可避免地会引入过大的误差,相反,由此确定的曲线研究有效地保证了拟合参数的可靠性和准确性。因此,我们制造了一种新型的微流灌注室,并实施了改进的数据处理策略,最终成功开发出了一种用于细胞膜通透性定量分析的高精度方法。通过提高实验确定的细胞膜通透性的精度,我们的方法在改善冷冻生物学研究方面具有巨大潜力。

著录项

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  • 作者单位

    Centre for Biomedical Engineering, Department of Electronic Science & Technology, University of Science and Technology of China, Hefei 230027, China;

    Centre for Biomedical Engineering, Department of Electronic Science & Technology, University of Science and Technology of China, Hefei 230027, China,Anhui Provincial Engineering Technology Research Center for Biopreservation and Artificial Organs, Hefei 230027, China,Department of Electronic Science & Technology, University of Science and Technology of China, JinZhai Road #96, Hefei 230027, China;

    Department of Mechanical Engineering, University of Washington, Seattle, WA 98195, United States;

    Centre for Biomedical Engineering, Department of Electronic Science & Technology, University of Science and Technology of China, Hefei 230027, China;

    Centre for Biomedical Engineering, Department of Electronic Science & Technology, University of Science and Technology of China, Hefei 230027, China;

    Anhui Provincial Engineering Technology Research Center for Biopreservation and Artificial Organs, Hefei 230027, China,Department of Mechanical Engineering, University of Washington, Seattle, WA 98195, United States;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Microperfusion chamber; Cell membrane permeability; Osmotic shift; Finite element analysis (FEA);

    机译:微灌注室;细胞膜通透性;渗透转变有限元分析(FEA);

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