Guy Yifat, Muha Robert J, Sandberg Mats, Weber Stephen G
Department of Chemistry, University of Pittsburgh, Pittsburgh, Pennsylvania 15260, USA.
Anal Chem. 2009 Apr 15;81(8):3001-7. doi: 10.1021/ac802631e.
Extracellular translational motion in the brain is generally considered to be governed by diffusion and tortuosity. However, the brain as a whole has a significant zeta-potential, thus translational motion is also governed by electrokinetic effects under a naturally occurring or applied electric field. We have previously measured zeta-potential and tortuosity in intact brain tissue; however, the method was tedious. In this work, we use a four-electrode potentiostat to control the potential difference between two microreference electrodes in the tissue, creating a constant electric field. Additionally, some alterations have been made to simplify our previous procedure. The method entails simultaneously injecting two 70 kDa dextran conjugated fluorophores into rat organotypic hippocampal cultures and observing their mobility using fluorescence microscopy. We further present two methods of data analysis: regression and two-probe analysis. Statistical comparisons are made between the previous and current methods as well as between the two data analysis methods. In comparison to the previous method, the current, simpler method with data analysis by regression gives statistically indistinguishable mean values of zeta-potential and tortuosity, with a similar variability for zeta-potential, -21.3 +/- 2.8 mV, and a larger variability for the tortuosity, 1.98 +/- 0.12. On the other hand, we find that the current method combined with the two-probe analysis produces accurate and more precise results, with a zeta-potential of -22.8 +/- 0.8 mV and a tortuosity of 2.24 +/- 0.10.
大脑中的细胞外平移运动通常被认为受扩散和曲折度的支配。然而,作为一个整体的大脑具有显著的zeta电位,因此在自然存在或施加的电场下,平移运动也受电动效应的支配。我们之前已经测量了完整脑组织中的zeta电位和曲折度;然而,该方法很繁琐。在这项工作中,我们使用四电极恒电位仪来控制组织中两个微参比电极之间的电位差,从而产生一个恒定电场。此外,还进行了一些改进以简化我们之前的程序。该方法需要将两种70 kDa葡聚糖偶联荧光团同时注入大鼠器官型海马培养物中,并使用荧光显微镜观察它们的迁移率。我们还提出了两种数据分析方法:回归分析和双探针分析。对之前和当前的方法以及两种数据分析方法进行了统计比较。与之前的方法相比,当前这种通过回归进行数据分析的更简单方法在zeta电位和曲折度的平均值上在统计学上没有显著差异,zeta电位的变异性相似,为-21.3±2.8 mV,而曲折度的变异性更大,为1.98±0.12。另一方面,我们发现当前方法与双探针分析相结合能产生准确且更精确的结果,zeta电位为-22.8±0.8 mV,曲折度为2.24±0.10。