用于研究细胞培养中缺氧和高氧条件的生物阻抗测量板的研制

Nora Filotas, Reka Helt, A. Hencz, Kristof Tenzlinger, Á. Odry, P. Odry, Z. Karádi, Zoltán Vízvári, Attila Tóth, Nina Gyorfi, A. Széchenyi, J. Pal
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引用次数: 0

摘要

氧气在人脑的发育和功能中起着重要的作用。在中枢神经系统中,不同类型的神经元对不同浓度的氧气非常敏感。尽管有一些细胞生物学研究,但非生理性氧浓度,特别是高浓度氧对神经元膜的影响的时间过程和损伤的动力学尚不清楚。鉴于此,在本研究中,电阻抗谱(EIS)测量使用基于石墨烯的自行开发的四电极测量和数据收集过程进行。我们的目标是为我们进一步的实验提供一个板布局,可以用来检查缺氧和高氧条件下的细胞培养。设计在电极之间的距离不同,我们使用三种类型的距离:1mm, 3mm, 5mm,每个板使用一个距离。在极板上用5mm的电极间距我们找到了理想的。从测量角度来看,电极间距为5mm的极板是最合适的。随着距离的增加,电极表面的尺寸减小。可以假设减小电极的尺寸对测量结果没有负面影响。我们的研究结果有助于更好地理解细胞膜损伤的过程。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Development of a Bioimpedance Measuring Plate for the Study of Hypoxic and Hyperoxic Conditions in Cell Cultures
The oxygen plays an important role in the development and function of the human brain. In the central nervous system, a different neuron types can be very sensitive to varying concentrations of oxygen. Despite several cell biology researches, the time course of the effects of non-physiological oxygen concentrations, but especially high oxygen concentrations on the membrane of neurons, and the dynamics of damage are unknown. In the present study, with this in view, electrical impedance spectroscopy (EIS) measurements are carried out using a graphene-based self-developed four-electrode measurement and data collection process. Our goal was to produce a plate layout for our further experiments that could be used to examine cell cultures under hypoxic and hyperoxic conditions. The designs differ in the distance between the electrodes, we used three types of distances: 1 mm, 3 mm 5 mm, using one distance per plate. On the plate with 5 mm electrode spacing we found the ideal. From a measurement point of view, the plate with 5 mm electrode spacing was the most suitable. As we increased the distance, the size of the electrode surfaces decreased. It can be assumed that reducing the size of the electrodes did not negatively affect the measurement results. Our results can greatly contribute to better understand the process of cell membrane damage.
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