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基于苦味细胞传感器的电化学阻抗谱频率优化。

Electrochemical impedance spectrum frequency optimization of bitter taste cell-based sensors.

机构信息

College of Food Science and Biotechnology, Zhejiang Gongshang University, Hangzhou 310035, PR China.

出版信息

Biosens Bioelectron. 2013 Sep 15;47:164-70. doi: 10.1016/j.bios.2013.03.018. Epub 2013 Mar 21.

Abstract

Electrochemical impedance spectrum frequency optimization to bitter taste receptor cell-based sensors is discussed in this paper. The bitter taste receptor cells (the enteroendocrine STC-1 cells and the ICR mouse isolated taste bud cells) are cultured on carbon screen printed electrodes and used as sensing elements. The HEK-293 cells and dead isolated ICR mouse taste bud cells, without bitter taste receptor expression, are used in negative control experiments. The electrochemical impedance spectrum data is recorded and processed by bistable stochastic resonance for signal-to-noise ratio analysis. The bitter taste receptor cell-based sensor selectively responds to bitter tastants. The tastants species and concentrations can be decided by signal-to-noise ratio parameters. The signal-to-noise ratio eigen peak changes with the shift of electrochemical impedance spectrum frequencies. ICR mouse isolated taste bud cell-based sensor presents bitter tastants perception abilities. 9kHz is the optimal frequency for STC-1 cell-based sensor measurement. For isolated ICR mouse taste bud cells, 1.2kHz is the optimal frequency. Negative control experiments results indicate that cells with no taste receptor expression have no discriminating ability for tastant even if they are modulated by different frequencies. The taste cell-based sensor is of great practical value.

摘要

本文讨论了基于电化学阻抗谱频率优化的苦味受体细胞传感器。将苦味受体细胞(肠内分泌 STC-1 细胞和 ICR 小鼠分离的味觉感受器细胞)培养在碳丝网印刷电极上,并用作传感元件。HEK-293 细胞和无苦味受体表达的死亡分离的 ICR 小鼠味觉感受器细胞用于阴性对照实验。通过双稳随机共振记录和处理电化学阻抗谱数据,进行信噪比分析。基于苦味受体细胞的传感器选择性地对苦味物质做出响应。通过信噪比参数可以确定味觉物质的种类和浓度。信噪比本征峰随电化学阻抗谱频率的偏移而变化。基于 ICR 小鼠分离的味觉感受器细胞的传感器具有感知苦味物质的能力。9kHz 是基于 STC-1 细胞的传感器测量的最佳频率。对于分离的 ICR 小鼠味觉感受器细胞,1.2kHz 是最佳频率。阴性对照实验结果表明,即使在不同频率调制下,无味觉受体表达的细胞对味觉物质也没有辨别能力。基于味觉细胞的传感器具有很大的实用价值。

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