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Olfactory mucosa tissue-based biosensor : a bioelectronic nose with receptor cells in intact olfactory epithelium

机译:嗅觉黏膜组织为基础的生物传感器:完整的嗅觉上皮细胞与受体细胞的生物电子鼻子

摘要

The biological olfactory system can distinguish thousands of different odors. Bioelectronic nose based on olfactory cells can be developed to realize the biomimetic design of an electronic nose. In this study, olfactory mucosa tissue of rat was isolated and fixed onto the surface of a light-addressable potentiometric sensor (LAPS), with the natural state of the neuronal populations and functional receptor units of the cilia well preserved. The electrical properties of the tissue-semiconductor interface were analyzed by the volume conductor theory and the sheet conductor model. Then, the local field extracellular potentials of the receptor cells in the olfactory mucosa tissue were simulated and monitored. The results suggested that this tissue-semiconductor hybrid system was sensitive to odorants stimulus. We believe that the receptor cell-based biosensor technology is a valuable tool to record data with high information content with respect to odors stimulation in the intact cellular environment of the olfactory epithelium. Due to the advantages of intact epithelium, this novel technology will potentially bridge the gap between conventional in vitro methods and complex in vivo experiments for a bioelectronic nose.
机译:生物嗅觉系统可以区分成千上万种不同的气味。可以开发基于嗅觉细胞的生物电子鼻,以实现电子鼻的仿生设计。在这项研究中,将大鼠的嗅觉粘膜组织分离并固定在光寻址电位传感器(LAPS)的表面上,并很好地保留了纤毛的神经元种群和功能性受体单元的自然状态。通过体导体理论和薄板导体模型分析了组织-半导体界面的电学特性。然后,模拟并监测嗅觉粘膜组织中受体细胞的局部细胞外电位。结果表明该组织-半导体混合系统对气味刺激敏感。我们认为,基于受体细胞的生物传感器技术是一种有价值的工具,可在嗅觉上皮完整细胞环境中记录有关气味刺激的信息量很高的数据。由于完整上皮的优势,这项新技术将有可能弥合传统体外方法与生物电子鼻的复杂体内实验之间的差距。

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