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Odor sensing method using olfactory receptors and fluorescent instrumentation

机译:使用嗅觉感受器和荧光仪器的气味感应方法

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A sensing system based upon a living body's mechanism is useful to improve the performances of current available artificial sensors especially in terms of their selectivity and sensitivity. This paper presents the fundamental study of odor sensor based on insect olfactory receptors (ORs). Cells expressing ORs are responsible for odor detection. It is possible to monitor the increase in calcium ion concentration using the fluorescent protein inside the cells expressing ORs. In our research we developed an instrumentation system to monitor the fluorescent intensity change for the odor sensing. The system consists of fluidic device, sky blue laser for light excitation, lenses, optical filter, dichroic mirror, and a cooled complementary metal oxide semiconductor (CMOS) camera. Sf21 cells expressing two ORs called OR56a and BmOR3 with their specific response to geosmin and bombykal have been prepared for experiments. Measurement results show that the developed instrumentation was able to detect the odorant with concentration down to 5 μM for about 15 seconds.
机译:基于活体机制的传感系统可用于改善当前可用的人工传感器的性能,尤其是在其选择性和灵敏度方面。本文介绍了基于昆虫嗅觉受体(OR)的气味传感器的基础研究。表达OR的细胞负责气味检测。使用表达OR的细胞内部的荧光蛋白可以监测钙离子浓度的增加。在我们的研究中,我们开发了一种仪器系统来监控荧光强度变化以进行气味检测。该系统由流体装置,用于光激发的天蓝色激光,透镜,光学滤光片,二向色镜和冷却的互补金属氧化物半导体(CMOS)相机组成。已经为实验制备了表达两个称为OR56a和BmOR3的OR的Sf21细胞,它们具有对土臭素和ombykal的特异性反应。测量结果表明,开发的仪器能够检测浓度低至5μM的气味剂约15秒钟。

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