Zhang Qian, Zhang Diming, Li Nantao, Lu Yanli, Yao Yao, Li Shuang, Liu Qingjun
Biosensor National Special Laboratory, Department of Biomedical Engineering, Zhejiang University.
Anal Sci. 2016;32(4):387-93. doi: 10.2116/analsci.32.387.
Bioelectronic noses, such as olfactory cell- and receptor-based biosensors, have important applications for biomimetic odorant detection in various fields. Here, a nanoparticle-equipped biosensor was designed to record extracellular potentials from olfactory receptor cells effectively. In this research, a microelectrode array (MEA) was combined with olfactory epitheliums as the olfactory biosensor to record electrophysiological signals of receptor cells in the epitheliums. Zinc nanoparticles (NanoZn) were employed along with the biosensor for different kinds of odorant measurements, which improved the electrophysiological responses to odor molecules. The NanoZn-equipped biosensor showed greater performance, such as a higher sensitivity and a larger signal-to-noise ratio, than that without the nanoparticles. Thus, this approach provided a promising method to improve the detecting performance of biosensors based on olfactory cells and receptors, which would bring broad application prospects for bioelectronic noses in environmental monitoring, food analysis, and healthcare diagnosis.
生物电子鼻,如基于嗅觉细胞和受体的生物传感器,在各个领域的仿生气味检测中具有重要应用。在此,设计了一种配备纳米颗粒的生物传感器,以有效记录嗅觉受体细胞的细胞外电位。在本研究中,将微电极阵列(MEA)与嗅觉上皮结合作为嗅觉生物传感器,以记录上皮中受体细胞的电生理信号。锌纳米颗粒(NanoZn)与生物传感器一起用于不同种类气味剂的测量,这改善了对气味分子的电生理反应。配备NanoZn的生物传感器表现出比没有纳米颗粒的传感器更高的性能,如更高的灵敏度和更大的信噪比。因此,这种方法为提高基于嗅觉细胞和受体的生物传感器的检测性能提供了一种有前景的方法,这将为生物电子鼻在环境监测、食品分析和医疗诊断中带来广阔的应用前景。