Dale Nicholas, Hatz Sonja, Tian Faming, Llaudet Enrique
Warwick Biosensors Group, Department of Biological Sciences, The University of Warwick, Coventry, CV4 7AL, UK.
Trends Biotechnol. 2005 Aug;23(8):420-8. doi: 10.1016/j.tibtech.2005.05.010.
Chemical signalling underlies every function of the nervous system, from those of which we are unaware, for example, control of the heart, to higher cognitive functions, such as emotions, learning and memory. Neurotransmitters and neuromodulators mediate communication between neurons and between neurons and non-neural cells such as glia and muscle. In the past, the means for studying the production and release of these signalling agents directly has been limited in its temporal and spatial resolution relative to the dynamics of chemical signalling and the structures of interest in the brain. Now microelectrode biosensors are becoming available that give unprecedented spatial and temporal resolution, enabling, for the first time, direct measurement in real time of the chemical conversations between cells in the nervous system.
化学信号传导是神经系统各项功能的基础,从我们意识不到的功能,例如心脏的控制,到更高层次的认知功能,如情绪、学习和记忆。神经递质和神经调质介导神经元之间以及神经元与神经胶质细胞和肌肉等非神经细胞之间的通讯。过去,相对于化学信号传导的动态过程和大脑中感兴趣的结构而言,直接研究这些信号传导物质的产生和释放的方法在时间和空间分辨率方面都受到限制。现在,微电极生物传感器已开始出现,其具有前所未有的空间和时间分辨率,首次能够实时直接测量神经系统中细胞间的化学交流。