Toney Glenn M, Daws Lynette C
Department of Physiology, University of Texas Health Science Center, San Antonio, USA.
Methods Mol Biol. 2006;337:127-37. doi: 10.1385/1-59745-095-2:127.
Extracellular recording of the action potential discharge of individual neurons has been an indispensable electrophysiological method for more than 50 yr. Although it requires relatively modest instrumentation, extracellular recording nevertheless provides critically important information concerning the patterning of intercellular communication in the nervous system. In 1996, Didier Pinault described "juxtacellular labeling" as "a novel and very effective single-cell labeling method" for revealing the morphology of extracellularly recorded neurons. Of particular interest for neuroscience is that juxtacellular labeling can be combined with immunocytochemistry and in situ hybridization histochemistry to reveal new and exciting information concerning the chemical phenotype of neurons whose electrophysiological properties have been characterized in vivo. By providing investigators with a means to "match" functional information from electrophysiological recordings with morphological and protein/gene expression data at the level of the single neuron, juxtacellular labeling has opened a new era in neuroscience research, one that holds the promise of an accelerated pace of discovery.
在超过50年的时间里,细胞外记录单个神经元的动作电位发放一直是一种不可或缺的电生理方法。尽管它所需的仪器设备相对简单,但细胞外记录仍能提供有关神经系统中细胞间通讯模式的至关重要的信息。1996年,迪迪埃·皮诺描述“近细胞标记”是一种“新颖且非常有效的单细胞标记方法”,用于揭示细胞外记录神经元的形态。神经科学特别感兴趣的是,近细胞标记可与免疫细胞化学和原位杂交组织化学相结合,以揭示有关其电生理特性已在体内得到表征的神经元化学表型的新的、令人兴奋的信息。通过为研究人员提供一种在单个神经元水平上“匹配”来自电生理记录的功能信息与形态学和蛋白质/基因表达数据的方法,近细胞标记开启了神经科学研究的新纪元,一个有望加快发现速度的时代。