Clark R A, Ewing A G
Department of Chemistry, Pennsylvania State University, University Park 16802, USA.
Mol Neurobiol. 1997 Aug;15(1):1-16. doi: 10.1007/BF02740612.
Chemical analysis of single cells is an area of great interest in the biological sciences. Single-cell systems are being utilized as a model to understand in vivo processes better. One method that is moving to the forefront in cellular analysis is electrochemistry. Owing to their rapid response time and small dimensions, voltammetric microelectrode techniques, such as amperometry and fast-scan voltammetry, have made it possible to monitor minute amounts of biological compounds and transiently occurring chemical events in cellular systems. The application of these methods to the quantitation of individual vesicular release events from single cells is overviewed here. The application of electrochemical monitoring to several types of cultured cells, including bovine adrenal chromaffin cells, rat pheochromocytoma (PC12) cells, beige mouse mast cells, superior cervical ganglion neurons, and human pancreatic beta-cells, as well as to the invertebrate systems, the leech Hirudo medicinalis, and pond snail Planorbis corneus has provided a wealth of new information concerning exocytosis. Results obtained from the studies highlight the potential of electrochemical techniques in cellular analysis to contribute to our understanding of molecular and pharmacological effects on exocytosis. This article overviews work done on all the above cell types with an emphasis on PC12 cells.
单细胞的化学分析是生物科学中一个备受关注的领域。单细胞系统正被用作一种模型,以便更好地理解体内过程。在细胞分析中,一种正走向前沿的方法是电化学。由于其快速的响应时间和微小的尺寸,伏安微电极技术,如安培法和快速扫描伏安法,使得监测细胞系统中微量的生物化合物和瞬时发生的化学事件成为可能。本文综述了这些方法在定量单个细胞中单个囊泡释放事件方面的应用。电化学监测应用于几种类型的培养细胞,包括牛肾上腺嗜铬细胞、大鼠嗜铬细胞瘤(PC12)细胞、米色小鼠肥大细胞、颈上神经节神经元和人胰腺β细胞,以及无脊椎动物系统、医用水蛭和角螺,已经提供了大量关于胞吐作用的新信息。这些研究获得的结果突出了电化学技术在细胞分析中的潜力,有助于我们理解分子和药理学对胞吐作用的影响。本文综述了上述所有细胞类型的相关工作,重点是PC12细胞。