Snyder R E, Smith R S
Crit Rev Biomed Eng. 1984;10(2):89-123.
Currently used techniques for the study of the dynamics of axonal transport are reviewed. Emphasis is placed on those nonstructural and nonbiochemical methods which are most useful in the investigation of the dynamics of the mechanisms that underline the transport process. The methods by which the transport of specified materials may be assessed are divided into two broad groups: those which involve the collection, or accumulation, of transported materials at a region where transport is slowed or arrested, and those methods in which the distribution of a marker of the transported material is assayed in a series of nerve segments. Potential problems and sources of error associated with these techniques are considered as is their applicability to particular biological preparations. Recently introduced methods for concentrating and labeling transported material are described. New methods for conducting segment analysis of transported material by the use of position-sensitive detectors of radiation are considered. Optical methods of detecting axonal transport are reviewed with emphasis being placed on recently introduced methods and on the means by which the motion of optically detected organelles may be analyzed. In addition, biological preparations which are particularly suited to the optical approach are described.
本文综述了目前用于研究轴突运输动力学的技术。重点介绍了那些在研究构成运输过程基础机制的动力学时最有用的非结构和非生化方法。评估特定物质运输的方法大致可分为两类:一类涉及在运输减慢或停滞的区域收集或积累运输物质,另一类是在一系列神经节段中检测运输物质标记物的分布。文中讨论了与这些技术相关的潜在问题和误差来源,以及它们对特定生物制剂的适用性。还描述了最近引入的用于浓缩和标记运输物质的方法。考虑了使用辐射位置敏感探测器对运输物质进行节段分析的新方法。回顾了检测轴突运输的光学方法,重点介绍了最近引入的方法以及分析光学检测细胞器运动的手段。此外,还描述了特别适合光学方法的生物制剂。