冻裂细胞化学:方法综述。

N J Severs
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引用次数: 27

摘要

“冻裂细胞化学”包含了多种最近开发的技术,其中冻裂和细胞化学相结合。原则上,细胞化学标记可纳入标准冷冻破裂程序的三个基本点之一;1)试样冷冻前,2)试样断裂后,或3)试样被铂遮蔽和/或碳涂层后。标记细胞结构的可视化可以通过各种不同的方法来实现。例如,标记物(通常是胶体金颗粒)可以嵌入复制品中,或者通过膜碎片(或其他细胞成分)附着在复制品上。切片是许多技术的核心策略,可以与复制相结合,也可以代替复制。所设计的方法的不同组合,在大多数情况下,并不是达到同一结果的不同方法;每一种都提供了关于细胞中特定种类的膜成分或其他结构的截然不同的信息。这篇综述的目的是在一篇文章中,对目前在冷冻骨折细胞化学中可用的全部技术进行系统的调查。重点放在解释这些方法的基本原理和说明它们的应用上。随着最近取得的成功,冷冻断裂细胞化学已经从实验发展阶段进入了一个位置,在这个位置上,它可能会越来越多地在细胞和膜生物学的广泛问题上做出重大贡献。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Freeze-fracture cytochemistry: review of methods.

"Freeze-fracture cytochemistry" encompasses a diversity of recently developed techniques in which freeze-fracture and cytochemistry are combined. Cytochemical labeling may, in principle, be integrated into one of three basic points in the standard freeze-fracture procedure; 1) before the specimen is frozen, 2) after it has been fractured, or 3) after it has been platinum shadowed and/or carbon coated. Visualization of the labeled cellular structures can be achieved by a variety of different methodologies. For example, the markers (usually colloidal gold particles) may be viewed embedded within a replica, or attached to it via fragments of membrane (or other cellular components). Sectioning is a central strategy in a number of techniques, either in combination with or in place of replication. The different combinations of methods that have been devised are not, for the most part, alternative ways of arriving at the same result; each provides quite distinct information about specific classes of membrane component or other structure in the cell. The purpose of this review is to present, within a single article, a systematic survey of the full range of techniques currently available in freeze-fracture cytochemistry. Emphasis is placed on explaining the principles underlying the methods and on illustrating their applications. With the success recently achieved, freeze-fracture cytochemistry has moved from the phase of experimental development to a position in which it may be expected increasingly to make significant contributions across a wide spectrum of problems in cell and membrane biology.

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