van Duijn P
Histochem J. 1976 Nov;8(6):653-76. doi: 10.1007/BF01003967.
This review is devoted mainly to an evaluation of the status of microscopical cytochemistry seen as a discipline aiming at both the localization and the quantification of molecular processes in cells. Its relationships to ultramicrochemistry, as well as, in a broader sense, to biochemistry and cell biology, are discussed from both the historical and the methodological points of view. Recent developments in quantitative cytophysical techniques, such as automated cytophotometry using microscopes fitted with flying spot systems, TV cameras, or scanning stages, and the development of rapid flow cytometers are discussed. Analytical electron microscopy is touched upon too. The main part of the review is devoted to recent trends that strengthen the analytical basis of cytochemical staining methods. The special character of staining procedures as a kind of matrix chemistry is discussed and the potentialities of the use of matrix-incorporated compounds for the fundamental study and calibration of microscopical staining procedures are elaborated. Parallel developments in the theory and practice of matrix chemistry in biochemistry are stressed. Growing interrelations between microscopical cytochemistry and related fields of investigation, such as the controlled fragmentation of cells, and methods like ultramicroanalysis of individual cells are indicated.
本综述主要致力于评估微观细胞化学的现状,微观细胞化学是一门旨在对细胞内分子过程进行定位和定量的学科。从历史和方法论的角度,讨论了它与超微化学以及更广泛意义上的生物化学和细胞生物学的关系。还讨论了定量细胞物理技术的最新进展,如使用配备飞点系统、电视摄像机或扫描台的显微镜进行自动细胞光度测定,以及快速流式细胞仪的发展。也涉及了分析电子显微镜。综述的主要部分致力于近期强化细胞化学染色方法分析基础的趋势。讨论了染色程序作为一种基质化学的特殊性质,并阐述了使用基质掺入化合物进行微观染色程序基础研究和校准的潜力。强调了生物化学中基质化学理论和实践的并行发展。指出了微观细胞化学与相关研究领域(如细胞的可控破碎)以及单个细胞超微分析等方法之间日益增长的相互关系。