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心肌细胞的实时共聚焦显微镜检查与钙测量:迈向具有高时间和空间分辨率的荧光显微镜的发展

Real-time confocal microscopy and calcium measurements in heart muscle cells: towards the development of a fluorescence microscope with high temporal and spatial resolution.

作者信息

Niggli E, Lederer W J

机构信息

Department of Physiology, University of Maryland School of Medicine, Baltimore.

出版信息

Cell Calcium. 1990 Feb-Mar;11(2-3):121-30. doi: 10.1016/0143-4160(90)90065-3.

Abstract

Preliminary experiments and characterization of a modified confocal fluorescence microscope have been carried out and are presented in this article. We have made use of commercially available hardware and software (having modified and extended the system) and are continuing the process of making modifications to this system to enable us to carry out investigations in living and mobile cells. We report on identified problems in measuring intracellular calcium in myocardial cells, important lessons that have been learned and new findings regarding myocardial cells. Specifically, we have found that myocardial cellular organelles (e.g. nuclei and mitochondria) are sharply defined unlike images obtained with standard epifluorescence microscopes using intracellular indicators. Furthermore, we show that the organelles can accumulate or largely exclude certain indicators relative to the concentration in the cytosol. Additionally, we have examined the use of the new calcium indicator fluo-3 in contracting heart cells and have more clearly defined certain limitations in its use in this preparation. We are working on modifications of the present equipment to enable the system to work with an ultraviolet laser as a light source. The confocal microscope offers the prospect of extraordinarily good spatial and temporal resolution under specific conditions in heart cells.

摘要

本文介绍了对改进型共聚焦荧光显微镜进行的初步实验及特性描述。我们利用了市售的硬件和软件(对系统进行了修改和扩展),并持续对该系统进行改进,以便能够对活的移动细胞开展研究。我们报告了在心肌细胞内钙测量中发现的问题、所吸取的重要经验教训以及有关心肌细胞的新发现。具体而言,我们发现心肌细胞器(如细胞核和线粒体)的边界清晰,这与使用细胞内指示剂的标准落射荧光显微镜所获得的图像不同。此外,我们表明细胞器相对于胞质溶胶中的浓度可积累或在很大程度上排除某些指示剂。另外,我们研究了新型钙指示剂Fluo-3在收缩心脏细胞中的使用情况,并更明确地界定了其在此制剂中使用的某些局限性。我们正在对现有设备进行改进,以使该系统能够使用紫外激光作为光源。在特定条件下,共聚焦显微镜为心脏细胞提供了极佳的空间和时间分辨率前景。

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