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异丙肾上腺素和哇巴因对单个大鼠心肌细胞胞质钙及细胞运动的影响。

Effects of isoprenaline and ouabain on cytosolic calcium and cell motion in single rat cardiomyocytes.

作者信息

Tamura K, Yoshida S, Iwai T, Watanabe I

机构信息

Research Laboratories, Chugai Pharmaceutical Co Ltd, Shizuoka, Japan.

出版信息

Cardiovasc Res. 1992 Feb;26(2):179-85. doi: 10.1093/cvr/26.2.179.

Abstract

OBJECTIVE

The aim was to develop a novel system to measure changes in cytosolic free calcium concentration ([Ca2+]i) and cell motion simultaneously in a single beating myocyte by digital imaging microscopy.

METHODS

Indo-1 was selected as a fluorescent calcium indicator. The particular feature of our digital imaging microscopy is that, in order to avoid cell movement artifacts, two indo-1 fluorescence images of different wavelengths are obtained at the same time at 16.7 ms intervals using two SIT cameras. Isolated ventricular myocytes were used, prepared from hearts of male Sprague-Dawley rats, weighing 350 to 400 g.

RESULTS

In continuously beating cells contracted by electrical field stimulation, we can visualise changes in [Ca2+]i and cell shape during contraction with pseudocolour images of the fluorescence ratios, and it was found that the onset of the calcium transient preceded that of the shortening of cell length. Both isoprenaline and ouabain enhanced the magnitudes of the calcium transient and cell contraction. Furthermore, isoprenaline shortened the half decay time of the calcium transient.

CONCLUSIONS

Our data suggest that the newly developed system is useful for measuring rapid changes in [Ca2+]i in relation to cell motion, and is particularly suitable for measuring the calcium transients in a beating cardiomyocyte.

摘要

目的

旨在开发一种新型系统,通过数字成像显微镜在单个跳动的心肌细胞中同时测量胞质游离钙浓度([Ca2+]i)变化和细胞运动。

方法

选择Indo-1作为荧光钙指示剂。我们数字成像显微镜的独特之处在于,为避免细胞运动伪影,使用两台SIT相机以16.7毫秒的间隔同时获取不同波长的两张Indo-1荧光图像。使用从体重350至400克的雄性Sprague-Dawley大鼠心脏制备的离体心室肌细胞。

结果

在电场刺激收缩的持续跳动细胞中,我们可以通过荧光比率的伪彩色图像观察收缩过程中[Ca2+]i和细胞形状的变化,并且发现钙瞬变的起始先于细胞长度缩短的起始。异丙肾上腺素和哇巴因均增强了钙瞬变和细胞收缩的幅度。此外,异丙肾上腺素缩短了钙瞬变的半衰期。

结论

我们的数据表明,新开发的系统可用于测量与细胞运动相关的[Ca2+]i的快速变化,特别适用于测量跳动心肌细胞中的钙瞬变。

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