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缓激肽刺激的Madin-Darby犬肾细胞中胞质钙的整体同步振荡与黏附

Global, synchronous oscillations in cytosolic calcium and adherence in bradykinin-stimulated Madin-Darby canine kidney cells.

作者信息

De Blasio B F, Røttingen J-A, Sand K L, Giaever I, Iversen J-G

机构信息

The Niels Bohr Institute, University of Copenhagen, Copenhagen, Denmark.

出版信息

Acta Physiol Scand. 2004 Apr;180(4):335-46. doi: 10.1111/j.1365-201X.2004.01261.x.

Abstract

AIMS AND METHODS

Intercellular Ca2+ oscillations are a universal mode of signalling in both excitable and non-excitable cells. Here, we study the relationship between Ca2+ signalling and coherent changes in adhesion properties by measuring the transepithelial impedance across bradykinin-stimulated Madin-Darby canine kidney (MDCK) cell layers grown on a microelectrode. During hormone stimulation, the impedance is found to oscillate, reflecting that the cells undergo morphological/adhesive alterations with high spatio-temporal organization. The experiments are supplemented with parallel, digital imaging fluorescence microscopy of bradykinin-induced single-cell Ca2+ oscillations.

RESULTS

In agreement with previous experiments, MDCK cells are found to elicit synchronous, multicellular Ca2+ oscillations in response to hormone stimulus. The periods of the Ca2+ oscillations and the electrical fluctuations are found to coincide. Further, blocking of gap junctions by 18alpha-glycyrrhetinic acid causes a loss of synchrony in Ca2+ signals and inhibition of impedance oscillations, emphasizing the importance of gap junctions in the signal transduction process.

CONCLUSION

Based on these observations it is concluded that the co-ordinated adhesive changes in MDCK cells are a direct consequence of synchronized Ca2+ oscillations. Calcium signalling represents an efficient way of organizing physiological responses in a tissue. A possible functional implication of the structural changes might be to modulate transportation of various substances across the cell sheet.

摘要

目的与方法

细胞间钙离子振荡是可兴奋细胞和非可兴奋细胞中一种普遍的信号传导模式。在此,我们通过测量生长在微电极上的缓激肽刺激的犬肾上皮细胞(MDCK)单层的跨上皮电阻抗,来研究钙离子信号传导与黏附特性的相干变化之间的关系。在激素刺激过程中,发现电阻抗发生振荡,这反映出细胞经历了具有高度时空组织性的形态学/黏附改变。实验还辅以缓激肽诱导的单细胞钙离子振荡的平行数字成像荧光显微镜观察。

结果

与先前的实验一致,发现MDCK细胞在激素刺激下会引发同步的多细胞钙离子振荡。钙离子振荡的周期与电波动被发现是一致的。此外,18α -甘草次酸对间隙连接的阻断导致钙离子信号同步性丧失以及电阻抗振荡受到抑制,这强调了间隙连接在信号转导过程中的重要性。

结论

基于这些观察结果得出结论,MDCK细胞中黏附变化的协同作用是同步钙离子振荡的直接结果。钙离子信号传导是在组织中组织生理反应的一种有效方式。结构变化的一个可能的功能意义可能是调节各种物质跨细胞层的运输。

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