Suppr超能文献

作为心脏动作电位快速光学探针应用的荧光苯乙烯基染料。

Fluorescent styryl dyes applied as fast optical probes of cardiac action potential.

作者信息

Müller W, Windisch H, Tritthart H A

出版信息

Eur Biophys J. 1986;14(2):103-11. doi: 10.1007/BF00263067.

Abstract

Several styryl dyes were tested as fast optical probes of membrane action potentials in mammalian heart muscle tissue. After staining, atrial specimens were superfused in physiological salt solution, and fluorescence was excited by an argon ion laser. Excitation spot size on the surface of the preparation was 60 microns in diameter. Dyes RH 160, RH 237, and RH 421 performed excellently as fast fluorescent probes of cardiac membrane potential. Fractional fluorescence changes, delta F/F, due to the action potential were in the range 2 to 6% at 514.5 nm excitation. Rise times of the action potential onset detected with each of the dyes were less than 0.5 ms, which is as fast or even faster than microelectrode measurements (atria of the rat). Thus membrane potential changes could be monitored with high resolution in both time and space. Emission spectra from heart muscle preparations stained with these dyes were shifted to shorter wavelengths by 70 nm and more as compared to spectra of the dyes in ethanol solution. The fluorescence spectrum of RH 160 at resting potential and the spectrum recorded during the plateau phases of the action potential were measured and showed no difference within the spectral resolution. As can be concluded from measurements of fluorescence changes at different excitation wavelengths, electrochromism cannot be the only mechanism causing the potential response.

摘要

几种苯乙烯基染料被作为哺乳动物心肌组织膜动作电位的快速光学探针进行了测试。染色后,将心房标本在生理盐溶液中进行灌流,并用氩离子激光激发荧光。制剂表面的激发光斑直径为60微米。染料RH 160、RH 237和RH 421作为心脏膜电位的快速荧光探针表现出色。在514.5nm激发下,由动作电位引起的荧光分数变化ΔF/F在2%至6%的范围内。用每种染料检测到的动作电位起始的上升时间小于0.5毫秒,这与微电极测量(大鼠心房)一样快甚至更快。因此,可以在时间和空间上以高分辨率监测膜电位变化。与乙醇溶液中染料的光谱相比,用这些染料染色的心肌制剂的发射光谱向更短波长移动了70nm及以上。测量了RH 160在静息电位时的荧光光谱以及在动作电位平台期记录的光谱,在光谱分辨率范围内未显示出差异。从不同激发波长下荧光变化的测量结果可以得出结论,电致变色不可能是引起电位响应的唯一机制。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验