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具有扩展光谱范围的新型苯乙烯基染料的合成、光谱、传递及电位响应

Synthesis, spectra, delivery and potentiometric responses of new styryl dyes with extended spectral ranges.

作者信息

Wuskell Joseph P, Boudreau David, Wei Mei-de, Jin Lei, Engl Reimund, Chebolu Ravikrishna, Bullen Andrew, Hoffacker Kurt D, Kerimo Josef, Cohen Lawrence B, Zochowski Michal R, Loew Leslie M

机构信息

Department of Cell Biology, Center for Cell Analysis and Modeling, University of Connecticut Health Center, MC-1507, Farmington, CT 06030, USA.

出版信息

J Neurosci Methods. 2006 Mar 15;151(2):200-15. doi: 10.1016/j.jneumeth.2005.07.013. Epub 2005 Oct 25.

Abstract

Styryl dyes have been among the most widely used probes for mapping membrane potential changes in excitable cells. However, their utility has been somewhat limited because their excitation wavelengths have been restricted to the 450-550 nm range. Longer wavelength probes can minimize interference from endogenous chromophores and, because of decreased light scattering, improve recording from deep within tissue. In this paper we report on our efforts to develop new potentiometric styryl dyes that have excitation wavelengths ranging above 700 nm and emission spectra out to 900 nm. We have prepared and characterized dyes based on 47 variants of the styryl chromophores. Voltage-dependent spectral changes have been recorded for these dyes in a model lipid bilayer and from lobster nerves. The voltage sensitivities of the fluorescence of many of these new potentiometric indicators are as good as those of the widely used ANEP series of probes. In addition, because some of the dyes are often poorly water soluble, we have developed cyclodextrin complexes of the dyes to serve as efficient delivery vehicles. These dyes promise to enable new experimental paradigms for in vivo imaging of membrane potential.

摘要

苯乙烯基染料一直是用于绘制可兴奋细胞中膜电位变化的应用最为广泛的探针之一。然而,它们的用途在一定程度上受到了限制,因为其激发波长被限制在450 - 550纳米范围内。波长更长的探针可以将内源性发色团的干扰降至最低,并且由于光散射减少,还能改善从组织深处进行的记录。在本文中,我们报告了我们开发新型电位苯乙烯基染料的工作,这些染料的激发波长在700纳米以上,发射光谱可达900纳米。我们已经制备并表征了基于47种苯乙烯基发色团变体的染料。在模型脂质双层和龙虾神经中记录了这些染料的电压依赖性光谱变化。许多这些新型电位指示剂的荧光电压敏感性与广泛使用的ANEP系列探针相当。此外,由于一些染料通常水溶性较差,我们开发了这些染料的环糊精复合物作为有效的递送载体。这些染料有望为膜电位的体内成像带来新的实验范式。

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