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针对1064纳米光成像进行优化的非线性光学电位染料。

Nonlinear optical potentiometric dyes optimized for imaging with 1064-nm light.

作者信息

Teisseyre Thomas Z, Millard Andrew C, Yan Ping, Wuskell Joseph P, Wei Mei-de, Lewis Aaron, Loew Leslie M

机构信息

University of Connecticut Health Center, Richard D. Berlin Center for Cell Analysis and Modeling, 263 Farmington Avenue, MC-1507, Farmington, Connecticut 06030-1507, USA.

出版信息

J Biomed Opt. 2007 Jul-Aug;12(4):044001. doi: 10.1117/1.2772276.

DOI:10.1117/1.2772276
PMID:17867805
Abstract

Nonlinear optical phenomena, such as two-photon fluorescence (2PF) and second harmonic generation (SHG), in combination with voltage sensitive dyes, can be used to acquire high-resolution spatio temporal maps of electrical activity in excitable cells and tissue. Developments in 1064-nm fiber laser technology have simplified the generation of high-intensity, long-wavelength, femtosecond light pulses, capable of penetrating deep into tissue. To merge these two advances requires the design and synthesis of new dyes that are optimized for longer wavelengths and that produce fast and sensitive responses to membrane potential changes. In this work, we have systematically screened a series of new dyes with varying chromophores and sidechains that anchor them in cell membranes. We discovered several dyes that could potentially be used for in vivo measurements of cellular electrical activity because of their rapid and sensitive responses to membrane potential. Some of these dyes show optimal activity for SHG; others for 2PF. This regulated approach to dye screening also allows significant insight into the molecular mechanisms behind both SHG and 2PF. In particular, the differing patterns of sensitivity and kinetics for these two nonlinear optical modalities indicate that their voltage sensitivity originates from differing mechanisms.

摘要

非线性光学现象,如双光子荧光(2PF)和二次谐波产生(SHG),与电压敏感染料相结合,可用于获取可兴奋细胞和组织中电活动的高分辨率时空图。1064纳米光纤激光技术的发展简化了高强度、长波长飞秒光脉冲的产生,这种光脉冲能够深入组织。要将这两项进展结合起来,需要设计和合成新的染料,这些染料针对更长波长进行了优化,并能对膜电位变化产生快速而灵敏的响应。在这项工作中,我们系统地筛选了一系列具有不同发色团和侧链的新染料,这些侧链将它们锚定在细胞膜中。我们发现了几种染料,由于它们对膜电位的快速而灵敏的响应,有可能用于体内细胞电活动的测量。其中一些染料对SHG显示出最佳活性;其他染料对2PF显示出最佳活性。这种规范的染料筛选方法还能让我们深入了解SHG和2PF背后的分子机制。特别是,这两种非线性光学模式不同的灵敏度和动力学模式表明,它们的电压敏感性源于不同的机制。

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