Kao W Y, Davis C E, Kim Y I, Beach J M
Department of Biomedical Engineering, University of Virginia Health Sciences Center, Charlottesville, Virginia 22906, USA.
Biophys J. 2001 Aug;81(2):1163-70. doi: 10.1016/S0006-3495(01)75773-6.
Previous measurements of transmembrane potential using the electrochromic probe di-8-ANEPPS have used the excitation spectral shift response by alternating excitation between two wavelengths centered at voltage-sensitive portions of the excitation spectrum and recording at a single wavelength near the peak of the emission spectrum. Recently, the emission spectral shift associated with the change in transmembrane potential has been used for continuous membrane potential monitoring. To characterize this form of the electrochromic response from di-8-ANEPPS, we have obtained fluorescence signals from single cells in response to step changes in transmembrane potentials set with a patch electrode, using single wavelength excitation near the peak of the dye absorption spectrum. Fluorescence changes at two wavelengths near voltage-sensitive portions of the emission spectrum and shifts in the complete emission spectrum were determined for emission from plasma membrane and internal membrane. We found that the fluorescence ratio from either dual-wavelength recordings, or from opposite sides of the emission spectrum, varied linearly with the amplitude of the transmembrane potential step between -80 and +60 mV. Voltage dependence of difference spectra exhibit a crossover point near the peak of the emission spectra with approximately equal gain and loss of fluorescence intensity on each side of the spectrum and equal response amplitude for depolarization and hyperpolarization. These results are consistent with an electrochromic mechanism of action and demonstrate how the emission spectral shift response can be used to measure the transmembrane potential in single cells.
以往使用电致变色探针二-8-苯胺基萘磺酸(di-8-ANEPPS)测量跨膜电位时,通过在以激发光谱的电压敏感部分为中心的两个波长之间交替激发,并在发射光谱峰值附近的单一波长处进行记录,利用激发光谱位移响应。最近,与跨膜电位变化相关的发射光谱位移已被用于连续监测膜电位。为了表征二-8-苯胺基萘磺酸(di-8-ANEPPS)这种形式的电致变色响应,我们使用染料吸收光谱峰值附近的单一波长激发,从贴片电极设置跨膜电位阶跃变化的单细胞中获得了荧光信号。对于质膜和内膜的发射,测定了发射光谱电压敏感部分附近两个波长处的荧光变化以及完整发射光谱的位移。我们发现,双波长记录或发射光谱两侧的荧光比值与-80至+60 mV之间跨膜电位阶跃的幅度呈线性变化。差光谱的电压依赖性在发射光谱峰值附近呈现一个交叉点,光谱两侧的荧光强度增益和损失大致相等,去极化和超极化的响应幅度相同。这些结果与电致变色作用机制一致,并证明了发射光谱位移响应如何用于测量单细胞中的跨膜电位。