Experimental Biomolecular Physics, Department of Applied Physics, Royal Institute of Technology (KTH), Albanova University Center, 106 91 Stockholm, Sweden.
Int J Mol Sci. 2023 Jan 19;24(3):1990. doi: 10.3390/ijms24031990.
Cyanine fluorophores are extensively used in fluorescence spectroscopy and imaging. Upon continuous excitation, especially at excitation conditions used in single-molecule and super-resolution experiments, photo-isomerized states of cyanines easily reach population probabilities of around 50%. Still, effects of photo-isomerization are largely ignored in such experiments. Here, we studied the photo-isomerization of the pentamethine cyanine 5 (Cy5) by two similar, yet complementary means to follow fluorophore blinking dynamics: fluorescence correlation spectroscopy (FCS) and transient-state (TRAST) excitation-modulation spectroscopy. Additionally, we combined TRAST and spectrofluorimetry (spectral-TRAST), whereby the emission spectra of Cy5 were recorded upon different rectangular pulse-train excitations. We also developed a framework for analyzing transitions between multiple emissive states in FCS and TRAST experiments, how the brightness of the different states is weighted, and what initial conditions that apply. Our FCS, TRAST, and spectral-TRAST experiments showed significant differences in dark-state relaxation amplitudes for different spectral detection ranges, which we attribute to an additional red-shifted, emissive photo-isomerized state of Cy5, not previously considered in FCS and single-molecule experiments. The photo-isomerization kinetics of this state indicate that it is formed under moderate excitation conditions, and its population and emission may thus deserve also more general consideration in fluorescence imaging and spectroscopy experiments.
菁染料广泛应用于荧光光谱学和成像。在连续激发下,特别是在单分子和超分辨率实验中使用的激发条件下,菁染料的光致异构态很容易达到约 50%的概率。然而,在这些实验中,光致异构化的影响在很大程度上被忽略了。在这里,我们通过两种相似但互补的方法来研究五甲川菁 5(Cy5)的光致异构化,以跟踪荧光团闪烁动力学:荧光相关光谱(FCS)和瞬态(TRAST)激发调制光谱。此外,我们将 TRAST 和光谱荧光法(光谱-TRAST)相结合,在不同的矩形脉冲串激发下记录 Cy5 的发射光谱。我们还开发了一个用于分析 FCS 和 TRAST 实验中多个发射态之间跃迁的框架,如何加权不同状态的亮度,以及适用的初始条件。我们的 FCS、TRAST 和光谱-TRAST 实验显示,在不同光谱检测范围内,暗态弛豫幅度存在显著差异,我们将其归因于 Cy5 的另一个额外的红移发射光致异构态,这在 FCS 和单分子实验中以前没有考虑过。该状态的光致异构化动力学表明,它是在中等激发条件下形成的,因此其种群和发射可能也值得在荧光成像和光谱实验中更普遍地考虑。