Department of Chemistry, University of Akron, Akron, Ohio, 44325, USA.
Maurice Morton Institute of Polymer Science, University of Akron, Akron, Ohio, 44325, USA.
Chembiochem. 2022 Jan 19;23(2):e202100516. doi: 10.1002/cbic.202100516. Epub 2021 Nov 26.
An NIR emitting (λ ≈730 nm) cyanine probe ExCy was synthesized in good yields by extending the π-conjugation length (i. e., with furan moiety) to the donor-accepter system. ExCy exhibited a large Stokes' shift (Δλ≈100 nm) due to strong intramolecular charge transfer (ICT), and high fluorescence quantum yield (Φ ≈0.47 in DCM). Due to its low fluorescence in an aqueous environment (Φ ≈0.007 in H O), the probe exhibited the potential of achieving a large fluorescence turn-on upon entering a hydrophobic cellular environment. Fluorescence confocal microscopy studies revealed that ExCy was readily excitable with a far-red laser line (i. e., 640 nm) while the corresponding emission was collected in the NIR region. ExCy exhibited excellent selectivity towards live cell mitochondria according to the co-localization studies. The probe also exhibited high photostability, long-term imaging ability and wash-free staining ability, when being applied to live cells. Our studies indicated that the mitochondrial localization of ExCy was dependent on the membrane potential of the mitochondria. ExCy was successfully utilized as a mitochondrial membrane potential dysfunction indicator to visually identify cells with mitochondrial dysfunction via fluorescence confocal microscopy. ExCy was further examined for potential in vivo imaging of zebrafish.
一种近红外发射(λ≈730nm)的菁染料 ExCy 通过扩展供体-受体体系的π共轭长度(即呋喃部分)以高产率合成。ExCy 由于强分子内电荷转移(ICT)而具有大的斯托克斯位移(Δλ≈100nm),并且具有高的荧光量子产率(Φ≈0.47 在 DCM 中)。由于其在水相环境中的荧光很低(Φ≈0.007 在 H2O 中),探针在进入疏水环境时表现出实现大荧光开启的潜力。荧光共焦显微镜研究表明,ExCy 很容易被远红激光线(即 640nm)激发,而相应的发射则在近红外区域收集。根据共定位研究,ExCy 对活细胞线粒体表现出优异的选择性。该探针还表现出高的光稳定性、长期成像能力和无洗涤染色能力,当应用于活细胞时。我们的研究表明,ExCy 的线粒体定位依赖于线粒体的膜电位。ExCy 成功地用作线粒体膜电位功能障碍的指示剂,通过荧光共焦显微镜直观地识别线粒体功能障碍的细胞。进一步检查了 ExCy 在斑马鱼体内成像的潜力。