Department of Chemistry, Michigan Technological University, Houghton, MI 49931, USA.
Department of Biological Sciences, Michigan Technological University, Houghton, MI 49931, USA.
J Mater Chem B. 2020 Feb 26;8(8):1603-1615. doi: 10.1039/c9tb02302j.
Two ratiometric near-infrared fluorescent probes have been developed to selectively detect mitochondrial pH changes based on highly efficient through-bond energy transfer (TBET) from cyanine donors to near-infrared hemicyanine acceptors. The probes consist of identical cyanine donors connected to different hemicyanine acceptors with a spirolactam ring structure linked via a biphenyl linkage. At neutral or basic pH, the probes display only fluorescence of the cyanine donors when they are excited at 520 nm. However, acidic pH conditions trigger spirolactam ring opening, leading to increased π-conjugation of the hemicyanine acceptors, resulting in new near-infrared fluorescence peaks at 740 nm and 780 nm for probes A and B, respectively. This results in ratiometric fluorescence responses of the probes to pH changes indicated by decreases of the donor fluorescence and increases of the acceptor fluorescence under donor excitation at 520 nm due to a highly efficient TBET from the donors to the acceptors. The probes only show cyanine donor fluorescence in alkaline-pH mitochondria. However, the probes show moderate fluorescence decreases of the cyanine donor and considerable fluorescence increases of hemicyanine acceptors during the mitophagy process induced by nutrient starvation or under drug treatment. The probes display rapid, selective, and sensitive responses to pH changes over metal ions, good membrane penetration, good photostability, large pseudo-Stokes shifts, low cytotoxicity, mitochondria-targeting, and mitophagy-tracking capabilities.
已经开发出两种比率型近红外荧光探针,用于基于从菁染料供体到近红外半花菁受体的高效的通过键能量转移(TBET),选择性地检测线粒体 pH 值变化。探针由相同的菁染料供体连接到不同的半花菁受体组成,带有螺内酯环结构,通过联苯键连接。在中性或碱性 pH 条件下,探针在 520nm 激发时仅显示菁染料供体的荧光。然而,酸性 pH 条件会触发螺内酯环的开环,导致半花菁受体的π共轭增加,从而分别在探针 A 和 B 中产生新的近红外荧光峰,在 740nm 和 780nm 处。这导致探针对 pH 值变化的比率荧光响应,这是由于供体到受体的高效 TBET,在 520nm 激发时供体荧光减少和受体荧光增加。探针仅在碱性 pH 线粒体中显示菁染料供体荧光。然而,在营养饥饿或药物处理诱导的自噬过程中,探针显示菁染料供体的荧光适度降低,而半花菁受体的荧光显著增加。探针对 pH 值变化具有快速、选择性和敏感的响应,对金属离子具有良好的选择性,具有良好的膜穿透性、良好的光稳定性、大的赝斯托克斯位移、低细胞毒性、线粒体靶向和自噬追踪能力。