Walter Edward R H, Lee Lawrence Cho-Cheung, Leung Peter Kam-Keung, Lo Kenneth Kam-Wing, Long Nicholas J
Department of Chemistry, Imperial College London, Molecular Sciences Research Hub London W12 0BZ UK
Laboratory for Synthetic Chemistry and Chemical Biology Limited Units 1503-1511, 15/F, Building 17 W, Hong Kong Science Park, New Territories Hong Kong P. R. China.
Chem Sci. 2024 Feb 21;15(13):4846-4852. doi: 10.1039/d3sc06445j. eCollection 2024 Mar 27.
An increase in the mitochondrial membrane potential (MMP) is a characteristic feature of cancer and cardiovascular disease. Therefore, it remains of crucial importance to develop new and improved fluorescent probes that are sensitive to the MMP, to report on mitochondrial health and function. Reported here are the design, synthesis, photophysical properties and biological characterisation of a series of BODIPY dyes, BODIPY-Mito-, for mitochondria-targeted fluorescence imaging applications. Six BODIPY-Mito- analogues were synthesised under mild conditions, and displayed excellent fluorescence quantum yields of between 0.59 and 0.72 in aqueous environments at physiological pH (pH = 7.4). The incorporation of poly(ethylene glycol) (PEG) chains to the triarylphosphonium cation moiety significantly improved the biocompatibility of the probes (BODIPY-Mito-6, IC > 50 μM). All BODIPY-Mito- compounds demonstrated a high MMP-sensitive localisation in the mitochondria, with Pearson's correlation coefficients (PCC) of between 0.76 and 0.96. Compounds BODIPY-Mito-2 and BODIPY-Mito-6 revealed the highest sensitivity to the MMP, with a decrease in the emission intensity of 62% and 75%, respectively following MMP depolarisation. It is anticipated that the highest MMP sensitivity and enhanced biocompatibility of BODIPY-Mito-6 could lead to the development of new probes for mitochondrial imaging in the future.
线粒体膜电位(MMP)升高是癌症和心血管疾病的一个特征。因此,开发对MMP敏感的新型改良荧光探针以报告线粒体健康和功能仍然至关重要。本文报道了一系列用于线粒体靶向荧光成像应用的BODIPY染料BODIPY-Mito-的设计、合成、光物理性质和生物学特性。在温和条件下合成了六种BODIPY-Mito-类似物,在生理pH值(pH = 7.4)的水性环境中显示出0.59至0.72之间的优异荧光量子产率。将聚乙二醇(PEG)链引入三芳基鏻阳离子部分显著提高了探针的生物相容性(BODIPY-Mito-6,IC>50μM)。所有BODIPY-Mito-化合物在线粒体中均表现出对MMP高度敏感的定位,皮尔逊相关系数(PCC)在0.76至0.96之间。化合物BODIPY-Mito-2和BODIPY-Mito-6对MMP表现出最高的敏感性,MMP去极化后发射强度分别降低62%和75%。预计BODIPY-Mito-6的最高MMP敏感性和增强的生物相容性可能会在未来导致开发用于线粒体成像的新型探针。