School of Chemistry and Chemical Engineering, Guangzhou University, Guangzhou, 510006, PR China.
School of Pharmaceutical Sciences (Shenzhen), Sun Yat-sen University, Shenzhen, 518107, PR China.
Eur J Med Chem. 2021 Dec 15;226:113828. doi: 10.1016/j.ejmech.2021.113828. Epub 2021 Sep 6.
Hydrogen peroxide (HO) plays vital roles in oxidative stress and signal transduction in living organisms, and its abnormal levels could be linked to many diseases. Despite numerous efforts spent, it is still urgent and of high importance to develop better HO probes with good selectivity, high sensitivity and low backgrounds. To this end, a novel boron dipyrromethene (BODIPY)-based fluorescent probe with an electron-withdrawing methylenemalononitrile at the meso position has been rationally designed, successfully synthesized and investigated for detection of HO in aqueous solutions and living cells, which exhibited high selectivity and sensitivity, fluorescent "turn-on" phenomenon at 540 nm, and ratiometric changes from 506 to 540 nm. Upon exposure to HO, a strong fluorescent emission at 540 nm appeared and the corresponding quantum yields changed from 0.009 to 0.13. The detection limit towards HO was calculated to be 31 nM by the linear fluorescence change at 540 nm in the HO-concentration ranging from 2 to 10 μM. This probe was applicable in a pH range from 6 to 10. Meanwhile, the sensing mechanism was also confirmed by the H NMR and mass spectrometry, suggesting that the above changes might be ascribed to the quick addition and oxidization of the double bond. Furthermore, confocal imaging results also showed great enhancement of intracellular fluorescence upon exposure to HO and PMA in RAW264.7 cells, unambiguously confirming its great potentials as a fluorescent probe for highly sensitive detection of both exogenous and endogenous HO in living cells.
过氧化氢(HO)在生物体的氧化应激和信号转导中起着至关重要的作用,其异常水平可能与许多疾病有关。尽管已经做了很多努力,但开发具有良好选择性、高灵敏度和低背景的更好的 HO 探针仍然是紧迫和非常重要的。为此,设计并成功合成了一种新型基于硼二吡咯甲川(BODIPY)的荧光探针,在中位处具有吸电子亚甲基丙二腈,用于在水溶液和活细胞中检测 HO,其表现出高选择性和灵敏度、在 540nm 处的荧光“开启”现象以及从 506nm 到 540nm 的比率变化。暴露于 HO 后,在 540nm 处出现强荧光发射,相应的量子产率从 0.009 变为 0.13。通过在 540nm 处的线性荧光变化,在 HO 浓度范围从 2 到 10μM 时,计算出对 HO 的检测限为 31nM。该探针适用于 pH 值范围从 6 到 10。同时,通过 1H NMR 和质谱也证实了传感机制,表明上述变化可能归因于双键的快速加成和氧化。此外,在 RAW264.7 细胞中,暴露于 HO 和 PMA 后,共聚焦成像结果也显示出细胞内荧光的显著增强,明确证实了其作为荧光探针用于在活细胞中高灵敏度检测外源性和内源性 HO 的巨大潜力。