Research Institute for Medicines (iMed.ULisboa) Faculty of Pharmacy, Universidade de Lisboa, Av. Prof. Gama Pinto, 1649-003, Lisbon, Portugal.
CIQSO - Centre for Research in Sustainable Chemistry and Department of Chemistry, University of Huelva, Campus de El Carmen s/n, 21071, Huelva, Spain.
Chemistry. 2023 Jun 2;29(31):e202300579. doi: 10.1002/chem.202300579. Epub 2023 Apr 19.
A set of nine boronic-acid-derived salicylidenehydrazone (BASHY) complexes has been synthesized in good to very good chemical yields in a versatile three-component reaction. In an extension to previous reports on this dye platform, the focus was put on the electronic modification of the "vertical" positions of the salicylidenehydrazone backbone. This enabled the observation of fluorescence quenching by photoinduced electron transfer (PeT), which can be reverted by the addition of acid in organic solvent (OFF-ON fluorescence switching). The resulting emission is observed in the green-to-orange spectral region (maxima at 520-590 nm). In contrast, under physiological pH conditions in water, the PeT process is inherently decativated, thereby enabling the observation of fluorescence in the red-to-NIR region (maxima at 650-680 nm) with appreciable quantum yields and lifetimes. The latter characteristic supported the application of the dyes in fluorescence lifetime imaging (FLIM) of live A549 cells.
已通过一种多功能三组分反应以良好到非常好的化学产率合成了九套硼酸衍生的水杨醛缩肼(BASHY)配合物。在对该染料平台的先前报道的扩展中,重点放在水杨醛缩肼骨架的“垂直”位置的电子修饰上。这使得可以通过光诱导电子转移(PeT)观察荧光猝灭,并且可以通过在有机溶剂中添加酸来反转(OFF-ON 荧光切换)。在绿色到橙色光谱区域(在 520-590nm 处的最大值)观察到所得发射。相比之下,在水中的生理 pH 条件下,PeT 过程本质上是失活的,从而可以在红色到近红外区域(在 650-680nm 处的最大值)观察到具有可观的量子产率和寿命的荧光。后一特征支持将染料应用于活 A549 细胞的荧光寿命成像(FLIM)中。