Center of Bio & Micro/Nano Functional Materials, State Key Laboratory of Crystal Materials, Shandong University, Jinan 250100, PR China.
Department of Anatomy and Histoembryology, School of Basic Medical Sciences, Shandong University, Jinan 250012, PR China.
Spectrochim Acta A Mol Biomol Spectrosc. 2021 Feb 5;246:119035. doi: 10.1016/j.saa.2020.119035. Epub 2020 Oct 4.
Fluorescent pH probes have been served as powerful tools in biological and pathological studies in recent years due to the important roles of pH values in various physiological processes. Although plenty of pH probes have been delivered, development of two-photon ratiometric pH probes with large emission shift for detecting the variation of intracellular pH values is still a greatly challenging task. To address this concern, in this work, we have discovered a general strategy designing pH probes by means of a pH-dependent reversible intramolecular reaction of spiro-oxazolidine which can efficiently change their conjugation length and the electronic effect concurrently. To display the generality of the strategy, we have synthesized six pH probes, and all these probes exhibit short emission in basic conditions and dramatically red-shifted emission in acid environments. The emission shift of the six probes is more than 150 nm and even up to 210 nm, much larger than shift of all commercial and reported pH probes. The chemical sensing mechanism of intramolecular ring opening/closing reaction of spiro-oxazolidine has been confirmed with H NMR spectra and density functional theory (DFT) calculations. Finally, we have used one of six with one- and two-photon properties to successfully image lysosomal pH changes under confocal and two-photon microscopes in a ratiometric manner. We believed that this spiro-oxazolidine strategy can serve as a general and powerful platform for the design of ideal pH probes.
近年来,荧光 pH 探针因其在各种生理过程中对 pH 值的重要作用,在生物和病理研究中得到了广泛的应用。虽然已经有很多 pH 探针被开发出来,但开发具有大发射位移的双光子比率 pH 探针来检测细胞内 pH 值的变化仍然是一项极具挑战性的任务。为了解决这个问题,在这项工作中,我们发现了一种通过螺噁唑啉的 pH 依赖的可逆分子内反应来设计 pH 探针的通用策略,该策略可以有效地改变它们的共轭长度和电子效应。为了展示该策略的通用性,我们合成了六个 pH 探针,所有这些探针在碱性条件下都显示出短发射,而在酸性环境下则显示出显著的红移发射。六个探针的发射位移超过 150nm,甚至达到 210nm,比所有商业和报道的 pH 探针的位移都要大得多。螺噁唑啉的分子内开环/闭环反应的化学传感机制已经通过 H NMR 光谱和密度泛函理论(DFT)计算得到了证实。最后,我们使用其中一个具有单光子和双光子性质的探针成功地在共聚焦和双光子显微镜下以比率方式成像溶酶体 pH 变化。我们相信,这种螺噁唑啉策略可以作为设计理想 pH 探针的通用而强大的平台。