4.7 Article

Engineering hydrophilic/hydrophobic moieties of ratiometric fluorescence probe to visualize whole cytoplasmic polarity

期刊

CHEMICAL ENGINEERING JOURNAL
卷 459, 期 -, 页码 -

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ELSEVIER SCIENCE SA
DOI: 10.1016/j.cej.2023.141651

关键词

Ratiometric fluorescent probes; Cytoplasmic polarity; Molecular engineering design; Multi -organelle targeting; Dual -channel imaging

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Intracellular polarity plays a crucial role in indicating the microenvironment property of the whole cell and is closely related to various physiological processes in different organelles. A polarity-sensitive probe 1P2N was developed for visualizing the whole cytoplasmic polarity, which emits different fluorescence colors depending on the polarities of the hydrophilic cytoplasm and lipidic organelles. This probe can be used for ratiometric fluorescence monitoring of polarity changes under different physiological conditions, providing a useful tool for studying polarity-related processes in the cytoplasmic microenvironment.
Intracellular polarity is an essential parameter to indicate the property of microenvironment in the whole cell. The polarity is closely related to various physiological processes in different organelles and their changes in real time depending on the physiological/pathological activity. Visualization of whole cytoplasmic polarity is essential to understand the multi-organelle related pathological and biological phenomena. However, most of the reported single-organelle targeted fluorescent materials can only detect specific intracellular regions and nor-mally with monotonic fluorescence changes. Herein, we engineered a polarity-sensitive probe 1P2N that install a cationic side alkyl chain on a push-pull type of pyrenyl-pyridium dye for whole cytoplasmic polarity visuali-zation. Especially, this probe emits blue-green fluorescence from pyrene moiety in high-polar hydrophilic cytoplasm, while emits red fluorescence from intramolecular charge transfer process in low-polar lipidic or-ganelles. The dual-emission response of 1P2N to polarity provides the basis for its ratiometric fluorescence monitoring of polarity changes in the whole cytoplasm under different physiological conditions. The excellent polarity-sensitive properties of probe 1P2N make it a useful tool for understanding polarity-related processes in the cytoplasmic microenvironment.

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