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A Small-Molecule Fluorescent Probe for the Detection of Mitochondrial Peroxynitrite.


ABSTRACT: Reactive oxygen species (ROS) are pivotal signaling molecules that control a variety of physiological functions. As a member of the ROS family, peroxynitrite (ONOO-) possesses strong oxidation and nitrification abilities. Abnormally elevated levels of ONOO- can lead to cellular oxidative stress, which may cause several diseases. In this work, based on the rhodamine fluorophore, we designed and synthesized a novel small-molecule fluorescent probe (DH-1) for ONOO-. Upon reaction with ONOO-, DH-1 exhibited a significant fluorescence signal enhancement (approximately 34-fold). Moreover, DH-1 showed an excellent mitochondria-targeting capability. Confocal fluorescence imaging validated its ability to detect ONOO- changes in HeLa and RAW264.7 cells. Notably, we observed the ONOO- generation during the ferroptosis process by taking advantage of the probe. DH-1 displayed good biocompatibility, facile synthesis, and high selectivity, and may have potential applications in the study of ONOO--associated diseases in biosystems.

SUBMITTER: Dong H 

PROVIDER: S-EPMC10745935 | biostudies-literature | 2023 Dec

REPOSITORIES: biostudies-literature

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A Small-Molecule Fluorescent Probe for the Detection of Mitochondrial Peroxynitrite.

Dong Han H   Tang Meng-Yu MY   Shen Shili S   Cao Xiao-Qun XQ   Zhang Xiao-Fan XF  

Molecules (Basel, Switzerland) 20231206 24


Reactive oxygen species (ROS) are pivotal signaling molecules that control a variety of physiological functions. As a member of the ROS family, peroxynitrite (ONOO<sup>-</sup>) possesses strong oxidation and nitrification abilities. Abnormally elevated levels of ONOO<sup>-</sup> can lead to cellular oxidative stress, which may cause several diseases. In this work, based on the rhodamine fluorophore, we designed and synthesized a novel small-molecule fluorescent probe (<b>DH-1</b>) for ONOO<sup>-  ...[more]

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