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Published on: May 8, 2017
Near-Infrared Fluorogenic Probe Enables Real-Time Imaging of HOCl to Reveal MAR1-Mediated Suppression of Pyroptosis
Tang Deng1, Jin Peng1, Bishan Ye1,2
1Key Laboratory of Emergency and Trauma of Ministry of Education, Department of Interventional Radiology and Vascular Surgery, The First Affiliated Hospital, Hainan Medical University, Haikou, Hainan 571199, China.
Abstract:
The interplay between oxidative stress and programmed cell death plays a pivotal role in the development of several inflammation-related diseases. As one of the important reactive oxygen species (ROS) in living organisms, the specific function of hypochlorous acid (HOCl) in pyroptosis, as well as lower limb ischemia-reperfusion injury (LL-IRI), has not been fully explored. Herein, we fabricated an activatable near-infrared fluorogenic (NIRF) probe, BFP-HOCl, which enabled the highly selective and sensitive detection of HOCl. In the presence of HOCl, the fluorescence of BFP-HOCl was remarkably enhanced at 652 nm and exhibited a good linear response relationship. Using BFP-HOCl, imaging of exogenous and endogenous HOCl in cells was successfully achieved. Intriguingly, BFP-HOCl was able to track the elevated HOCl levels during LPS+ATP-induced pyroptosis and its fluorescence enhancement could be suppressed by MAR1 dose-dependently. In a mouse LL-IRI model, a combination of transcriptomic analysis, immunohistochemistry, qPCR, and in vivo imaging revealed a critical role for HOCl as an oxidative activator upstream of the ROS-NLRP3-GSDMD signaling axis. MAR1 effectively attenuated the degree of tissue injury by downregulating the level of HOCl and inhibiting the expression of pyroptosis-associated proteins (NLRP3, ASC, Caspase-1, and GSDMD). This work not only established that HOCl could be used as a potential marker of pyroptosis and LL-IRI but also further confirmed the functional status of pyroptosis in LL-IRI and the intervention potential of MAR1, which provided a new strategy for the diagnosis and intervention of LL-IRI.

