A ROS-responsive, self-immolative and self-reporting hydrogen sulfide donor with multiple biological activities for the treatment of myocardial infarction.

Yao, Mengyun; Lu, Yifei; Shi, Lin; Huang, Yong; Zhang, Qing; Tan, Jianglin; Hu, Ping; Zhang, Jianxiang et al. · Bioact Mater · 2022

basic_science · Level V

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Abstract

Myocardial infarction (MI), as one of the leading causes of global death, urgently needs effective therapies. Recently, hydrogen sulfide (H<sub>2</sub>S) has been regarded as a promising therapeutic agent for MI, while its spatiotemporally controlled delivery remains a major issue limiting clinical translation. To address this limitation, we designed and synthesized a novel H<sub>2</sub>S donor (HSD-R) that can produce H<sub>2</sub>S and emit fluorescence in response to reactive oxygen species (ROS) highly expressed at diseased sites. HSD-R can specifically target mitochondria and provide red fluorescence to visualize and quantify H<sub>2</sub>S release <i>in vitro</i> and <i>in vivo</i>. Therapeutically, HSD-R significantly promoted the reconstruction of cardiac structure and function in a rat MI model. Mechanistically, myocardial protection is achieved by reducing cardiomyocyte apoptosis, attenuating local inflammation, and promoting angiogenesis. Furthermore, inhibition of typical pro-apoptotic genes (Bid, Apaf-1, and p53) played an important role in the anti-apoptotic effect of HSD-R to achieve cardioprotection, which were identified as new therapeutic targets of H<sub>2</sub>S against myocardial ischemia injury. This ROS-responsive, self-immolative, and fluorescent H<sub>2</sub>S donor can serve as a new theranostic agent for MI and other ischemic diseases.