Hydrogen sulfide (H2S) is an endogenous gasotransmitter with therapeutic potential for stroke. Our previous work identified that ADT-OH, an H2S donor with mitochondrial uncoupling activity, protects against stroke by activating the SQR-UCP2-AMPK pathway. Here, we launched a medicinal chemistry campaign based on hit compound ADT-OH to design and synthesize 30 novel derivatives, among which compound 16 displayed more potent mitochondrial uncoupling activity than ADT-OH, effectively reducing the mitochondrial membrane potential at a low concentration of 1 μM. In mouse models of ischemic and hemorrhagic stroke, compound 16 significantly alleviated brain injury and improved functional outcomes. Notably, these therapeutic effects were completely abolished in microglia/macrophage-specific SQR deletion (Cx3cr1Cre: Sqrfl/fl) mice, confirming that the biological function of compound 16 is mediated by a strictly SQR-dependent mechanism. Proteomic analysis further validated these findings. Overall, compound 16 represents a promising lead compound for stroke therapy based on a novel mechanism, warranting further development.
Peng Song, Yuan Li, Xiaohan Song et al.· Journal of Medicinal Chemist...· 0 citations
Combined with anti-PD-1 antibody (α-PD-1), NPMn/Syro exerts synergistic antitumor efficacy, providing a promising therapeutic strategy for clinical management of tumor.
Yanlin Zhou, Ziyi Wu, Tao Zheng et al.· Journal of Controlled Releas...· 0 citations
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