must be generated in situ using precursors, but very few physiologically useful RSSH precursors have been developed to date. In this work, we report the design, synthesis, and evaluation of novel S-substituted thiosiothioureas as RSSH precursors. These water-soluble precursors show efficient and controllable release of RSSH under physiological conditions.
由于其固有的不稳定性,氢过
硫化物 (RSSH) 必须使用前体原位生成,但迄今为止开发的生理学上有用的 RSSH 前体很少。在这项工作中,我们报告了作为 RSSH 前体的新型 S 取代
硫代
硫脲的设计、合成和评估。这些
水溶性前体在生理条件下显示出有效且可控的 RSSH 释放。