Hydrogen sulfide (H 2 S), together with nitric oxide and carbon monoxide, has been recognized as an important gasotransmitter. It plays an essential physiological role in regulating cyto-protective signal process, and H 2 S-based therapy is considered as the next generation of promising therapeutic strategies for many biomedical applications, such as the treatment of cardiovascular disease. Through electrospinning of polycaprolactone (PCL) containing JK1, a novel pH-controllable H 2 S donor, nanofibers with H 2 S releasing function, PCL-JK1, are fabricated. This fibrous scaffold showed a pH-dependent H 2 S releasing behavior, i.e., lower pH induced greater and faster H 2 S release. In addition, the H 2 S release of JK1 was prolonged by the fibrous matrix as shown by decreased releasing rates compared to JK1 in solutions. In addition, in vitro studies indicated that PCL-JK1 exhibited excellent cyto-compatibility, similar to PCL fibers. Finally, we investigated PCL-JK1 as a wound dressing toward a cutaneous wound model in vivo and found that PCL-JK1 could significantly enhance the wound repair and regeneration compared with the control PCL scaffold, likely due to the release of H 2 S, which results in a broad range of physiologically protective functions toward the wound.
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Wu et al. (2016) studied this question.
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