7 research outputs found
SpermidineâFunctionalized Injectable Hydrogel Reduces Inflammation and Enhances Healing of Acute and Diabetic Wounds In Situ
Abstract The inflammatory response is a key factor affecting tissue regeneration. Inspired by the immunomodulatory role of spermidine, an injectable double network hydrogel functionalized with spermidine (DNâSPD) is developed, where the first and second networks are formed by dynamic imine bonds and nonâdynamic photoâcrosslinked bonds respectively. The single network hydrogel before photoâcrosslinking exhibits excellent injectability and thus can be printed and photoâcrosslinked in situ to form double network hydrogels. DNâSPD hydrogel has demonstrated desirable mechanical properties and tissue adhesion. More importantly, an âoperandoâ comparison of hydrogels loaded with spermidine or diethylenetriamine (DETA), a sham molecule resembling spermidine, has shown similar physical properties, but quite different biological functions. Specifically, the outcomes of 3 sets of in vivo animal experiments demonstrate that DNâSPD hydrogel can not only reduce inflammation caused by implanted exogenous biomaterials and reactive oxygen species but also promote the polarization of macrophages toward regenerative M2 phenotype, in comparison with DNâDETA hydrogel. Moreover, the immunoregulation by spermidine can also translate into faster and more natural healing of both acute wounds and diabetic wounds. Hence, the local administration of spermidine affords a simple but elegant approach to attenuate foreign body reactions induced by exogenous biomaterials to treat chronic refractory wounds