Calcium Hydride-Based Dressing to Promote Wound Healing.

Gong, Fei; Yang, Nailin; Xu, Jiachen; Yang, Xiaoyuan; Wei, Kailu; Hou, Linqian; Liu, Bo; Zhao, He et al. · Adv Healthc Mater · 2023

basic_science · Level V

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Abstract

Wound microenvironment with excess reactive oxygen species (ROS) can significantly inhibit wound healing. Encouraged by hydrogen molecules (H<sub>2</sub> ) with effective ROS scavenging and calcium hydride (CaH<sub>2</sub> ) with sufficient H<sub>2</sub> supply, the authors for the first time employed CaH<sub>2</sub> as a therapeutic H<sub>2</sub> donor and starch as a diluent to construct CaH<sub>2</sub> pulvis dressing for wound healing treatment. It has been found that CaH<sub>2</sub> by generating H<sub>2</sub> exhibited excellent ROS scavenging performance, favorable for preserving the oxidative-stress-induced cell death. After being applied onto the skin wound, the CaH<sub>2</sub> pulvis dressing with the unique ROS-scavenging ability can accelerate skin wound healing in healthy/diabetic mice (small animal models) and Bama mini-pigs (large animal model). Such CaH<sub>2</sub> dressing can release H<sub>2</sub> to relieve the inflammation levels, decrease the secretion of pro-inflammatory cytokines, increase the infiltration of inflammation-suppressive immune cells, and promote the regeneration of new blood vessels and collagens, thereby accelerating wound healing. This work highlighted that the integration of anti-oxidation and anti-inflammation functions based on CaH<sub>2</sub> dressing endowed it with a promising possibility for the treatment of inflammatory diseases.

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