垂直波分
光热治疗
伤口愈合
材料科学
光动力疗法
光热效应
明胶
癌症研究
纳米技术
化学
医学
免疫学
外科
生物化学
有机化学
视力
脉络膜新生血管
作者
Kangkang Zha,Wenqian Zhang,Weixian Hu,Meijun Tan,Shengming Zhang,Yu Yongsheng,Shuangquan Gou,Pengzhen Bu,Bikun Zhou,Yanan Zou,Yuan Xiong,Bobin Mi,Guohui Liu,Qian Feng,Kaiyong Cai
标识
DOI:10.1002/adfm.202308145
摘要
Abstract The drug‐resistant bacterial‐infected skin wound is still a severe healthcare problem. Uncontrolled bacterial infection, abundant reactive oxygen species (ROS) content, and prolonged inflammatory response are detrimental to wound healing. Moreover, excessive vessel growth can result in unsatisfactory scar formation. Herein, a three‐step regenerative strategy based on a bilayered gelatin/acryloyl β ‐cyclodextrin (BGACD) hydrogel containing physical host–guest complexations and chemical crosslinks is proposed. The hydrogel is loaded with humic acids (HAs) and astragaloside IV (AS) in the lower layer and verteporfin (Vt) in the upper layer. Different gelatin/acryloyl β ‐cyclodextrin ratios endow the lower and upper layers of the hydrogel with different degradation rates. Under light irradiation, the combination of HAs‐induced photothermal therapy (PTT) and verteporfin‐induced photodynamic therapy effectively inhibits MRSA growth. The HAs and astragaloside IV are released from the lower layer to scavenge ROS and promote M2 macrophage polarization and angiogenesis during the inflammation and early proliferation phases, while verteporfin releases from the upper layer suppress excessive vessel growth during the late proliferation and remodeling phases. The HAs‐AS@Vt@BGACD hydrogel successfully achieves rapid and scarless wound healing in an MRSA‐infected wound model in rats. Therefore, the HAs‐AS@Vt@BGACD hydrogel shows promising potential for the treatment of drug‐resistant bacteria‐infected skin wound healing.
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