An Immunomodulatory Hydrogel by Hyperthermia‐Assisted Self‐Cascade Glucose Depletion and ROS Scavenging for Diabetic Foot Ulcer Wound Therapeutics

Author:

Qi Xiaoliang1ORCID,Cai Erya2,Xiang Yajing2,Zhang Chaofan3,Ge XinXin2,Wang Jiajia3,Lan Yulong3,Xu Hangbin2,Hu Rongdang2,Shen Jianliang13ORCID

Affiliation:

1. National Engineering Research Center of Ophthalmology and Optometry Eye Hospital Wenzhou Medical University Wenzhou Zhejiang 325027 China

2. School & Hospital of Stomatology Wenzhou Medical University Wenzhou Zhejiang 325027 China

3. Zhejiang Engineering Research Center for Tissue Repair Materials Wenzhou Institute University of Chinese Academy of Sciences Wenzhou Zhejiang 325001 China

Abstract

AbstractCurrent therapeutic protocols for diabetic foot ulcers (DFUs), a severe and rapidly growing chronic complication in diabetic patients, remain nonspecific. Hyperglycemia‐caused inflammation and excessive reactive oxygen species (ROS) are common obstacles encountered in DFU wound healing, often leading to impaired recovery. These two effects reinforce each other, forming an endless loop. However, adequate and inclusive methods are still lacking to target these two aspects and break the vicious cycle. This study proposes a novel approach for treating DFU wounds, utilizing an immunomodulatory hydrogel to achieve self‐cascade glucose depletion and ROS scavenging to regulate the diabetic microenvironment. Specifically, AuPt@melanin‐incorporated (GHM3) hydrogel dressing is developed to facilitate efficient hyperthermia‐enhanced local glucose depletion and ROS scavenging. Mechanistically, in vitro/vivo experiments and RNA sequencing analysis demonstrate that GHM3 disrupts the ROS‐inflammation cascade cycle and downregulates the ratio of M1/M2 macrophages, consequently improving the therapeutic outcomes for dorsal skin and DFU wounds in diabetic rats. In conclusion, this proposed approach offers a facile, safe, and highly efficient treatment modality for DFUs.

Funder

National Natural Science Foundation of China

Wenzhou Medical University

Publisher

Wiley

Subject

Mechanical Engineering,Mechanics of Materials,General Materials Science

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