Multifunctional hydrogel with reactive oxygen species scavenging and photothermal antibacterial activity accelerates infected diabetic wound healing

被引:89
作者
He, Yuanmeng [1 ]
Liu, Kaiyue [1 ]
Guo, Shen [1 ]
Chang, Rong [1 ]
Zhang, Chen [1 ]
Guan, Fangxia [1 ]
Yao, Minghao [1 ]
机构
[1] Zhengzhou Univ, Sch Life Sci, 100 Sci Rd, Zhengzhou 450001, Peoples R China
基金
中国国家自然科学基金;
关键词
Diabetic wound; Infected wound; Multifunctional hydrogel; ROS scavenging; Photothermal antibacterial; HYALURONIC-ACID; ADHESIVE; HEMOSTASIS; MANAGEMENT; THERAPY;
D O I
10.1016/j.actbio.2022.11.023
中图分类号
R318 [生物医学工程];
学科分类号
0831 ;
摘要
Management of diabetic wound has long been a clinical challenge due to pathological microenvironment of excessive inflammation, persistent hyperglycemia, and biofilm infection caused by overdue reactive oxygen species (ROS) production and defective blood vessels. Herein, a multifunctional hydrogel with ROS scavenging and photothermal antibacterial activity based on oxidized dextran (Odex), gallic acid-grafted gelatin (GAG) and Ferric ion, named OGF, was developed for treatment of infected wound in a diabetic mouse. This hydrogel was double-crosslinked by the dynamically Schiff-base bonds formed between alde-hyde groups in Odex and amino groups in GAG and the metal coordination bonds formed between Ferric ion and polyphenol groups or carboxyl groups in GAG, which endowed the resulted OGF hydrogel with well injectable, self-healing and adhesive properties. Due to the high-efficiency photothermal effect of Ferric ion/polyphenol chelate, this hydrogel killed Staphylococcus aureus and Escherichia coli rapidly and completely within 3.5 min under near-infrared light radiation. Furthermore, this composed hydrogel pre-sented good antioxidation, hemostasis and biocompatibility. It also remarkably accelerated the complete re-epithelialization of Staphylococcus aureus -infected wound in diabetic mice within 18 days by eliminat-ing infection, mitigating oxidative stress and inflammation, and facilitating angiogenesis. Therefore, the proposed multifunctional hydrogel exerts a great potential for translation in the clinical management of diabetic wounds.Statement of significanceHigh reactive oxygen species (ROS) levels and vascular defects in diabetic wounds can lead to exces-sive inflammation, persistent hyperglycemia, biofilm infection and other pathological microenvironments, which can further develop to the chronic wounds. In this study, we designed a multifunctional hydro -gel with ROS-scavenging ability and photothermal antibacterial activity for the treatment of infected di-abetic wound. As expected, this multifunctional hydrogel dressing highly accelerated the complete re- epithelialization of Staphylococcus aureus -infected wound in diabetic mouse by eliminating infection, mitigating oxidative stress and inflammation, as well as facilitating angiogenesis. This work provides a promising therapeutic strategy for infected diabetic wound by inhibition of oxidative stress and biofilm infection.(c) 2022 Acta Materialia Inc. Published by Elsevier Ltd. All rights reserved.
引用
收藏
页码:199 / 217
页数:19
相关论文
共 78 条
  • [1] Gallic acid modified alginate self-adhesive hydrogel for strain responsive transdermal delivery
    Abebe, Medhen W.
    Appiah-Ntiamoah, Richard
    Kim, Hern
    [J]. INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES, 2020, 163 : 147 - 155
  • [2] Therapeutic strategies against bacterial biofilms
    Bi, Yufang
    Xia, Guixue
    Shi, Chao
    Wan, Jianglin
    Liu, Longqiang
    Chen, Yuan
    Wu, Yueming
    Zhang, Wenjing
    Zhou, Min
    He, Hongyan
    Liu, Runhui
    [J]. FUNDAMENTAL RESEARCH, 2021, 1 (02): : 193 - 212
  • [3] Biodegradable hydrogel with thermo-response and hemostatic effect for photothermal enhanced anti-infective therapy
    Cao, Changyu
    Yang, Nan
    Zhao, Ye
    Yang, Dapeng
    Hu, Yanling
    Yang, Dongliang
    Song, Xuejiao
    Wang, Wenjun
    Dong, Xiaochen
    [J]. NANO TODAY, 2021, 39
  • [4] Sustained release of magnesium ions mediated by injectable self-healing adhesive hydrogel promotes fibrocartilaginous interface regeneration in the rabbit rotator cuff tear model
    Chen, Baojun
    Liang, Yongping
    Bai, Lang
    Xu, Meiguang
    Zhang, Jing
    Guo, Baolin
    Yin, Zhanhai
    [J]. CHEMICAL ENGINEERING JOURNAL, 2020, 396
  • [5] Bioinspired Multifunctional Hybrid Hydrogel Promotes Wound Healing
    Chen, Guopu
    Yu, Yunru
    Wu, Xiuwen
    Wang, Gefei
    Ren, Jianan
    Zhao, Yuanjin
    [J]. ADVANCED FUNCTIONAL MATERIALS, 2018, 28 (33)
  • [6] Dissolved oxygen from microalgae-gel patch promotes chronic wound healing in diabetes
    Chen, Huanhuan
    Cheng, Yuhao
    Tian, Jingrun
    Yang, Peizheng
    Zhang, Xuerao
    Chen, Yunhao
    Hu, Yiqiao
    Wu, Jinhui
    [J]. SCIENCE ADVANCES, 2020, 6 (20):
  • [7] Ultratough, Self-Healing, and Tissue-Adhesive Hydrogel for Wound Dressing
    Chen, Tao
    Chen, Yujie
    Rehman, Hafeez Ur
    Chen, Zhen
    Yang, Zhi
    Wang, Man
    Li, Hua
    Liu, Hezhou
    [J]. ACS APPLIED MATERIALS & INTERFACES, 2018, 10 (39) : 33523 - 33531
  • [8] Functional Transdermal Nanoethosomes Enhance Photodynamic Therapy of Hypertrophic Scars via Self-Generating Oxygen
    Chen, Yunsheng
    Zhang, Zheng
    Xin, Yu
    Yu, Zhixi
    Meng, Xinxian
    Zhang, Ying
    He, Dannong
    Zhang, Yixin
    [J]. ACS APPLIED MATERIALS & INTERFACES, 2021, 13 (07) : 7955 - 7965
  • [9] Wound epithelialization: Accelerationg the pace of discovery
    Coulombe, PA
    [J]. JOURNAL OF INVESTIGATIVE DERMATOLOGY, 2003, 121 (02) : 219 - 230
  • [10] Single Continuous Near-Infrared Laser-Triggered Photodynamic and Photothermal Ablation of Antibiotic-Resistant Bacteria Using Effective Targeted Copper Sulfide Nanoclusters
    Dai, Xiaomei
    Zhao, Yu
    Yu, Yunjian
    Chen, Xuelei
    Wei, Xiaosong
    Zhang, Xinge
    Li, Chaoxing
    [J]. ACS APPLIED MATERIALS & INTERFACES, 2017, 9 (36) : 30470 - 30479