Hybrid Hydrogels for Immunoregulation and Proangiogenesis through Mild Heat Stimulation to Accelerate Whole-Process Diabetic Wound Healing

被引:34
作者
Guo, Qianru [1 ,2 ]
Yin, Tianyu [1 ,2 ]
Huang, Wei [3 ]
Nan, Rui [1 ,2 ]
Xiang, Tao [1 ,2 ]
Zhou, Shaobing [1 ,2 ]
机构
[1] Southwest Jiaotong Univ, Inst Biomed Engn, Coll Med, Chengdu 610031, Peoples R China
[2] Southwest Jiaotong Univ, Sch Mat Sci & Engn, Key Lab Adv Technol Mat, Minist Educ, Chengdu 610031, Peoples R China
[3] Southwest Jiaotong Univ, Sch Life Sci & Engn, Chengdu 610031, Peoples R China
基金
中国国家自然科学基金;
关键词
angiogenesis; diabetic wound healing; hybrid hydrogels; immunoregulation; mild heat stimulation; CHITOSAN-BASED HYDROGELS; THERANOSTIC AGENT; INFLAMMATION; DRESSINGS; DELIVERY; THERAPY; REPAIR; MODEL;
D O I
10.1002/adhm.202304536
中图分类号
R318 [生物医学工程];
学科分类号
0831 ;
摘要
Intense and persistent oxidative stress, excessive inflammation, and impaired angiogenesis severely hinder diabetic wound healing. Bioactive hydrogel dressings with immunoregulatory and proangiogenic properties have great promise in treating diabetic wounds. However, the therapeutic effects of dressings always depend on drugs with side effects, expensive cytokines, and cell therapies. Herein, a novel dynamic borate-bonds crosslinked hybrid multifunctional hydrogel dressings with photothermal properties are developed to regulate the microenvironment of diabetic wound sites and accelerate the whole process of its healing without additional medication. The hydrogel is composed of phenylboronic acid-modified chitosan and hyaluronic acid (HA) crosslinked by tannic acid (TA) through borate bonds and Prussian blue nanoparticles (PBNPs) with photothermal response characteristics are embedded in the polymer networks. The results indicate hydrogels show inherent broad-spectrum antioxidative activities through the integrated interaction of borate bonds, TA, and PBNPs. Meanwhile, combined with the regulation of macrophage phenotype by HA, the inflammatory microenvironment of diabetic wounds is transformed. Moreover, the angiogenesis is then enhanced by the mild photothermal effect of PBNPs, followed by promoted epithelialization and collagen deposition. In summary, this hybrid hydrogel system accelerates all stages of wound repair through antioxidative stress, immunomodulation, and proangiogenesis, showing great potential applications in diabetic wound management. Dynamic borate-bonds crosslinked hybrid multifunctional hydrogel dressings with photothermal properties are developed to regulate the microenvironment of diabetic wound sites and accelerate the whole process of its healing without additional medication. This hybrid hydrogel system accelerates all stages of wound repair through broad-spectrum antioxidative stress, immunomodulation and proangiogenesis, showing great potential applications in diabetic wound management. image
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页数:16
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共 64 条
[1]   Repeated thermal therapy up-regulates endothelial nitric oxide synthase and augments angiogenesis in a mouse model of hindlimb ischemia [J].
Akasaki, Y ;
Miyata, M ;
Eto, H ;
Shirasawa, T ;
Hamada, N ;
Ikeda, Y ;
Biro, S ;
Otsuji, Y ;
Tei, C .
CIRCULATION JOURNAL, 2006, 70 (04) :463-470
[2]   Diabetic Foot Ulcers and Their Recurrence [J].
Armstrong, David G. ;
Boulton, Andrew J. M. ;
Bus, Sicco A. .
NEW ENGLAND JOURNAL OF MEDICINE, 2017, 376 (24) :2367-2375
[3]   Multifunctional hydrogels for wound healing: Special focus on biomacromolecular based hydrogels [J].
Asadi, Nahideh ;
Pazoki-Toroudi, Hamidreza ;
Del Bakhshayesh, Azizeh Rahmani ;
Akbarzadeh, Abolfazl ;
Davaran, Soodabeh ;
Annabi, Nasim .
INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES, 2021, 170 :728-750
[4]   Self-Healing Injectable Hydrogels for Tissue Regeneration [J].
Bertsch, Pascal ;
Diba, Mani ;
Mooney, David J. ;
Leeuwenburgh, Sander C. G. .
CHEMICAL REVIEWS, 2023, 123 (02) :834-873
[5]   A Prussian Blue-Based Core-Shell Hollow-Structured Mesoporous Nanoparticle as a Smart Theranostic Agent with Ultrahigh pH-Responsive Longitudinal Relaxivity [J].
Cai, Xiaojun ;
Gao, Wei ;
Ma, Ming ;
Wu, Meiying ;
Zhang, Linlin ;
Zheng, Yuanyi ;
Chen, Hangrong ;
Shi, Jianlin .
ADVANCED MATERIALS, 2015, 27 (41) :6382-+
[6]   PEGylated Prussian blue nanocubes as a theranostic agent for simultaneous cancer imaging and photothermal therapy [J].
Cheng, Liang ;
Gong, Hua ;
Zhu, Wenwen ;
Liu, Jingjing ;
Wang, Xiaoyong ;
Liu, Gang ;
Liu, Zhuang .
BIOMATERIALS, 2014, 35 (37) :9844-9852
[7]   Binding and Internalization in Receptor-Targeted Carriers: The Complex Role of CD44 in the Uptake of Hyaluronic Acid-Based Nanoparticles (siRNA Delivery) [J].
de la Rosa, Julio M. Rios ;
Pingrajai, Ponpawee ;
Pelliccia, Maria ;
Spadea, Alice ;
Lallana, Enrique ;
Gennari, Arianna ;
Stratford, Ian J. ;
Rocchia, Walter ;
Tirella, Annalisa ;
Tirelli, Nicola .
ADVANCED HEALTHCARE MATERIALS, 2019, 8 (24)
[8]   Prussian blue nanoparticles operate as a new generation of photothermal ablation agents for cancer therapy [J].
Fu, Guanglei ;
Liu, Wei ;
Feng, Shanshan ;
Yue, Xiuli .
CHEMICAL COMMUNICATIONS, 2012, 48 (94) :11567-11569
[9]   Accelerated wound healing in diabetes by reprogramming the macrophages with particle-induced clustering of the mannose receptors [J].
Gan, Jingjing ;
Liu, Chunyan ;
Li, Huanling ;
Wang, Shaocong ;
Wang, Zhenzhen ;
Kang, Zhiqian ;
Huang, Zhen ;
Zhang, Junfeng ;
Wang, Chunming ;
Lv, Dalun ;
Dong, Lei .
BIOMATERIALS, 2019, 219
[10]   In situformation of injectable hydrogels for chronic wound healing [J].
Gao, Yunfen ;
Li, Zhen ;
Huang, Jun ;
Zhao, Meng ;
Wu, Jun .
JOURNAL OF MATERIALS CHEMISTRY B, 2020, 8 (38) :8768-8780