Co-assembled supramolecular hydrogels of cell adhesive peptide and alginate for rapid hemostasis and efficacious wound healing

被引:77
|
作者
Zhai, Ziran [1 ,2 ]
Xu, Keming [1 ,3 ]
Mei, Leixia [1 ]
Wu, Can [1 ]
Liu, Jing [1 ]
Liu, Ziqi [1 ]
Wan, Lanxin [1 ]
Zhong, Wenying [1 ,3 ]
机构
[1] China Pharmaceut Univ, Dept Chem, Nanjing 210009, Jiangsu, Peoples R China
[2] China Pharmaceut Univ, Dept Pharmaceut Engn, Nanjing 210009, Jiangsu, Peoples R China
[3] China Pharmaceut Univ, Key Lab Biomed Funct Mat, Nanjing 210009, Jiangsu, Peoples R China
关键词
SELF; DEATH;
D O I
10.1039/c9sm01296f
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Injectable hydrogels are promising materials for applications in non-compressive wound management. Yet difficulties remain for the fabrication of mechanically stable hydrogel materials with inherent functionalities in both hemostatic control and wound healing without additional supplements of growth factors. Herein, we reported the co-assembly of a cell adhesive peptide conjugate (Pept-1) and alginate (ALG), to confer supramolecular hydrogels with excellent mechanical properties and high efficacy in both hemostatic control and wound healing requiring no additional growth factors. The co-assembling process of Pept-1 and ALG, which was mediated by electrostatic interactions and metal chelation, afforded a composite hydrogel with denser nanofibrillar structures and better mechanical strength when comparing to the Pept-1 gel alone. As-prepared Pept-1/ALG hydrogels exhibited excellent injectability and thixotropic properties, making them ideal materials for wound dressing. The composite hydrogel induced fast hemostasis when spiked with whole blood in vitro, and reduced the amount of bleeding to similar to 18% of the untreated control in a liver puncture mouse model. Meanwhile, it promoted adhesion and migration of fibroblast NIH3T3 cells in vitro, and accelerated the rate of wound healing in a full-thickness skin defect model of mice. In addition, the Pept-1/ALG hydrogel showed excellent biocompatibility with no obvious hemolytic activity. In future, the strategy of utilizing co-assembled nanostructures composed of biofunctional peptides and polysaccharides could be further exploited to construct a broad range of nanocomposite materials for a variety of biomedical applications.
引用
收藏
页码:8603 / 8610
页数:8
相关论文
共 50 条
  • [21] Injectable Self-Healing Adhesive Chitosan Hydrogel with Antioxidative, Antibacterial, and Hemostatic Activities for Rapid Hemostasis and Skin Wound Healing
    Guo, Shen
    Ren, Yikun
    Chang, Rong
    He, Yuanmeng
    Zhang, Dan
    Guan, Fangxia
    Yao, Minghao
    ACS APPLIED MATERIALS & INTERFACES, 2022, 14 (30) : 34455 - 34469
  • [22] Rapid Preparation of Highly Stretchable and Fast Self-Repairing Antibacterial Hydrogels for Promoting Hemostasis and Wound Healing
    Wang, Wei
    Yuan, Zhengdong
    Li, Ting
    Wang, Yang
    Zhang, Kaiwen
    Wu, Junjie
    Zhang, Shiru
    Yuan, Fenglai
    Dong, Weifu
    ACS APPLIED BIO MATERIALS, 2023, 7 (01) : 394 - 405
  • [23] Facile preparation of PVA hydrogels with adhesive, self-healing, antimicrobial, and on-demand removable capabilities for rapid hemostasis
    He, Yuanmeng
    Liu, Kaiyue
    Zhang, Chen
    Guo, Shen
    Chang, Rong
    Guan, Fangxia
    Yao, Minghao
    BIOMATERIALS SCIENCE, 2022, 10 (19) : 5620 - 5633
  • [24] Injectable self-healing alginate/PEG hydrogels cross-linked via thiol-Michael addition bonds for hemostasis and wound healing
    Xie, Yuxuan
    Li, Guichen
    Wu, Jun
    Zhu, Jiachen
    Cai, Xuemei
    Zhao, Peizuo
    Zhang, Dan
    Zhong, Yuan
    CARBOHYDRATE POLYMERS, 2025, 348
  • [25] Assembly of Recombinant Proteins into β-Sheet Fibrillating Peptide-Driven Supramolecular Hydrogels for Enhanced Diabetic Wound Healing
    Guo, Zhao
    Liu, Xing
    Xia, Yan
    Wang, Jie
    Li, Jiaqi
    Wang, Liping
    Li, Yimiao
    Jia, Shuang
    Sun, Yinan
    Feng, Jian
    Huang, Jingxia
    Dong, Yuxin
    Wang, Liyao
    Li, Xinyu
    ACS BIOMATERIALS SCIENCE & ENGINEERING, 2024, 11 (01): : 228 - 238
  • [26] Ultrafast self-gelling, superabsorbent, and adhesive chitosan-based hemostatic powders for rapid hemostasis and wound healing
    Liu, Ashuang
    Cui, Shengyong
    Song, Lei
    Guo, Xiangshu
    Huang, Zhimao
    Wang, Shancan
    Cheng, Kai
    Xiao, Ying
    Fan, Youfen
    Wang, Rong
    CARBOHYDRATE POLYMERS, 2025, 355
  • [27] Bioinspired adhesive hydrogel based on serotonin-modified gelatin and oxidized hyaluronic acid for rapid hemostasis and wound healing
    Jiang, Yongchao
    Zhang, Wenjie
    Guo, Yingying
    Zheng, Xuejing
    Tang, Keyong
    INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES, 2024, 261
  • [28] Extracellular Matrix Mimicking Wound Microenvironment Responsive Amyloid-Heparin@TAAgNP Co-Assembled Hydrogel: An Effective Conductive Antibacterial Wound Healing Material
    Mukherjee, Nabanita
    Ghosh, Satyajit
    Roy, Rajsekhar
    Mukherjee, Dipro
    Sen, Samya
    Nandi, Debasmita
    Sarkar, Jayita
    Ghosh, Surajit
    ACS APPLIED MATERIALS & INTERFACES, 2024, 16 (24) : 30929 - 30957
  • [29] Adhesive injectable cellulose-based hydrogels with rapid self-healing and sustained drug release capability for promoting wound healing
    Li, Lu
    Wang, Lixin
    Luan, Xinxin
    Pang, Yanjun
    Zhang, Kefeng
    Cheng, Yushuai
    Ji, Zhe
    Pang, Jinhui
    CARBOHYDRATE POLYMERS, 2023, 320
  • [30] Cell/Tissue Adhesive, Self-Healable, Biocompatible, Hemostasis, and Antibacterial Hydrogel Dressings for Wound Healing Applications
    Suneetha, Maduru
    Rao, Kummara Madhusudana
    Han, Sung Soo
    ADVANCED MATERIALS INTERFACES, 2022, 9 (13)