ECM-mimicking composite hydrogel for accelerated vascularized bone regeneration

被引:4
|
作者
Li, Guanglong [1 ]
Gao, Fei [2 ]
Yang, Donglei [2 ]
Lin, Lu [1 ]
Yu, Weijun [1 ]
Tang, Jiaqi [1 ]
Yang, Ruhan [1 ]
Jin, Min [1 ]
Gu, Yuting [1 ]
Wang, Pengfei [2 ]
Lu, Eryi [1 ]
机构
[1] Shanghai Jiao Tong Univ, Renji Hosp, Sch Med, Dept Stomatol, 160 Pujian Rd, Shanghai 200127, Peoples R China
[2] Shanghai Jiao Tong Univ, Renji Hosp, Inst Mol Med, Shanghai Key Lab Nucl Acid Chem & Nanomed,Sch Med, 160 Pujian Rd, Shanghai 200127, Peoples R China
基金
中国国家自然科学基金;
关键词
Composite hydrogel; DNA hydrogel; Stress relaxation; Osteogenesis; Vascularization; REVERSIBLE LINKAGES; ADAPTABLE HYDROGEL; STRESS-RELAXATION; GROWTH-FACTOR; SCAFFOLDS; MEDICINE; DELIVERY; REPAIR;
D O I
10.1016/j.bioactmat.2024.08.035
中图分类号
R318 [生物医学工程];
学科分类号
0831 ;
摘要
Bioactive hydrogel materials have great potential for applications in bone tissue engineering. However, fabrication of functional hydrogels that mimic the natural bone extracellular matrix (ECM) remains a challenge, because they need to provide mechanical support and embody physiological cues for angiogenesis and osteogenesis. Inspired by the features of ECM, we constructed a dual-component composite hydrogel comprising interpenetrating polymer networks of gelatin methacryloyl (GelMA) and deoxyribonucleic acid (DNA). Within the composite hydrogel, the GelMA network serves as the backbone for mechanical and biological stability, whereas the DNA network realizes dynamic capabilities (e.g., stress relaxation), thereby promoting cell proliferation and osteogenic differentiation. Furthermore, functional aptamers (Apt19S and AptV) are readily attached to the DNA network to recruit bone marrow mesenchymal stem cells (BMSCs) and achieve sustained release of loaded vascular endothelial growth factor towards angiogenesis. Our results showed that the composite hydrogel could facilitate the adhesion of BMSCs, promote osteogenic differentiation by activating focal adhesion kinase (FAK)/phosphatidylinositol 3-kinase (PI3K)/protein kinase B (Akt)/beta-Catenin signaling pathway, and eventually enhance vascularized bone regeneration. This study shows that the multifunctional composite hydrogel of GelMA and DNA can successfully simulate the biological functions of natural bone ECM and has great potential for repairing bone defects.
引用
收藏
页码:241 / 256
页数:16
相关论文
共 50 条
  • [1] An ECM-Mimicking, Mesenchymal Stem Cell-Embedded Hybrid Scaffold for Bone Regeneration
    Haj, Jozafina
    Khalil, Tharwat Haj
    Falah, Mizied
    Zussman, Eyal
    Srouji, Samer
    BIOMED RESEARCH INTERNATIONAL, 2017, 2017
  • [2] An ECM-Mimicking, Injectable, Viscoelastic Hydrogel for Treatment of Brain Lesions
    Hu, Yan
    Jia, Yuanbo
    Wang, Siwei
    Ma, Yufei
    Huang, Guoyou
    Ding, Tan
    Feng, Dayun
    Genin, Guy M.
    Wei, Zhao
    Xu, Feng
    ADVANCED HEALTHCARE MATERIALS, 2023, 12 (01)
  • [3] ECM-Mimicking Strontium-Doped Nanofibrous Microspheres for Periodontal Tissue Regeneration in Osteoporosis
    Lin, Hengyi
    Weng, Enhuai
    Rong, Xin
    Yu, Li
    Chen, Yiling
    Jiang, Yukun
    Hu, Haikun
    Wang, Zhenming
    Zou, Shujuan
    Hu, Zhiai
    ACS APPLIED MATERIALS & INTERFACES, 2024, 16 (31) : 40555 - 40569
  • [4] Heterogenous hydrogel mimicking the osteochondral ECM applied to tissue regeneration
    Chen, Zhuoxin
    Xiao, Hong
    Zhang, Hongbo
    Xin, Qiangwei
    Zhang, Haochen
    Liu, Haixin
    Wu, Mingzhen
    Zuo, Liangrui
    Luo, Jun
    Guo, Qiang
    Ding, Chunmei
    Tan, Hong
    Li, Jianshu
    JOURNAL OF MATERIALS CHEMISTRY B, 2021, 9 (41) : 8646 - 8658
  • [5] Shape-Memory ECM-Mimicking Heparin-Modified Nanofibrous Gelatin Scaffold for Enhanced Bone Regeneration in Sinus Augmentation
    Ying, Yiqian
    Li, Beibei
    Liu, Changying
    Xiong, Zuochun
    Bai, Wei
    Ma, Pan
    ACS BIOMATERIALS SCIENCE & ENGINEERING, 2022, 8 (01): : 218 - 231
  • [6] Bifunctional hydrogel for potential vascularized bone tissue regeneration
    Gaihre, Bipin
    Liu, Xifeng
    Li, Linli
    Miller, A. Lee
    Camilleri, Emily T.
    Li, Yong
    Waletzki, Brian
    Lu, Lichun
    MATERIALS SCIENCE AND ENGINEERING C-MATERIALS FOR BIOLOGICAL APPLICATIONS, 2021, 124
  • [7] An ECM-mimicking assembled gelatin/hyaluronic acid hydrogel with antibacterial and radical scavenging functions for accelerating open wound healing
    Ma, Xuebin
    Ning, Wenli
    Geng, Yiming
    Shao, Huarong
    Liu, Yang
    Liu, Fei
    Zhang, Daizhou
    Chi, Bo
    Hou, Yali
    Fu, Xiao
    BIOMEDICAL MATERIALS, 2024, 19 (01)
  • [8] Impact of Composition and Autoclave Sterilization on the Mechanical and Biological Properties of ECM-Mimicking Cryogels
    Di Muzio, Laura
    Zara, Susi
    Cataldi, Amelia
    Sergi, Claudia
    Carriero, Vito Cosimo
    Bigi, Barbara
    Carradori, Simone
    Tirillo, Jacopo
    Petralito, Stefania
    Casadei, Maria Antonietta
    Paolicelli, Patrizia
    POLYMERS, 2024, 16 (13)
  • [9] Exploring Structure-Property Relationships of GAGs to Tailor ECM-Mimicking Hydrogels
    Zimmermann, Ralf
    Werner, Carsten
    Sterling, James
    POLYMERS, 2018, 10 (12):
  • [10] ECM-mimicking thermoresponsive surface for manipulating hepatocyte sheets with maintenance of hepatic functions
    Kobayashi, Jun
    Akiyama, Yoshikatsu
    Yamato, Masayuki
    Okano, Teruo
    2016 INTERNATIONAL SYMPOSIUM ON MICRO-NANOMECHATRONICS AND HUMAN SCIENCE (MHS), 2016,