Strontium-Modified porous attapulgite composite hydrogel scaffold with advanced angiogenic and osteogenic potential for bone defect repair

被引:2
|
作者
Liu, Chun [1 ,2 ]
Ni, Su [1 ,2 ]
Wu, Xiaoyu [1 ]
Zhang, Linxiang [1 ]
Dai, Ting [1 ]
Wang, Aiqin [3 ]
Zhao, Hongbin [1 ,2 ]
机构
[1] Nanjing Med Univ, Changzhou Peoples Hosp 2, Lab 3D Printing & Regenerat Med, 68 Gehu Rd, Changzhou 213164, Jiangsu, Peoples R China
[2] Nanjing Med Univ, Changzhou Med Ctr, Changzhou 213164, Peoples R China
[3] Chinese Acad Sci, Lanzhou Inst Chem Phys, Ctr Ecomat & Green Chem, Key Lab Clay Mineral Appl Res Gansu Prov, Lanzhou 730000, Peoples R China
关键词
Nanocomposites; Microstructures; CT analysis; 3-D Printing; NANO-ATTAPULGITE; TRENDS;
D O I
10.1016/j.compositesa.2024.108492
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Nano-attapulgite (nano-ATP) has shown potential in promoting mesenchymal stem cell (MSC) adhesion, growth and osteogenic gene expression. In this study, we investigated a 3D-bioprinted porous Sr-ATP (strontium-doped nano-ATP)/GelMA/chitosan composite hydrogel scaffold for bone regeneration. The experiment was divided into four groups based on the concentration of Sr-ATP: control (0%), 0.5%, 1.0% and 2.0%. The primary novelty of our research lies in the incorporation of Sr-ATP, which enhances the biological and mechanical properties of scaffolds. Additionally, we utilized a stable Pickering emulsion templating technique combined with 3D printing to fabricate the scaffold, ensuring a uniform and stable porous structure. The biological and mechanical properties of the scaffold were evaluated in vitro, and its potential to promote angiogenesis and osteogenesis was assessed in vivo using cranial defect model. Our results indicate that the scaffold presents a promising solution for bone formation in bone defects, demonstrating significant improvements in both angiogenesis and osteogenesis.
引用
收藏
页数:14
相关论文
共 13 条
  • [1] Three-Dimensional Bioprinting of Strontium-Modified Controlled Assembly of Collagen Polylactic Acid Composite Scaffold for Bone Repair
    Sun, Weiwei
    Xie, Wenyu
    Hu, Kun
    Yang, Zongwen
    Han, Lu
    Li, Luhai
    Qi, Yuansheng
    Wei, Yen
    POLYMERS, 2024, 16 (04)
  • [2] A 3D-printed PLGA/HA composite scaffold modified with fusion peptides to enhance its antibacterial, osteogenic and angiogenic properties in bone defect repair
    Liu, Zihao
    Tian, Guangjie
    Liu, Lina
    Li, Yumeng
    Xu, Shendan
    Du, Yaqi
    Li, Minting
    Jing, Wei
    Wei, Pengfei
    Zhao, Bo
    Ma, Shiqing
    Deng, Jiayin
    JOURNAL OF MATERIALS RESEARCH AND TECHNOLOGY-JMR&T, 2024, 30 : 5804 - 5819
  • [3] In Vitro and In Vivo Evaluation of Injectable Strontium-Modified Calcium Phosphate Cement for Bone Defect Repair in Rats
    Xu, Hailiang
    Zhu, Lei
    Tian, Fang
    Wang, Chengwen
    Wu, Weidong
    Lu, Botao
    Yan, Liang
    Jia, Shuaijun
    Hao, Dingjun
    INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES, 2023, 24 (01)
  • [4] A facile strategy toward hierarchically porous composite scaffold for osteosarcoma ablation and massive bone defect repair
    Ling, Tingxian
    Zha, Xiangjun
    Zhou, Kai
    Zhao, Xing
    Jia, Jin
    Pan, Kaiqi
    Chen, Anjing
    Yang, Wei
    Zhou, Zongke
    COMPOSITES PART B-ENGINEERING, 2022, 234
  • [5] A Novel Porous Butyryl Chitin-Animal Derived Hydroxyapatite Composite Scaffold for Cranial Bone Defect Repair
    Zhang, Wei
    Jiang, Zhiwen
    Chi, Jinhua
    Sun, Huanchao
    Li, Hongjian
    Liu, Wanshun
    Han, Baoqin
    INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES, 2023, 24 (10)
  • [6] Enhanced Bone Regeneration and Bone Defect Repair Using Magnesium/Lithium-Co-Modified, Porous, Hydroxyapatite Composite Scaffolds
    Zhao, Hai-Yan
    Releken-Yeersheng
    Xia, Ya-Yi
    Han, Xing-Wen
    Zhang, Chao
    Wang, Wen-Ji
    SCIENCE OF ADVANCED MATERIALS, 2020, 12 (01) : 124 - 136
  • [7] A PLA-tPU based magnesium ion incorporated CSH/nHA bioactive porous composite scaffold for critical bone defect repair
    Shi, Zhi
    Huang, Guobin
    Li, Zhongming
    Lou, Zhenkai
    Gong, Zhiqiang
    Wang, Xin
    Li, Chengyong
    Wang, Bing
    MATERIALS ADVANCES, 2023, 4 (16): : 3583 - 3592
  • [8] The scale-up of a tissue engineered porous hydroxyapatite polymer composite scaffold for use in bone repair: An ovine femoral condyle defect study
    Tayton, Edward
    Purcell, Matthew
    Smith, James O.
    Lanham, Stuart
    Howdle, Steven M.
    Shakesheff, Kevin M.
    Goodship, Allen
    Blunn, Gordon
    Fowler, Darren
    Dunlop, Douglas G.
    Oreffo, Richard O. C.
    JOURNAL OF BIOMEDICAL MATERIALS RESEARCH PART A, 2015, 103 (04) : 1346 - 1356
  • [9] Interleukin-4-loaded hydrogel scaffold regulates macrophages polarization to promote bone mesenchymal stem cells osteogenic differentiation via TGF-β1/Smad pathway for repair of bone defect
    Zhang, Jiankang
    Shi, Haitao
    Zhang, Nian
    Hu, Liru
    Jing, Wei
    Pan, Jian
    CELL PROLIFERATION, 2020, 53 (10)
  • [10] Graphene oxide modified sodium alginate/polyethylene glycol phase change material hydrogel scaffold composite with photothermal temperature control for potential bone tissue regeneration
    Zhang, Qian
    Li, Jiawei
    Qu, Qingdi
    Pan, Shuang
    Yu, Kunyang
    Liu, Yushi
    JOURNAL OF MATERIALS RESEARCH AND TECHNOLOGY-JMR&T, 2024, 30 : 2446 - 2457