Polysaccharide-protein based scaffolds for cartilage repair and regeneration

被引:2
作者
Shi, Jin [1 ]
Liu, Yu [1 ]
Ling, Ying [2 ]
Tang, Haoyu [1 ]
机构
[1] Soochow Univ, Inst Funct Nano & Soft Mat FUNSOM, Suzhou 215123, Peoples R China
[2] Soochow Univ, Inst Neurosci, Suzhou 215123, Peoples R China
基金
中国国家自然科学基金;
关键词
Polysaccharide; -protein; Cartilage repair and regeneration; Hydrogel; FIBRIN-HYALURONAN MATRIX; ARTICULAR-CARTILAGE; CHONDROCYTE TRANSPLANTATION; CHITOSAN SCAFFOLDS; HYDROGEL SCAFFOLD; UNITED-STATES; STEM-CELLS; PORE-SIZE; COLLAGEN; ACID;
D O I
10.1016/j.ijbiomac.2024.133495
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Cartilage repair and regeneration have become a global issue that millions of patients from all over the world need surgical intervention to repair the articular cartilage annually due to the limited self-healing capability of the cartilage tissues. Cartilage tissue engineering has gained significant attention in cartilage repair and regeneration by integration of the chondrocytes (or stem cells) and the artificial scaffolds. Recently, polysaccharide-protein based scaffolds have demonstrated unique and promising mechanical and biological properties as the artificial extracellular matrix of natural cartilage. In this review, we summarize the modification methods for polysaccharides and proteins. The preparation strategies for the polysaccharide-protein based hydrogel scaffolds are presented. We discuss the mechanical, physical and biological properties of the polysaccharide-protein based scaffolds. Potential clinical translation and challenges on the artificial scaffolds are also discussed.
引用
收藏
页数:20
相关论文
共 145 条
  • [1] Ahmadian Elham, 2023, Nanotheranostics, V7, P61, DOI 10.7150/ntno.78611
  • [2] Emerging directions in green nanomaterials: Synthesis, physicochemical properties and applications
    Arif, Muammer Din
    Hoque, Enamul
    Rahman, Zillur
    Shafoyat, Ushama
    [J]. MATERIALS TODAY COMMUNICATIONS, 2024, 40
  • [3] Athanasiou KA, 2013, ARTICULAR CARTILAGE, P1
  • [4] A tough polysaccharide-based cell-laden double-network hydrogel promotes articular cartilage tissue regeneration in rabbits
    Baei, Payam
    Daemi, Hamed
    Mostafaei, Farhad
    Sayahpour, Forough Azam
    Baharvand, Hossein
    Eslaminejad, Mohamadreza Baghaban
    [J]. CHEMICAL ENGINEERING JOURNAL, 2021, 418
  • [5] Becerra J, 2010, TISSUE ENG PART B-RE, V16, P617, DOI [10.1089/ten.teb.2010.0191, 10.1089/ten.TEB.2010.0191]
  • [6] Photocrosslinked hydrogels from coumarin derivatives of hyaluronic acid for tissue engineering applications
    Beninatto, Riccardo
    Barbera, Carlo
    De Lucchi, Ottorino
    Borsato, Giuseppe
    Serena, Elena
    Guarise, Cristian
    Pavan, Mauro
    Luni, Camilla
    Martewicz, Sebastian
    Galesso, Devis
    Elvassore, Nicola
    [J]. MATERIALS SCIENCE AND ENGINEERING C-MATERIALS FOR BIOLOGICAL APPLICATIONS, 2019, 96 : 625 - 634
  • [7] Potential of silk fibroin/chondrocyte constructs of muga silkworm Antheraea assamensis for cartilage tissue engineering
    Bhardwaj, Nandana
    Singh, Yogendra Pratap
    Devi, Dipali
    Kandimalla, Raghuram
    Kotoky, Jibon
    Mandal, Biman B.
    [J]. JOURNAL OF MATERIALS CHEMISTRY B, 2016, 4 (21) : 3670 - 3684
  • [8] Articular cartilage: structure, injuries and review of management
    Bhosale, Abhijit M.
    Richardson, James B.
    [J]. BRITISH MEDICAL BULLETIN, 2008, 87 (01) : 77 - 95
  • [9] Collagen: quantification, biomechanics and role of minor subtypes in cartilage
    Bielajew, Benjamin J.
    Hu, Jerry C.
    Athanasiou, Kyriacos A.
    [J]. NATURE REVIEWS MATERIALS, 2020, 5 (10) : 730 - 747
  • [10] All-Arthroscopic Hydrogel-Based Autologous Chondrocyte Transplantation in the Knee Joint: Good Clinical and Magnetic Resonance Imaging Outcome After 24 Months
    Blanke, Fabian
    Oehler, Nicola
    Haenle, Maximilian
    Lenz, Robert
    Vogt, Stephan
    Tischer, Thomas
    [J]. ARTHROSCOPY-THE JOURNAL OF ARTHROSCOPIC AND RELATED SURGERY, 2021, 37 (06) : 1892 - +