Platelet-Derived Growth Factor-Functionalized Scaffolds for the Recruitment of Synovial Mesenchymal Stem Cells for Osteochondral Repair

被引:12
作者
Luo, Yuan [1 ,2 ]
Cao, Xiaodong [2 ]
Chen, Junfeng [2 ]
Gu, Jianwei [2 ]
Yu, Hao [1 ]
Sun, Junying [1 ]
Zou, Jun [1 ]
机构
[1] Soochow Univ, Dept Orthoped, Affiliated Hosp 1, Suzhou, Jiangsu, Peoples R China
[2] Soochow Univ, Dept Orthoped, Taicang Affiliated Hosp, Taicang, Jiangsu, Peoples R China
关键词
D O I
10.1155/2022/2190447
中图分类号
Q813 [细胞工程];
学科分类号
摘要
Cartilage regeneration is still a challenge for clinicians because of avascularity, denervation, load-bearing, synovial movement, and the paucity of endogenous repair cells. We constructed a multilayered osteochondral bionic scaffold and examined its repair capacity using a rabbit osteochondral defect model. The cartilage phase and interface layer of the scaffold were prepared by freeze-drying, whereas the bone phase of the scaffold was prepared by high-temperature sintering. The three-phase osteochondral bionic scaffold was formed by joining the hydroxyapatite (HAp) and silk fibroin (SF) scaffolds using the repeated freeze-thaw method. Different groups of scaffolds were implanted into the rabbit osteochondral defect model, and their repair capacities were assessed using imaging and histological analyses. The cartilage phase and the interface layer of the scaffold had a pore size of 110.13 +/- 29.38 and 96.53 +/- 33.72 mu m, respectively. All generated scaffolds exhibited a honeycomb porous structure. The polydopamine- (PDA-) modified scaffold released platelet-derived growth factor (PDGF) for 4 weeks continuously, reaching a cumulative release of 71.74 +/- 5.38%. Synovial mesenchymal stem cells (SMSCs) adhered well to all scaffolds, but demonstrated the strongest proliferation ability in the HSPP (HAp-Silk-PDA-PDGF) group. Following scaffold-induced chondrogenic differentiation, SMSCs produced much chondrocyte extracellular matrix (ECM). In in vivo experiments, the HSPP group exhibited a significantly higher gross tissue morphology score and achieved cartilage regeneration at an earlier stage and a significantly better repair process compared with the other groups (P < 0.05). Histological analysis revealed that the new cartilage tissue in the experimental group had a better shape and almost filled the defect area, whereas the scaffold was nearly completely degraded. The new cartilage was effectively fused with the surrounding normal cartilage, and a substantial amount of chondrocyte ECM was formed. The SF/HAp three-layer osteochondral bionic scaffold exhibited favorable pore size, porosity, and drug sustained-release properties. It demonstrated good biocompatibility in vitro and encouraging repair effect at osteochondral defect site in vivo, thereby expected to enabling the repair and regeneration of osteochondral damage.
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页数:15
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共 32 条
  • [1] Silk-based biomaterials
    Altman, GH
    Diaz, F
    Jakuba, C
    Calabro, T
    Horan, RL
    Chen, JS
    Lu, H
    Richmond, J
    Kaplan, DL
    [J]. BIOMATERIALS, 2003, 24 (03) : 401 - 416
  • [2] 3D Bioprinting for Cartilage and Osteochondral Tissue Engineering
    Daly, Andrew C.
    Freeman, Fiona E.
    Gonzalez-Fernandez, Tomas
    Critchley, Susan E.
    Nulty, Jessica
    Kelly, Daniel J.
    [J]. ADVANCED HEALTHCARE MATERIALS, 2017, 6 (22)
  • [3] Repairing Osteochondral Defects of Critical Size Using Multiple Costal Grafts: An Experimental Study
    Du, Dajiang
    Sugita, Norihiko
    Liu, Zhen
    Moriguchi, Yu
    Nakata, Ken
    Myoui, Akira
    Yoshikawa, Hideki
    [J]. CARTILAGE, 2015, 6 (04) : 241 - 251
  • [4] A novel in vivo model to study endochondral bone formation;: HIF-1α activation and BMP expression
    Emans, Pieter J.
    Spaapen, Frank
    Surtel, Don A. M.
    Reilly, Keryn M.
    Cremers, Andy
    van Rhijn, Lodewijk W.
    Bulstra, Sjoerd K.
    Voncken, Jan Willem
    Kuijer, Roel
    [J]. BONE, 2007, 40 (02) : 409 - 418
  • [5] To go or not to go: Migration of human mesenchymal progenitor cells stimulated by isoforms of PDGF
    Fiedler, J
    Etzel, N
    Brenner, RE
    [J]. JOURNAL OF CELLULAR BIOCHEMISTRY, 2004, 93 (05) : 990 - 998
  • [6] The PDGF family: four gene products form five dimeric isoforms
    Fredriksson, L
    Li, H
    Eriksson, U
    [J]. CYTOKINE & GROWTH FACTOR REVIEWS, 2004, 15 (04) : 197 - 204
  • [7] High levels of GSK-3β signalling reduce osteogenic differentiation of stem cells in osteonecrosis of femoral head
    Huang, Lu
    Wang, Ying
    Jiang, Yangzi
    Wu, Yan
    Hu, Changchang
    Ouyang, Hongwei
    [J]. JOURNAL OF BIOCHEMISTRY, 2018, 163 (03) : 243 - 251
  • [8] Unlike Bone, Cartilage Regeneration Remains Elusive
    Huey, Daniel J.
    Hu, Jerry C.
    Athanasiou, Kyriacos A.
    [J]. SCIENCE, 2012, 338 (6109) : 917 - 921
  • [9] Repair of partial-thickness defects in articular cartilage: Cell recruitment from the synovial membrane
    Hunziker, EB
    Rosenberg, LC
    [J]. JOURNAL OF BONE AND JOINT SURGERY-AMERICAN VOLUME, 1996, 78A (05) : 721 - 733
  • [10] Growth-factor-induced healing of partial-thickness defects in adult articular cartilage
    Hunziker, EB
    [J]. OSTEOARTHRITIS AND CARTILAGE, 2001, 9 (01) : 22 - 32